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Catastrophic stress corrosion failure of Zr-base bulk metallic glass through hydrogen embrittlement

机译:氢脆对锆基大块金属玻璃的破坏性应力腐蚀破坏

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Zr-base bulk metallic glasses (BMG) are prone to pitting corrosion in halide containing solutions and also stress corrosion cracking (SCC) is often interpreted in this context. This work presents in situ SCC experiments on notched Zr52.5Cu17.9Ni14.6Al10Ti5 (at.%) BMG bars under 3-point bending in dilute NaCl solution. They show that pitting corrosion is only the initiating process. The pitted areas have a lower local corrosion potential and the reaction of Zr4+ to zirconyl ions in solution produces H+ that can be reduced and absorbed in the local acidic environment. So, hydrogen embrittlement causes the observed catastrophic failure and peculiar fracture surface characteristics.
机译:Zr基块状金属玻璃(BMG)在含有卤化物的溶液中容易出现点蚀,并且在这种情况下通常会解释为应力腐蚀开裂(SCC)。这项工作提出了在稀释的NaCl溶液中在三点弯曲下对缺口Zr52.5Cu17.9Ni14.6Al10Ti5(at。%)BMG棒进行的原位SCC实验。他们表明,点蚀只是引发过程。点蚀区域具有较低的局部腐蚀电位,并且Zr4 +与溶液中的氧化锆离子反应生成的H +可在局部酸性环境中还原和吸收。因此,氢脆导致观察到的灾难性破坏和特殊的断裂表面特征。

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