首页> 外文会议>International conference on physical and numerical simulation of material processing;ICPNS2010 >Research on Corrosion Resistance of Titanizing and Nitriding on Carbon Steel in H_2SO_4 solution
【24h】

Research on Corrosion Resistance of Titanizing and Nitriding on Carbon Steel in H_2SO_4 solution

机译:H_2SO_4溶液中碳钢上渗钛和渗氮的耐蚀性研究。

获取原文
获取外文期刊封面目录资料

摘要

Q195 steel was treated with titanizing followed plasma nitriding by glow plasma alloying technology using single pulse power supply. The corrosion resistances of titanizing sample and titanizing + ion nitrided sample were studied. The results show that the alloying layer is 200 μm in depth and organization is α-Fe solid solution containing Ti by plasma titanizing technology using single pulse power supply. An obvious reactive diffusion dividing line formed between alloying layer and the substrate. It shows that diffusion phenomenon happened in process of titanizing. The morphology of Ti alloy layer was columnar crystals. The content of Ti on the surface is up to 5 wt%. And the Ti content of alloying layer is in a decreasing from the surface to the inner on a gradient distribution. The phase structure of titanizing layer is composed of Fe_2Ti, Fe-Ti and TiC phases. The phase structure of titanizing + ion nitrided sample was obviously TiN phase and a few Fe-Ti phase. The surface hardness of untreated carbon steel is 110 HV and that of the alloying layer of titanizing is 310HV. The surface hardness of titanizing + ion nitrided sample is 1800HV. The corrosion resistance of titanizing sample is increased 12.15 times compared with the untreated sample and 1.42 times compared with 18-8 stainless steel in H_2SO_4 solution; The corrosion resistance of titanizing + ion nitrided sample is increased 7.444 times compared with the untreated sample and as well as 18-8 stainless steel in H_2SO_4 solution.
机译:Q195钢经过钛化处理,然后使用单脉冲电源通过辉光等离子体合金化技术进行等离子体氮化。研究了钛化样品和钛化+离子渗氮样品的耐蚀性。结果表明,该合金层的深度为200μm,采用单脉冲电源通过等离子体滴定技术组织为含Ti的α-Fe固溶体。在合金层和基体之间形成明显的反应扩散分界线。这表明在钛化过程中发生了扩散现象。 Ti合金层的形态为柱状晶体。表面上的Ti含量最高为5重量%。并且,合金层的Ti含量从表面到内部呈梯度分布减少。钛化层的相结构由Fe_2Ti,Fe-Ti和TiC相组成。钛化+离子氮化样品的相结构明显为TiN相和少量Fe-Ti相。未经处理的碳钢的表面硬度为110 HV,钛化合金层的表面硬度为310 HV。钛化+离子氮化样品的表面硬度为1800HV。在H_2SO_4溶液中,与未经处理的样品相比,钛化样品的耐蚀性提高了12.15倍,与18-8不锈钢相比,提高了1.42倍。与未经处理的样品以及H_2SO_4溶液中的18-8不锈钢相比,钛化+离子氮化样品的耐蚀性提高了7.444倍。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号