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Behavior of brittle anisotropic materials with different orientation of mechanical properties at the edge of piercing

机译:具有不同力学性能取向的脆性各向异性材料在穿孔边缘的行为

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The problem of normal interaction between a compact steel isotropic cylindrical projectile and an orthotropic plate at the edge of piercing in the range of impact velocity from 50 m/s to 400 m/s. The obstacle is made of an organoplastic material with some initial orientation of its mechanical properties or the same material whose properties are obtained by a 90° rotation of the initial material about the axis OY. The destruction of obstacles is studied and the efficiency of their protective properties is comparatively analyzed depending on the orientation of the elastic and strength properties of the anisotropic material. The problem is solved numerically by the finite element method in the three-dimensional statement. The behavior of the projectile material is described by an elastoplastic model, while the response of the obstacle anisotropic material is described in the framework of the elastic-brittle model with different tensile and compressive strengths.
机译:在冲击速度从50 m / s到400 m / s的范围内,致密的钢各向同性圆柱状弹丸和正交异性板在穿孔边缘处的法向相互作用问题。障碍物由具有某种机械性能初始取向的有机塑料材料制成,或者由其性能通过初始材料绕OY轴旋转90°获得的相同材料制成。研究了障碍物的破坏,并根据各向异性材料的弹性方向和强度特性比较地分析了其保护性能的效率。该问题通过三维陈述中的有限元方法以数值方式解决。弹丸材料的行为由弹塑性模型描述,而障碍各向异性材料的响应则在具有不同拉伸强度和压缩强度的弹性脆性模型的框架中进行描述。

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