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Tracking heat-affected zone cracking susceptibility in standard and modified heat treated IN 738 superalloy welds

机译:738超合金焊缝中处理标准和改性热处理的热影响区域开裂敏感性

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摘要

The conditions influencing the phenomenon of heat affected zone (HAZ) cracking during tungsten inert gas (TIG) welding of a gamma-prime (γ') precipitation strengthened nickel-base superalloy, IN 738, is discussed here. The discussion is reinforced with the dependence of the cracking on particle size variation of the γ' precipitates and base alloy hardness. Microstructural analysis of the magnitude of HAZ cracking in the alloy indicates that while resistance to cracking susceptibility is poor in the standard heat treatment (SHT) condition, the modified heat treated (MHT) alloy exhibits significantly improved resistance to HAZ cracking. The improvement in resistance to HAZ cracking in the MHT alloy is attributed to the lower hardness of the alloy which permits stress relaxation in the base alloy compared to the SHT alloy. In contrast to what is expected based on the recommended manufacturer SHT procedure, preweld microstructural modification presents a viable way of limiting cracking susceptibility in TIG welded IN 738 superalloy.
机译:在此处讨论了在738中讨论了影响γ-掺入(γ')沉淀的钨惰性气体(TIG)焊接期间的热影响区(TIG)焊接现象的条件。通过裂缝对γ'沉淀物和基础合金硬度的粒度变化的依赖性加强了讨论。合金中HAZ裂缝幅度的微观结构分析表明,在标准热处理(SHT)条件下对裂解敏感性的耐抗性差,而改性热处理(MHT)合金表现出显着改善对HAZ开裂的抗性。与SHT合金相比,MHT合金中耐抗HAZ裂纹抗性抗性抗裂性的改善归因于允许基础合金中的应力松弛。与基于推荐的制造商SHT程序的预期相比,预期微结构改进呈现了限制在738超合金中焊接的TIG裂缝敏感性的可行方法。

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