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Influence of voids or He bubbles on the spall damage in single crystal Al

机译:空隙或氦气泡对单晶铝剥落损伤的影响

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This paper presents the effects of initial voids or He bubbles on the spall damage in single crystal Al, with molecular dynamics simulations. The time evolution of pressure and temperature profiles, as well as the corresponding microstructure, are analyzed in detail. The initial spall of the samples containing voids or He bubbles is captured at the impact velocity 0.5 km s~(?1), where we find the disordered atoms’ generation and confluence from the initial voids or He bubbles. This state finally induces the relaxation of tensile stress (spall impulse). At the impact velocity 1.0 km s~(?1), we observe homogeneous void nucleations, whose growth can be reduced by the initial voids and the growth of He bubbles. The spall strength of samples containing voids or He bubbles reduces by 2.6 GPa from 11.8 GPa (in a perfect sample). However, when the impact velocity increases to 2.5 km s~(?1), a wide voids-included disordered zone is formed, where the homogeneous void nucleations become dominant and all the samples have the same spall strength of 8.6 GPa. Here, the tensile strain rates during spall are in the range of 4.0 × 10~(10)-6.0 × 10~(10) s~(?1).
机译:本文通过分子动力学模拟介绍了初始空隙或He气泡对单晶Al剥落损伤的影响。详细分析了压力和温度曲线的时间演变以及相应的微观结构。以0.5 km s〜(?1)的撞击速度捕获了含有空洞或He气泡的样品的初始剥落,从中我们发现了初始空洞或He气泡产生的无序原子和汇合。该状态最终引起张应力的松弛(飞溅脉冲)。在1.0 km s〜(?1)的冲击速度下,我们观察到均匀的空核,其生长可以被初始空洞和He气泡的生长所减少。包含空隙或He气泡的样品的剥落强度比11.8 GPa(理想样品)降低2.6 GPa。但是,当冲击速度增加到2.5 km s〜(?1)时,会形成一个宽大的含空隙的无序区,在该区中均匀的空隙核化占优势,所有样品的剥落强度相同,为8.6 GPa。在此,剥落时的拉伸应变率在4.0×10〜(10)-6.0×10〜(10)s〜(Δ1)的范围内。

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