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首页> 外文期刊>Solar Energy >High-temperature corrosion performance of austenitic stainless steels type AISI 316L and AISI 321H, in molten Solar Salt
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High-temperature corrosion performance of austenitic stainless steels type AISI 316L and AISI 321H, in molten Solar Salt

机译:AISI 316L和AISI 321H型奥氏体不锈钢在熔融太阳能盐中的高温腐蚀性能

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摘要

The corrosion rates of AISI 316L and AISI 321H austenitic stainless steel, immersed in a stagnant isothermal mixture of 60% NaNO3 and 40% KNO3 molten salt at 550 degrees C in atmospheric air are 8.6 and 9.0 mu m/yr, respectively. The corrosion mechanism was proposed by recording the weight changes of the steel coupons at different time intervals up to 3000 h, and by the characterization of multilayer oxide scales formed on the steel surface. Multilayers made of different oxides, mainly Fe2O3 and Fe3O4, are the principal scale products. At 3000 h, the thickness of the scale layer formed on AISI 321H (7.5 +/- 2.9 mu m) is slightly higher than the one formed at the AISI 316L (6.9 +/- 2.1 mu m). This small difference might reflect the partial spallation of the corrosion layer on AISI 321H, which is seen for times longer than 1000 h. A minimal change of the composition of the molten nitrate salt is observed in time and is predominantly due to the appearance of soluble chromate products and nitrite compounds (0.004 wt% and 1.4 wt% at 3000 h, respectively). The observed corrosion behaviour of these alloys shows that they are good candidate for usage as containers of molten nitrate salts in the thermal energy storage (TES) system for a CSP plant.
机译:将AISI 316L和AISI 321H奥氏体不锈钢浸入550°C的60%NaNO3和40%KNO3熔融盐的停滞等温混合物中,在大气中的腐蚀速率分别为8.6和9.0μm/ yr /年。通过记录钢试样在长达3000小时的不同时间间隔内的重量变化,以及表征在钢表面形成的多层氧化皮,提出了腐蚀机理。由不同氧化物(主要是Fe2O3和Fe3O4)制成的多层是主要的规模产品。在3000 h时,在AISI 321H上形成的水垢层的厚度(7.5 +/- 2.9微米)略高于在AISI 316L上形成的水垢层的厚度(6.9 +/- 2.1微米)。这个小的差异可能反映了AISI 321H上腐蚀层的部分剥落,这种剥落的时间超过1000小时。及时观察到熔融硝酸盐组成的最小变化,这主要是由于可溶性铬酸盐产品和亚硝酸盐化合物的出现(在3000 h分别为0.004 wt%和1.4 wt%)。观察到的这些合金的腐蚀行为表明,它们非常适合用作CSP工厂热能存储(TES)系统中熔融硝酸盐盐的容器。

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