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Investigation on precision and performance for hot gas forming of thin-walled components of Ti2AlNb-based alloy

机译:Ti2AlNB基合金薄壁组分热气体成型精度和性能研究

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摘要

Ti2AlNb-based alloys have received considerable attention as potential materials to replace the nickel alloy at 600-750 °C, depending on their advantages of high specific strength, good corrosion and oxidation resistance. To realize the precision and performance control for Ti2AlNb-based alloy thin-walled components, the microstructure evolution was analyzed for setting up the unified viscoplastic constitutive equations based on the physical variables and simulating the forming process coupled between the deformation and the microstructure evolution. Through the finite element model with coupling of microstructure and mechanical parameters, the microstructure evolution and shape fabricating can be predicted at the same time, to provide the basis for the process parameters optimization and performance control. With the reasonable process parameters for hot gas forming of Ti2AlNb thin-walled components, the forming precision and performance can be controlled effectively.
机译:基于Ti2AlnB的合金已经获得了相当大的关注,因为潜在的材料在600-750℃下更换镍合金,这取决于它们具有高比强度,良好腐蚀和抗氧化性的优点。为了实现基于Ti2AlNB的合金薄壁组分的精度和性能控制,分析了基于物理变量的统一粘塑组成方程的微观结构演化,并模拟了变形与微观结构演化之间的成形过程。通过具有微观结构和机械参数的耦合的有限元模型,可以同时预测微结构演化和形状,以提供过程参数优化和性能控制的基础。利用Ti2alnb薄壁部件的热气体形成的合理工艺参数,可以有效地控制成形精度和性能。

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