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TRANSCRIPT
The 2nd
International Conference on
Structural Health Monitoring and
Integrity Management
(ICSHMIM 2014)
Sept. 24-26, 2014, Nanjing, China
Programme
ORGANIZATION
Sponsors:
China Instrument and Control Society (CIS)
China Special Equipment Inspection and Research Institute (CSEI)
National Natural Science Foundation of China (NSFC)
Southeast University (SEU)
Nanjing University of Aeronautics and Astronautics (NUAA)
Organizers:
Equipment Structure Health Monitoring and Prognostics Institute of CIS (CSHMP)
Nanjing University of Aeronautics and Astronautics (NUAA)
Southeast University (SEU)
Co-organizers:
Nanjing Special Equipment Safety Supervision Inspection Institute
Nanjing Boiler & Pressure Vessel Supervision and Inspection Institute
Supporting Organizations:
Special Equipment Science & Technology Collaboration Platform
Stress Measurement Branch of China Society of NDT
Jiangxi Fashion Technology Co., Ltd.
Testarc Technologies Co., Ltd.
Shanghai BAIANTEK Sensing Technology Co., Ltd.
Shenzhen Jean Measurement Technology Corporation
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CHAIRMAN OF ORGANIZING COMMITTEE
Researcher Shuqing Lin, the current president of China Special
Equipment Inspection and Research Institute, director-general of China
Special Equipment Inspection Association, director-general of Chinese
Institute of instrumentation equipment structural health monitoring and
early warning, deputy director of China boiler and pressure vessel NDT
personnel qualification examination committee, director of non-
destructive testing branch of Beijing mechanical engineering society,
deputy director of China National Accreditation Service for Conformity
Assessment, director of Technical Committee of Inspection Body
Accreditation, electromechanical group leader of state administration of
work safety experts. Adjunct professor in Zhejiang University, Beijing
University of Aeronautics & Astronautics, China University of Petroleum
and Wuhan Institute of Technology.
Researcher Lin received B.S degree from Lanzhou University in July 1982. He studied as a visiting scholar
in TÜV Hannover during April 1988 to July 1989. He got the Ⅲ degree (the highest level) non-destructive
testing personnel qualification from the institute, and the course-completion certificate from Federal
Department of Economic Affairs. In 2004, he got MBA degree from Macau International Open University.
Researcher Lin has assumed and participated in about 20 national key scientific and technological projects
and provincial science and technology research projects, and participated in the formulations of 6 special
equipment regulations and standards. He has published 4 treatises and translations, applied for and
received one patent. He was also awarded the second prize of national scientific and technological
progress twice, the first prize of provincial awards four times, the second prize three times, and the third
prize one times.
Ke Xiong is now the Assistant to President of Nanjing University of
Aeronautics and Astronautics, and the Director of State Key Laboratory
of Mechanics and Control of Mechanical Structures. He received the
Bachelor, Master and PhD degrees in Solid Mechanics, Experimental
Mechanics and Measurement and Sensor Techniques from Nanjing
University of Aeronautics and Astronautics, China, in 1982, 1994 and
1997 respectively. He became a professor at the Nanjing University of
Aeronautics and Astronautics in 2003, served as assistant to President
from 2008, and was chosen as director of State Key Laboratory of
Mechanics and Control of Mechanical Structures in 2011. He is a
council member of Chinese Aviation Society and permanent member of
Indian Society for Advancement of Materials and Process Engineering.
His main research interest is smart materials and structural systems,
including development of actuator and adaptive structural technologies,
Shape Memory Alloy, Ionic Polymer Metal Composites and devices,
structural health monitoring with Piezoelectric SMART Layer for aerospace applications and ground test of
aircraft structure strength applied electro-metric techniques and experimental stress-strain analysis. A
number of research projects are funded by the National Natural Science Foundation of China (NSFC). He
has published one book and over 60 papers related to the development of smart materials and structural
systems. He has also received 5 awards, including The 1998 National Invention Award (Third Prize) and
2001 National Teaching Award (Second Prize).
2
CHAIRMAN OF TECHNICAL COMMITTEE
Zhishen Wu is a chair professor at Southeast University, China and
Ibaraki University, Japan. He received BS and MS from Southeast
University, China in 1983 and 1986 respectively and PhD from Nagoya
University, Japan in 1990. His research interests include FRP
composite technologies, advanced sensor technologies, and structural
health/risk/disaster monitoring and control. He is the author or co-author
of over 600 papers in refereed journals and int. conference proceedings
including over 50 keynote or invited papers. He also holds 50
authorized patents of invention. Although about half of his research
papers have been published in Japanese or Chinese journals, his
publications in English have also received wide citations, e.g. his total
citation in Scopus is over 3000 times. Dr. Wu was awarded the JSCE
Research Price from Japan Society of Civil Engineering in 1990, the
JSCM Technology Award from the Japan Society for Composite
Materials in 2005, 2009 SHM person of the year Award from SHM, An
Int. Journal, and National Prize for Progress in Science and
Technology(2nd) of China in 2012 etc. He is the chairman or board member of numerous national and int.
societies, such as China chemical fibers association committee on basalt fibers as chairman, International
Society for Structural health Monitoring of Intelligent Infrastructure (ISHMII) as a vice president. He were
elected as follows of ASCE, JSCE, ISHMII, and IIFC (International Institute of FRP in Construction).
Moreover, he serves as an editor, associate editor, editorial board member for more than ten int. journals
such as Int. J. of Sustainable Materials and Structural Systems as editor. He has led over 10 important
research projects in both Japan and China, and is now leading a national 973 research project on “the use
of FRP composites to achieve high performance and longevity for major engineering structures (2012-
2017)”.
