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Microstructure Evolution of Nickel-Based Superalloys Induced by Thermomechanical Processing - Simulation and Verification

机译:机械加工诱导的镍基高温合金的组织演变-模拟与验证

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It is known that different parts of the gas turbine engine discs are operated at different temperature and load. Therefore, it is advisable to make such components out of nickel-based superalloys with a regulated structure that provides them the best operational properties. It is important to know the thermomechanical treatment for their processing to form such structures. Research of the deformation behavior and the microstructure evolution of nickel-based superalloys was carried out on small specimens. The accumulated strains and the stress distribution in specimens were determined during simulation. It is possible to predict structure formation on the basis of a deflected mode. Verification was carried out by isothermal upsetting of specimens out of superalloys at the temperature and strain rates determined by simulation. Thermomechanical treatments of the superalloys for different microstructure formation were defined. The features of the microstructure formation are shown depending on the chemical and phase composition of the alloys. Hot deformation of the ATI Allvac 718Plus superalloy leads to dissolution of the gamma prime phase that facilitates the deformation capacity. Increasing the alloyage of superalloys, including rhenium, leads to formation of a necklace staicture instead of a homogeneous finegrained structure for less alloyed superalloys at the same strain.
机译:已知燃气涡轮发动机盘的不同部分在不同的温度和负载下运行。因此,建议使用具有可调节结构的镍基高温合金制造此类组件,从而为它们提供最佳的操作性能。重要的是要知道对其进行热机械处理以形成这种结构。对镍基高温合金的变形行为和组织演变进行了研究。模拟过程中确定了试样中的累积应变和应力分布。可以基于偏转模式来预测结构的形成。通过在模拟确定的温度和应变速率下,对超合金中的试样进行等温up粗来进行验证。定义了针对不同微观结构形成的高温合金的热机械处理。根据合金的化学和相组成显示了微观结构的形成特征。 ATI Allvac 718Plus超级合金的热变形会导致伽马素相的溶解,从而促进变形能力。增加包括strain在内的高温合金的合金化会导致形成一条项链状的缝隙,而不是在相同应变下合金含量较低的高温合金形成均匀的细晶组织。

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