首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Fabrication and mechanical properties of WC-10Co cemented carbides with plate-like WC grains
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Fabrication and mechanical properties of WC-10Co cemented carbides with plate-like WC grains

机译:用板状WC晶粒的WC-10CO硬质合金的制造和力学性能

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WC-10Co cemented carbides with plate-like WC grains were fabricated using ultrafine WC as seeds via the reaction among tungsten, cobalt and carbon. The effects of ultrafine WC contents on the microstructural characteristics and mechanical properties were investigated. Because the density of W is higher than that of complex carbide particles (CoxWyCz), some cracks could be existed in the thin flake W particles owing to the volume expansion, bringing about the formation of flake WC nuclei. Some flake WC nuclei aggregates could be seen in the alloys without the addition of ultrafine WC. The addition of ultrafine WC could bring about the gradually disappearance of flake WC nuclei aggregates and accelerate the formation of plate-like WC grains. The high content of plate-like WC could bring about high hardness. Furthermore, the palte-like WC grains could efficiently hinder the propagation of the cracks as the crack path deflection and crack bridging, and inevitably improve the transverse rupture strength. (C) 2019 Elsevier B.V. All rights reserved.
机译:使用超细WC作为种子制备具有板状WC晶粒的WC-10CO硬碳化物,通过钨,钴和碳之间的反应制造。研究了研究超细Wc含量对微观结构特征和机械性能的影响。因为W的密度高于复合碳化物颗粒(CoxWycz)的密度,由于体积膨胀,可以在薄的薄片W颗粒中存在一些裂缝,从而产生薄片Wc核的形成。在没有添加超细Wc的情况下,可以在合金中看到一些鳞片WC核聚集体。加入超细WC可以引起剥落WC核聚集体的逐渐消失,并加速板状WC颗粒的形成。板状WC的高含量可以带来高硬度。此外,Palte样WC晶粒可以有效地阻碍裂缝作为裂纹路径偏转和裂纹桥接的传播,并且不可避免地提高横向断裂强度。 (c)2019 Elsevier B.v.保留所有权利。

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