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HIGH TEMPERATURE CORROSION RESISTANCE OF METALLIC MATERIALS IN HARSH CONDITIONS

机译:苛刻条件下金属材料的高温耐蚀性

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摘要

Highly efficient energy recovery from renewable sources and from waste incineration causes new problems of corrosion at high temperature. A similar situation exists for new recycling processes and new energy storage units. These corrosions are generally considered to be caused by ashes or molten salts, the composition of which differs considerably from one plant to another. Therefore, for the assessment of corrosion-resistance of advanced materials, it is essential to precisely evaluate the corrosion rate under conditions close to industrial conditions. To be able to advise their customers in selecting the right material or the right protective coating, the present authors are developing testing equipment and related procedures to assess the high temperature corrosion rate of metallic materials. This paper describes the testing equipment developed so far and presents the first results obtained in two corrosive environments: the aggressive condensates that affect waste incinerators (mixture of liquid/solid salts in oxidising conditions) and heat transfer fluids of electric power generating plants based on solar towers (mixture of liquid salts). Temperatures range from 400 to 650°C. Tested materials include 16Mo3 (0.3% molybdenum steel alloy), Inconel 625 (austenitic nickel-chromium-based superalloys), Nickel 200, Ni-57CrMoSiB (nickel-base coating with high chromium content and boron as additional element) and Grade 91 (9% chrome- 1% molybdenum steel alloy).
机译:从可再生资源和废物焚烧中高效回收能量会导致高温下腐蚀的新问题。新的回收过程和新的储能装置也存在类似情况。通常认为这些腐蚀是由灰分或熔融盐引起的,它们的组成因一棵植物而异。因此,为了评估先进材料的耐腐蚀性,必须在接近工业条件的条件下精确评估腐蚀速率。为了能够建议客户选择合适的材料或合适的保护涂层,作者正在开发测试设备和相关程序,以评估金属材料的高温腐蚀速率。本文介绍了迄今为止开发的测试设备,并介绍了在两种腐蚀性环境中获得的第一个结果:影响废物焚化炉的侵蚀性冷凝物(氧化条件下液体/固体盐的混合物)和基于太阳能的发电厂的传热流体塔(液体盐的混合物)。温度范围为400至650°C。测试的材料包括16Mo3(0.3%钼钢合金),Inconel 625(奥氏体镍铬基高温合金),Nickel 200,Ni-57CrMoSiB(具有高铬含量和硼作为附加元素的镍基涂层)和91级(9 %铬-1%钼钢合金)。

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