n93-20137 a semiconductor bridge ignited hot gas piston

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N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston Ejector PillJ M. C. Grubelich and R. W. Bickes, Jr. Explosive Components Department 2513 Sandia National Laboratories Albuquerque, New Mexico Presented by: D. E. Mitchell Explosive Components Department Manager Approved for public release; distribution is unlimited. R_,'B :2 _ 13:6/4/92 93

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Page 1: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

N93-20137

A Semiconductor Bridge IgnitedHot Gas Piston Ejector PillJ

M. C. Grubelich and R. W. Bickes, Jr.

Explosive Components Department 2513

Sandia National Laboratories

Albuquerque, New Mexico

Presented by:

D. E. Mitchell

Explosive Components Department Manager

Approved for public release; distribution is unlimited.

R_,'B :2 _ 13:6/4/92

93

Page 2: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

Outline

• Concept

• Performance

• Development

• Application

RWB:2513:_/4/92

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SCB Philoso h ,_

• SYSTEM DEVELOPMENT

- Sensors

- Smart Firing Sets

- Digital Coupling (Wire and Optical)

- Explosive Component

- Smart SCB

• SCB INTEGRATION

- Discrete

- In-situ

• PARTNERING

- Government Facilities

- Private Industry

- Universities

RWB:2513:6/4/92

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Page 5: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

Technolo Transfer ,_

SANDIA - R&D

Technology Transfer

Commercialization, Production and Sales

Government Applications

SCB TechnologiesThiokol

Bulova

Hercules

License

Private Enterprise

SCB TechnologiesThiokoi

BAI

Products

Attitude Control Motors

RAP

UWARS

Air Bags

Blasting

CRADA

WFO

MIPR

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HERO STUDIES

* Direct RF Injection

- 10MHz-20W

- 200MHz-3W

- 8.9GHz-20W

- 10 Second Injection Times

- Franklin Institue: "Grossly Insensitive"

• NSWC Ground Plane Facility

High Level RF Environments

HF Communications Bands

Radar Frequencies

- Only One Unit Fired (Arc Conditions)

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Page 17: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

SATELLITE FIRING SETS

• Multiple Fire

- 2200 micro-Farads

- Charge = 27.4 V

- Four Parallel Outputs

- Bridge Burst Delta t = 5 microseconds

• Single Fire

- 300 micro-Farads

- Charge 16 V

- Series Resistance 0.4 Ohms

- 2.5 mJ

- Function Time - 81 microseconds

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Page 18: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

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Page 23: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

Motivation

• Develop a Low Firing Energy Ejector

• Control Acceleration Profile

• Control Ejection Velocity

• Use a Single Pyro Device for All Applications

115

RWB:2513:6/¢92

Page 24: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

Why Use Pyro Actuators? [_

, ENERGY DENSITY

• FUNCTION TIME

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Page 27: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

Results for THKP

• Recover 20% of Total Energy Available

• Losses - Condensed Species, Heat Transfer

RWB:2513:6/4/92

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Page 28: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

Summ,

• SCB - Safe Low Energy Igniter

• Ignite THKP with an SCB

• Use THKP to Pressurize Small Volume

• Vent Pressurized Volume to Eject Mass

• Control Velocity and Acceleration

• Simple Method to Determine Available Energy

RWB:2513:614/92

Page 29: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

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Page 30: N93-20137 A Semiconductor Bridge Ignited Hot Gas Piston

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