首页> 外文学位 >Fundamental studies of hydrogen attack in carbon-0.5molybdenum steel and weldments applied in petroelum and petrochemical industries.
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Fundamental studies of hydrogen attack in carbon-0.5molybdenum steel and weldments applied in petroelum and petrochemical industries.

机译:碳-0.5钼钢和石油和石化行业中使用的焊件中氢侵蚀的基础研究。

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摘要

High temperature hydrogen attack (HTHA) is a form of surface decarburization, internal decarburization, and/or intergranular cracking in steels exposed to high temperature (>400°F) and high hydrogen pressure. Hydrogen attack is an irreversible process which can cause permanent damage resulting in degradation of mechanical properties and failures such as leakage, bursting, fire, and/or explosion. The continuous progression of hydrogen attack in C-0.5Mo steel and weldments below the C-0.5Mo Nelson Curve has caused a significant concern for the integrity and serviceability of C-0.5Mo steel utilized for pressure vessels and piping in the petroleum refinery and petrochemical industries.; A state-of-the-art literature review was implemented to provide a comprehensive overview of the published research efforts on hydrogen attack studies. The evolution of “Nelson Curves” for carbon steel, C-0.5Mo, and Cr-Mo steels was historically reviewed in regard to design applications and limitations. Testing techniques for hydrogen attack assessment were summarized under the categories of hydrogen exposure testing, mechanical evaluation, and dilatometric swelling testing.; In accord with the demands of these industries, fundamental studies of hydrogen attack in C-0.5Mo steel and weldments were accomplished in terms of quantitative methodologies for hydrogen damage evaluation; hydrogen damage assessment of service exposed weldments and autoclave exposed materials; effects of carbon and alloying elements, heat treatments, hot and cold working, welding processes and postweld heat treatment (PWHT) on hydrogen attack susceptibility; development of continuous cooling transformation (CCT) diagrams for C-0.5Mo base metals and the coarse grained heat-affected zone (CGHAZ); carbide evaluation for the C-0.5Mo steel after service exposure and heat treatment; methane evolution by the reaction of hydrogen and carbides; hydrogen diffusion and methane pressure through the wall thickness of one-sided hydrogen exposure assembly; hydrogen attack mechanism and hydrogen attack limit modeling.
机译:高温氢侵蚀(HTHA)是暴露于高温(> 400°F)和高氢压力的钢中表面脱碳,内部脱碳和/或晶间开裂的一种形式。氢侵蚀是不可逆的过程,会造成永久性损坏,从而导致机械性能下降和故障,例如泄漏,爆裂,着火和/或爆炸。 C-0.5Mo钢和C-0.5Mo Nelson曲线以下的焊件中氢侵蚀的持续发展,引起了人们对用于炼油厂和石化行业压力容器和管道的C-0.5Mo钢的完整性和适用性的关注工业。进行了最新的文献综述,以全面概述已发表的有关氢攻击研究的研究成果。历史上就设计应用和局限性回顾了碳钢,C-0.5Mo和Cr-Mo钢的“尼尔森曲线”的演变。氢侵袭评估的测试技术归纳为氢暴露测试,机械评估和膨胀膨胀测试。根据这些行业的需求,对C-0.5Mo钢和焊件中的氢侵蚀进行了基础研究,采用了定量的氢损伤评估方法。维修暴露的焊件和高压灭菌器暴露材料的氢损伤评估;碳和合金元素,热处理,冷热加工,焊接工艺和焊后热处理(PWHT)对氢侵蚀敏感性的影响;为C-0.5Mo贱金属和粗粒热影响区(CGHAZ)开发了连续冷却转变(CCT)图; C-0.5Mo钢在使用中暴露和热处理后的碳化物评估;氢和碳化物反应生成甲烷;通过单侧氢气暴露组件壁厚的氢气扩散和甲烷压力;氢攻击机理和氢攻击极限模型。

著录项

  • 作者

    Liu, Peng.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Engineering Metallurgy.; Engineering Materials Science.; Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 340 p.
  • 总页数 340
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;工程材料学;石油、天然气工业;
  • 关键词

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