首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Indentation size effect in metallic glasses: Mean pressure at the initiation of plastic flow
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Indentation size effect in metallic glasses: Mean pressure at the initiation of plastic flow

机译:金属玻璃的压痕尺寸效应:塑性流动开始时的平均压力

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摘要

Nanoindentation tests using a spherical indenter of tip radius 10μm have been performed on Zr- and Pd-based metallic glasses, focusing on the cumulative distribution of the first yield load. When normalized using the macroscopic yield stress, the distribution of mean pressure at yield is nearly independent of the glass composition. Collecting literature data, there is a clear indentation size effect in metallic glasses: the smaller the indenter tip radius, the larger the indentation pressure at yield. The magnitude of the size effect in metallic glasses is compared with, and found to lie between, the cases of crystalline metals and ceramics.
机译:已经在基于Zr和Pd的金属玻璃上进行了使用尖端半径为10μm的球形压头的纳米压痕测试,重点是第一屈服载荷的累积分布。当使用宏观屈服应力进行归一化时,屈服时的平均压力分布几乎与玻璃成分无关。收集文献数据后,金属玻璃的压痕尺寸效应明显:压头尖端半径越小,屈服时的压痕压力越大。将金属玻璃中的尺寸效应的大小与结晶金属和陶瓷的情况进行比较,并发现它们之间。

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