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首页> 外文期刊>Journal of Materials Science >Wetting and mechanical properties, a case study: Liquid metal embrittlement of a martensitic steel by liquid lead and other liquid metals
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Wetting and mechanical properties, a case study: Liquid metal embrittlement of a martensitic steel by liquid lead and other liquid metals

机译:润湿性和机械性能,案例研究:液态铅和其他液态金属使马氏体钢的液态金属脆化

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We present experimental results of tensile and fatigue properties of the T91 (a 9% Cr martensitic steel) in a stagnant molten metallic bath (Pb, Pb-Bi or Sn for instance). Under particular experimental conditions, the tensile tests revealed an instantaneous embrittlement of the material, more pronounced at low temperature, that disappears as the temperature is raised above 450 degrees C. This behavior is explained by the reduction of the surface energy of the bare metal induced by the adsorption of the liquid metal. When the steel is submitted to low cycle fatigue tests in presence of the liquid Pb-Bi eutectic at 300 degrees C, its lifetime is significantly reduced compared to tests performed in air. In this case, given the complexity of the mechanisms leading to a fatigue fracture, it is more difficult to ascribe the observed embrittlement to the sole surface-energy reduction effect, but and adsorption-induced localization of the plastic deformation at the very crack tip is an appealing hypothesis. (C) 2005 Springer Science + Business Media, Inc.
机译:我们介绍了在停滞的熔融金属熔池(例如,Pb,Pb-Bi或Sn)中T91(9%Cr马氏体钢)的拉伸和疲劳性能的实验结果。在特定的实验条件下,拉伸试验表明材料的瞬时脆化,在低温下更为明显,随着温度升高到450摄氏度以上,这种脆化消失。这种现象可以通过降低感应的裸金属表面能来解释通过液态金属的吸附。当钢在300°C的液态Pb-Bi共晶存在下经受低循环疲劳测试时,与在空气中进行的测试相比,其寿命会大大缩短。在这种情况下,考虑到导致疲劳断裂的机制的复杂性,将观察到的脆化归因于唯一的表面能降低效应更加困难,但是在裂纹最尖端处吸附诱导的塑性变形局部化是一个有吸引力的假设。 (C)2005年Springer Science + Business Media,Inc.

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