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The Cathodic Electrolytic Plasma Hardening of Steel and Cast Iron Based Automotive Camshafts

机译:钢和铸铁汽车凸轮轴的阴极电解等离子体硬化

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摘要

Cathodic electrolytic plasma hardening is a novel thermochemical surface modification and hardening process, used to increase wear resistance and surface hardness of metallic components in a local area of interest. The heating efficiency is related with the plasma nozzle design, applied current and electrolyte. The nozzle design is also a critical factor for the hardening of complex shapes, such as gears and camshafts. In this work, lobes of camshafts, fabricated from several cast iron and steel grades were hardened by cathodic electrolytic plasma hardening in aqueous carbonate electrolyte, using a specific plasma nozzle. The camshafts were attached to CNC lathe for turning them in the horizontal axis. In order to optimise heating and to achieve the ideal flowing and wetting by the electrolyte of the lobe case, the ceramic ellipse-shaped nozzle outlet was designed. As a result of preliminary studies, external surface of lobes was heated and subsequently quenched by electrolyte. The hardness of processed surface was in the range of 50-60 HRc for the different camshafts. No distortion was observed on the surface of lobes. Hardness depth was measured to be from 0.1 mm to 5 mm for several lobes.
机译:阴极电解等离子体硬化是一种新颖的热化学表面改性和硬化工艺,用于提高目标区域中金属部件的耐磨性和表面硬度。加热效率与等离子喷嘴设计,施加的电流和电解质有关。喷嘴设计也是硬化复杂形状(例如齿轮和凸轮轴)的关键因素。在这项工作中,使用特定的等离子喷嘴,在碳酸盐水溶液中通过阴极电解等离子硬化,对由几种铸铁和钢制成的凸轮轴凸角进行了硬化。凸轮轴连接到CNC车床上,以使其在水平轴上旋转。为了优化加热并通过叶壳的电解质实现理想的流动和润湿,设计了椭圆形陶瓷喷嘴出口。初步研究的结果是,叶片的外表面被加热,随后被电解质淬火。对于不同的凸轮轴,加工表面的硬度在50-60 HRc的范围内。在叶片表面未观察到变形。几个叶片的硬度深度经测量为0.1毫米至5毫米。

著录项

  • 来源
    《Acta Physica Polonica》 |2017年第3期|374-378|共5页
  • 作者单位

    Estas Eksantrik San & Tic AS, Sivas, Turkey;

    Estas Eksantrik San & Tic AS, Sivas, Turkey;

    Univ Cumhuriyet, Fac Engn, Dept Met & Mat Eng, Sivas, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:12:50

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