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首页> 外文期刊>International journal of impact engineering >Application of a computational glass model to compute propagation of failure from ballistic impact of borosilicate glass targets
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Application of a computational glass model to compute propagation of failure from ballistic impact of borosilicate glass targets

机译:玻璃计算模型在计算硼硅玻璃靶的弹道冲击破坏传播中的应用

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Parametric studies were conducted using a recent computational glass model [1] to assess its ability to replicate the rate and extent of damage resulting from ballistic impact of borosilicate glass. Penetration and the position of the failure front were determined as a function of time in experiments using long and short rods at two impact velocities, nominally 1000 m/s and 2100 m/s. Simulations were conducted of the experiments and the results compared to the experiments. Parametric studies examined the effects of very slight changes in the initial impact velocity, time-dependent failure, the inclusion of the third deviatoric stress invariant (J_3), mesh resolution, and changes in the strength of intact glass. Results are compared and contrasted, and conclusions drawn on the effect of model parameters in simulating results of impact experiments in different velocity regimes.
机译:使用最新的计算玻璃模型[1]进行了参数研究,以评估其复制由硼硅酸盐玻璃的弹道冲击造成的损坏的程度和程度的能力。在使用长杆和短杆以两种冲击速度(标称速度为1000 m / s和2100 m / s)进行的实验中,确定穿透强度和破坏前沿的位置是时间的函数。对实验进行模拟,并将结果与​​实验进行比较。参数研究检查了初始冲击速度的微小变化,与时间有关的破坏,包含了第三偏应力不变式(J_3),网格分辨率以及完整玻璃强度变化的影响。比较和对比了结果,并得出了模型参数在模拟不同速度状态下的冲击实验结果中的效果的结论。

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