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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure evolution during isothermal forging and subsequent heat treatment of Ti-17 alloy with a lamellar colony structure
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Microstructure evolution during isothermal forging and subsequent heat treatment of Ti-17 alloy with a lamellar colony structure

机译:具有层状菌落结构的Ti-17合金的等温锻造及后续热处理过程中的微观组织演变

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The effect of isothermal forging and subsequent heat treatment on microstructure evolution was investigated for Ti-17 alloy with a lamellar colony structure. For this purpose, Ti-17 alloy was isothermally forged at 820 degrees C or 860 degrees C and subsequently heat treated for times ranging from 10 min to 8 h. The principal features of microstructure evolution were found to be strain and temperature dependent. Microstructure evolution during deformation included the rotation of alpha lamellae toward the metal flow direction. The orientation distribution of alpha lamellae changed from the two symmetrical peaks to the single one with the increasing strain. The angle (theta) in the single peak position was about 90 degrees. Additionally, length of the lamellar alpha decreased with strain and deformation temperature. Thickness of the lamellar alpha increased with deformation temperature but was independent on strain. During heat treatment, microstructure observations suggested that the process of evolution can be divided into two stages. The first included segmentation of the lamellae in the initial stage of heat treatment, whereas microstructure coarsening characterized the second one during prolonged heat treatment. Furthermore, the segmentation and coarsening processes could be accelerated by the increasing prestrain and temperature. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了具有片状菌落结构的Ti-17合金的等温锻造和后续热处理对组织演变的影响。为此,将Ti-17合金在820摄氏度或860摄氏度下等温锻造,然后热处理10分钟至8小时。发现微观结构演变的主要特征是应变和温度相关的。变形过程中的微观结构演变包括α薄片向金属流动方向的旋转。随着应变的增加,α片晶的取向分布从两个对称峰变为单个峰。单峰位置的角度θ约为90度。另外,层状α的长度随着应变和变形温度而减小。层状α的厚度随变形温度而增加,但与应变无关。在热处理过程中,微观结构观察表明,演化过程可以分为两个阶段。第一个过程是在热处理的初始阶段对薄片进行分段,而微观结构的粗化则是延长热处理过程中的第二个。此外,可以通过增加预应变和温度来加速分段和粗化过程。 (C)2015 Elsevier B.V.保留所有权利。

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