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Method of Evaluating Hydrogen Embrittlement Susceptibility of Tempered Martensitic Steel Showing Intergranular Fracture

机译:钢化马氏体钢氢脆易感性评价晶体骨折的方法

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摘要

A stress application method in delayed fracture susceptibility tests was investigated using 1450 MPa class tempered martensitic steel. Its fracture mode under hydrogen charging was mainly intergranular because of its relatively small Si content of 0.21 mass pct. The conditions for consistency in fracture strength between tensile tests and constant load tests (CLTs) were clarified: first, to conduct hydrogen precharging before stress application; and second, to choose a sufficiently low crosshead speed in tensile tests. When hydrogen precharging was not conducted before CLTs, the fracture strength was higher than the values in CLTs with hydrogen charging and in tensile tests. If the crosshead speed was too high, the fracture strength obtained was higher than the values in CLTs. The dependence of the fracture strength on crosshead speed was seen for both notched and smooth bar specimens. These results suggested that plastic deformation, i.e., dislocation motion, was related to intergranular fracture with a tear pattern as well as to quasi-cleavage fracture. In addition, cathodic electrolysis in an alkaline solution containing NaOH should be used as the hydrogen charging method to avoid the effects of corrosion.
机译:采用1450MPa级钢化马氏体钢研究了延迟断裂易感性试验中的应力施加方法。其在氢气充电下的裂缝模式主要是晶间,因为其相对较小的Si含量为0.21质量%PCT。阐明了拉伸试验和恒定载荷试验(CLTS)之间的断裂强度稠度的条件:首先,在应力施加之前进行氢预充电;其次,在拉伸试验中选择足够低的十字头速度。当在CLT之前未进行氢预充电时,断裂强度高于氢气充电和拉伸试验中的CLTS中的值。如果十字头速度过高,则获得的断裂强度高于CLTS中的值。断裂强度对缺口和光滑的杆状标本的依赖性对十字头速度。这些结果表明,塑性变形,即脱位运动,与晶体骨折有撕裂图案以及准切割骨折。此外,含有NaOH的碱性溶液中的阴极电解应用作氢气充电方法,以避免腐蚀的影响。

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