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首页> 外文期刊>Materials Science >Optimization of the Arc Spraying Process Parameters of the Fe–Base Mn-Si-Cr-Mo-Ni Coatings for the Best Wear Performance
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Optimization of the Arc Spraying Process Parameters of the Fe–Base Mn-Si-Cr-Mo-Ni Coatings for the Best Wear Performance

机译:为了获得最佳磨损性能,对Fe基Mn-Si-Cr-Mo-Ni涂层的电弧喷涂工艺参数进行优化

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In this paper, the use of Fe–base Mn-Si-Cr-Mo-Ni and Fe–base Mn-Si-Cr wires for thermal arc spraying is presented. For this purpose the mechanical and physical properties of coatings were evaluated. The quality of the coating’s was dependent on the selected equipment, spray materials, technological parameters of the spray and spray technology. The aim was to qualify and optimize the parameters for spray coating to get the best coatings properties with good tribological properties. All coatings were deposited on mild steel S235JR substrates. Two experimental cored wires of unique chemical composition – STEIN-MESYFIL 932?V and STEIN-MESYFIL 954?V – were used for thermal arc spraying. The wires of 1.6?mm diameter were used for the surfacing material. Hardness, porosity and oxide measurements were used to verify the spray parameters and analyze the coatings. Rubber wheel test, which is based on the standard ASTM?G65, was used. Dry-sand, rubber-wheel procedure according ASTM G65 was used to investigate low stress abrasion, whereas for high stress abrasion investigations a rubber wheel was used. This experiment was carried out by changing the speed of disc friction, travel distance and measuring the mass loss of surface friction. Miller Test according to ASTM G75-95 Standard was carried out in experiment with friction. The samples were immersed in water with corundum and polished with 22?N load, for 8 hours. Furthermore a correlation was performed between the spraying current and voltage parameter. The coatings’ cross sections were examined using scanning electron microscope (SEM) and optical microscopy. The influence of the composite components of the coatings’ microstructure, such as porosity, microhardness, oxide inclusions, on the tribological properties of thermal sprayed coatings is discussed in this paper.
机译:在本文中,介绍了使用Fe基Mn-Si-Cr-Mo-Ni和Fe基Mn-Si-Cr丝进行热电弧喷涂。为此,评估了涂层的机械和物理性能。涂层的质量取决于所选设备,喷涂材料,喷涂技术参数和喷涂技术。目的是确定和优化喷涂参数,以获得具有良好摩擦性能的最佳涂层性能。所有涂层均沉积在低碳钢S235JR基材上。两种具有独特化学成分的实验性芯线-STEIN-MESYFIL 932?V和STEIN-MESYFIL 954?V –用于热电弧喷涂。使用直径为1.6?mm的线作为表面材料。使用硬度,孔隙率和氧化物测量值来验证喷涂参数并分析涂层。使用基于标准ASTM?G65的橡胶轮测试。根据ASTM G65的干砂橡胶轮程序用于研究低应力磨损,而对于高应力磨损研究,则使用橡胶轮。通过改变盘式摩擦的速度,行进距离并测量表面摩擦的质量损失来进行该实验。在摩擦实验中根据ASTM G75-95标准进行了米勒测试。将样品浸入刚玉刚玉的水中,并在22?N的载荷下抛光8小时。此外,在喷涂电流和电压参数之间进行了相关。使用扫描电子显微镜(SEM)和光学显微镜检查涂层的横截面。本文讨论了涂层微观结构的复合成分(如孔隙率,显微硬度,氧化物夹杂物)对热喷涂涂层的摩擦学性能的影响。

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