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Investigation and characterization of Cr3C2-based wear-resistant coatings applied by the cold spray process

机译:Cr3 C2 基冷喷涂涂层耐磨涂层的研究与表征

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The purpose of this study was to explore the potential of the cold spray (CS) process in applying Cr3C2-25wt.%NiCr and Cr3C2-25wt%Ni coatings on 4140 alloy for wear-resistant applications. This article discusses the improvements in Cr3C2-based coating properties and microstructure through changes in nozzle design, powder characteristics stand off distance, powder feed rate, and traverse speed that resulted in an improved average Vickers hardness number comparable to some thermal spray processes. Cold spray process optimization of the Cr3C2-based coatings resulted in increased hardness and improved wear characteristics with lower friction coefficients. The improvement in hardness is directly associated with higher particle velocities and increased densities of the Cr3C2-based coatings deposited on 4140 alloy at ambient temperature. Selective coatings were evaluated using x-ray diffraction for phase analysis, optical microscopy (OM). and scanning electron microscopy (SEM) for microstructural evaluation, and ball-on-disk tribology experiments for friction coefficient and wear determination. The presented results strongly suggest that cold, spray is a versatile coating technique capable of tailoring the hardness of Cr3C2-based wear-resistant coatings on temperature sensitive substrates.
机译:这项研究的目的是探讨冷喷涂(CS)工艺在应用Cr3 C2 -25wt。%NiCr和Cr3 C2 -25wt%Ni的潜力用于耐磨应用的4140合金上的涂层。本文讨论了通过改变喷嘴设计,粉末特性脱开距离,粉末进给速率和移动速度,从而改善了平均维氏硬度值,改善了基于Cr3 C2 的涂层性能和显微组织。与某些热喷涂工艺相当。 Cr3 C2 基涂层的冷喷涂工艺优化可提高硬度并改善耐磨性,同时降低摩擦系数。硬度的提高与较高的颗粒速度和在环境温度下沉积在4140合金上的Cr3 C2 基涂层的密度增加直接相关。使用x射线衍射进行相分析,光学显微镜(OM)评估选择性涂层。扫描电子显微镜(SEM)进行微观结构评估,以及圆盘摩擦学实验来确定摩擦系数和磨损。提出的结果强烈表明,冷喷涂是一种通用的涂层技术,能够调整温度敏感基材上Cr3 C2 基耐磨涂层的硬度。

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