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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Dilatometric Analysis and Microstructural Investigation of the Sintering Mechanisms of Blended Elemental Ti-6Al-4V Powders
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Dilatometric Analysis and Microstructural Investigation of the Sintering Mechanisms of Blended Elemental Ti-6Al-4V Powders

机译:混合元素Ti-6Al-4V粉末的烧结机理的测径分析和显微组织研究

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摘要

The densification behavior of mixed Ti and Al/V master alloy powders for Ti-6Al-4V was investigated by a series of dilatometry tests to measure the shrinkage of the samples with the sintering temperature. The corresponding microstructural changes were examined under various sintering conditions with optical microscopy, energy-dispersive spectroscopy, and X-ray diffraction analyses. From these results, the consolidation of the mixed powders was divided into two domains: (i) sintering densification and solute homogenization of Ti and Al/V master alloy particles below 1293 K (1020 A degrees C), and (ii) densification of Ti alloy phases above 1293 K (1020 A degrees C). In the lower temperature region, the inter-diffusion between Ti and Al/V master alloy particles dominated the sintering of the mixed powders because the chemical gradient between two types of particles outweighed the surface energy reduction. Following chemical homogenization, the densification induced the shrinkage of the Ti alloy phases to reduce their surface energies. These tendencies are also supported by the density and grain size variations of the sintered specimens with temperature. The apparent activation energies of the sintering and grain growth for Ti alloy particles are 85.91 +/- 6.93 and 37.33 kJ/mol, respectively, similar to or slightly lower than those of pure Ti particles. The difference was attributed to the slower self-diffusion of Ti resulting from the alloying of Al and V into in the Ti matrix.
机译:通过一系列的膨胀试验,研究了混合Ti和Al / V中间合金粉末对Ti-6Al-4V的致密化行为,以测量样品在烧结温度下的收缩率。在各种烧结条件下,通过光学显微镜,能量分散光谱和X射线衍射分析检查了相应的显微组织变化。根据这些结果,将混合粉末的固结分为两个区域:(i)低于1293 K(1020 A摄氏度)的Ti和Al / V中间合金颗粒的烧结致密化和溶质均质化;以及(ii)Ti致密化合金相超过1293 K(1020 A摄氏度)。在较低温度区域,Ti和Al / V中间合金颗粒之间的相互扩散控制了混合粉末的烧结,因为两种类型颗粒之间的化学梯度大于表面能的降低。在化学均质化之后,致密化引起了钛合金相的收缩,以降低其表面能。这些趋势还受到烧结样品的密度和晶粒尺寸随温度变化的支持。 Ti合金颗粒的烧结和晶粒长大的表观活化能分别为85.91 +/- 6.93和37.33 kJ / mol,与纯Ti颗粒的活化能相近或略低。差异归因于Al和V合金化到Ti基体中导致的Ti自扩散较慢。

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