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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >A kinetic model for cobalt gradient formation during liquid phase sintering of functionally graded WC-Co
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A kinetic model for cobalt gradient formation during liquid phase sintering of functionally graded WC-Co

机译:功能梯度WC-Co液相烧结过程中钴梯度形成的动力学模型

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摘要

Functionally graded WC-Co composites offer solutions to the trade-off between wear resistance and fracture toughness in WC-Co composites. Although liquid phase sintering is the most economical and viable method for producing WC-Co parts, the main challenge in fabricating a functionally graded WC-Co composite using liquid phase sintering is that the cobalt content homogenizes across the layers resulting in a sintered part with a uniform cobalt content. However, a cobalt gradient can be established after sintering by introducing an initial gradient in carbon within a WC-Co bi-layer prior to sintering. In this paper, a kinetic model is used to describe the graded microstructure as a function of sintering time and temperature as well as other factors including the volume fraction of Co_3W_3C (eta) phase, liquid migration pressure and carbon content. The model predicts that the rate of the increase of the thickness of the WC-Co product layer with respect to the sintering time reduces with the volume fraction of eta phase. This is attributed to the effect of the phase reactions between the carbon and eta phase. A good agreement is observed between the model and experimental results.
机译:功能分级的WC-Co复合材料为WC-Co复合材料的耐磨性和断裂韧性之间的折衷提供了解决方案。尽管液相烧结是生产WC-Co零件的最经济,最可行的方法,但使用液相烧结制造功能梯度的WC-Co复合材料的主要挑战是钴含量在各层之间均质化,导致烧结零件具有钴含量均匀。但是,在烧结后,可以通过在烧结前在WC-Co双层碳中引入碳中的初始梯度来建立钴梯度。在本文中,使用动力学模型来描述分级的微结构,该结构是烧结时间和温度以及其他因素的函数,其中包括Co_3W_3C(η)相的体积分数,液体迁移压力和碳含量。该模型预测,相对于烧结时间,WC-Co产物层厚度的增加速率随eta相的体积分数而降低。这归因于碳和η相之间的相反应的影响。在模型和实验结果之间观察到良好的一致性。

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