秦仁耀, 周腾, 孙兵兵, 陈冰清, 曲致奇, 张强, 高超, 张学军. 单晶合金激光增材修复接头组织和性能研究[J]. 失效分析与预防, 2024, 19(1): 1-5. DOI: 10.3969/j.issn.1673-6214.2024.01.001
    引用本文: 秦仁耀, 周腾, 孙兵兵, 陈冰清, 曲致奇, 张强, 高超, 张学军. 单晶合金激光增材修复接头组织和性能研究[J]. 失效分析与预防, 2024, 19(1): 1-5. DOI: 10.3969/j.issn.1673-6214.2024.01.001
    QIN Ren-yao, ZHOU Teng, SUN Bing-bing, CHEN Bing-qing, QU Zhi-qi, ZHANG Qiang, GAO Chao, ZHANG Xue-jun. Microstructure and Mechanical Properties of Repaired Joint on Single Crystal Superalloy Using Laser Metal Deposition[J]. Failure Analysis and Prevention, 2024, 19(1): 1-5. DOI: 10.3969/j.issn.1673-6214.2024.01.001
    Citation: QIN Ren-yao, ZHOU Teng, SUN Bing-bing, CHEN Bing-qing, QU Zhi-qi, ZHANG Qiang, GAO Chao, ZHANG Xue-jun. Microstructure and Mechanical Properties of Repaired Joint on Single Crystal Superalloy Using Laser Metal Deposition[J]. Failure Analysis and Prevention, 2024, 19(1): 1-5. DOI: 10.3969/j.issn.1673-6214.2024.01.001

    单晶合金激光增材修复接头组织和性能研究

    Microstructure and Mechanical Properties of Repaired Joint on Single Crystal Superalloy Using Laser Metal Deposition

    • 摘要: 采用激光熔化沉积技术对DD6单晶高温合金进行修复,利用光学显微镜、扫描电镜和显微硬度仪对单晶母材和增材修复接头的组织特征和力学性能进行对比研究。结果表明:激光熔化沉积修复组织为外延生长的定向凝固柱状晶组织,由γ相基体和少量晶间MC型碳化物组成;DD6单晶合金基体热影响区微观形貌和物相组成与母材相似,但其γ′相的尺寸(≤0.2 μm)更小,且γ′/γ的比例明显降低。经激光熔化沉积修复后,增材修复区的显微硬度可达450~470 HV,显著高于DD6单晶基体,具有更优异的耐磨损性能。

       

      Abstract: DD6 single crystal superalloy was repaired by laser metal deposition (LMD). The microstructural characteristics and mechanical properties of the single crystal superalloy base metal and laser repaired joint were studied by optical microscopy, scanning electron microscopy, and microhardness testing. The results show that the microstructure of the laser repaired area is directionally-solidified columnar crystal with epitaxial growth. It is composed of γ-phase matrix and a small number of intergranular MC-type carbides. The microstructure and phase composition of the heat-affected zone (HAZ) of DD6 single crystal superalloy are similar to those of the base metal, but the size of γ′ phase in HAZ is smaller (≤0.2 μm) and the ratio of γ′/γ decreases obviously. After laser metal deposition repair, the microhardness of the laser repaired area is up to 450~470 HV, significantly higher than that of DD6 single crystal superalloy base metal, indicating that the repaired area has better wear resistance.

       

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