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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 >Study on rolling of a new near-alpha titanium alloy: Microstructure refinement and dual-scale silicides evolution
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Study on rolling of a new near-alpha titanium alloy: Microstructure refinement and dual-scale silicides evolution

机译:新型近α钛合金轧制研究:微观结构细化与双级硅化物演化

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In this study, a novel near-a titanium alloy sheet with dual-scale silicides was successfully fabricated by rolling in alpha+beta two phase field. The microstructure refinement, dual-scale silicides evolution and their influence on the tensile properties were systematically investigated. The results indicate that the preheating before rolling and the reheating between rolling passes play vital roles in the process of microstructure refinement. Thus, a new microstructure refinement mechanism was proposed considering the heat treatment besides the rolling deformation. The dual-scale silicides exhibit obvious differences in size, shape and distribution. The mean size of large-scale silicides is about 1.58 mu m while the one of small-scale silicides is only 152 nm. The sheet with dual-scale silicides shows an outstanding room temperature tensile strength (1370 MPa) but an ordinary 650 degrees C tensile strength (513 MPa). This is because the strengthening mechanisms can be attributed to the microstructure refinement, dual-scale silicides and the residual substructures at room temperature. At 650 degrees C, however, the matrix softening is dominant due to the directionally arranged alpha/beta microstructure has a low flow resistance at high temperature. (C) 2020 Elsevier B.V. All rights reserved.
机译:在本研究中,通过在α+β两相场中轧制,成功地制备了一种新型的近a钛合金双尺度硅化物板材。系统地研究了显微组织细化、双尺度硅化物演变及其对拉伸性能的影响。结果表明,轧前预热和道次间再加热对组织细化过程起着至关重要的作用。因此,除了考虑轧制变形外,还考虑了热处理,提出了一种新的组织细化机制。双尺度硅化物在尺寸、形状和分布上表现出明显的差异。大规模硅化物的平均尺寸约为1.58μm,而小型硅化物的平均尺寸仅为152 nm。含有双尺度硅化物的板材显示出优异的室温拉伸强度(1370 MPa),但普通650℃拉伸强度(513 MPa)。这是因为室温下的强化机制可归因于显微组织细化、双尺度硅化物和残余亚结构。然而,在650℃时,由于定向排列的α/β微结构在高温下具有低流动阻力,因此基体软化占主导地位。(C) 2020爱思唯尔B.V.版权所有。

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