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首页> 外文期刊>Materials Science and Engineering >The effects of changes in test temperature and loading conditions on fracture toughness of a β toughened Zr-based bulk metallic glass composite
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The effects of changes in test temperature and loading conditions on fracture toughness of a β toughened Zr-based bulk metallic glass composite

机译:试验温度和载荷条件的变化对β增韧的Zr基大块金属玻璃复合材料断裂韧性的影响

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摘要

The effects of changes in test temperature from 150K to 653 K on the fracture behavior and toughness of a β-toughened Zr-based bulk metallic glass (BMG) were investigated. Loading conditions under either displacement rate control or loading rate control were additionally investigated. While the composite toughness was higher than that of the previously tested monolithic amorphous material tested under identical conditions, the toughness of the composite was also significantly affected by changing either the test temperature or loading conditions. In particular, brittle fracture of the crystalline component in the composite was observed at the lowest temperatures and highest loading rates at T< 505 K. This reduced the toughness of the composite compared to other combinations of loading rate and test temperature and was significantly different than results previously obtained on the monolithic amorphous material. The results are compared to other recent work on the monolithic BMG tested under similar conditions over the temperature range of 77-653 K.
机译:研究了测试温度从150K到653 K的变化对β增韧Zr基大块金属玻璃(BMG)的断裂行为和韧性的影响。另外研究了位移率控制或负载率控制下的负载条件。尽管复合材料的韧性高于在相同条件下测试的先前测试的整体非晶材料的韧性,但复合材料的韧性也受到改变测试温度或负载条件的影响。特别是,在最低温度和最高加载速率(T <505 K)下,观察到复合材料中结晶成分的脆性断裂。与其他加载速率和测试温度组合相比,这降低了复合材料的韧性,并且与以前在整体非晶材料上获得的结果。将结果与在类似条件下在77-653 K的温度范围内测试的整体式BMG的其他最新工作进行了比较。

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