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Evaluating the Microstructures and Mechanical Properties of Dissimilar Metal Joints Between a New Cast Superalloy K4750 and Hastelloy X Alloy by Using Different Filler Materials

机译:使用不同填充材料评估新型铸造高温合金K4750和哈氏合金X合金之间的异种金属接头的组织和力学性能

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摘要

Two kinds of filler materials were used to join dissimilar alloys between a new cast superalloy K4750 and Hastelloy X by tungsten gas arc welding (GTAW). The segregation behavior, interfacial microstructure and mechanical properties of the dissimilar joints were evaluated. The results show that both filler materials can be used to obtain sound dissimilar joints successfully. Microstructural observation show that no obvious cracking is observed in the joints achieved by both filler materials. The segregation extent of various elements in Hastelloy X weld metal is more severe than that in the K4750 weld metal. No unmixed zones were observed at the interfaces. Transition areas with the chemical compositions various between the K4750 alloy and the Hastelloy X alloy were found at the joint interfaces. The maximum width of the transition area between the K4750 weld metal and Hastelloy X base metal is smaller than that between the Hastelloy X weld metal and K4750 base metal. The ultimate tensile strength and yield strength of the joints with Hastelloy X filler material are slightly higher than those with K4750 filler material, however, the K4750 filler material results in a higher total elongation and fusion zone microhardness than those with Hastelloy X filler material. Both dissimilar joints fractured with a ductile feature which exhibits tearing edges and dimples. Hastelloy X filler material is suggested to be more suitable for joining of K4750 superalloy and Hastelloy X dissimilar metals in terms of obtaining superior comprehensive mechanical properties.
机译:两种填充材料用于通过钨极气体保护弧焊(GTAW)将新型铸造的超合金K4750和Hastelloy X之间的异种合金连接起来。评价了异种接头的偏析行为,界面微观结构和力学性能。结果表明,两种填充材料均可成功地获得异种接缝。显微组织观察表明,两种填充材料在接缝处均未观察到明显的裂纹。哈氏合金X焊缝中的各种元素的偏析程度比K4750焊缝中的更严重。在界面处未观察到未混合区域。在接头界面处发现了K4750合金和Hastelloy X合金之间化学成分不同的过渡区域。 K4750焊接金属和Hastelloy X母材之间的过渡区域的最大宽度小于Hastelloy X焊接金属和K4750母材之间的过渡区域的最大宽度。 Hastelloy X填充材料的接头的极限抗拉强度和屈服强度略高于K4750填充材料的接头,但是,与Hastelloy X填充材料相比,K4750填充材料的总伸长率和熔合区显微硬度更高。两个异种关节均断裂,具有延展性,并具有撕裂边缘和酒窝。从获得卓越的综合机械性能的角度来看,哈氏合金X填料材料更适合于K4750超级合金和哈氏合金X异种金属的连接。

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