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Effect of Multi-Directional Forging on the Microstructure and Mechanical Properties of β-Solidifying TiAl Alloy

机译:多向锻造对β-凝固TiAl合金组织和力学性能的影响

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摘要

This study systematically investigated the influence of multi-directional forging (MDF) on the microstructural evolution, hot deformation behavior, and tensile properties of a β-solidifying TiAl alloy. The initial lamellar microstructure of an as-cast alloy was remarkably refined and homogenized by three-step MDF. High temperatures and multi-pass deformations were conducive to the decomposition of lamellae. A crack-free billet was obtained through three-step MDF, with a deformation temperature of 1250 °C and a forging speed of 0.1 mm/s, indicating that MDF can be applied to β-solidifying TiAl alloys by the proper control of the alloy composition and process parameters. Microstructural observation showed that the billet mainly consists of fine and equiaxed γ grains and a small amount of β phase. The tensile properties of the multi-directional forged alloy were also significantly improved, due to microstructure refinement. The ultimate tensile strength (UTS) and elongation (δ) at room temperature were 689.4 MPa, and 0.83%, respectively. The alloy exhibits excellent ductility at 700 °C. When the temperature was increased to 700 °C, the UTS decreased to 556 MPa and δ increased to 5.98%, indicating that the alloy exhibits excellent ductility at 700 °C. As the temperature further increased to 750 °C, δ dramatically increased to 46.65%, indicating that the ductile-brittle transition temperature of the alloy is between 700 °C and 750 °C.
机译:这项研究系统地研究了多方向锻造(MDF)对β凝固TiAl合金的组织演变,热变形行为和拉伸性能的影响。铸态合金的初始层状微观结构通过三步MDF显着改善和均质化。高温和多次通过变形有利于薄片的分解。通过三步MDF获得无裂纹的坯料,变形温度为1250°C,锻造速度为0.1 mm / s,表明通过适当控制合金,MDF可以应用于β凝固TiAl合金组成和工艺参数。显微组织观察表明,该坯料主要由细小且等轴的γ晶粒和少量的β相组成。由于微结构的细化,多方向锻造合金的拉伸性能也得到了显着改善。室温下的极限抗拉强度(UTS)和伸长率(δ)分别为689.4 MPa和0.83%。该合金在700°C时具有出色的延展性。当温度升至700°C时,UTS降至556 MPa,δ升高至5.98%,表明该合金在700°C时具有出色的延展性。随着温度进一步升高到750°C,δ急剧增加到46.65%,表明合金的韧性-脆性转变温度在700°C和750°C之间。

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