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火花等离子烧结碳化铬、碳化钽-碳化铌、碳化钛和碳化钒合金化WC-Co硬质合金的压痕诱导力学行为

Indentation Induced Mechanical Behavior of Spark Plasma Sintered WC-Co Cemented Carbides Alloyed with CrC, TaC-NbC, TiC, and VC.

作者信息

Siwak Piotr

机构信息

Faculty of Mechanical Engineering, Poznan University of Technology, 5 Marii Sklodowskiej-Curie Square, 60-965 Poznan, Poland.

出版信息

Materials (Basel). 2021 Jan 5;14(1):217. doi: 10.3390/ma14010217.

Abstract

The focus of this paper is on examining the mechanical behavior of spark plasma sintered WC-Co based composites doped with CrC, TaC-NbC, TiC, and VC, as well as defining some parameters characterizing deformation and fracture processes during hardness measurement. The calculated microhardness of WC-Co cemented carbides for all the studied compositions is found to be higher than the results obtained during hardness testing. Therefore, the ratio of the experimental and calculated values of microhardness is shown to be an approximate indication of WC-Co cemented carbide sensitivity to damage processes during indentation. Some parameters characterizing the microstructure-microhardness relationship are defined, and the nanomechanical properties of WC-Co cemented carbide phases are examined in order to separate the deformation and fracture processes during the indentation process. Strain gradient linear function parameters are calculated for 10-cycle nanoindentation. It was found that the nanoindentation curve after 10 cycles shows anomalous behavior of the WC grains, which indicates their fracture processes.

摘要

本文的重点是研究掺有CrC、TaC-NbC、TiC和VC的放电等离子烧结WC-Co基复合材料的力学行为,以及确定一些在硬度测量过程中表征变形和断裂过程的参数。发现所有研究成分的WC-Co硬质合金的计算显微硬度高于硬度测试结果。因此,显微硬度的实验值与计算值之比被证明是WC-Co硬质合金在压痕过程中对损伤过程敏感性的近似指标。定义了一些表征微观结构-显微硬度关系的参数,并研究了WC-Co硬质合金相的纳米力学性能,以便区分压痕过程中的变形和断裂过程。计算了10次循环纳米压痕的应变梯度线性函数参数。发现10次循环后的纳米压痕曲线显示WC晶粒有异常行为,这表明了它们的断裂过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/404c/7795657/6649cb9dd6f7/materials-14-00217-g001.jpg

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