Prof. Shenfang Yuan, Changjiang Chair professor of the State Key
Laboratory of Mechanics and Control of Mechanical Structures, Nanjing
University of Aeronautics and Astronautics (NUAA). She received her
Ph.D. from NUAA in 1996. Prof. Yuan’s main research interests include
structural health monitoring, smart structures, sensor and measurement
technology, wireless sensor network, signal processing methods and
experimental mechanics. She has authored 2 books and over 200
journal papers. She holds 35 Chinese invention patents. She is the PI of
a number of import projects, including China National Funds for
Distinguished Young Scientists, Key Project from National Science
Foundation of China, Key Program of National Basic Research Program
of China and National High Technology research program. She is the
winner of the Special Support Program for National High Level Leading
Talents of China (2013), China National Funds for Distinguished Young
Scientists from NSFC (2012), Distinguished Young Scientist Award from
China Aviation Society (2011).
3
EXECUTIVE-CHAIRMAN OF ORGANIZING COMMITTEE
Dr. Keqin Ding, who received Ph.D degree of Solid Mechanics from
Institute of Mechanics, Chinese Academy of Sciences in 1997, is
research Professor, doctoral tutor. He is the Director of Department of
SHM, China Special Equipment Inspection and Research Institute
(CSEI) and General Manager of Testarc Technology Co., Ltd., CSEI.
Now he is Member of the Chinese Society of Theoretical and Applied
Mechanics, Member of China Instrument and Control Society (CIS),
Standing Vice President and Secretary General of Equipment Structural
Health Monitoring and Prognostics Institute (CSHMP) of CIS, the
Executive Director of the Chinese Society of NDT and the Director of
Stress Measurement Professional Committee of the Chinese Society of
NDT, etc. Dr. Ding is mainly engaged in development and application of
Advanced Sensing Technologies, Structural Health Monitoring,
Structural Health Diagnosis and Prognostics technologies and other
new technologies, new methods, new equipments.
Since 1999, he has taken charge of approximately 30 national projects or tasks in NDT, SHM, and Safety
Assessment aspects. He also has finished 18 projects research works and obtained a large number of
achievements which produced significant social influence and economic benefits. He has won provincial
science and technology awards 11 times, including the first prize 1 time, the second prize 6 times, and the
third prize 3 times. In addition, he has published more than 100 papers, obtained 8 patents and 12
computer software copyrights authorized. And he also enjoys the Special Government Allowance of the
State Council.
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SCHEDULE
September 25, 2014 Conference Room 1
Opening Ceremony (8:30-9:00)
Chairman: Dr. Keqin Ding
(China Special Equipment Inspection & Research Institute)
08:30-08:40 Opening
08:40-09:00 Welcome
09:00-09:20 Group Photo
Keynote Lecture (9:20-12:00)
Chairman: Prof. Zhishen Wu (Southeast University) Prof. Shenfang Yuan (Nanjing University of Aeronautics and Astronautics)
09:20-09:55 Measuring the Dynamic Properties of Bridges by a Moving Test Vehicle
Yong-Bin Yang, National Taiwan University, China
09:55-10:30
Numerical and Experimental Methods for Structural Health Monitoring with
Ultrasonic Guided Waves
Ulrich Gabbert, University of Magdeburg, Germany
10:30-10:50 Coffee/Tea Break
10:50-11:25 Monitoring of Civil Infrastructure: from Research to Engineering Practice
B. F. Spencer, University of Illinois at Urbana-Champaign, USA
11:25-12:00 Challenges and Opportunities for Structural Health Monitoring Under Harsh Environments Shan-Tung Tu, East China University of Science and Technology, China
12:00-13:30 Buffet Lunch & Break
Invited Lecture (13:30-18:00)
Chairman: Prof. Hui Li (Harbin Institute of Technology) Prof. Guiyun Tian (Newcastle University, UK)
13:30-14:00 Fatigue Crack Detection Using Nonlinear Ultrasonic Wave Modulation Hoon Sohn, Korea Advanced Institute of Science and Technology, Korea
6
14:00-14:30 Guided Wave-based In-situ Structural Health Monitoring for High-Speed Train Bogie Systems Zhongqing Su, The Hong Kong Polytechnic University, China
14:30-15:00 RFID Sensors Based Corrosion Detection and Monitoring Gui-Yun Tian, Newcastle University, UK
15:00-15:30 Opportunities and Challenges of Aircraft SHM Yingchun Xiao, AVIC Aircraft Strength Research Institute, China
15:30-16:00 Impact Monitoring and Evaluations of Aircraft Composite Structures Lei Qiu, Nanjing University of Aeronautics and Astronautics, China
16:00-16:10 Fashion Punming Uint Integration Monitoring System Qiangqiang Zhao, Jiangxi Fashion Technology Co., Ltd.
