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CrC和VC含量对WC-6.0 wt.% Co硬质合金中WC晶粒尺寸、WC形状及力学性能的影响

Influence of CrC and VC Content on WC Grain Size, WC Shape and Mechanical Properties of WC-6.0 wt. % Co Cemented Carbides.

作者信息

Yin Chao, Peng Yingbiao, Ruan Jianming, Zhao Lin, Zhang Ren, Du Yong

机构信息

State Key Laboratory for Powder Metallurgy, Central South University, Changsha 410083, China.

State Key Laboratory of Cemented Carbide, Zhuzhou Cemented Carbide Group Co., LTD., Zhuzhou 412000, China.

出版信息

Materials (Basel). 2021 Mar 22;14(6):1551. doi: 10.3390/ma14061551.

Abstract

In this paper, the influences of CrC/VC content on WC grain size, WC grain shape and mechanical properties of WC-6 wt. % Co cemented carbides were investigated. The results showed that the grain size first rapidly decreased and then slightly decreased with the increasing CrC/VC content, and VC led to finer grain size and narrower size distribution. HRTEM/EDS analysis of the WC/Co interface indicates that the segregation concentration of V is much larger than that of Cr, which may be a strong response to the higher inhibition efficiency of VC. The addition of CrC induced triangular prism shape WC grains while VC generated stepped triangular prism grains. Despite the grain growth inhibitor (GGI) mechanisms of CrC/VC have been extensively studied in the literature, the doping amount, especially the doping limit, has not been systematically investigated. In this work, the saturated solubilities of Cr and V in cobalt binder phase along with carbon content hare been predicted based on thermodynamic calculations. Based on the theoretical calculations, the doping amount of CrC/VC is designed to be gradually increasing until more or less over their maximum solubilities in the binder phase, thereby investigating the subsequent microstructure and mechanical properties. When the doping of CrC/VC exceeds the maximum solubility in Co phase, Co-rich Cr-carbides and Co-deficient V-carbides would form respectively, which were detrimental to the transverse rupture strength (TRS) and impact toughness. The hardness increased with the increasing CrC/VC content, while the fracture toughness decreased with the increasing CrC/VC content. The TRS initially enhanced and then declined, but the stepped triangular prism shape grains and low fraction of WC/Co interface in WC-6Co-VC cemented carbide led to a more pronounced decline in the TRS. The sample with 0.6 wt. % CrC addition had good comprehensive mechanical properties, its hardness, fracture toughness and TRS were 1880 kg/mm, 9.32 MPa·m and 3450 MPa, respectively.

摘要

本文研究了CrC/VC含量对WC-6 wt.% Co硬质合金中WC晶粒尺寸、WC晶粒形状和力学性能的影响。结果表明,随着CrC/VC含量的增加,晶粒尺寸先迅速减小,然后略有减小,且VC导致更细的晶粒尺寸和更窄的尺寸分布。WC/Co界面的高分辨透射电子显微镜/能谱分析表明,V的偏析浓度远大于Cr,这可能是对VC更高抑制效率的强烈响应。CrC的添加导致WC晶粒呈三棱柱形状,而VC生成阶梯状三棱柱晶粒。尽管文献中已对CrC/VC的晶粒生长抑制剂(GGI)机制进行了广泛研究,但掺杂量,尤其是掺杂极限,尚未得到系统研究。在本工作中,基于热力学计算预测了Cr和V在钴粘结相中以及碳含量的饱和溶解度。基于理论计算,将CrC/VC的掺杂量设计为逐渐增加,直至或多或少超过它们在粘结相中的最大溶解度,从而研究随后的微观结构和力学性能。当CrC/VC的掺杂超过在Co相中的最大溶解度时,将分别形成富Co的Cr碳化物和贫Co的V碳化物,这对横向断裂强度(TRS)和冲击韧性不利。硬度随CrC/VC含量的增加而增加,而断裂韧性随CrC/VC含量的增加而降低。TRS最初增强,然后下降,但WC-6Co-VC硬质合金中阶梯状三棱柱形状的晶粒和WC/Co界面的低比例导致TRS下降更为明显。添加0.6 wt.% CrC的样品具有良好的综合力学性能,其硬度、断裂韧性和TRS分别为1880 kg/mm、9.32 MPa·m和3450 MPa。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ff5/8004746/b4bf931b82d7/materials-14-01551-g001.jpg

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