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Factors Causing Hydrogen Embrittlement of Cold-Drawn Pearlitic Steel Fractured Under Elastic/Plastic Region

机译:弹塑性区断裂的冷拉珠光体钢氢脆的影响因素

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Factors causing hydrogen embrittlement of cold-drawn pearlitic steel fractured under plastic/elastic region have been investigated from the perspective of lattice defects. Tensile tests were conducted for hydrogen-charged specimens containing 1.5 and 4.0 mass ppm hydrogen to evaluate mechanical properties. The amount of tracer hydrogen, i.e., lattice defects in the specimens unloaded just before tensile fracture strength, was measured using a thermal desorption analysis. Specimens containing 1.5 and 4.0 mass ppm hydrogen fractured under plastic and elastic region, respectively. The specimen fractured under plastic region showed enhanced formation of lattice defects corresponding to vacancies, which directly caused embrittlement. In contrast, the specimen fractured under elastic region showed no enhancement to the formation of lattice defects. These results reveal that one of the factors causing hydrogen embrittlement under plastic region is due to hydrogen-enhanced strain-induced vacancies, whereas the factors causing hydrogen embrittlement under elastic region are due to others.
机译:从晶格缺陷的角度研究了导致塑性/弹性区断裂的冷拔珠光体钢氢脆的因素。对包含1.5和4.0质量ppm氢气的充氢样品进行了拉伸试验,以评估其机械性能。使用热脱附分析测量示踪剂氢的量,即在刚好拉伸断裂强度之前卸载的样品中的晶格缺陷。含有1.5和4.0质量ppm氢的样品分别在塑性和弹性区域破裂。在塑性区下断裂的试样显示出对应于空位的晶格缺陷形成的增强,这直接导致脆化。相反,在弹性区域下断裂的样品没有增强晶格缺陷的形成。这些结果表明,在塑性区域下引起氢脆的因素之一是由于氢增强的应变引起的空位,而在弹性区域下引起氢脆的因素是由于其他因素。

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