16:10-16:40 Coffee/Tea Break
16:40-17:10 Generalized Transmissibility Damage Indicator for Condition Monitoring of Engineering Structural Systems Zi-Qiang Lang, University of Sheffield, UK
17:10-17:40 Wireless Network Architecture and Model-based Fault Detection for Condition Monitoring of Dynamic Systems Xuewu Dai, Northumbria University, UK
17:40-18:10 Opportunities and Challenges of Structural Health Monitoring for Civil Aircraft Application Limin Gao, Commercial Aircraft Corporation of China Ltd., China
18:10-19:30 Banquet
September 26, 2014 Conference Room 1
Invited Lecture (08:30-10:00)
Chairman: Prof. Zhongqing Su (Hong Kong Polytechnic University) Prof. Hoon Sohn (Korea Advanced Institute of Science and Technology)
08:30-09:00 Emerge Techniques and Future Trends of Structural Health Monitoring Hui Li, Harbin Institute of Technology, China
09:00-09:30 Electromagnetic NDT and Condition Monitoring Xiandong Ma, Lancaster University, UK
09:30-10:00 Movable Impact Testing for Rapid Evaluation of Short/Middle Span Bridges Jian Zhang, Southeast University, China
10:00-10:30 Coffee/Tea Break
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Sept.26, 2014 Conference Room 1 Conference Room 2 Conference Room 3
Stage 1
10:30-12:10
Session 2
Chairman: Prof. Caiqian Yang (Southeast University) Prof. Lei Qiu (Nanjing University of Aeronautics and
Astronautics)
Session 1
Chairman: Prof. Haitao Wang (Nanjing University of Aeronautics and Astronautics)
Prof. Qiang Wang (Nangjing University of Posts and Telecommunications)
Session 3
Chairman: Prof. Guoan Yang (Beijing University of Chemical Technology)
Prof. Guanglong Wang (Mechanical Engineering College)
10:30-10:45 A Frequency-wavenumber Domain Analysis for Lamb Wave Crack Detection Yun-Kyu An, Southeast University
The Influence Mechanism Research of Temperature on Piezoresistive MEMS Pressure Sensor JIANG Bo, Mechanical Engineering College, China
Acoustic Emission Detection Used in Wrapped Cylinders Inspection CHEN Xiao-hui, China Aerodynamics Research and Development Centre
10:45-11:00 Crack Detection in Beams Using Stationary Wavelet Transform-Aided Fractal Dimension Analysis: Experimental Study CAO Mao-sen, Hohai University
Development of an Active Wireless Sensor Node for Fatigue Crack Detection Using Nonlinear Wave Modulation LIU Pei-pei, Korea Advanced Institute of Science and Technology
Nonlinear Ultrasonic Detection of Bonding Interface Gap Defect BI Zhou-yang, Mechanical Engineering College
11:00-11:15 Sparsity-enabled Denoising Method Based on Tunable Q-factor Wavelet Transform for Bearing Fault Diagnosis DING Bao-qing, Xi’an Jiaotong University
Study on Integrated Sensor for Metal Structure Fatigue Monitoring CUI Rong-hong, Air Force Engineering University
Visual Monitoring of Micro Crack Propagation via Luminescence Enhancement ZHAO Zi-ming, East China University of Science and Technology
11:15-11:30
Investigation of Helmholtz Coils for Edge Structure Using Inductive Thermography WANG Yi-zhe, University of Electronic Science and Technology of China
A Real-time Monitoring and Non-contacting Measurement Technology for Dynamic Deformation of a Liquid Sloshing Surface LIU Shu-li, Beijing Institute of Technology
Damage Identification for Shear Frame Structures Using Proper Orthogonal Decomposition Approach XIANG Wei, Huazhong University of Science and Technology
11:30-11:45
The Damage and Impact Imaging Method Based on 2D Linear PZTs Array and Spatial Filter without Using Lamb Wave Group Velocity QIU Lei, Nanjing University of Aeronautics and Astronautics
Comparison of Damage Visualization Results with Different Damage Angles Using Laser Ultrasonic Technique ZHANG Chao, Nanjing University of Aeronautics and Astronautics
Multistage Region Damage Identification Based on Lamb Waves CHEN Jian-lin, Peking University
11:45-12:00
A Crack Diagnosis and Monitoring Method Using Linear Phased PZT Sensor Array WANG Qiang, Nanjing University of Posts and Telecommunications
Binocular Stereo Vision Measurement System Based on SOPC TIAN Jie, Mechanical Engineering College
A Baseline-free Damage Detection Method Based on Active Impact Lamb Waves Shengbo Shan, Nanjing University of Aeronautics and Astronautics
12:00-12:10 Shanghai BAIANTEK Sensing Technology CO., LTD Nanjing Special Equipment Safety Supervision Inspection & Research Institute
Nanjing Boiler and Pressure Vessel Inspection & Research Institute
12:10-13:30 Buffet Lunch & Break
Stage 2
13:30-15:00
Session 2
Chairman: Prof. Ying Lei (Xiamen University) Prof. Dansheng Wang (Huazhong University of Science and
Technology)
Session 1&4
Chairman: Prof. Fucai Li (Shanghai Jiaotong University) Prof. Jian Zhang (Southeast University)
Session 3&6
Chairman: Dr. Yingchun Xiao (AVIC Aircraft Strength Research Institute)
Prof. Limin Gao (Commercial Aircraft Corporation of China, Ltd.)
