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Effects of shot peening pre-treatment and plasma nitriding parameters on, the structural, mechanical and tribological properties of AISI 4140 low-alloy steel

机译:喷丸预处理和等离子体氮化参数对AISI 4140低合金钢的结构,机械和摩擦学性能的影响

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In recent years, hybrid surface treatments which include plasma nitriding combined with pre-shot peening operations have been proposed for the improvement of nitriding efficiency. The main objective of this study is to characterize the effects of dual process on the friction and wear behavior of metallic materials. For this purpose, AISI 4140 steel samples were shot peened at various densities of 16, 20 and 24 A. The pre-treated samples were plasma nitrided at a temperature of 500 degrees C for 1 and 4 h. The structural and mechanical properties of samples were analyzed by XRD, SEM and microhardness tester. Wear tests were performed under dry sliding conditions to determine the tribological properties of the samples. This study showed that the shot peening treatment formed finer grains, compressive residual stresses on the surface and increased the diffusion kinetics of the samples. The surface hardness and residual stresses increased with increasing shot peening density. It was evidence that the finer grains, increased dislocation density and surface defects increased the case depth obtained from plasma nitriding by enabling easier diffusion of nitrogen. The depth of the diffusion zones in shot peened plus plasma nitrided specimens was found almost two times thicker than that of the diffusion zones in specimens treated only by plasma nitriding. The highest surface hardness values were obtained from pre shot peened and plasma nitrided samples in consequence of the interactive effect from nitride phases/layers and increased surface compressive residual stress. As a result, pre-shot peened plus plasma nitrided samples exhibited higher wear resistance than specimens treated only by shoot peening and hybrid treating in glow a discharge atmosphere.
机译:近年来,已经提出了包括等离子体氮化与预先喷丸的氮化操作结合的混合表面处理,以提高氮化效率。本研究的主要目的是表征双程对金属材料摩擦和磨损行为的影响。为此目的,AISI 4140钢样品在16,20和24A的各种密度下喷丸喷射。预处理的样品在500℃的温度下氮化剂1和4小时。通过XRD,SEM和微硬度测试仪分析样品的结构和机械性能。在干燥滑动条件下进行磨损试验,以确定样品的摩擦学性质。这项研究表明,喷丸治疗形成细粒,表面上的压缩残余应力并增加了样品的扩散动力学。随着喷丸密度的增加,表面硬度和残余应力增加。证据表明,通过使氮气变得更容易地,更细粒粒度,增加的位错密度和表面缺陷增加了从等离子体氮化获得的情况深度。散发喷丸加等离子体氮化样品的扩散区的深度几乎比仅通过等离子体氮化处理的样本中的扩散区厚的两倍差。从预喷丸和等离子体氮化样品中的选自氮化相/层和增加的表面压缩残余应力的互动效应结果得到最高的表面硬度值。结果,预先喷射的Peened Plus等离子体氮化样品表现出比仅通过射击喷丸和杂种处理所处理的样本更高的耐磨性。

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