首页> 外文学位 >Ion implantation applications for pitting corrosion inhibition: Tungsten beam implantation of aluminum and nitrogen plasma ion implantation of 304L stainless steel.
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Ion implantation applications for pitting corrosion inhibition: Tungsten beam implantation of aluminum and nitrogen plasma ion implantation of 304L stainless steel.

机译:离子注入用于抑制点腐蚀的应用:铝的钨束注入和304L不锈钢的氮等离子体离子注入。

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摘要

Ion implantation has been investigated to assess the effects of the implanted species on inhibiting the chloride induced pitting corrosion of common commercial alloys. Studies are described involving the application of an emerging technology, plasma ion implantation, to implant 304L stainless steel with nitrogen, as well as ion beam implantations of aluminum 1100 with tungsten. These surface modifications can potentially be very effective in enhancing corrosion resistance by producing non-equilibrium surface alloys and/or surface structural changes, and by conserving cost-prohibitive alloying elements. Many of the limitations of the ion beam implantation process may eventually be ameliorated by plasma ion implantation (PII), in which workpieces can be immersed in a plasma for simultaneous exposure of the entire surface. The focus of this research was to document alterations in the pitting behavior by both electrochemical and immersion techniques, and to characterize the resulting microstructure, corrosion mechanisms, and implanted species distribution.;Tungsten additions always enhance the passivity of Al, regardless of the substrate alloy or the applied dose (3;Nitrogen ions have been successfully implanted into 304L stainless steel in a uniform microwave plasma. An increase in pitting potential of up to 700 mV was measured for relatively low doses. No improvement was noted for higher doses, indicating that nitrogen doses effective in improvement of wear properties may not be effective in enhancing localized corrosion resistance. Low accelerating potentials were successfully utilized to increase the N ion concentration in the near-surface region. The lateral dose uniformity on 304L specimens exposed to N PII has been greatly improved through successive modifications of the sample holder geometry.
机译:已经对离子注入进行了研究,以评估注入物种对抑制氯化物引起的常见商品合金点蚀的影响。描述了涉及应用新兴技术等离子体离子注入向氮气注入304L不锈钢以及向钨注入铝1100进行离子束注入的研究。这些表面改性通过产生非平衡表面合金和/或表面结构变化以及节省成本高昂的合金元素,在增强耐腐蚀性方面可能非常有效。离子束注入工艺的许多局限性最终可以通过等离子离子注入(PII)得以缓解,在等离子离子注入中,工件可以浸入等离子体中以同时暴露整个表面。这项研究的重点是通过电化学和浸没技术来记录点蚀行为的变化,并表征由此产生的微观结构,腐蚀机理和注入的物种分布。钨的添加总是提高Al的钝化性,而与基底合金无关或所施加的剂量(3;已在均匀的微波等离子体中成功地将氮离子注入304L不锈钢中。相对较低的剂量测得的点蚀电位增加到700 mV。较高剂量未见改善),表明有效改善磨损性能的氮剂量可能无法有效提高局部腐蚀性能;成功地利用低加速电位来提高近表面区域的N离子浓度;暴露于N PII的304L试样的横向剂量均匀性已经达到通过连续修改样品架的几何形状,大大提高了性能。

著录项

  • 作者

    Smith, Preston Paul.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Engineering Metallurgy.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:49:46

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