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Microstructures and Mechanical Properties of a New Type of High Temperature Titanium Alloy

机译:一种新型高温钛合金的微观结构和力学性能

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The microstructures and mechanical properties of a new type near a high temperature titanium alloy Ti-6.5Al-2.5Sn-9Zr-0.5Mo-0.25Si-lNb-lW-0.3Re (wt. %) (denoted as TA6.5) were investigated. It was observed that the microstructure of forged TA6.5 mainly consisted of deformed lamellar a phase, small amount of equiaxed a phase, and residual β phase, exhibiting high strength and comparatively low elongation. Three different heat treatments processes were performed on forged TA6.5. The results showed that all heat treated alloys displayed high tensile strengths, and the values of strength parameters were almost unchanged with the increasing solution temperature, ascribing to the combination effects of decreasing primary a phase and increasing contents and widths of secondary a phase and lamellas. The tensile elongations of heat treated alloys tested at 650 °C decreased slightly with the increasing solution temperature, which is due to the increased width of secondary a lamellas and the generation of coarse grain boundary a phase. TA6.5 treated in the process of 990 °C/l h/AC+700 °C/4 h/AC exhibited excellent comprehensive mechanical properties, i.e. the ultimate tensile strength of 829 MPa, yield strength of 707 MPa and elongation of 18.73% respectively.
机译:在高温钛合金Ti-6.5A-2.5Sn-9ZR-0.5MO-0.25SI-LNB-LW-0.3re(WT.%)附近的新型微观结构和力学性能(表示为TA6.5)调查。观察到锻造Ta6.5的微观结构主要由变形的层状片,少量等轴的相和残留β相,表现出高强度和相对低的伸长率。在锻造TA6.5进行三种不同的热处理方法。结果表明,随着溶液温度的增加,强度参数的值几乎不变,强度参数的值几乎保持不变,归因于降低初级相和增加二次相和薄片的含量和宽度的组合效果。在650℃下测试的热处理合金的拉伸伸长率略微下降,溶液温度的增加,这是由于次级薄片的宽度增加以及粗晶边界的产生。在990°C / LH / AC + 700℃/ 4 H / AC处理的过程中处理过的综合力学性能优异,即829MPa的最终拉伸强度,屈服强度分别为707MPa,分别为18.73% 。

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