首页> 外文会议>ASME power conference joint with ICOPE-17 >STUDY ON THE EFFECTS OF EXTERNAL STRESS ON HOT CORROSION BEHAVIOR OF STEEL T91 IN THE OXIDIZING ATMOSPHERE CONTAINING SO_2
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STUDY ON THE EFFECTS OF EXTERNAL STRESS ON HOT CORROSION BEHAVIOR OF STEEL T91 IN THE OXIDIZING ATMOSPHERE CONTAINING SO_2

机译:外部应力对T91钢在含SO_2氧化气氛中热腐蚀行为的影响研究

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Facing the challenge of needs of abundant, cheap and environmental-friendly supply of electricity, the parameters of utility boiler like the ultra-supercritical boilers should be improved to increase the efficiency of power generation, which may seriously influence the safety of thermal power station reduce the useful life of the boiler materials. With the increasing parameters of steam temperature, high temperature corrosion affected by many factors like temperature, corrosive gas and molten salt of water wall or super-heater near the combustion gas might be more and more serious. In additional with the increasing of the parameters of steam, the stress was induced by the nonuniform temperature distribution in the steel. Thus, the external stress in the steel, which plays an important role in the corrosion process, has been outstanding as the temperature increasing. Therefore, the external stress in the steel has been taken in account in the process of hot corrosion happening in the boilers. The hot corrosion behavior of steel T91 was experimentally studied under different stress in complex environment including high temperature and S02 corrosive atmosphere. Through observing the corrosion products, morphology and compositional changes in corrosion scales formed in the 168h corrosion process through the XRD, SEM and EDS test, it could be informed that the corrosion behavior was strongly associated with the content of chromium oxides in the corrosion scales. Thus under the experimental environment, the oxides scales were mainly made of two layers in which the outer were formed of Fe oxides and the inner one contained Cr oxides and less Fe oxides. Generally, the Cr2O3 or Ni oxides has the most strong corrosion resistance among Cr, Fe, Mn, Ni, so the portion of G-2O3 in the corrosion scales strongly affect the hot corrosion. Since the corrosion behavior affected by many factors, the effects of external stress might be different in different temperature for example the 60MPa caused most serious corrosion at 700°C but at 750°C that is 40MPa. The external stress could accelerate the diffusion of negative ion like S and Cr elements to cause more serious corrosion.
机译:面对充足,廉价,环保的电力供应需求,应提高超超临界锅炉等公用锅炉的参数,以提高发电效率,严重影响火电厂的安全性。锅炉材料的使用寿命。随着蒸汽温度参数的增加,高温腐蚀受温度,腐蚀性气体和燃烧气体附近的水冷壁或过热器的熔融盐等因素的影响越来越严重。另外,随着蒸汽参数的增加,应力是由钢中温度分布不均匀引起的。因此,随着温度的升高,在腐蚀过程中起重要作用的钢中的外部应力非常突出。因此,在锅炉中发生热腐蚀的过程中已考虑到钢中的外部应力。在高温和SO 2腐蚀性气氛等复杂环境下,在不同应力下对T91钢的热腐蚀行为进行了实验研究。通过XRD,SEM和EDS测试观察168h腐蚀过程中形成的腐蚀产物,腐蚀垢的形貌和组成变化,可以发现腐蚀行为与腐蚀垢中氧化铬的含量密切相关。因此,在实验环境下,氧化皮主要由两层组成,其中外层由Fe氧化物形成,内层由Cr氧化物和少量Fe氧化物组成。通常,Cr2O3或Ni氧化物在Cr,Fe,Mn,Ni中具有最强的耐蚀性,因此G-2O3在腐蚀垢中的比例会强烈影响热腐蚀。由于腐蚀行为受许多因素影响,因此外部应力的影响在不同温度下可能会有所不同,例如60MPa在700°C引起最严重的腐蚀,而在750°C则为40MPa。外部应力可能会加速负离子如S和Cr元素的扩散,从而导致更严重的腐蚀。

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