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Effect of Microstructure Control on the Mechanical Properties of Hot Worked TiAl Alloy

机译:微观结构控制对热工作Tial合金机械性能的影响

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摘要

The microstructure and mechanical properties of a newly developed, 6-phase containing TiAl alloy have been studied through hot working and post heat treatment to enhance room temperature ductility and strength. The controlled microstructures hadthree types of structure, fully lamellar, nearly lamellar and duplex, and were produced by cyclic heat-treatment in a single a region and (α+γ) region after a hot-forging process in high temperature (α+β) region. As a result of the room temperature tensile test, the fully lamellar structure exhibited a tensile strength of 622 MPa and ductility of 0.62%. The duplex structure had a tensile strength of 787 MPa and ductility of 1.22%, while the nearly lamellar structure showed a tensile strength of 880 MPa and ductility of 1.76%. In the room temperature tensile test, the nearly lamellar structure exhibited excellent tensile strength and ductihty. The strength and ductihty were increased by decreasing grain size and β / B2 phase fraction. The newly developed TiAl alloy showed higher tensile values compared with the previous TiAl alloys. The relationship between microstructure and room temperature tensile properties of the newly developed 6-phase containing TiAl alloy was examined, and the best approach for hot working and post heat-treatment to obtain the most balanced mechanical properties was proposed.
机译:通过热加工和后热处理,研究了一种新开发的含6相TiAl合金的显微组织和力学性能,以提高室温塑性和强度。在高温(α+β)区热锻工艺后,在单个a区和(α+γ)区通过循环热处理获得了完全层状、近层状和双重结构的受控组织。通过室温拉伸试验,全层状结构的拉伸强度为622MPa,延展性为0.62%。双相结构的抗拉强度为787mpa,塑性为1.22%,而近层状结构的抗拉强度为880mpa,塑性为1.76%。在室温拉伸试验中,近层状结构显示出优异的拉伸强度和延展性。通过减小晶粒尺寸和β/B2相含量,可提高强度和延展性。与以前的TiAl合金相比,新开发的TiAl合金显示出更高的拉伸值。研究了新开发的含6相TiAl合金的显微组织与室温拉伸性能之间的关系,提出了获得最平衡力学性能的最佳热加工和后热处理方法。

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