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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >CORROSION BEHAVIOUR OF HIGH ALLOYED STAINLESS STEEL WELD METALS, JOINTS AND OVERLAYS IN STANDARDIZED CORROSION TESTS WITH SOME EXAMPLES
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CORROSION BEHAVIOUR OF HIGH ALLOYED STAINLESS STEEL WELD METALS, JOINTS AND OVERLAYS IN STANDARDIZED CORROSION TESTS WITH SOME EXAMPLES

机译:高合金钢焊接金属,接头和堆焊层在标准腐蚀试验中的腐蚀行为

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摘要

As already described earlier, stainless steels can form on their surface a protective, passive film on exposure to a service environment. This passive film, especially its stability and homogeneity, is responsible for the corrosion resistance of these materials. Welding can have a strong impact due to the typical segregated, multiphase weld metal structures and the additional influence of the weld heat cycle. This may result in a lower corrosion resistance of the weld metal compared to the base metal in case of a similar chemical composition. To describe the corrosion behaviour, many different tests have been developed, using different environments, different test temperatures and different test specimen preparation. But due to the variety of parameter settings and test conditions, the corrosion test results are often not comparable. To overcome this problem, standardized corrosion tests were established. Specimen preparation, test solution composition, test duration and temperature setting are defined to allow a "world wide" comparison. This paper gives an overview of which standardized tests are applied in practical use for typical types of material. Additionally some results of weld metal and joint testing are shown from which the influence of different thermal cycles, alloying concepts, surface conditions and shielding gases on the corrosion behaviour can be derived.
机译:如前所述,不锈钢在暴露于使用环境中时会在其表面形成保护性钝化膜。这种钝化膜,尤其是其稳定性和均质性,决定了这些材料的耐腐蚀性。由于典型的偏析,多相焊接金属结构以及焊接热循环的其他影响,焊接可能会产生强烈的影响。在化学成分相似的情况下,与母材相比,这可能导致焊接金属的耐腐蚀性降低。为了描述腐蚀行为,已经开发了许多不同的测试,使用不同的环境,不同的测试温度和不同的试样制备方法。但是由于参数设置和测试条件的多样性,腐蚀测试结果通常无法比较。为了克服这个问题,建立了标准化的腐蚀试验。定义样品制备,测试溶液成分,测试持续时间和温度设置以进行“全球”比较。本文概述了哪些标准测试在实际应用中用于典型类型的材料。此外,还显示了焊接金属和接头测试的一些结果,从中可以得出不同热循环,合金概念,表面条件和保护气体对腐蚀行为的影响。

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