首页> 外文会议>International Symposium on High Temperature Corrosion and Protection of Materials pt.2; 20040516-21; Les Embiez(FR) >Laboratory Testing for Evaluation of Steels and Alloys Used in Superheater Area of Boilers for Biomass- Based Fuels
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Laboratory Testing for Evaluation of Steels and Alloys Used in Superheater Area of Boilers for Biomass- Based Fuels

机译:评估用于生物质燃料锅炉过热区的钢和合金的实验室测试

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Short-term half-immersion tests in molten alkali salt of eutectic composition together with, e.g., thermogravimetry, autoclave tests and deposit crucible tests, were used to investigate the corrosion behaviour of various superheater tube steels and alloys for applications in superheater areas of boilers for biomass-based fuels. In order to simulate flue gas conditions where partial pressure of sulphur dioxide may be very low, air or wet air and various mixtures of N_2-CO_2-H_2O-O_2 were used as test atmospheres. Most tests were carried out around 530℃. The combined effect of carbon dioxide and water vapour was found to enhance the oxidation rates, even affecting the materials ranking. Water vapour was found to enhance alkali chloride attack. Sodium chloride was detrimental towards low alloy steels, whereas potassium chloride attacked preferentially alloys which were high in chromium. In the half-immersion tests, low-alloy steels and low-grade stainless steels were damaged initially by inter-granular attack. Subsequently, rapid oxide growth occurred on the specimen surface areas located above the immersion line. Highly alloyed materials suffered from pitting, and in some cases, from severe localized attack due to basic fluxing. Due to localized corrosion, the extent of corrosion attack for stainless or high-alloy steels approached or even exceeded that of low alloy steels in the half-immersion tests. The high-molybdenum-high-chromium nickel alloy (Alloy 625), and a stainless steel containing about 24 % chromium and 13 % nickel showed the best corrosion resistance. Corrosion morphologies obtained, as well as the ranking of the alloys tested, corresponded well with results from long-term corrosion tests in real plant.
机译:共熔成分的熔融碱金属盐中的短期半浸入测试,以及热重分析,高压釜测试和沉积坩埚测试,被用于研究用于锅炉过热器区域的各种过热器管钢和合金的腐蚀行为。基于生物质的燃料。为了模拟烟气条件,其中二氧化硫的分压可能非常低,将空气或湿空气以及N_2-CO_2-H_2O-O_2的各种混合物用作测试气氛。大多数测试是在530℃左右进行的。发现二氧化碳和水蒸气的联合作用提高了氧化速率,甚至影响了材料等级。发现水蒸气增强了碱金属氯化物的侵蚀。氯化钠对低合金钢有害,而氯化钾优先腐蚀铬含量高的合金。在半浸测试中,低合金钢和低等级不锈钢最初是由于晶间腐蚀而损坏的。随后,在浸没线上方的试样表面区域发生了快速的氧化物生长。高度合金化的材料会出现点蚀,在某些情况下会因碱性助焊剂而遭受严重的局部腐蚀。由于局部腐蚀,在半浸测试中,不锈钢或高合金钢的腐蚀程度接近甚至超过低合金钢。高钼高铬镍合金(Alloy 625)和含约24%铬和13%镍的不锈钢表现出最佳的耐腐蚀性。获得的腐蚀形态以及所测试合金的等级与真实工厂中长期腐蚀测试的结果非常吻合。

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