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Effects of the Hot Isostatic Pressing Process on Crack Healing of the Laser Repair-Welded CM247LC Superalloy

机译:等静压工艺对激光修复焊接CM247LC合金裂纹愈合的影响

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This study investigated the effects of the hot isostatic pressing process on the crack healing, microstructure, and mechanical properties of the laser repair-welded CM247LC precipitation-hardened superalloy. To ensure the strength of the repair-welded area, this study used the direct re-melting approach, and simulated the repair welding with the filler addition, which has a chemical composition matching that of the base superalloy. As expected, different types of cracks, including the solidification crack in the weld fusion zone and various types of liquidation cracks in the heat-affected zone, were observed. Through a proper hot isostatic pressing healing process, all cracks in the weld fusion zone and the heat-affected zone of the repair-welded pieces were healed. At the same time, some nano- and micro-sized carbides tended to form discontinuously along the healed crack trace. A micro-hardness test was conducted in the repair-welded area, and the results were similar to that of the as-cast material.
机译:这项研究调查了热等静压工艺对激光修复焊接的CM247LC沉淀硬化高温合金的裂纹愈合,显微组织和力学性能的影响。为了确保修补焊接区域的强度,本研究采用直接重熔方法,并模拟了化学成分与基础高温合金相匹配的填充钎料的修补焊接。正如预期的那样,观察到了不同类型的裂纹,包括焊接熔合区的凝固裂纹和热影响区的各种类型的液化裂纹。通过适当的热等静压修复工艺,修复了修补件的焊缝熔合区和热影响区的所有裂纹。同时,一些纳米级和微米级碳化物倾向于沿着愈合的裂纹痕迹不连续地形成。在补焊区进行了显微硬度测试,结果与铸态材料相似。

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