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首页> 外文期刊>International journal of impact engineering >Numerical simulation of long rods impacting silicon carbide targets using JH-1 model
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Numerical simulation of long rods impacting silicon carbide targets using JH-1 model

机译:JH-1模型对长棒撞击碳化硅靶的数值模拟

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摘要

The Johnson-Holmquist model for simulating impact and penetration into ceramic and glass materials is commonly used in continuum hydrocodes. There are two forms of the Johnson-Holmquist ceramic model: JH-1 using a segmented linear approximation to the strength envelope with instantaneous failure; JH-2 using a smooth analytic approximation to the strength envelope with damage-induced strength reduction. Both these models are now implemented in the AUTODYN~® software. The validation of the JH-1 model is presented in this paper by comparing numerical predictions with experimental data. The failure parameters of the JH-1 model are also validated in the current numerical approach. Good agreement between numerical predictions and experimental measurements is shown for the behavior of silicon carbide in various impact situations. Time histories of particle velocity in compressive and tensile spall plate impact, interface dwell in confined impact, and total penetration depth in oblique impact are used in the comparison. The JH-1 model in AUTODYN is shown to be a powerful numerical tool in the design and analysis of ceramic armor systems.
机译:用于模拟冲击和渗透到陶瓷和玻璃材料中的Johnson-Holmquist模型通常用于连续液压编码中。 Johnson-Holmquist陶瓷模型有两种形式:JH-1,使用分段线性逼近,对具有瞬时破坏的强度包络线; JH-2使用对强度包络线的平滑解析近似,并带有损伤引起的强度降低。这两个模型现在都在AUTODYN〜®软件中实现。通过将数值预测与实验数据进行比较,本文提出了JH-1模型的验证。目前的数值方法也验证了JH-1模型的失效参数。对于各种冲击情况下的碳化硅行为,数值预测和实验测量之间显示出良好的一致性。在压缩和拉伸压裂板撞击中的粒子速度,在有限撞击中的界面停留以及在倾斜撞击中的总穿透深度的时间历史用于比较。在陶瓷装甲系统的设计和分析中,AUTODYN中的JH-1模型被证明是功能强大的数值工具。

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