13:30-13:45 Detection of Damage in Beams Using Artificial Neural Networks DING Zhi-chun, Hohai University
Providing Multi-Radio Wireless Sensor Network with High-Throughput Ability for SHM Application GAO Shang, Nanjing University of Aeronautics and Astronautics
Effects of Tensile Stress on the Properties of Guided Wave in Wire Rope LIU Xiu-cheng, Beijing University of Technology
13:45-14:00 Structural Damage Identification Using Multiple Mode Fusion Curvature Mode Shape Method SHA Gang-gang, Hohai University
Sensors for High Temperature Displacement, Deformation and Strain Measurement: a Review JIA Jiu-hong, East China University of Science and Technology
SHM for Plate-like Structures Based on the Magnetostrictive Lamb Wave Transducers Array Fan Jun-wei, Beijing University of Technology
14:00-14:15 The Fault Mode Identification of Hydraulic Pump Based on MLSE and Support Vector Machine Optimized by ABC LI Hong-ru, Mechanical Engineering College
Experimental Study on Damage Sensitivity of Piezoelectric Impedance to Wood WANG Hao, Huazhong University of Science and Technology
Damage Detection of a Steel Girder Bridge Through Dynamic Strain Measurement CHENG Yu-yao, Southeast University
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Sept.26, 2014 Conference Room 1 Conference Room 2 Conference Room 3
14:15-14:30 An Online Error Correction Method Based on Odometer and MIMU LAI Tao, Mechanical Engineering College
Study on the Sensing of RC Beams with a New Type of Long-gage Strain Sensor LI Zhong-pei, Southeast University
Strain Flexibility Identification by Applying a Modified CMIF Method GUO Shuang-lin, Southeast University
14:30-14:45 Research on a Strain-based Shape Reconstruction Method Using the Fiber Bragg Grating Sensors YAN Mei-jia, Nanjing University of Aeronautics and Astronautics
Wear Condition Monitoring for Diesel Engine via On-line Visual Ferrograph CAO Wei, Xi’an Jiaotong University
On Propagation Characteristics of Shock Waves Generated Under Hypervelocity Impact LIU Meng-long, The Hong Kong Polytechnic University
14:45-15:00
Research on Ultrasonic Phased Array Signal Processing Based on Compressed Sensing JIANG Jian, Nanjing University of Information Science & Technology
Fatigue Life Prediction Analysis of Crane Structure Based on Strain Signal Measured& MSC. Fatigue WU Feng-qi, Shanghai Institute of Special Equipment Inspection & Technical Research
Research on Propagation of Guided Wave in High-speed Rail Axle and the Damage Detection QIU Jian-xi, Shanghai Jiaotong University
15:00-15:30 Coffee/Tea Break
Stage 3
15:30-17:15
Session 2&5
Chairman:Prof. Zhanjun Wu (Dalian University of Technology) Prof. Zhi Zhou (Dalian University of Technology)
Session 4&5
Chairman: Prof. Haitao Wang (Nanjing University of Aeronautics and Astronautics)
Prof. Hui Jin (Southeast University)
Session 6
Chairman: Prof. Caiqian Yang (Southeast University) Prof. Guanglong Wang (Mechanical Engineering College)
15:30-15:45 An Algorithm for Non-Parametric Identification of Highly Nonlinear Structures With Incomplete Measurements LEI Ying, Xiamen University
Identification of the Piece-wise Linear Systems with Experimental Study WANG Long-fei, Xiamen University
Numerical Simulation Study of Stress-magnetism Coupling For Magnetic Memory Effect of the Defect and Weld Line WAN Qiang, China Academy Of Engineering Physics
15:45-16:00
An Impact Imaging Method for Composite Structures Based on Virtual Time Reversal CAI Jian, Beijing Aeronautical Science and Technology Research Institute of COMAC
Deflection Identification of a Tied Arch Bridge from Long-gauge Atrain Measurements ZHANG Qing-qing, Southeast University
Numerical Studies on Pipe Local Deformation Detection Based on Ultrasonic Guided Wave Technology ZHANG Wei-wei, Taiyuan University of Science & Technology
16:00-16:15 2D Curvature Mode Shape for Detection of Damage in Plates HAN Yi, Hohai University, China
Application of Equipment Integrity Management Expert System Based on Predictive Maintenance LI Xiang, China Special Equipment Inspection & Research Institute
A Research on the Affection of the Pressure Vessels’ Thickness to Acoustic Emission Wave Propagation Characteristics LI Xiao, Beijing University of Chemical Technology
16:15-16:30 Inversion of Elastic Constants of Coating Materials Based on Measurements of Dispersion Curves LU Yan, Beijing University of Technology
Design of Tension Control System Based on Multi-layer Winding Wire Rope-Sheave Wear Test-bed FANG Da, Wuhan University of Technology
Vibration and Pulsation Control Mechanism Analysis and Simulation Based on Acoustic Transmission Characteristics MA Qu-yang, Beijing University of Chemical Technology
16:30-16:45 Guide Structure Health Monitoring System Based on RFID Jin Wei, Nanjing University of Science &Technology
Application of Model Reduction Techniques on Modal Identification of Truss Structures LU Ling-ling, Institute of Mechanics, Chinese Academy of Sciences
An Accelerated Life Test Simulation Approach for the Key Component of Feeder WANG Guang-long, Mechanical Engineering College
16:45-17:00
The Development of RFID Tag Antenna-Based Sensor for Crack Determination Jun Zhang, University of Electronic Science and Technology of China
Multipoint Bolts Loosening Detection System Based On Active RF Fu Shaowu, Nanjing University of Science &Technology
A Research on Dynamic Characteristics of Gas Pulsation in Constant- section Long Pipe of Reciprocating Compressor Auxiliary MA Lan-qing, Beijing University of Chemical Technology
17:00-17:15 ------ ------
The Establishment of Coupled Stress-Electricity Model for Phenomena of Electromagnetic Emission Induced in Fractured Concrete HAN Jin-hui, Tsinghua University
17:15-17:45
Awarding & Closing Ceremony
Chairman: Prof. Zhishen Wu (Southeast University) Prof. Shenfang Yuan (Nanjing University of Aeronautics and Astronautics)
------ ------
17:45-19:00 Buffet Dinner
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INTRODUCTION OF ORGANIZATIONS
中国特种设备检测研究院
China Special Equipment Inspection and Research Institute
Approved by the State Council of the People’s Republic of China, China Special Equipment Inspection and Research Institute (CSEI )was founded in October 1979, directly under the General Administration of
Quality Supervision, Inspection, and Quarantine of the P. R. China.
CSEI constantly devotes herself to the cause and safety quality of special equipment and related products, contributing to the safety production, science and technology development, and prosperous and sustainable development of our society. CSEI provides technical support to the government for legislation and legal enforcement by means of advanced technology, fine equipment, stringent management and
reliable quality.
