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Effect of Hydrogen Charging on Low Cycle Fatigue Life and its Dependence on Cementite Morphology

机译:氢充注对低周疲劳寿命的影响及其对渗碳体形态的影响

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摘要

Hydrogen deteriorates the strength of steel, and it is well known as hydrogen embrittlement. The sus ceptibility to this embrittlement is generally increased more with higher strength steels under the usual static loading. Meanwhile fatigue strength is more important in structural use; it is desired to clarify the effect of hydrogen on the properties under cyclic loading. Present paper deals with the effects of hydro gen entry on the strain controlled low cycle fatigue properties of low carbon steel (JIS S10C), which is the most basic kind of steels. With the information about hydrogen in steels, the extent of hydrogen damage in fatigue life and its dependence to cementite morphology were discussed. The total hydrogen content of 0.5-1.5 mass-ppm severely degrades the fatigue life of normalized S10C, which is not so strong and almost insusceptible to hydrogen embrittlement under static loading. The fracture surface is accompanied with fish-eye fracture surface. This is originated at inclusion and propagating with quasi-cleavage and vague striation. The hydrogen gas atmosphere formed around inclusion during cyclic loading is claimed to be the major reason for the degradation. Spheroidizing heat treatment makes the steel free from the degradation. The hydrogen claimed for the degradation of fatigue life is what has been trapped by pearlite or cementite/ferrite interface, because this interface is reduced by the spheroidizing treatment. It is not the hydrogen that was trapped by non-metallic inclusion before fatigue test.
机译:氢会降低钢的强度,众所周知,氢脆。通常,在通常的静态载荷下,强度更高的钢对这种脆化的敏感性通常会提高。同时,疲劳强度在结构使用中更为重要。希望阐明氢对循环负载下性能的影响。本文研究了氢的进入对低碳钢(JIS S10C)的应变控制低循环疲劳性能的影响,这是最基本的钢种。利用有关钢中氢的信息,讨论了氢在疲劳寿命中的破坏程度及其对渗碳体形态的依赖性。 0.5-1.5质量ppm的总氢含量严重降低了归一化S10C的疲劳寿命,该疲劳强度不那么强,几乎不受静态载荷下氢脆的影响。断裂面伴有鱼眼断裂面。这是由于包容和准分裂和模糊条纹的传播而产生的。据称在循环加载期间在夹杂物周围形成的氢气气氛是降解的主要原因。球化热处理可使钢免于降解。要求降低疲劳寿命的氢是珠光体或渗碳体/铁素体界面所捕获的氢,因为该界面通过球化处理而被还原。疲劳测试之前,非金属夹杂物捕获的不是氢。

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