Research on Explosive Separation of Carbon Fiber Composite Weave Plate

By using the C-shaped metal lead shell and copper shell to wrap the detonating cord, the restraint of the explosion energy is improved, and the simple charge structure is used to achieve the purpose of effectively separating the carbon fiber composite woven plate in a limited and small space. The co...

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Main Authors: Zhijie He, Meng Wang, Kang Zhao, Hong Su, Zekan He, Haijun Xuan
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/6633595
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spelling doaj-4fb039d9374a469d80b12e40a489ad572021-08-02T00:00:57ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/6633595Research on Explosive Separation of Carbon Fiber Composite Weave PlateZhijie He0Meng Wang1Kang Zhao2Hong Su3Zekan He4Haijun Xuan5School of Chemical EngineeringSchool of Chemical EngineeringSchool of Chemical EngineeringSchool of Chemical EngineeringSchool of Energy EngineeringSchool of Energy EngineeringBy using the C-shaped metal lead shell and copper shell to wrap the detonating cord, the restraint of the explosion energy is improved, and the simple charge structure is used to achieve the purpose of effectively separating the carbon fiber composite woven plate in a limited and small space. The commercial software AUTODYN was used for numerical simulation, The monitoring points of stress, velocity, and specific internal energy were set up, combined with Tsai-Wu tensor strength criterion, the plate failure and the process of shell metal reflecting and absorbing energy when the plate was separated under the shell constraint were observed, respectively. Through further analysis of the experimental phenomena and calculated data, it is concluded that the main reason for the fracture failure of the plate is the opposing compression of the shock waves on both sides of the plate, and the layer cracks are caused by the tension of the stress wave in the later stage. The charge structure of the detonating cord wrapped by the metal shell can effectively use its inertia to restrain the explosion energy and improve the separation ability during the process of explosively separating the carbon fiber composite woven plate.http://dx.doi.org/10.1155/2021/6633595
collection DOAJ
language English
format Article
sources DOAJ
author Zhijie He
Meng Wang
Kang Zhao
Hong Su
Zekan He
Haijun Xuan
spellingShingle Zhijie He
Meng Wang
Kang Zhao
Hong Su
Zekan He
Haijun Xuan
Research on Explosive Separation of Carbon Fiber Composite Weave Plate
Shock and Vibration
author_facet Zhijie He
Meng Wang
Kang Zhao
Hong Su
Zekan He
Haijun Xuan
author_sort Zhijie He
title Research on Explosive Separation of Carbon Fiber Composite Weave Plate
title_short Research on Explosive Separation of Carbon Fiber Composite Weave Plate
title_full Research on Explosive Separation of Carbon Fiber Composite Weave Plate
title_fullStr Research on Explosive Separation of Carbon Fiber Composite Weave Plate
title_full_unstemmed Research on Explosive Separation of Carbon Fiber Composite Weave Plate
title_sort research on explosive separation of carbon fiber composite weave plate
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description By using the C-shaped metal lead shell and copper shell to wrap the detonating cord, the restraint of the explosion energy is improved, and the simple charge structure is used to achieve the purpose of effectively separating the carbon fiber composite woven plate in a limited and small space. The commercial software AUTODYN was used for numerical simulation, The monitoring points of stress, velocity, and specific internal energy were set up, combined with Tsai-Wu tensor strength criterion, the plate failure and the process of shell metal reflecting and absorbing energy when the plate was separated under the shell constraint were observed, respectively. Through further analysis of the experimental phenomena and calculated data, it is concluded that the main reason for the fracture failure of the plate is the opposing compression of the shock waves on both sides of the plate, and the layer cracks are caused by the tension of the stress wave in the later stage. The charge structure of the detonating cord wrapped by the metal shell can effectively use its inertia to restrain the explosion energy and improve the separation ability during the process of explosively separating the carbon fiber composite woven plate.
url http://dx.doi.org/10.1155/2021/6633595
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