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Microstructure Control and Mechanical Properties of New Developed CW Superalloy GH4175 at 800°C

机译:800°C时,新型开发的C&W超合金GH4175的微观结构控制和机械性能

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As the thrust-weight ratio continues to increase, the aero-engine turbine disk material required both high strength and high temperature resistant properties which were often not compatible; Besides the working temperature of the turbine disk rim had reached 800 °C, the existing superalloys can not to meet the requirements, which was the reason that GH4175 alloy was produced . GH4175 was derived from Russian BK175 alloy, and the volume content of y' was over 58%. For the new GH4175, the low-segregation melting ingot with diameter of as large as 508mm could be prepared by the Double vacuum melting or Triple metlting process, in which the macro segregation and various metallurgical defects could be effectively controlled, then the conversion of as-cast microstructure and fine-grained billets were achieved on open-die hydraulic press by multi-times upsetting and drawing process and the novel temperature control technology with high efficiency, next, with the multi-cycle thermos-mechanical processing technology, the full-size turbine disks with a diameter of 600mm or more could be produced on hot die forging or isothermal forging. After standard heat treatment, the alloy combines high strength and high temperature characteristics, and balances the relationship between fatigue and creep. The long-term working temperature of the alloy reaches 800 °C.
机译:随着推力重量比继续增加,空气发动机涡轮机盘材料需要高强度和高耐温性,这通常不兼容;除了涡轮盘轮圈的工作温度达到800°C,现有的超合金不能满足要求,这是GH4175合金的产生。 GH4175来自俄罗斯BK175合金,Y'的体积含量超过58%。对于新的GH4175,通过双重真空熔化或三重金属化方法可以制备直径大至508mm的低偏析熔化锭,其中可以有效地控制宏观偏析和各种冶金缺陷,然后转换为通过多时间镦粗型液压机和高效率的新型温度控制技术实现开放式液压机和细粒度坯料,下一步,具有多循环热源机械加工技术,全面可以在热模锻或等温锻造上产生直径为600mm以上的尺寸涡轮机磁盘。在标准热处理后,合金结合了高强度和高温特性,并平衡了疲劳和蠕变之间的关系。合金的长期工作温度达到800°C。

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