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铁基原位金属玻璃基复合材料的冲击波响应

Shock Wave Response of Iron-based In Situ Metallic Glass Matrix Composites.

作者信息

Khanolkar Gauri R, Rauls Michael B, Kelly James P, Graeve Olivia A, Hodge Andrea M, Eliasson Veronica

机构信息

Department of Aerospace and Mechanical Engineering, University of Southern California, Los Angeles, CA 90089, USA.

Graduate Aerospace Laboratories, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Sci Rep. 2016 Mar 2;6:22568. doi: 10.1038/srep22568.

Abstract

The response of amorphous steels to shock wave compression has been explored for the first time. Further, the effect of partial devitrification on the shock response of bulk metallic glasses is examined by conducting experiments on two iron-based in situ metallic glass matrix composites, containing varying amounts of crystalline precipitates, both with initial composition Fe49.7Cr17.7Mn1.9Mo7.4W1.6B15.2C3.8Si2.4. The samples, designated SAM2X5-600 and SAM2X5-630, are X-ray amorphous and partially crystalline, respectively, due to differences in sintering parameters during sample preparation. Shock response is determined by making velocity measurements using interferometry techniques at the rear free surface of the samples, which have been subjected to impact from a high-velocity projectile launched from a powder gun. Experiments have yielded results indicating a Hugoniot Elastic Limit (HEL) to be 8.58 ± 0.53 GPa for SAM2X5-600 and 11.76 ± 1.26 GPa for SAM2X5-630. The latter HEL result is higher than elastic limits for any BMG reported in the literature thus far. SAM2X5-600 catastrophically loses post-yield strength whereas SAM2X5-630, while showing some strain-softening, retains strength beyond the HEL. The presence of crystallinity within the amorphous matrix is thus seen to significantly aid in strengthening the material as well as preserving material strength beyond yielding.

摘要

首次探索了非晶钢对冲击波压缩的响应。此外,通过对两种铁基原位金属玻璃基复合材料进行实验,研究了部分失配对块状金属玻璃冲击响应的影响,这两种复合材料含有不同数量的结晶析出物,初始成分均为Fe49.7Cr17.7Mn1.9Mo7.4W1.6B15.2C3.8Si2.4。由于样品制备过程中烧结参数的差异,分别命名为SAM2X5 - 600和SAM2X5 - 630的样品分别为X射线非晶态和部分晶态。通过在样品的后自由表面使用干涉测量技术进行速度测量来确定冲击响应,样品受到了粉末枪发射的高速弹丸的撞击。实验结果表明,SAM2X5 - 600的 Hugoniot弹性极限(HEL)为8.58±0.53 GPa,SAM2X5 - 630的为11.76±1.26 GPa。后一个HEL结果高于迄今为止文献中报道的任何BMG的弹性极限。SAM2X5 - 600在屈服后灾难性地失去强度,而SAM2X5 - 630虽然表现出一些应变软化,但在HEL之后仍保持强度。因此,可以看出非晶基体中结晶度的存在显著有助于增强材料强度,并在屈服后保持材料强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea0d/4773851/2bf889a2ec2f/srep22568-f1.jpg

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