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Microstructural evolution and mechanical properties of deep cryogenic treated Cu-Al-Si alloy fabricated by Cold Metal Transfer (CMT) process

机译:冷金属转移(CMT)工艺制备深冷冻处理Cu-Al-Si合金的微观结构演化与力学性能

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摘要

Cryogenic treatment is an effective route to obtain fine grained microstructure in materials. In this work, the effect of deep cryogenic treatment (DCT) on the microstructural evolution and mechanical properties of a copper-aluminum-silicon (Cu-Al-Si) alloy deposited by cold metal transfer (CMT) technology was investigated. Copper-rich Cu-Al-Si alloy with similar to 8.3% aluminum content was deposited on T2 copper substrate using an innovative dual wire feed system based on CMT technology. The deposited alloy was subjected to DCT for varying time duration (0, 6, 12 and 24 h). Evaluation of microhardness and tensile properties showed that the deep cryogenic treatment enhanced these properties. Microhardness increased about 10% with the increase in the DCT time duration. Under tensile loading conditions, the DCT conducted for 12 h provided the best properties, with an increase in both the tensile yield and ultimate strengths (similar to 20% increase). Microstructural evolution and grain orientation were investigated using Electron Back Scattered Diffraction (EBSD). Microstructural studies revealed the formation of subgrains, fine grains and deformation twins due to DCT. Significant grain refinement was achieved due to the increase in the formation of high angle grain boundaries. It is summarized that the deep cryogenic treatment induces microstructural evolution: (i) grain refinement and (ii) texture randomization, and improves the mechanical properties of Cu-Al-Si alloy.
机译:低温处理是在材料中获得细粒微观结构的有效途径。在这项工作中,研究了深层低温处理(DCT)对冷金属转移(CMT)技术沉积的铜 - 铝 - 硅(Cu-Al-Si)合金的微观结构演化和力学性能的影响。富含铜的Cu-Al-Si合金,其基于CMT技术的创新双丝馈电系统沉积在T2铜基板上沉积在T2铜基上。对沉积的合金进行DCT以进行变化的时间持续时间(0,6,12和24小时)。微硬度和拉伸性能的评价表明,深冷冻处理增强了这些性质。微硬度随着DCT时间持续时间的增加而增加约10%。在拉伸负载条件下,进行12小时的DCT提供最佳性能,随着拉伸产率和最终强度(类似于20%的增加),增加了最佳性能。使用电子背散射衍射(EBSD)研究了微观结构的进化和晶粒取向。微观结构研究表明,由于DCT,形成了亚胍,细晶粒和变形双胞胎。由于高角度晶界的形成增加,实现了显着的晶粒细化。总结了深度低温处理诱导微观结构演化:(i)晶粒细化和(ii)纹理随机化,提高Cu-Al-Si合金的力学性能。

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