首页> 外文学位 >The Corrosion and Corrosion Fatigue Behavior of Nickel Based Alloy Weld Overlay and Coextruded Claddings.
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The Corrosion and Corrosion Fatigue Behavior of Nickel Based Alloy Weld Overlay and Coextruded Claddings.

机译:镍基合金堆焊层和共挤覆层的腐蚀和腐蚀疲劳行为。

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摘要

The use of low NOx boilers in coal fired power plants has resulted in sulfidizing corrosive conditions within the boilers and a reduction in the service lifetime of the waterwall tubes. As a solution to this problem, Ni-based weld overlays are used to provide the necessary corrosion resistance however; they are susceptible to corrosion fatigue. There are several metallurgical factors which give rise to corrosion fatigue that are associated with the localized melting and solidification of the weld overlay process. Coextruded coatings offer the potential for improved corrosion fatigue resistance since coextrusion is a solid state coating process. The corrosion and corrosion fatigue behavior of alloy 622 weld overlays and coextruded claddings was investigated using a Gleeble thermo-mechanical simulator retrofitted with a retort. The experiments were conducted at a constant temperature of 600°C using a simulated combustion gas of N2-10%CO-5%CO2-0.12%H 2S. An alternating stress profile was used with a minimum tensile stress of 0 MPa and a maximum tensile stress of 300 MPa (ten minute fatigue cycles). The results have demonstrated that the Gleeble can be used to successfully simulate the known corrosion fatigue cracking mechanism of Ni-based weld overlays in service. Multilayer corrosion scales developed on each of the claddings that consisted of inner and outer corrosion layers. The scales formed by the outward diffusion of cations and the inward diffusion of sulfur and oxygen anions. The corrosion fatigue behavior was influenced by the surface finish and the crack interactions. The initiation of a large number of corrosion fatigue cracks was not necessarily detrimental to the corrosion fatigue resistance. Finally, the as-received coextruded cladding exhibited the best corrosion fatigue resistance.
机译:在燃煤电厂中使用低NOx锅炉已导致锅炉内的腐蚀性条件硫化,并缩短了水冷壁管的使用寿命。为了解决这个问题,使用了镍基堆焊层来提供必要的耐腐蚀性。它们易于腐蚀疲劳。有几种冶金因素会引起腐蚀疲劳,这些疲劳与堆焊过程的局部熔化和凝固有关。由于共挤出是固态涂覆工艺,因此共挤出涂层具有改善耐腐蚀疲劳性能的潜力。使用加装了脱水缸的Gleeble热机械模拟器研究了622合金堆焊层和共挤覆层的腐蚀和腐蚀疲劳行为。实验是在600°C的恒定温度下使用模拟燃烧气体N2-10%CO-5%CO2-0.12%H 2S进行的。使用交替应力分布,最小拉伸应力为0 MPa,最大拉伸应力为300 MPa(十分钟疲劳循环)。结果表明,Gleeble可用于成功模拟使用中的镍基焊缝的已知腐蚀疲劳开裂机理。在由内部和外部腐蚀层组成的每个覆层上都形成了多层腐蚀鳞片。由阳离子的向外扩散以及硫和氧阴离子的向内扩散形成的水垢。腐蚀疲劳行为受表面光洁度和裂纹相互作用的影响。大量腐蚀疲劳裂纹的产生并不一定不利于抗腐蚀疲劳。最后,原样的共挤包层表现出最好的耐腐蚀疲劳性能。

著录项

  • 作者

    Stockdale, Andrew.;

  • 作者单位

    Lehigh University.;

  • 授予单位 Lehigh University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 235 p.
  • 总页数 235
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:17

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