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首页> 外文期刊>Journal of Materials Science >Sintering mechanisms of blended Ti6Al4V powder from diffusion path analysis
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Sintering mechanisms of blended Ti6Al4V powder from diffusion path analysis

机译:基于扩散路径分析的Ti6Al4V混合粉末的烧结机理

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The sintering of master alloy-blended Ti6Al4V powder has been investigated to elucidate the mechanisms of sintering. Both blended powder compacts and diffusion couple samples were investigated using backscattered imaging and energy dispersive analysis to determine the phases present, and the diffusion path for sintering which has not been previously reported for this system. Transient liquid-phase sintering does not occur, and it is shown for the first time that the reason for the rapid sintering of this material in the temperature range of 1000–1150 ℃ is due to enhanced diffusion kinetics resulting from a combination of the concentration gradient and stress induced by a phase transformation in the ternary system. The results of this study have implications for the development of blended master alloy combinations in other powder metallurgy systems.
机译:已经研究了混合母合金Ti6Al4V粉末的烧结过程,以阐明烧结机理。使用反向散射成像和能量色散分析研究了混合粉末压块和扩散对样品,以确定存在的相以及该系统先前尚未报道的烧结扩散路径。不会发生瞬时液相烧结,这首次表明,在1000–1150℃的温度范围内,这种材料进行快速烧结的原因是由于浓度梯度的结合而增强了扩散动力学和由三元体系中的相变引起的应力。这项研究的结果对其他粉末冶金系统中混合母合金组合的开发具有重要意义。

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