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Effect of Heat Treatment on Microstructures and Mechanical Properties of a Novel β-Solidifying TiAl Alloy

机译:热处理对新型β-固溶TiAl合金组织和力学性能的影响

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摘要

The effect of heat treatment on the microstructures and mechanical properties of a novel β-solidifying Ti–43Al–2Cr–2Mn–0.2Y alloy was investigated. A fully lamellar (FL) microstructure with a colony size of about 100 μm was obtained by heat treatment at 1320 °C/10 min/furnace cooling (FC). A duplex (DP) microstructure with globular γ grains and γ/α2 lamellae was obtained by heat treatment at 1250 °C/4 h/FC. The residual hard–brittle β0 phase was also eliminated after heat treatment. The mechanical properties of the β-solidifying TiAl alloy depended closely on the heat treatment. The FL alloy had better fracture toughness, and the fracture toughness (KIC) value was 24.15 MPa·m1/2. The DP alloy exhibited better ductility, and the room temperature (RT) elongation of the alloy could reach 1%. The elongation of the alloy with different microstructures sharply increased when the temperature increased from 700 to 750 °C, indicating that the microstructure had no effect on the ductile–brittle transition temperature of the β-solidifying TiAl alloy. The fracture morphologies of different tensile specimens were observed. Interlamellar and translamellar fractures were the main fracture features of the FL alloy. Intergranular, translamellar, and interlamellar fractures were the main fracture features of the DP alloy.
机译:研究了热处理对新型β-凝固Ti–43Al–2Cr–2Mn–0.2Y合金的组织和力学性能的影响。通过在1320°C / 10分钟/炉冷却(FC)处进行热处理,可得到菌落大小约为100μm的全层状(FL)微观结构。通过在1250°C / 4 h / FC下进行热处理,获得了具有球形γ晶粒和γ/α2薄片的双相(DP)微结构。热处理后也消除了残留的脆性β0相。 β凝固TiAl合金的机械性能与热处理密切相关。 FL合金的断裂韧性较好,断裂韧性(KIC)值为24.15 MPa·m 1/2 。 DP合金表现出更好的延展性,合金的室温(RT)伸长率可以达到1%。当温度从700升高到750°C时,具有不同显微组织的合金的伸长率急剧增加,表明该显微组织对β凝固TiAl合金的韧性-脆性转变温度没有影响。观察了不同拉伸试样的断裂形态。层间和跨层骨折是FL合金的主要断裂特征。晶间,层间和层间断裂是DP合金的主要断裂特征。

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