>The corrosion resistance of the steel grades 1.4509 and 1.4301 against sodium and calciu'/> The influence of NaCl and CaCl <sub >2</sub>2 induced high temperature corrosion on the aqueous corrosion resistance of stainless steels
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The influence of NaCl and CaCl 22 induced high temperature corrosion on the aqueous corrosion resistance of stainless steels

机译:NaCl和CaCl的影响 2 2 诱导高温腐蚀对不锈钢腐蚀性耐腐蚀性

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>The corrosion resistance of the steel grades 1.4509 and 1.4301 against sodium and calcium chloride, at 650 and 750?°C is investigated by means of cyclic exposure tests (CETs) in dry air. The formation of chromates as well as volatile metal chlorides and oxychlorides leads to non‐protective oxide scales on both steel grades. At 650 and 750?°C and in presence of a salt layer the alloy 1.4301 shows a higher corrosion resistance than the material 1.4509. At 750?°C and in presence of salt, the surface of the steel grade 1.4301 is transformed from a face centered cubic (fcc) to a body centered cubic (bcc) lattice, due to corrosion induced de‐alloying. The surfaces of both tested materials deplete in chromium, especially at 750?°C. Consequently, the corrosion resistance of the materials exposed to CET decreases sharply in aqueous corrodants.
机译: <第XML:ID =“Maco201810451-SEC-0001”编号=“否”> 通过在干燥空气中的循环暴露试验(CETS)来研究钢等级1.4509和1.4301对钠和氯化钙的耐腐蚀性,在650和750℃下。铬酸盐的形成以及挥发性金属氯化物和氯氧化氯化酰均导致两种钢等级的非保护氧化物鳞片。在650和750?°C和在盐层的存在下,合金1.4301显示比材料更高的耐腐蚀性1.4509。在750℃并在盐存在下,由于腐蚀诱导的除合金化,钢级1.4301的表面从面朝中心的立方(FCC)转变为身体中心立方(BCC)格子。两种测试材料的表面在铬中耗尽,特别是在750℃。因此,暴露于CET的材料的耐腐蚀性在含水腐蚀剂中急剧下降。

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