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首页> 外文期刊>Materia >Influence of welding parameters on the geometric and microstructural characteristics of Inconel 625 coatings deposited on ASTM A36 Steel by Plasma Transferred Arc
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Influence of welding parameters on the geometric and microstructural characteristics of Inconel 625 coatings deposited on ASTM A36 Steel by Plasma Transferred Arc

机译:焊接参数对ASTM A36钢沉积625涂层的几何和微观结构特性的影响

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This work aims to evaluate the influence of welding parameters, current intensity and deposition speed, on the bead geometry, dilution, morphology and properties of a nickel-based alloy coating. For this, single beads of Inconel 625 alloy were deposited on the substrate of ASTM A36 Steel, by PTA-P process. The samples were sandblasted and polished. The samples were chemically etched by a solution of 92 mL HCl, 3 mL HNO3 and 5 mL H2SO4 for 5 minutes. The geometry of the beads (reinforcement height, bead width, penetration and contact angle) was measured through the digital stereoscope microscope. The microstructures of the cross sections were evaluated by optical microscopy and scanning electron microscopy (SEM), to identify the possible presence of precipitated phases in the ferrite matrix. The chemical composition of these present phases, as well as the diffused iron content from the substrate for the coating, were measured by EDX. The type of the phases precipitated by x-ray diffraction in the top samples of the coating were also evaluated, in 1.5 mm height of reinforcement. For mechanical property analysis, the microhardness of the coatings was measured by Vickers microhardness test to evaluate their relationship with the iron present in the coatings, which diffused from the substrate. The results confirmed the influence of welding parameters on coating dilution - Current is the parameter of greatest response. The morphologies of the coatings were presented as a γ matrix with second phase precipitation composed of Ni, Nb, Cr and Mo. The concentration of these precipitations decreased with increasing dilution. This occurred because of the increased migration of Fe present in the substrate of the coating through the diffusion phenomena, with increasing dilution. The Fe reduced the solubility of Nb and Mo of the γ matrix, causing the decrease of its hardness.
机译:这项工作旨在评估焊接参数,电流强度和沉积速度的影响,对镍基合金涂层的珠子几何形状,稀释,形态和性能。为此,通过PTA-P工艺沉积在ASTM A36钢的基材上沉积625合金的单个珠子。样品被喷砂和抛光。通过92mL HCl,3ml HNO 3和5mL H 2 SO 4的溶液化学蚀刻样品5分钟。通过数字立体镜显微镜测量珠子(增强高度,珠宽,穿透和接触角)的几何形状。通过光学显微镜和扫描电子显微镜(SEM)评估横截面的微观结构,以鉴定铁氧体基质中可能存在沉淀的相。通过EDX测量这些本样阶段的化学成分,以及来自涂层的基材的扩散铁含量。还评估了涂层顶部样品中的X射线衍射沉淀的相的类型,在1.5mm的加强件中。对于机械性质分析,通过维氏微硬度试验测量涂层的显微硬度,以评估它们与涂层中存在的铁的关系,其从基材扩散。结果证实了焊接参数对涂层稀释度的影响 - 电流是最大反应的参数。将涂层的形态作为γ基质呈现,其具有第二相沉淀,由Ni,Nb,Cr和Mo组成。随着稀释的浓度增加,这些沉淀的浓度降低。这是由于通过扩散现象通过扩散现象的涂层基板中存在的Fe迁移增加,随着稀释的增加。该Fe降低了γ基质的Nb和Mo的溶解度,从而降低了其硬度。

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