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Surface aluminizing on Ti-6Al-4V alloy via a novel multi-pass friction-stir lap welding method: Preparation process, oxidation behavior and interlayer evolution

机译:新型多道次搅拌摩擦堆焊方法在Ti-6Al-4V合金上进行表面渗铝:制备工艺,氧化行为和层间演变

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摘要

Surface aluminizing on Ti-6Al-4V alloy was successfully performed via a novel solid-state method of multi-pass friction-stir lap welding (FSLW). The process principles are elucidated. The aluminized coating was tailored as ~500 urn in thickness after preparation and milling treatment to remove the redundant pure Al. No annealing treatment was performed after the FSLW preparation. The as-processed Ti/Al interlayer was Ti-rich in chemical composition, more than 60 μm in thickness, and had an interval banding structure, due to the FSLW thermal-mechanical effects. Oxidation tests for bare TC4 and aluminized specimens were conducted at 700 ℃. Surface morphologies, phases and interlayer evolutions of the oxidized specimens were investigated. The diffusion and/or possible reaction of the Ti/Al interlayer occurred simultaneity corresponding to the oxidation behaviors in the near-surface layer. The oxidation resistant roles of the aluminide interlayer and the upper abundant Al coating produced via the method were discussed. Abundant Al content in the coating of significant thickness benefited the anti-oxidation performance and forming of Ti/Al interlayer. The aluminide interlayer of considerable thickness, with composition gradients and good density at Ti/Al interface location, played a main protection role against oxidation to Ti-substrate.
机译:Ti-6Al-4V合金的表面渗铝是通过一种新型的多道次摩擦-搅拌搭接焊(FSLW)固态方法成功进行的。阐明了处理原理。经过准备和铣削处理以去除多余的纯铝,将镀铝膜的厚度调整为约500微米。 FSLW制备后未进行退火处理。加工后的Ti / Al中间层由于FSLW的热机械效应,化学成分富含Ti,厚度超过60μm,并且具有间隔带结构。在700℃下对裸露的TC4和渗铝样品进行氧化测试。研究了氧化试样的表面形态,相和夹层演变。 Ti / Al中间层的扩散和/或可能的反应同时发生,与近表层的氧化行为相对应。讨论了该方法产生的铝化物夹层和上部富铝涂层的抗氧化作用。显着厚度的涂层中大量的Al有益于Ti / Al中间层的抗氧化性能和形成。厚度相当大的铝化物中间层在Ti / Al界面位置处具有成分梯度和良好的密度,在防止氧化为Ti基板方面起了主要的保护作用。

著录项

  • 来源
    《Materials & design》 |2013年第8期|647-656|共10页
  • 作者单位

    College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 210016, PR China;

    College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 210016, PR China;

    College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 210016, PR China;

    Technology Research Institute of Nanjing Chenguang Group Co., Ltd. (NCGC), China Aerospace Science and Industry Corporation (CASTC), 1 Zhengxue Road, Nanjing 210006, PR China;

    College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 210016, PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Titanium alloys; Friction stir welding; Surface aluminizing; Coatings; High-temperature oxidation;

    机译:钛合金;搅拌摩擦焊;表面渗铝;涂料;高温氧化;

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