solid rocket propellant research

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Solid Rocket Propellant Research Linda Kelly John Marshall HS-Northside ISD Faculty Mentor- Eric Petersen, Ph.D. Mechanical Engineering Dept. Texas A&M University

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Solid Rocket Propellant Research. Linda Kelly John Marshall HS-Northside ISD Faculty Mentor - Eric Petersen, Ph.D. Mechanical Engineering Dept. Texas A&M University. Solid Propellant Research Applications. Rocket Fuel Offshore Drilling Deploy Air Bags. NH 4 ClO 4 = oxidizer - PowerPoint PPT Presentation

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Page 1: Solid Rocket Propellant Research

Solid Rocket Propellant Research

Linda KellyJohn Marshall HS-Northside ISD

Faculty Mentor- Eric Petersen, Ph.D.

Mechanical Engineering Dept.Texas A&M University

Page 2: Solid Rocket Propellant Research

Solid Propellant ResearchApplications

Rocket Fuel

Offshore Drilling

Deploy Air Bags

Page 3: Solid Rocket Propellant Research

Solid Propellant ResearchRocket Power = Combustion Rx

• NH4ClO4 = oxidizer

• Hydroxyl Terminated Polybutadiene hydrocabon chain = binder and fuel

• Isophorone Diisocyanate = curing agent

• additives

Page 4: Solid Rocket Propellant Research

Solid Propellant ResearchSummary of methods

The substances are mixed under vacuum to remove gaseous contaminants.

Page 5: Solid Rocket Propellant Research

Solid Propellant ResearchSummary of methods

The mixed substances are extruded under vacuum into Teflon tubing, cured, and cut into 1-inch pieces.

Page 6: Solid Rocket Propellant Research

Solid Propellant ResearchTesting

Samples are mounted in the high-pressure strand burner

Page 7: Solid Rocket Propellant Research

Solid Propellant ResearchTesting

Ignition and data collection are done remotely

Page 8: Solid Rocket Propellant Research

Propellant Testing

Video Stills from a Propellant Test

Page 9: Solid Rocket Propellant Research

AnalysisAnalysis

Determining Burning Rate

t r = tX

X

Burning Rate

Page 10: Solid Rocket Propellant Research

MotivationMotivation

Tailor Burning Rate to Application Objective

• Develop Baseline Propellant of AP and Binder• Utilize Additives to Modify Combustion

10 100 2000.3

1

1.2

1

Bur

ning

Rat

e (c

m/s

)

Pressure (atm)

Mix 1 Mix 2 Mix 3 Mix 4

10 100 2000.3

1

1.2

1

Bur

ning

Rat

e (c

m/s

)

Pressure (atm)

Mix 1 Mix 2 Mix 3 Mix 4

r = aPn

Baseline

10 100 2000.3

1

1.2

1

Bur

ning

Rat

e (c

m/s

)

Pressure (atm)

Mix 1 Mix 2 Mix 3 Mix 4

10 100 2000.3

1

1.2

1

Bur

ning

Rat

e (c

m/s

)

Pressure (atm)

Mix 1 Mix 2 Mix 3 Mix 4

r = aPn

Baseline

Page 11: Solid Rocket Propellant Research

Solid Propellant ResearchOverview of procedure

AP crystals

+HC fuel… made

intopropellantsamples

ignited

data collected

& analyzed Where

do I fit?

Page 12: Solid Rocket Propellant Research

Solid Propellant ResearchBackground data

Variety of crystal sizes in AP

0 100 200 300 400 500 6000

2

4

6

8

10

Pe

rce

nt

Diameter, Microns

0 100 200 300 400 500 6000

2

4

6

8

10

Pe

rce

nt

Diameter, Microns

Page 13: Solid Rocket Propellant Research

Solid Propellant ResearchBackground data

Different types of

burning achieved

with various sizes

of particles

Page 14: Solid Rocket Propellant Research

Solid Rocket PropellantMy project

• Attain crystal images with microscopy and digital photography

• Enhance images with Photoshop

• Size crystals with IQMaterials software

• Analyze data with Excel

• Standardize the procedure for the size distribution in a sample of NH4ClO4 started by Matthew Janish

Page 15: Solid Rocket Propellant Research

Solid Propellant ResearchMy project--the beginning

Page 16: Solid Rocket Propellant Research

Solid Propellant ResearchBurning questions

• How is AP synthesized?

• What is the crystalline structure—it’s not cubic, monoclinic, orthorhombic… that other crystals are?

• How does this supply of AP compare with previous data?

Page 17: Solid Rocket Propellant Research

Solid Propellant ResearchClassroom activity

Task: determine the mathematical attributes and size distribution of a sample of rocket propellant

Given samples, students determine mass, volume, density, surface area, perimeter, size distribution

Use appropriate units, show sample calculations, graph distribution of particles

TEKS: Chemistry 1,2,3 Physics 1,2,3ACD

Page 18: Solid Rocket Propellant Research

Solid Propellant ResearchSpecial Thanks

• Dr. Eric Petersen

• Kevin Kreitz

• Tom Sammet

• Tyler Allen• Nicole, Will, Jonas, Nolan, Madeleine, Sean

• NSF

• A&M partners

Page 19: Solid Rocket Propellant Research

Solid Propellant ResearchResources

• Graph of burn rate and diameters from Jeppson, M.B., Beckstead M.W., Jing, Q., “A Kinetic model for the Premixed Combustion of a Fine AP/HTPB Composite Propellant,” 36th Aerospace Sciences Meeting and Exhibit, 1998, AIAA Paper 98-0447.

• Images and information from Kevin Kreitz presentation, May 27, 2009

• Images from Microsoft Office clipart• Image of crystals by Matthew Janish; Ammonium

Perchlorate Particle Sizing, August, 2007

Page 20: Solid Rocket Propellant Research

That’s rocket science.