CSEI keeps contact with government departments in charge of safety, academic institutions and inspection agencies in more than 40 countries around the world, and maintains close cooperation relationship with well-known standards institutions and inspection agencies; continuously contribute to the development of
foreign exchange and cooperation.
CSEI has very strong technological capability in inspection and testing, scientific research, regulation and standards making, energy conservation and supervision, emergency rescue and accident disposal with
regard to 8 categories of special equipment.
Over the last 30 years, CSEI made 190 technical breakthroughs and accomplished 120 technical innovations, won 45 national level and ministry level awards, of which 3 times of second prize for National Prize for Progress in Science and Technology, 2 times of AQSIQ awards, and many other national awards for standards developments. By technology transfer, application and adoption by regulations and standards, many key technical problems in power industry, petrochemical industry, metallurgical industry, mechanical industry, war industry and special equipment safety supervision were solved. CSEI involved in the Qinshan nuclear power station project, the direct liquefaction of the coal of Shenhua Group project, west-East natural gas transmission project, Sichuan-east natural gas transmission project, south-north water diversion project, Beijing 2008 Olympic Games, the Chinese National Day Parade for 60 anniversary and Shanghai 2010 Expo. CSEI provides safety to those important events and achieved great social and economic benefits.
Structural Health Monitoring Diagnosis and Management Branch of CSEI (结构健康监测诊
断与管理事业部)
Structural health monitoring diagnosis and management business department takes it as its own duty to develop the high-tech and serve special equipment industries. Our development direction is to provide high-tech products and serve special equipment structural health monitoring diagnosis and management industries based on the needs of special equipment industries. And we are working on research,
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development, production and sale of products related special equipment structural health monitoring diagnosis and management on Internet of Things, which provide our customers with integrative solutions of special equipment “Comprehensive information management, Structural health monitoring, Health diagnosis
forecast, Predicting maintenance decision and dynamic risk management”.
The business department has 17 skillful personnel, including a research, 6 doctors and rest of master's degree. Therefore, our structure of personnel is reasonable. With a high-quality professional development team and advanced sensing technology, we have developed structural health monitoring instruments, devices and systems suited to actual demands of special equipment industries in our country. What is more, it has formed a batch of products with proprietary intellectual property rights. By far, we have applied for 10 patents
for invention and utility model, 12 software copyrights.
Primary Domain of Research
1. Advanced sensing technology and sensors including optical fiber, electromagnetism and piezoelectricity 2. Structural health monitoring, diagnosis, early warning and forecast technology 3. Structural health monitoring and forecasting system integration technology 4. Internet of things technology application in special equipment risk management
5. Technical standards related to structural health monitoring
Major Product
1. Harbor Crane Operation Security Airborne Early Warning System 2. Harbor Crane Health Monitoring and Progostics System 3. Lager Storage Tank Health Monitoring System
4. Welding Residual Stress Magnetic Measurement Technology and Instruments
Testarc Technologies Co., Ltd. (北京中检希望科技有限公司)
Testarc Technologies Co., Ltd (Testarc) is high-tech enterprise attached to China Special Equipment Inspection and Research Center (CSEI). Based on the CSEI, Testarc was dedicated to the industrialization of optical fibre sensing technology, acoustic emission sensing technology, electromagnetic sensing technology, Radio Frequency Identification (RFID), Structural health monitoring & diagnosis technology, equipment risk management technology and other high-techs. Testarc has become a comprehensive hi-tech company that combines research, design, production, engineering and service, and provided service for petroleum,
chemical industry, electric power, commercial manufacture, metallurgy and aero-space.
Testarc has acquired core technologies and independent intellectual property rights in the areas of advanced sensing technology, structural health monitoring, health diagnosis & evaluation and structural risk management. We work with our customers to customize our solutions to meet their inspection & monitoring needs. Testarc has built professional engineering service system and training system, and can provide our
customers with systematic training service, engineering implementation service and after-sale services.
TMT-150 Welding Residual Stress
Detector GTS-CMT-001-I Stress
Concentration Fast Locator TMT-130 Oxide Skin Detector
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INTRODUCTION OF ORGANIZATIONS
南京航空航天大学
Nanjing University of Aeronautics and Astronautics
Nanjing University of Aeronautics and Astronautics (NUAA) is one of China’s premier learning and research institutions which now develops into a comprehensive university especially featured with Aerospace Engineering. Ever since it was established in 1952, we have strived to conduct world-level research and
education system. Nearly 60 years’ history witnesses its unremitting efforts and remarkable achievements.
Academia and education at NUAA represent strong capacity among all the universities in China. It has acquired national status through the quality of its excellence research work, especially in the areas of
Aerospace Engineering, Mechanics, Electromechanics, Economy and Management, etc.
Our university’s laboratories are a constant source of new ideas, especially in the fields of Aircraft Design, Dynamics, Mechanics, Manufacturing, Automation and Unconventional Machining, etc. Through the diverse research and teaching activities, we are striving to provide the highest quality of educational experience for students to meet the current needs of society, endowing them with a passport to the professional world and
cultivating them into future pioneers in the fields of science and technology.
The globalization of societies, economies and technologies represents many complex challenges that universities are facing today. In response to those challenges, NUAA will persistently create more new academic values and construct more diverse education and research programs. We are also planning to set forth new developing strategies to maintain NUAA’s leading role in China, like constructing high-level research-oriented university featured with Aeronautics, Astronautics and Civil Aviation, with coordinated development of multi-disciplines including literature, law, philosophy, etc.; fostering high-qualified citizens
and innovative pioneers and spreading its academic wings to the nation as well as to the world.
