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The Effect of Heat Treatment on the Microstructure and Mechanical Properties of the Novel Low-Cost Ti-3Al-5Mo-4Cr-2Zr-1Fe Alloy

机译:热处理对新型低成本Ti-3Al-5MO-4CR-2ZR-1FE合金微观结构和力学性能的影响

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摘要

In order to reduce the cost of titanium alloys, a novel low-cost Ti-3Al-5Mo-4Cr-2Zr-1Fe (Ti-35421) titanium alloy was developed. The influence of heat treatment on the microstructure characteristics and mechanical properties of the new alloy was investigated. The results showed that the microstructure of Ti-35421 alloy consists of a lamina primary α phase and a β phase after the solution treatment at the α + β region. After aging treatment, the secondary α phase precipitates in the β matrix. The precipitation of the secondary α phase is closely related to heat treatment parameters—the volume fraction and size of the secondary α phase increase when increasing the solution temperature or aging time. At the same solution temperature and aging time, the secondary α phase became coarser, and the fraction decreased with increasing aging temperature. When Ti-35421 alloy was solution-treated at the α + β region for 1 h with aging surpassing 8 h, the tensile strength, yield strength, elongation and reduction of the area were achieved in a range of 1172.7–1459.0 MPa, 1135.1–1355.5 MPa, 5.2–11.8%, and 7.5–32.5%, respectively. The novel low-cost Ti-35421 alloy maintains mechanical properties and reduces the cost of materials compared with Ti-3Al-5Mo-5V-4Cr-2Zr (Ti-B19) alloy.
机译:为了降低钛合金的成本,开发了一种新型的低成本Ti-3Al-5MO-4CR-2ZR-1FE(TI-35421)钛合金。研究了对新合金的微观结构特性和机械性能的热处理对新合金的影响。结果表明,的Ti-35421合金的微结构由一薄层初生α相,并在α+β区域的溶液处理之后β相。在衰老处理后,次级α相沉淀在β基质中。次级α相的沉淀与热处理参数密切相关 - 当增加溶液温度或老化时间时,次级α相位增加的体积分数和大小。在相同的溶液温度和老化时间下,次级α相变得粗糙,并且随着老化温度的增加而降低。当Ti-35421合金在α+β区域溶液处理1小时时,衰老超过8小时,抗拉强度,屈服强度,伸长和该面积的减少在1172.7-1459.0MPa,1135.1- 1355.5 MPA,5.2-11.8%,分别为7.5-32.5%。与Ti-3AL-5MO-5V-4CR-2ZR(TI-B19)合金相比,新型低成本Ti-35421合金保持机械性能并降低了材料的成本。

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