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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Process Variables on the Inertia Friction Welding of Superalloys LSHR and Mar-M247
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Effect of Process Variables on the Inertia Friction Welding of Superalloys LSHR and Mar-M247

机译:工艺变量对LSHR和Mar-M247高温合金惯性摩擦焊接的影响

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The effect of inertia friction welding process parameters on microstructure evolution, weld plane quality, and the tensile behavior of welds between dissimilar nickel-base superalloys was established. For this purpose, the fine-grain, powder metallurgy alloy LSHR was joined to coarse-grain cast Mar-M247 using a fixed level of initial kinetic energy, but different combinations of the flywheel moment of inertia and initial rotation speed. It was found that welds made with the largest moment of inertia resulted in a sound bond with the best microstructure and room-temperature tensile strength equal to or greater than that of the parent materials. A relationship between the moment of inertia and weld process efficiency was established. The post-weld tensile behavior was interpreted in the context of observed microstructure gradients and weld-line defects.
机译:建立了惯性摩擦焊接工艺参数对异种镍基高温合金之间焊缝组织演变,焊缝平面质量以及焊缝拉伸行为的影响。为此,使用固定水平的初始动能,但飞轮惯性矩和初始转速的不同组合,将细晶粒粉末冶金合金LSHR与粗晶粒铸造Mar-M247连接。发现以最大惯性矩进行的焊接可产生具有最佳显微组织和室温抗拉强度(等于或大于母体材料)的牢固粘结。建立了惯性矩与焊接工艺效率之间的关系。在观察到的微观结构梯度和焊缝缺陷的背景下解释了焊后拉伸行为。

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