We’d like you to explore more about NUAA and we believe that by carrying out our missions and various activities at NUAA, and by seeking more opportunities with more world-class universities, enterprises and a wide variety of people, we will transform into a more outstanding, more respected and more globalized university. Our staff will become more internationalized—academically and professionally, and our students
will be well equipped for their career—intellectually and socially.
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INTRODUCTION OF ORGANIZATIONS
东南大学
Southeast University
Southeast University (SEU) is one of the national key universities administered directly under the Central Government and the Ministry of Education of China. It is also one of the universities of Project 211 and Program 985 that is financed by the Central Government to build as a world-class university. Located in the ancient capital city of Nanjing, Southeast University has campuses such as Sipailou, Jiulonghu and
Dingjiaqiao, covering a total area of 447 hectares.
Southeast University is one of the oldest institutions of higher learning in China. Its origin can be traced back to 1902, when it was founded as Sanjiang Normal College. Southeast University encourages the school spirit of "rigor, truthfulness, unity and diligence", i.e., adopting the rigorous, truthful, realistic scientific
attitude and working spirit of full cooperation.
Southeast University has become a comprehensive and research-oriented university featuring the coordinated development of such multi-disciplines as science, engineering, medicine, literature, law, philosophy, education, economics, management, art, etc., with engineering as its focus. The university boasts a high-level faculty of 2,573 full-time teachers, including 1800 full or associate professors, 743 doctoral supervisors, 1713 supervisors for masters, 11 academicians of the Chinese Academy of Sciences and Academy of Engineering. The university now comprises 29 schools or departments with 75 undergraduate disciplines in all. It boasts 29 and 49 disciplines respectively authorized to confer Ph.D. degrees and master’s degrees. At present, it has an enrollment of over 32,000 full-time students, including
13,000 postgraduate students.
SEU has made remarkable achievements in serving local economic construction. According to the statistical result made by Jiangsu province in 2011 concerning the college research effort of science and technology serving for local development, SEU ranks the first in six indicators among the following seven, namely, science projects and teams, science funding, science base, four kinds of technical funding, transformation of scientific and technological achievements and project identification, patent condition and scientific awards. SEU Science Park aims to provide best service and support for the incubation of sci-tech enterprises and high-tech products, and cultivation of innovators and pioneers. The Innovation and Entrepreneurship Center of SEU Science Park is accredited by the Ministry of Science and Technology and the Ministry of Education as one of China’s first batch of “Science and Technology Practice Base for
College Student”.
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INTRODUCTION OF ORGANIZATIONS
南京市特种设备安全监督检验研究院
Nanjing Special Equipment Safety Supervision Inspection Institute
Nanjing Special Equipment Safety Supervision Inspection Institute (NSEI), founded in 1989, is a statutory technical organization specializing in special equipment inspection, which was approved by Nanjing Editorial Board and authorized by National Bureau of Quality Inspection.
There are over 800 pieces of equipment (more than 10 million RMB) in NSEI. The size of the laboratory is approximately 2000 square meters, and the laboratory is examined (reexamined) by Special Equipment Inspection Institute of National Bureau of Quality Inspection and approved by inspection organization and laboratory of China National Accreditation Service for Conformity Assessment. NSEI owns comprehensive ability to make supervision and regular inspection in elevator, lifting appliances installation, modification and maintenance process, to make supervision and regular inspection for powered vehicles on the place used for a particular purpose, to make appraisal and assessment for special equipment licensing on installation, modification and maintenance, and also to make technical appraisement for special equipment accident, and make safety monitoring product testing for special equipment. NSEI has its exclusive recourses and advantages in the special equipment safety evaluation, failure analysis, energy efficiency evaluation and the safety monitoring technology for Internet of Things(IOT).
NSEI has many leading talents in mechanical engineering, electrical engineering, automatic control and information technology, including 3 people of “the 333 high-level talents cultivation objects” in Jiangsu Province, 2 people of “121” key cultivated talents in Jiangsu Quality Inspection system, 3 people of Nanjing young and middle aged academic leaders; The professional and technical team includes 1 professor senior engineer and 21 senior engineers; 105 people obtain the certificates of special equipment inspection authorized by National Bureau of Quality Inspection, including 2 senior examiners and 55 examiners.
NSEI sticks to pay attention to scientific and technological innovation, leading technology, combining with the local strategic emerging industries and make science and technology platform by deepening the research on science and technology projects, which can form a comprehensive service body of advanced technology research, technical advisory services, product research and development, and transformation of scientific and technological achievements to enhance the level of professional service. By now, NSEI has undertaken more than 40 science and technology projects, which are national, provincial or municipal levels. NSEI has won 15 national patent authorizations (including 5 invention patents), completed 9 standard revisions at all levels, published over 80 papers, and won 19 science and technology awards in Nanjing science and technology progress, and scientific and technological awards in Jiangsu Bureau of Quality Inspection. NSEI has four provincial science and technology platforms, namely “Jiangsu special mechanical and electrical equipment safety monitoring application product quality supervision and inspection center”, “Jiangsu IOT application and test engineering technology research center special mechanical and electrical equipment safety”, “Jiangsu key laboratory for elevator and hoisting machinery safety monitoring IOT technology” and “Jiangsu key laboratory for large hoisting machinery risk identification and structural damage detection technology”. Also, NSEI owns “Nanjing special equipment safety and energy saving technology research center” and other two municipal science and technology platforms. Better yet, NSEI provides great service for many major government projects, such as Beijing-Shanghai high-speed railway, Nanjing Youth Olympic Games, Nanjing Yangtze River Bridge II, III, IV, and Nanjing subway, and so on.
NSEI will continue to improve its supervision and comprehensive service ability, and promote the leaping development of the leading industry in Nanjing. NSEI will make great effort to become the most professional and influential inspection organization in mechanical and electrical special equipment of all the China.
