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首页> 外文期刊>International journal of impact engineering >Ballistic impact damages of 3-D angle-interlock woven composites based on high strain rate constitutive equation of fiber tows
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Ballistic impact damages of 3-D angle-interlock woven composites based on high strain rate constitutive equation of fiber tows

机译:基于纤维束高应变率本构方程的3-D角互锁编织复合材料的弹道冲击损伤

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This paper reports the ballistic impact damage of three-dimensional angle-interlock woven composite (3DAWC) under a hemispherical rigid projectile penetration on the basis of high strain rate constitutive equations of fiber tows and multi-scale geometrical model of the 3DAWC. The constitutive equations of the Twaron® fiber tows (poly paraphenylene terepthalamide, PPTA) under high strain rates have been established to characterize the mechanical behaviors under impact loading. The Twaron® fiber tows were assumed as transversely isotropic viscoelastic material to derive the constitutive equations. The maximum strain failure criterion was adopted for defining the failure of the PPTA fiber tows. A user-defined subroutine UMAT (FORTRAN user-material subroutine) was written for combining both the constitutive equations and the failure criterion in numerical calculation. Based on a micro-scale geometrical model of the 3DAWC, the UMAT for the PPTA fiber tows was combined with a commercial available finite element method (FEM) software package LS-DYNA to calculate the ballistic impact damage when the 3DAWC panel penetrated under a hemispherical-cylindrical steel projectile. It was found that the FEM simulation agrees well with the experimental results. The impact damage morphologies and damage propagations, the energy absorptions and the stress distributions in the 3DAWC panel were presented to elucidate the ballistic penetration damage mechanisms for optimizing the ballistic protection capacity of the 3-D woven composite material.
机译:本文基于纤维丝束的高应变率本构方程和3DAWC的多尺度几何模型,报道了三维角互锁编织复合材料(3DAWC)在半球形刚性弹丸穿透下的弹道冲击损伤。建立了高应变速率下的Twaron®纤维束(聚对亚苯基对苯二酰胺,PPTA)的本构方程,以表征冲击载荷下的力学行为。假设将Twaron®纤维束作为横向各向同性的粘弹性材料,以导出本构方程。采用最大应变破坏准则来定义PPTA纤维束的破坏。编写了一个用户定义的子例程UMAT(FORTRAN用户材料子例程),以将本构方程和失效准则组合在一起进行数值计算。基于3DAWC的微型几何模型,将PPTA纤维束的UMAT与商用有限元方法(FEM)软件包LS-DYNA结合,以计算3DAWC面板在半球形下穿透时的弹道冲击损伤-圆柱钢弹。结果表明,有限元模拟与实验结果吻合良好。提出了3DAWC面板中的冲击损伤形态和损伤传播,能量吸收和应力分布,以阐明用于优化3-D编织复合材料的防弹性能的弹道穿透损伤机理。

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