首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The effect of thermo-mechanical processing and ageing time on microstructure and mechanical properties of powder metallurgy near beta titanium alloys
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The effect of thermo-mechanical processing and ageing time on microstructure and mechanical properties of powder metallurgy near beta titanium alloys

机译:热机械加工和老化时间对β钛合金粉末冶金组织和力学性能的影响

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Powder metallurgy near beta Ti-5Al-5Mo-5V-1Cr-1Fe and Ti-5Al-5Mo-5V-2Cr-1Fe ( in wt.%) alloys were investigated to establish the microstructure-mechanical properties relationships during thermomechanical processing and after isothermal ageing. Thermo-mechanical processing included high temperature deformations (900 and 800 degrees C) and soaking (800 degrees C) after solution treatment, whereas ageing was performed at 650 degrees C. The flow behaviour of both alloys at 900 degrees C displayed a short yield drop followed by an increase with strain due to generation of dislocations at grain boundaries. However, a continuous softening was observed after reaching peak stress at 800 degrees C; microstructural features at corresponding temperatures caused such variation. Following the heat treatment, the alloys were characterised using electron microscopy, X-ray diffraction and tensile test. In addition to beta matrix phase, alpha with different morphologies were observed in the aged microstructures. While the highest ultimate tensile strength for Ti-55511 and Ti-55521 are found to be 1298 and 1267 MPa for samples aged 8 h, the maximum ductility for Ti-55511 and Ti-55521 (14 and 15%) are achieved for 1 h aged samples, which still maintained a high strength of 1200 and 1145 MPa, respectively. The good combination of tensile mechanical properties could be attributed to the design of processing schedule with slow heating rate to ageing temperature. The obtained variation in tensile properties of the alloys was associated with the different volume fractions of alpha phase, which is related to Cr content effect. (C) 2017 Elsevier B. V. All rights reserved.
机译:研究粉末冶金接近βTi-5Al-5V-1CR-1Fe和Ti-5Al-5Mo-5V-2Cr-1Fe(以重量%)合金,在热机械加工期间和等温后建立微观结构 - 机械性能关系老化。热机械加工包括高温变形(900和800℃)和溶液处理后浸泡(800℃),而老化在650℃下进行。在900摄氏度下的两种合金的流动性表现出短收率下降随后由于在晶界的脱位产生而增加的菌株增加。然而,在达到800℃的峰值应力后观察到连续软化;相应温度下的微观结构特征引起了这种变化。在热处理之后,使用电子显微镜,X射线衍射和拉伸试验表征合金。除了β基质相之外,在老化的微观结构中观察到具有不同形态的α。虽然Ti-55511和Ti-55521的最高终极拉伸强度为8小时的样品为1298和1267MPa,但为1小时达到Ti-55511和Ti-55521(14和15%)的最大延性老化样品,其分别保持高强度为1200和1145MPa。拉伸力学性能的良好组合可归因于加热速率缓慢的加工时间表的处理时间表。所得合金的拉伸性质的变化与α相的不同体积分数有关,其与Cr含量效应有关。 (c)2017 Elsevier B. V.保留所有权利。

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