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Analytical modeling to calculate the hardness of ultra-fine WC-Co cemented carbides

机译:计算模型以计算超细WC-Co硬质合金的硬度

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An analytical model to calculate the hardness of ultra-fine WC-10Co cemented carbides was investigated. The nanocrystalline WC-10Co powders were manufactured using a spray conversion process and sintered at 1375℃ in a vacuum. Varying amounts of TaC, Cr_3C_2, and VC were added to nanocrystalline WC-10Co cemented carbides as grain growth inhibitors. The hardness of WC-10Co cemented carbides increased with a decreasing WC grain size from 5 μm to 300 nm. An analytical model to calculate the hardness of WC-10Co cemented carbides was proposed under the assumption that the applied load is transferred from the WC to the Co binder phase. The analytically calculated hardness showed good agreement with the experimentally measured hardness of WC-10Co cemented carbides. In the proposed analytical model, the hardness of WC-10Co cemented carbides is similar to that predicted by the Hall-Petch relationship when the WC grain size is large. However, when the grain size is finer than a critical value, the predicted hardness of the WC-10Co cemented carbide becomes saturated.
机译:研究了计算超细WC-10Co硬质合金硬度的解析模型。纳米晶WC-10Co粉末是采用喷雾转化法制备的,并在1375℃下真空烧结。将不同量的TaC,Cr_3C_2和VC添加到纳米晶WC-10Co硬质合金中作为晶粒长大抑制剂。 WC-10Co硬质合金的硬度随着WC晶粒尺寸从5μm减小到300 nm而增加。在施加的载荷从WC转移到Co粘结相的假设下,提出了用于计算WC-10Co硬质合金硬度的分析模型。分析计算的硬度与WC-10Co硬质合金的实验测量硬度显示出良好的一致性。在所提出的分析模型中,当WC晶粒尺寸较大时,WC-10Co硬质合金的硬度类似于通过Hall-Petch关系预测的硬度。但是,当晶粒尺寸小于临界值时,WC-10Co硬质合金的预测硬度达到饱和。

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