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System probability of failure and sensitivity analyses of composite plates under low velocity impact

机译:低速冲击下复合板的系统失效概率和灵敏度分析

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Probabilistic response of graphite epoxy composite plates under low velocity impact is studied modeling matrix cracking and delamination damage. Probabilistic design methodology of composite material based on progressive damage model is developed and implemented in a user defined subroutine to consider the scatter in material properties (Young's moduli, Poisson's ratio, ultimate strength, and fracture energy) and in initial velocity. Damage initiation and propagation failure due to matrix cracking and delamination are investigated for limiting criteria for the low velocity impact. The Gaussian process response surface method, is adopted to determine the system probability of failure and sensitivity analyses of the composite plates. The scatter in random parameters shows significant influence on the contact force and displacement histories. There is a probability of underestimation of the peak contact force and displacement by 28% and 44% respectively, if the scatter in the properties is not considered. The target reliability of the plate is achieved for an optimal combination of impactor masses and velocities. The sensitivity based probabilistic design optimization procedure is investigated to achieve better strength and lighter weight of composite for body armors. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了低速冲击下石墨环氧复合材料板的概率响应,模拟了基体开裂和分层损伤。在用户定义的子例程中开发并实现了基于渐进式损伤模型的复合材料概率设计方法,以考虑材料特性(杨氏模量,泊松比,极限强度和断裂能)和初始速度的分散。研究了由于基体破裂和分层而引起的破坏引发和传播失败,以作为低速冲击的限制标准。采用高斯过程响应面法确定复合板的系统失效概率和灵敏度分析。随机参数中的分散显示出对接触力和位移历史的显着影响。如果不考虑特性的分散性,则峰值接触力和位移可能分别低估28%和44%。板的目标可靠性可实现冲击器质量和速度的最佳组合。研究了基于灵敏度的概率设计优化程序,以实现用于防弹衣的复合材料更好的强度和更轻的重量。 (C)2017 Elsevier Ltd.保留所有权利。

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