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Titanium carbide/duplex stainless steel (DSS) metal matrix composite coatings prepared by the plasma transferred arc (PTA) technique: microstructure and wear properties

机译:通过等离子转移弧(PTA)技术制备的碳化钛/双相不锈钢(DSS)金属基复合涂层:组织和耐磨性能

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摘要

The present investigation focuses on the microstructure and the tribological properties of TiC/ steel composite coatings obtained on 2205 duplex stainless steel (DSS) substrate, by using the plasma transferred arc technique. Two different plasma and shielding gas mixtures have been used, namely (a) 100% Ar and (b) 95% Ar + 5%N_2. The coatings obtained are defect-free and their thickness is 1.50 ± 0.05 mm. Both coatings consist of a dispersion of TiC_xN_y particles, with a volume fraction of about 18-22%, in an austenite-ferrite matrix. The austenite-to-ferrite volume fraction is 35/65% for the Ar coatings and it is found to increase to 40/60%, when nitrogen is used in the plasma and shielding gas. The hardness of the composite coatings is improved significantly (630-650HV on average) compared to the hardness of the substrate (250HV). The friction coefficient produced against an Al_2O_3 counterbody has decreased considerably to 0.2-0.3 from 0.5 for the 2205/Al_2O_3 pair and the wear rate was reduced at least by one order of magnitude with respect to the value of the 2205 DSS substrate.
机译:本研究着重于通过等离子转移电弧技术在2205双相不锈钢(DSS)基体上获得的TiC /钢复合涂层的微观结构和摩擦学性能。已经使用了两种不同的等离子体和保护气体混合物,即(a)100%Ar和(b)95%Ar + 5%N_2。获得的涂层无缺陷,其厚度为1.50±0.05毫米。两种涂层均由在奥氏体-铁素体基体中的体积分数约为18-22%的TiC_xN_y颗粒分散体组成。对于Ar涂层,奥氏体与铁素体的体积分数为35/65%,当在等离子和保护气体中使用氮气时,发现其增加到40/60%。与基材的硬度(250HV)相比,复合涂层的硬度得到了显着提高(平均630-650HV)。相对于2205 / Al_2O_3对,与Al_2O_3配体产生的摩擦系数已从0.5显着降低至0.2-0.3,并且相对于2205 DSS基板的值,磨损率至少降低了一个数量级。

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