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首页> 外文期刊>Materials Science and Engineering >Effects of heat treatment and Nd: YAG laser repair welding parameters on the microstructure and properties of a Cu-Ni-Si-Cr mold alloy
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Effects of heat treatment and Nd: YAG laser repair welding parameters on the microstructure and properties of a Cu-Ni-Si-Cr mold alloy

机译:热处理和Nd:YAG激光修复焊接参数对Cu-Ni-Si-Cr模具合金的微观结构和性能的影响

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摘要

The novel Cu-Ni-Si-Cr alloy (Cu-6.7Ni-1.6Si-0.3Cr) has good prospects for substitution with toxic Be-Cu alloy. This study used a Nd: YAG laser process with a variety of heat treatment processes and repair welding parameters to investigate the effects of heat treatment and repair welding parameters on the microstructure and properties of the Cu-Ni-Si-Cr mold alloy. To eliminate the disadvantages of the laser welding process for the Cu-Ni-Si-Cr mold alloy, such as high thermal conductivity and high thermal expansion coefficients, many improved approaches have been used, including pre-weld heat treatments (expected to reduce thermal conductivity), control of the laser shape, and preheating (to slow down the cooling rate and avoid excessive expansion and contraction). The results showed that after the pre-weld heat treatment and preheating, deeper penetration and defect-free welds were obtained. However, continuous Ni/Si phase precipitates were observed along the grain boundaries in the welding fusion zone (WFZ), which may have harmful effects on the mechanical properties of the welds. This problem was improved by post-weld heat treatment (PWHT). The repair welds (including WFZ and HAZ) after PWHT showed a good combination of hardness, tensile strength, and thermal properties. The high hardness or tensile strength in the weld was attributed to the formation of a nano-sized Ni/Si phase, which was identified via a transmission electron microscope.
机译:新型Cu-Ni-Si-Cr合金(Cu-6.7Ni-1.6Si-0.3cr)具有良好的良好前景,含有毒性为-Cu合金。本研究使用了ND:YAG激光过程,具有各种热处理过程和修复焊接参数,以研究热处理和修复焊接参数对Cu-Ni-Si-Cr模具合金的微观结构和性能的影响。为了消除Cu-Ni-Si-Cr模具合金的激光焊接过程的缺点,例如高导热率和高热膨胀系数,已经使用了许多改进的方法,包括预焊前热处理(预期减少热量电导率),控制激光形状,并预热(减慢冷却速率并避免过度膨胀和收缩)。结果表明,在预焊接热处理和预热后,获得更深的渗透和无缺陷焊缝。然而,沿着焊接融合区(WFZ)中的晶界观察连续的Ni / Si相沉淀物,这可能对焊缝的机械性能产生有害影响。焊接后热处理(PWHT)改善了这个问题。 PWHT后修复焊缝(包括WFZ和HAZ)显示出硬度,拉伸强度和热性能的良好组合。焊缝中的高硬度或拉伸强度归因于形成纳米大小的Ni / Si相,通过透射电子显微镜鉴定。

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