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Microstructure and Hot Tearing Susceptibility of K418 and K419 Superalloy for Auto Turbocharger Turbine Wheel

机译:用于自动涡轮增压器涡轮机K418和K419超合金的微观结构和热撕裂易感性

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K419 superalloy turbine wheel was more susceptible to hot tearing than K418 one when they were used for auto turbocharger turbine wheel. The fracture and microstructure characteristics in the K418 and K419 turbine wheel blades were analyzed. The segregation of alloying elements was analyzed by EDS. The probable equilibrium phases in the two kinds of superalloys, the effects of aluminum, titanium and niobium contents on the precipitation of γ' and γ/γ' eutectic phase and the segregation of alloying elements were studied by Thermo-Calc software. The results show that the hot tearing in the K418 and K419 superalloy turbine wheel blades is caused by the fracture of dendrites structures, while the amount of γ/γ' eutectic in K419 is more than that in K418, resulting in K419 being more susceptible to hot tearing. Titanium and niobium, the strong positive segregation elements promote the formation of γ/γ' eutectic, which lead to severe hot tearing susceptibility of the superalloy.
机译:当它们用于自动涡轮增压器涡轮轮机时,K419高温合金涡轮机滚轮比K418更容易受到热撕裂的影响。分析了K418和K419涡轮叶片中的裂缝和微观结构特性。通过EDS分析合金元素的偏析。通过Thermo-Calp软件研究了两种超合金中的可能性平衡阶段,铝,钛和铌含量对γ'和γ/γ'共晶相的沉淀和合金元素的偏析。结果表明,K418和K419超合金涡轮叶片的热撕裂是由树突结构的骨折引起的,而K419中的γ/γ'共晶的量大于K418的含量,导致K419更容易受到影响热撕裂。钛和铌,强的正偏析元素促进γ/γ'共晶的形成,这导致超合金的严重撕裂抗撕裂易感性。

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