首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >A Comparison of Weldability, Structure, and Mechanical Properties of CM64 and Tribaloy T-800 Welds for Hard-Facing of Turbine Blades
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A Comparison of Weldability, Structure, and Mechanical Properties of CM64 and Tribaloy T-800 Welds for Hard-Facing of Turbine Blades

机译:CM64和Tribaloy T-800焊接的焊接性,结构和机械性能的比较,用于涡轮叶片的硬面

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摘要

In this study, the weldability, microstructure, and tensile properties of CM64 and Tribaloy T-800 (T800) cobalt-based hard-facing materials were studied. Successful CM64 hard-facing could be achieved at ambient temperature using manual gas tungsten arc welding (GTAW-MA). It was shown that T800 welded at ambient temperature was prone to cold cracking due to a combination of low ductility with high welding stresses that limited the accommodation of residual stresses by plastic deformation within the weld beads. Sound T800 welds of various geometries and sizes were produced on cobalt- and nickel-based X-40 and Haynes 230 superalloys, respectively, using GTAW-MA when preheating above 900 degrees C was used. Microstructural analyses on the sound CM64 and T800 welds were performed using optical and electron microscopy and X-ray diffraction. The distribution of elements and phases in each alloy was evaluated and revealed the epitaxial dendritic structure with the Cr-W-Si-based phase in the interdendritic region in CM64 welds compared with petal-like and equiaxed hard Mo-Co-Si-based dendrites and fine particles in T800. Tensile testing from room temperature up to 1093 degrees C was performed on both alloys. T800 welds possessed lower ultimate tensile strengths and elongations in this temperature range when compared with the CM64 alloy. Recommendations for hard-facing of turbine engine components were provided.
机译:在该研究中,研究了CM64和Trimaloy T-800(T800)基于钴的硬面材料的可焊性,微观结构和拉伸性能。使用手动气体钨电弧焊接(GTAW-MA),可以在环境温度下实现成功的CM64硬面。结果表明,在环境温度下焊接的T800由于具有高焊接应力的低延展性的组合而易于冷裂纹,其限制残余应力通过焊珠内的塑性变形的容纳。在使用GTAW-MA时,在使用高于900℃的钴和镍基X-40和Haynes 230超合金中,在钴和镍基X-40和Haynes 230超合金中产生各种几何形状和尺寸的声音T800焊缝。使用光学和电子显微镜和X射线衍射进行声音CM64和T800焊缝上的微观结构分析。评价各合金中的元素和相的分布,并在CM64焊缝中的CR-W-Si基相位揭示了基于CR-W-Si的相比,与花瓣状和等轴的硬质莫 - 共Si的树突相比和T800中的细颗粒。在两个合金中对室温高达1093℃的拉伸试验。与CM64合金相比,T800焊缝在该温度范围内具有较低的极限拉伸强度和伸长率。提供了用于涡轮发动机部件的硬面对的建议。

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