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High-temperature Deformation Characteristics of Sintered Ti-6Al-4V Alloy Produced by Blended Elemental Method

机译:混合元素法制备的Ti-6Al-4V烧结合金的高温变形特性

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The high temperature deformation characteristics of sintered Ti-6Al-4V alloy were investigated using specimens produced by the process of blending of extra-low-chlorine Ti and 60mass percent Al-40mass percent V master alloy powders, CIP and vacuum sintering. Hot compression tests were carried out using Formaster test machine at the temperatures ranging from 1123 to 1323K and at the strain rates from 1x10~(-3) to 5.8x 10~1s~(-1).Cracks are formed more easily in the specimens with lower relative density and at the higher reduction ratio. At the temperatures in the single #beta# phase region, the crack formation becomes more easy at the higher strain rates. On the other hand, higher strain rates rather suppress crack formation at the temperatures in the #alpha#+#beta# two phase region. The flow stress, deformation temperature and strain rate can be correlated with Zenner-Hollomon parameter, and the activation energy for deformation is higher than the previously reported value which was obtained using wrought material. Hot deformation converts the coarse microstructures in the as-sintered specimens to refined ones, which are believed to exhibit excellent mechanical properties.
机译:利用超低氯Ti和60质量%Al-40质量%V中间合金粉末的混合,CIP和真空烧结工艺制备的试样,研究了Ti-6Al-4V烧结合金的高温变形特性。使用Formaster试验机在1123至1323K的温度范围内以及在1x10〜(-3)至5.8x 10〜1s〜(-1)的应变速率下进行热压缩测试。在试样中更容易形成裂纹具有较低的相对密度和较高的还原比。在单一的#beta#相区域中的温度下,在较高的应变速率下,裂纹的形成变得更加容易。另一方面,较高的应变速率宁可抑制在#alpha#+#beta#两相区域中的温度下的裂纹形成。流动应力,变形温度和应变率可以与Zenner-Hollomon参数相关,并且变形的活化能高于以前使用锻造材料获得的报道值。热变形将烧结后的试样中的粗组织转变为精制的组织,据信它们具有出色的机械性能。

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