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FEM simulation of 3D angle-interlock woven composite under ballistic impact from unit cell approach

机译:单元格弹道冲击下3D角互锁编织复合材料的有限元模拟

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摘要

Ballistic impact damage of 3D angle-interlock woven composite (3DAWC) under a hemispherical-cylindrical steel projectile has been investigated in experimental and finite element method (FEM) based on a unit cell model. In the unit cell model, the composite was simplified into a combination of resins, weft yarns and warp yarns to define the stiffness matrix and failure evolution of the material. VUMAT (FORTRAN vectorized user-material) subroutine which based on the unit cell model has been developed and connected with commercial FEM code ABAQUS/Explicit (ver. 6.8) to calculate the ballistic impact damage and energy absorption of the composite. The experimental and FEM results of residual velocities of the projectile, and damages of the composite target were compared. Good agreement between experimental and theoretical proves the unit cell model and the VUMAT subroutine are reasonable for ballistic performance design of the 3D angle-interlock woven composite.
机译:基于单胞模型,通过实验和有限元方法(FEM),研究了半球形圆柱钢弹丸对3D角互锁编织复合材料(3DAWC)的弹道冲击损伤。在晶胞模型中,将复合材料简化为树脂,纬纱和经纱的组合,以定义刚度矩阵和材料的破坏演化。已开发出基于晶胞模型的VUMAT(FORTRAN矢量化用户材料)子程序,并将其与商业FEM代码ABAQUS / Explicit(版本6.8)相连接,以计算复合材料的弹道冲击损伤和能量吸收。比较了弹丸残余速度和复合靶材的损伤的实验和有限元结果。实验和理论之间的良好一致性证明,晶胞模型和VUMAT子例程对于3D角互锁编织复合材料的弹道性能设计是合理的。

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