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INTRODUCTION OF ORGANIZATIONS
南京市锅炉压力容器检验研究院
Nanjing Boiler & Pressure Vessel Supervision and Inspection Institute
Nanjing Boiler & Pressure Vessel Supervision and Inspection Institute (NJBPVI), established by General Administration of Quality Supervision since 1981, is a comprehensive inspection and research Institute in the east China area aimed at pressurized special equipment. NJBPVI is one of public institutions that directly belong to Nanjing Bureau of Quality and Technical Supervision. Nowadays, NJBPVI has a total of 162 employees, including 3 professor Senior Engineers, 17 Senior Engineers, 6 Doctors, 42 Masters, 4 ASME Authorized Inspectors (AI/AIS/NI), 2 API Authorized pressure vessel and piping inspectors, 4 storage tank inspectors.
Qualifications Inspection and Testing Institution Approval Certificate of
Special Equipment People’s Republic of China (A class) Production safety inspection and testing institutions of
Safety Supervision Bureau The D class qualification of National Surveying and
mapping The certificate for measurement attestation Certificate of approval and inspection agencies ISO17020 Laboratory accreditation certificate ISO17025 The Uzbekistan Republic authorized vehicle gas cylinder
testing qualification EU welder training and qualification authorized by France
BV Business Scope Product supervision and inspection of boilers, pressure
vessels and piping In-service regular inspection of boilers, pressure vessels
and piping Manufacturing inspection, in-service regular inspection
and risk assessment of atmospheric storage tank Non-excavation inspection and risk assessment of long-
distance buried pipeline. Risk based inspection and online monitoring of
petrochemical plant Media monitoring, diagnostic evaluation and energy
efficiency test of steam boiler Regular and online inspections of gas cylinder. Inspection of high and ultra-high pressure valves Regular inspection of transportable pressure vessels Failure analysis and fault diagnosis of materials and
structures Evaluation and identification of filling process of gas
cylinder. Comprehensive analysis, safety evaluation and
management consultation of pressurized special equipment
So far, NJBPVI has expand its business scope from Nanjing city to other 13 prefecture-level cities in Jiangsu province and some foreign countries such as Japan, Singapore, Germany, France, Netherland, Korea, Bengal, etc. Scientific Platform National post-doctoral scientific research workstation Key science and Technology Service Institutions in Jiangsu
province Security engineering technology center of Jiangsu
petrochemical plant Nanjing safety and energy saving engineering technology
center of pressurized special equipment Nanjing public service platform of non-ferrous metal
equipment manufacturing Key laboratory of safety inspection of non-ferrous
material special equipment in Jiangsu province
Scientific Research Capacity
Recently, NJBPVI organizes and participates many scientific and technical projects including 1 project of "863" program, 4 science and technology support plans of "Eleventh Five-Year Plan" and "twelfth Five-Year Plan", 6 projects of public quality inspection approved by MOF and MOST, respectively. Additionally, NJBPVI amends more than 10 related national, industrial and local standards, obtains 10 invention and utility patents. Furthermore, NJBPVI won the first prize of science and technology progress of Chinese petroleum and Chemical Industry Association, won the third prize of science and technology progress of National Security Supervision Bureau, won the third prize of science and technology progress of National Quality Supervision Bureau, won the third prize of science and technology progress in Nanjing city, respectively. So far, the research and achievement transformation funds in NJBPVI has reached more than ¥10 billion.
Holding Subordinate Company(Innovative Center)
Nanjing Nonferrous Metal Materials Manufacturing and High-end Equipment Research and Innovation Center (Abbr. Jingchuang Co., Lt.) was established by NJBPVI and Binjiang research innovation Investment in Jan. 2013. At present, the registered capital in Jingchuang Co., Ltd. reaches about ¥10 billion, and the related laboratory covers more than 1000m2. Jingchuang Co., Ltd. has 60 plus advanced testing instruments for physicochemical and nondestructive testing, and has been certidicated by CMA in Jiangsu province in 2013.
Bussniess
Technical research, promotion, consulting and training of high-end nonferrous metal equipment
Physical and chemical properties tests
Research and application of advanced non-destructive testing technology
Intelligence equipment research and application during inspection and manufacturing
Research and application of high quality evaluation of Nonferrous materials and structures
Contact Us Address: Jialingjiang road 3#(Nanjing quality and supervision
building) , Nanjing PostCode: 210002 Tel: (025) 86673607 / 86673601 Fax: (025) 86673608
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INTRODUCTION OF ORGANIZATIONS
江西飞尚科技有限公司
Jiangxi Fashion Technology Co., Ltd.
Jiangxi Fashion Technology Co., Ltd. is founded in 2006, which is a high technology and double software certification company. We are committed to the manufacture of monitoring equipment & software; consulting services and sensor system integration based on the Sensor network and Cloud computing integrated management system for the structural safety and state monitoring. Up to now, we own 26 acres of R&D test base, more than 200 staffs and more than 60 patents of
hardware and software.
We establish long-term strategic cooperative partnership with Tsinghua University, Chinese Academy of Sciences, China Special Equipment Inspection and Research Institute, Harbin Institute of Technology, Wuhan
University of Technology and so on nearly 10 national key research institutions.
With the development of business, we has founded Sensor Network Research Institute in Beijing and Cloud
Computing service center in Zhenjiang, Jiangsu province, to provide the service for the whole industry.
