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Feasibility of laminar plasma jet hardening of cast iron surface

机译:铸铁表面层流等离子喷射硬化的可行性

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Nontransferred DC laminar plasma jets of stable flow and low impinging pressure acting on the substrate were used to heat W-Mo-Cu cast iron for phase transfer hardening of the surface layer. Substrates were heated in multipass with or without overlapping or heated with only single-pass. Surface morphologies of the molten trace and microstructure of the cross-section were observed, and the hardness distribution of the treated surface layer was examined. The surface layer of single-pass-heated specimen has an average hardness of about 900 HV0.1, while the specimen treated with multipass shows an average hardness of about 700 HV0.1, because of the heat effect from the neighboring pass treating, compared with the substrate hardness of about 300 HV0.1. The results demonstrate the stable and favorably controlled heating of the laminar plasma jet on the substrate surface and feasibility of using it as a tool for surface hardening of cast iron. (c) 2004 Elsevier B.V. All rights reserved.
机译:作用在基材上的稳定流量和低冲击压力的未转移DC层流等离子流用于加热W-Mo-Cu铸铁,以实现表面层的相转移硬化。在有或没有重叠的情况下以多程加热基板,或仅以单程进行加热。观察熔融痕迹的表面形态和横截面的微观结构,并检查处理过的表面层的硬度分布。单道次加热试样的表面层平均硬度约为900 HV0.1,而经过多道次处理的试样的平均硬度约为700 HV0.1,这是由于相邻道次处理的热效应所致。基材的硬度约为300 HV0.1。结果表明,稳定且有利地控制了层状等离子流在基底表面上的加热,以及将其用作铸铁表面硬化工具的可行性。 (c)2004 Elsevier B.V.保留所有权利。

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