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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Effect of oxygen contents on predominant sintering mechanism during initial stage of pure titanium powder
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Effect of oxygen contents on predominant sintering mechanism during initial stage of pure titanium powder

机译:氧含量对纯钛粉末初始阶段主要烧结机理的影响

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摘要

This study investigates the sintering neck growth behavior of pure titanium powder with different oxygen contents. The growth rate of the sintering neck gradually decreased as the oxygen content increased from 0.06 wt% to 0.50 wt%. At the same time, it was observed that the oxygen in the sintering neck spread to the low oxygen region as the size of the neck increased. A theoretical analysis indicated that surface diffusion is the dominant diffusion mechanism. However, under the hindrance of oxygen in the matrix, both surface diffusion and grain boundary diffusion slow down. Calculating the increase in the self-diffusion activation energy of Ti atoms indicated that oxygen was more resistant to surface diffusion. Predictably, grain boundary diffusion will become the dominant diffusion mechanism in the initial stage of sintering when the oxygen content exceeds 2.628 wt%. (C) 2019 Published by Elsevier B.V.
机译:本研究研究了纯钛粉末用不同氧含量的烧结颈生长行为。 随着氧含量从0.06wt%增加到0.50wt%,烧结颈的生长速率逐渐降低。 同时,观察到烧结颈部中的氧气随着颈部的尺寸而蔓延到低氧区域。 理论分析表明,表面扩散是主要的扩散机制。 然而,在基质中的氧的阻碍下,两个表面扩散和晶界扩散速度下降。 计算Ti原子的自扩散激活能量的增加表明氧气更耐表面扩散。 可预见的是,当氧含量超过2.628wt%时,晶粒边界扩散将成为烧结初始阶段的主导扩散机制。 (c)2019年由elestvier b.v发布。

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