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Diffusion Bonding between Ni-Base ODS Alloy and Conventional Ni-Base Superalloy and High-Temperature Fatigue Strength of the Joints

机译:Ni-基ODS合金与常规Ni-基高温合金之间的扩散结合和接头的高温疲劳强度

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摘要

Dissimilar diffusion boning between an oxide dispersion strengthened (ODS) Ni-base alloy, MA758, and conventional casting Ni-base superalloy, CM-247LC, was studied by combining and controlling some bonding parameters bonding temperature, bonding pressure, and the post weld heat treatment The optimum bonding condition was filtered and refined on the basis of the microstructure and thickness of the diffusion layer, the hardness distribution across the welded interface, and the high temperature tensile properties of the joints. The experimental evidences indicated, the bonding temperature and the post weld heat treatment played an essential role. For example, the longer the post weld heat treatment time, the better the high temperature tensile properties were. The fatigue strength of the joints thus optimized was also evaluated at high temperature in air, and was compared with that of the base material, MA758. The fatigue strength of the joints optimized was slightly lower compared with that of the base material, MA758, however, it was high enough for engineering applications.
机译:通过结合并控制一些结合参数,结合温度,结合压力和焊后热,研究了氧化物弥散强化(ODS)镍基合金MA758与常规铸造镍基高温合金CM-247LC之间的异种扩散结合。处理根据扩散层的微观结构和厚度,整个焊接界面的硬度分布以及接头的高温拉伸性能,对最佳的粘合条件进行过滤和优化。实验证据表明,粘接温度和焊后热处理起着至关重要的作用。例如,焊后热处理时间越长,高温拉伸性能越好。还在空气中高温下评估了这样优化的接头的疲劳强度,并将其与基础材料MA758进行了比较。与母材MA758相比,优化后的接头的疲劳强度略低,但足以用于工程应用。

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