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Spark plasma sintering of pure tungsten powder: Densification kinetics and grain growth

机译:纯钨粉的火花血浆烧结:致密化动力学和谷物生长

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The densification kinetics and grain growth behavior of an undoped tungsten powder during spark plasma sintering (SPS) were investigated under the pressure of 40 MPa and constant heating rate of 100 degrees C min(-1). Two stages of the sintering process were clearly identified: densification without grain growth at the low temperatures (1200-1450 degrees C) and grain growth without much further densification at higher temperatures (1500-2000 degrees C). A creep model was applied to determine the densification mechanisms involved in the densification stage, which can be elucidated by evaluating the stress exponent (n) and the apparent activation energy (Q(d)) from the densification rate law. It shows that a boundary diffusion governs the densification process at low effective compaction stresses (n = 1.5, Q(d) = 14057 +/- 12 kJ mol(-1)), while grain boundary diffusion and dislocation motion both operate at higher effective compaction stresses (n = 3, Q(d) = 302.48 +/- 24 kJ mol(-1)), which is confirmed by transmission electron microscopy observation. During the final-stage of sintering, the fast grain growth mechanism was suggested as surface diffusion. (C) 2017 Elsevier B.V. All rights reserved.
机译:在40MPa的压力下研究了在火花血浆烧结期间(SPS)期间未掺杂的钨粉的致密化动力学和晶粒生长行为,恒定加热速率为100℃min(-1)。清楚地鉴定了烧结过程的两个阶段:致密化而不在低温下(1200-1450℃)和晶粒生长,在较高温度下(1500-2000℃)的晶粒生长而没有更大的致密化。应用蠕变模型以确定致密化阶段涉及的致密化机制,可以通过评估来自致密化率法的应力指数(n)和表观活化能量(Q(d))来阐明。结果表明,边界扩散在低有效压实应力下控制致密化过程(n = 1.5,q(d)= 14057 +/- 12 kJ mol(-1)),而晶界扩散和位错运动均在更高的效率下运行压实应力(n = 3,q(d)= 302.48 +/- 24 kJ mol(-1)),其通过透射电子显微镜观察证实。在烧结的最后阶段,建议快速晶粒生长机制作为表面扩散。 (c)2017 Elsevier B.v.保留所有权利。

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