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Effects of crystalline particles on mechanical properties of strip-cast Zr-based bulk amorphous alloy

机译:晶体颗粒对带铸锆基块体非晶合金力学性能的影响

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摘要

Effects of crystalline phase particles formed in a strip-cast Zr-base bulk amorphous alloy on strength, ductility, and fracture toughness were investigated by directly observing microfracture processes using an in situ loading stage installed inside a scanning electron microscope chamber. The compressive and fracture toughness test results indicated that strength, ductility, and fracture toughness of the strip-cast amorphous alloy were higher than those of the as-cast monolithic amorphous alloy, although the strip-cast alloy contained a considerable amount (4.5 vol. percent) of hard, brittle crystalline particles. According to the in situ microfracture observation, crystalline particles were easily cracked under low stress levels, acted as blocking sites of shear band or crack propagation, and provided initiation sites of multiple shear bands. Thus, the improvement of mechanical properties in the strip-cast alloy could be explained by mechanisms of (1) blocking of crack propagation, (2) formation of multiple shear bands, and (3) crack deflection by crystalline particles.
机译:通过使用安装在扫描电子显微镜室内的原位加载台直接观察微断裂过程,研究了在带状流延Zr基块状非晶态合金中形成的结晶相颗粒对强度,延展性和断裂韧性的影响。压缩和断裂韧性测试结果表明,尽管带状铸态合金中含有大量的非晶态合金(4.5体积%),但其强度,延展性和断裂韧性高于铸态整体非晶态合金。百分比)的硬而脆的结晶颗粒。根据原位微断裂观察,结晶颗粒在低应力水平下容易破裂,充当剪切带或裂纹扩展的阻断位点,并提供多个剪切带的起始位点。因此,带状铸造合金的机械性能的提高可以通过以下机理来解释:(1)阻止裂纹扩展;(2)形成多个剪切带;(3)结晶颗粒引起的裂纹偏转。

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