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Work softening behavior of Cu–Cr–Ti–Si alloy during cold deformation

机译:Cu-Cr-Ti-Si合金冷变形过程中的工作软化行为

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Work hardening is a common method of strengthening copper-based alloys. However, softening behavior is observed in Cu–Cr–Ti–Si alloy during cold rolling processes. Cold deformation greater than 85% can induce softening behavior. We used an electron backscatter diffraction system, X-ray diffraction, and transmission electron microscopy to analyze the microstructure of alloy samples subjected to different degrees of cold deformation. A greater proportion of high-angle grain boundaries, a lower dislocation density, and certain dislocation configurations indicated that the recovery takes place during heavy cold deformation leading to softening phenomenon.
机译:加工硬化是强化铜基合金的常用方法。但是,在冷轧过程中,在Cu–Cr–Ti–Si合金中观察到软化行为。大于85%的冷变形会引起软化行为。我们使用电子背散射衍射系统,X射线衍射和透射电子显微镜来分析经受不同程度的冷变形的合金样品的微观结构。较大比例的高角度晶界,较低的位错密度和某些位错构型表明恢复发生在严重的冷变形期间,导致软化现象。

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