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Effect of Grain Size on the Stress Corrosion Cracking of Ultrafine Grained Cu-10 wt Zn Alloy in Ammonia

机译:晶粒尺寸对氨中超细颗粒Cu-10wt%Zn合金的应力腐蚀开裂的影响

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摘要

The effect of grain size in the micron to submicron range on the stress corrosion cracking (SCC) of Cu-10 wt% Zn alloys was investigated using constant-load tests in ammonia vapor. The grain size was systematically varied from 4 μm to 0.12 μm by either cold-rolling or equal-channel angular pressing (ECAP), followed by annealing. The time to fracture increased with decreasing grain size above 1 μm but then began to decrease with decreasing grain size into the submicron range. This inverse trend in the submicron range is discussed in terms of a severe plastic deformation- (SPD-) induced ultrafine grain microstructure.
机译:使用氨蒸气中的恒定负载试验研究了微米至亚微米到亚微米到亚微米范围对Cu-10wt%Zn合金的应力腐蚀裂纹(SCC)的影响。通过冷轧或相等通道角压(ECAP),晶粒尺寸从4μm到0.12μm自4μm至0.12μm。裂缝的时间随着粒度的降低而增加,但随后开始减少晶粒尺寸进入亚微米范围。在严重的塑性变形 - (SPD-)诱导的超细晶粒微观结构方面讨论了亚微米范围的这种反向趋势。

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