Aleksandrov Fabijanić Tamara, Šnajdar Mateja, Kurtela Marin, Šimunović Vedran, Marciuš Marijan, Klaić Miho
Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb, Ivana Lučića 5, 10000 Zagreb, Croatia.
Department of Polytechnics, University of Rijeka, Sveučilišna Av 4, 51000 Rijeka, Croatia.
Nanomaterials (Basel). 2023 Apr 19;13(8):1407. doi: 10.3390/nano13081407.
Nanostructured cemented carbides with Co binders have shown excellent mechanical properties in various applications. Nevertheless, their corrosion resistance has shown to be insufficient in different corrosive environments, leading to premature tool failure. In this study, WC-based cemented carbide samples with different binders were produced using 9 wt% of FeNi or FeNiCo with the addition of CrC and NbC as the grain growth inhibitors. The samples were investigated using electrochemical corrosion techniques: the open circuit potential , the linear polarization resistance (LPR), the Tafel extrapolation method, and the electrochemical impedance spectroscopy (EIS) at room temperature in the solution of 3.5% NaCl. Microstructure characterization, surface texture analysis, and instrumented indentation were conducted to investigate the influence of corrosion on the micro-mechanical properties and the surface characteristics of the samples before and after corrosion. The obtained results indicate a strong binder chemical composition's effect on the consolidated materials' corrosive behavior. Compared to the conventional WC-Co systems, a significantly improved corrosion resistance was observed for both alternative binder systems. The study shows that the samples with the FeNi binder are superior to those with the FeNiCo binder since they were almost unaffected when exposed to the acidic medium.
含有钴粘结剂的纳米结构硬质合金在各种应用中都表现出优异的机械性能。然而,它们在不同的腐蚀环境中的耐腐蚀性已被证明是不足的,这会导致刀具过早失效。在本研究中,使用9 wt%的FeNi或FeNiCo,并添加CrC和NbC作为晶粒生长抑制剂,制备了具有不同粘结剂的WC基金属陶瓷样品。在室温下,于3.5% NaCl溶液中,采用电化学腐蚀技术对样品进行了研究:开路电位、线性极化电阻(LPR)、塔菲尔外推法和电化学阻抗谱(EIS)。进行了微观结构表征、表面纹理分析和仪器化压痕测试,以研究腐蚀对样品腐蚀前后微观力学性能和表面特性的影响。所得结果表明粘结剂化学成分对固结材料的腐蚀行为有很大影响。与传统的WC-Co体系相比,两种替代粘结剂体系的耐腐蚀性均有显著提高。研究表明,含FeNi粘结剂的样品优于含FeNiCo粘结剂的样品,因为它们在暴露于酸性介质时几乎不受影响。