首页> 外文期刊>Acta materialia >Effect of high-pressure torsion on hydrogen trapping in Fe-0.01 mass C and type 31 OS austenitic stainless steel
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Effect of high-pressure torsion on hydrogen trapping in Fe-0.01 mass C and type 31 OS austenitic stainless steel

机译:高压扭转对Fe-0.01质量C和31型OS奥氏体不锈钢中氢气捕获的影响

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摘要

The effect of high-pressure torsion (HPT) on hydrogen trapping in Fe-0.01 mass C and type 310S stainless steel was studied by metallographic characterization and hydrogen measurement after hydrogen gas charging. Hardening of both materials after processing by HPT was achieved through grain refinement. Hydrogen trapping in the Fe-0.01 mass C was significantly increased by HPT processing, because of high binding energies of hydrogen with lattice defects such as dislocations and grain boundaries in body-centred cubic iron. In the type 310S processed by HPT, the hydrogen content that trapped by dislocations was less than that dissolved within the lattice and the contribution of grain boundaries on hydrogen trapping can be neglected. In the stable austenitic stainless steel processed by HPT, decreasing the dislocation density can reduce the trapped hydrogen to the solution-treated level while the hardening by grain refinement is retained.
机译:通过氢气充气后金相表征和氢气测量,研究了高压扭转(HPT)对Fe-0.01质量%C和310S型不锈钢中氢气捕获的影响。两种材料在HPT加工后通过晶粒细化实现硬化。由于氢的高结合能,在体心立方铁中存在位错和晶界等晶格缺陷,HPT处理显著提高了Fe-0.01质量%C中的氢捕获率。在HPT处理的310S型中,位错捕获的氢含量小于溶解在晶格内的氢含量,可以忽略晶界对氢捕获的贡献。在HPT加工的稳定奥氏体不锈钢中,降低位错密度可以将捕获的氢降低到固溶处理的水平,同时保留晶粒细化的硬化。

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