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Enhanced plasticity of bulk metallic glass in different aspect ratios via laser shock peening with multiple impacts

机译:通过多次冲击的激光冲击喷丸增强了不同纵横比的大块金属玻璃的可塑性

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In this study laser shock peening (LSP) with multiple laser impacts was used to improve the mechanical properties especially the plasticity of Zr35Ti30Cu8.25Be26.75 bulk metallic glass (BMG) pillars in two aspect ratios (1:1 and 2:1). It was found that, with increasing laser impacts up to 5, the compression plastic strain of BMG pillar with aspect ratio of 1:1 increased from 0 to 1.48% and the compression strength increased significantly from 1569 MPa to 1721 MPa. With further laser impacts beyond 5, the changes in the plasticity and the compression strength were observed to be insignificant. Considering the effect of sample geometry at the same laser impacts, it could be concluded that the BMG pillars with smaller aspect ratio of 1:1 had better mechanical properties than that of the lager BMG pillars with aspect ratio of 2:1. Besides, the elastic strain limit of BMG pillars with LSP was not only independent of the laser impacts, but also irrelevant to the aspect ratio. At last, we discussed the reason for the increase of plasticity in view of the creation of excess free volume during LSP. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,具有多个激光冲击的激光冲击喷丸(LSP)用于改善机械性能,尤其是Zr35Ti30Cu8.25Be26.75大块金属玻璃(BMG)支柱在两个纵横比(1:1和2:1)下的可塑性。结果发现,随着激光冲击的增加,直至5,BMG柱的长宽比为1:1的压缩塑性应变从0增加到1.48%,压缩强度从1569 MPa显着增加到1721 MPa。在超过5的激光冲击下,可塑性和抗压强度的变化均不明显。考虑到相同的激光冲击下样品几何形状的影响,可以得出结论,长径比为1:1的BMG支柱比长径比为2:1的更大的BMG支柱具有更好的机械性能。此外,带有LSP的BMG柱的弹性应变极限不仅与激光冲击无关,而且与长宽比无关。最后,鉴于LSP期间产生了多余的自由体积,我们讨论了可塑性增加的原因。 (C)2016 Elsevier Ltd.保留所有权利。

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