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300685

An experimental study on mechanical and ballistic characteristics of different HTPB composite propellant formulations

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Last updated: 24 Dec 2024

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Abstract

The main goal of this paper is to investigate the changing in the tensile behavior and the burning rate characteristics of hydroxyl-terminated polybutadiene (HTPB) propellantunder the variations of the crosslinking density, which was predominantly determined by the equivalent ratio ofdiisocyanate to total hydroxyl (NCO/OH ratio), which known as the curing ratio. Four variousbatches with different curing ratios (NCO/OH) percentage were produced in which the production processes were fixed. Uniaxial tensile tests were conducted at different temperatures (-40, 20 and 55°C), and different strain rates (0.000656 1/s, 0.0328 1/s) using a Zwick universal test machine. In order to measure the burning rate, cured solid propellant strands were tested using the acoustic wave emission method under different pressure ranging from 4 to 10 MPa. The experimental results indicate that the tensile behavior of HTPB propellant is remarkably influenced by curing ratio, strain rate, and temperature. It was observed that a great change on stress-strain curves affected various curing ratios and temperatures on the mechanical behavior of propellant composition. The results showed that high curing ratio leads to increase theultimatestress and decrease the strainat maximum stress, but higher temperatures lead to decrease theultimate stress and the strain at maximum stress.The curing ratios (NCO/OH) have an intense impact on mechanical characteristics, but slightly impact on ballistic characteristics for propellant. Furthermore, careful measurements of these parameters are important to control the production quality and to provide a reliable
comparison between different propellant batches.

DOI

10.1088/1757-899X/973/1/012030

Authors

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Last Name

NourEldin

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Affiliation

Egyptian Armed Forces, Egypt.

Email

ahmednoureldin1212@gmail.com

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First Name

W

Last Name

Adel

MiddleName

M

Affiliation

Egyptian Armed Forces, Egypt.

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First Name

Y

Last Name

Attai

MiddleName

A

Affiliation

Mechanical Power Engineering Dept., Faculty of Engineering, Helwan University, Egypt.

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First Name

M

Last Name

Ismail

MiddleName

A

Affiliation

Mechanical Power Engineering Dept., Faculty of Engineering, Helwan University, Egypt.

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Volume

19

Article Issue

19th International Conference on Applied Mechanics and Mechanical Engineering.

Related Issue

41448

Issue Date

2020-07-01

Receive Date

2023-05-28

Publish Date

2020-07-01

Page Start

1

Page End

10

Print ISSN

2636-4352

Online ISSN

2636-4360

Link

https://amme.journals.ekb.eg/article_300685.html

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https://amme.journals.ekb.eg/service?article_code=300685

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300,685

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Original Article

Type Code

831

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Journal

Publication Title

The International Conference on Applied Mechanics and Mechanical Engineering

Publication Link

https://amme.journals.ekb.eg/

MainTitle

An experimental study on mechanical and ballistic characteristics of different HTPB composite propellant formulations

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Article

Created At

24 Dec 2024