We are expert in applying complete solutions of sensors, acquisition devices and remote integrated
management systems for oil exploitation safety & health monitoring and warning. We are experienced in
offering the monitoring services for nearly 100civil authoritative structure monitoring research institutes and
Infrastructure administrator. We have a powerful team who are skilled in R&D, manufacture and after-sale
technical support. We’re able to tail or high-end products and humanized interactive platform meeting to
both the nation & industry policies and customers’ requirement, achieving double-win! We resolve to
become the pioneer and leader in the field of safety & health monitoring and warning for oil exploitation and
pipeline system and other large scale equipment.
Introduction of general manager Wenfeng Liu
General Manager Mr. Wenfeng Liu Department of Civil Engineering,
Tsinghua University Bachelor, Chinese Academy of Sciences Institute
of Mechanics Master and Doctor, Highway Research Institute of
Ministry of Transport Post-doctoral, Harbin Institute of Technology.
Now Mr. Liu is the executive director of Equipment Structure Health
Monitoring & Warning Branch Committee, the committee member of
the Mechanical Vibration Monitoring Standardization Technical Society,
Chinese Society for nondestructive testing stress testing and so on.
Published more than 30 academic papers. Participated in and undertook several projects of National Sci-
Tech Support Plan and National High-Tech R&D Program(863) and other projects. Also experienced in site
implementation and management of major engineering projects.
Contact us
Toll-free hotline: 400-0665-115(Jiangxi), 400-653-8008(Beijing) Address: (Nanchang) No. 398 YuHu Raod XiaoLan Economic Zone, Nanchang City, Jiangxi Province.
(Beijing)Room1905, Hongyu Building, #7 College Road, Haidian District, Beijing Website: www.free-sun.com.cn
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INTRODUCTION OF ORGANIZATIONS
上海拜安传感技术有限公司
Shanghai BAIANTEK Sensing Technology CO., LTD
上海拜安传感技术有限公司成立于 2004 年,总部位于上海市浦东新区张江科技园区,注册资
本 1100 万元,光纤传感设备生产线面积 1400 平方米,光栅照射及光纤 MEMS 工艺线面积 800
平米,是国内主要的光纤传感产品和核心光电部件制造商之一,拥有光纤光栅、DTS 分布式传感、
光纤 F-P 和光纤 MEMS 等光纤传感自主核心技术。
公司 2009 年-2011 年承担完成国家科技型中小企业技术创新基金项目,满分通过验收。
2012 年作为产业化实施单位,成功申报科技部国家重大仪器设备专项资助,项目总经费 3400 万
元,项目执行期为 2012.10-2016.09,目前已在光纤 F-P 和光纤 MEMS 传感领域取得多项重大
技术突破,高精度应变、压力传感器、光纤磁传感器、光纤加速度计、光纤倾角仪等已应用到国家
先进制造领域和国防工业领域,如气动力测量,飞机自动化测量与控制,舰艇安全监测预警等。
2014 年,公司成功申报工信部物联网专项“城市地下基础信息设施安全监控光纤传感系
统”,项目总经费近 7000 万元。
32 通道 5KHz 光纤传感高速分析仪
长距离连续分布式 DTS 光纤测温主机
光纤分布式周界振动监控预警系统
光纤 MEMS 加速度传感器
可重复使用光纤应变计
光纤压力计
高精度光纤液位计
光纤光栅位移计
光纤光栅静力水准仪
光纤光栅土压计
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INTRODUCTION OF ORGANIZATIONS
深圳市简测科技有限公司
Shenzhen Jean Measurement Technology Corporation
深圳市简测科技有限公司是一家专注于结构健康监测领域的高新技术企业,公司可提供包括传
感器子系统,数据采集与处理子系统,损伤识别、安全评定及预警子系统,以及结构健康监测数据
采集分析软件系统等全方位端到端解决方案,公司成立以来,始终致力于提供高精度,高分辨率,
高传输性能和动态范围的结构监测技术及产品。核心创新产品包括:光纤光栅传感器,光纤光栅解
调仪、电类传感器解调仪、传感信号综合同步解调仪等。可用于土木结构、交通、能源、航空、水
利等。公司产品和服务主要包括:结构健康监测工程端到端解决方案,并为客户提供定制化产品与
服务。
公司使命:Make Measurement Simple,使结构健康监测工作精确化、简单化、工程化。
不断满足该领域客户的需求并提供产品定制化服务。主要产品特点:
电类传感器解调仪
多类传感信号同步解调;
万能接口设计,每个通道
均可接不同类型传感器;
16 位数据高采集分辨率。
光纤光栅解调仪
高 解 调 精 度 , 数 据 同 步 采
集;
冗灾设计,传感器发生断路
时可切换到备用通道继续使
用;
高解调增益,传感器受损后
弱信号仍然能够解调后进行
监测。
微型光纤光栅 应变传感器
国内最小尺寸,适用于缩
尺寸模型试验;
多 种 封 装 形 式 , 易 于 安
装;
灵活定制,具备增减敏机
制,灵活定制灵敏度。
光纤光栅 应变传感器
独特光纤光栅封装工艺,高
传感可靠性;
工程化程度高,可长期实时
监测;
灵 活 定 制 , 具 备 增 减 敏 机
制,灵活定制灵敏度。
联系人:王伟
电话: 13902450452
Email: [email protected]
官网:www.jemetech.com
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Hotel Location
Conference Venue
Liu Yuan Hotel of Southeast University (38 Jin Xiang He Road, Xuanwu District, Nanjing
China / 南京市玄武区进香河路 38号)
Conference Date
September 24-26, 2014
Dining Place
Huifang Hall of Liu Yuan Hotel (榴园宾馆二楼荟芳厅)
Contact Us
Contact: HE Ya-ying / 何亚莹(13429878019)
Caiqian Yang / 杨才千(18963612628)
WANG Qiang / 王 强(13810947293)
E-mail: [email protected]
Website: http://www.icshmim.com/