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Evaluation of Delayed Fracture Property of High Strength Bolt Steels

机译:高强度螺栓钢的延迟断裂性能评估

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摘要

Experimental studies attempting to evaluate the delayed fracture property of high strength bolt steels by using slow strain rate tests (SSRT) of circumferentially notched round bar specimens are reviewed in this paper. The relationship between the notch tensile strength (NTS) of the hydrogen-precharged specimens and the hydrogen content was approximated by power law relationship. It has been found that the local stress and the local diffusible hydrogen concentration control the occurrence of delayed fracture. To take into account the effect of hydrogen uptake from the environment, the notched bar specimens were subjected to cyclic corrosion test (CCT) and outdoor exposure, and their NTSs were measured using SSRT. The susceptibility of high strength steels to delayed fracture estimated from the decrease of NTS was correspondent to the fracture ratio of high strength bolts of the steels obtained by outdoor exposure tests, and was successfully evaluated with consideration of hydrogen uptake. Hydrogen entry behavior under CCT was monitored by electrochemical hydrogen permeation test, and continuous increase in hydrogen entry with growth of rust layer was observed. It is suggested that the “delay” of delayed fracture is the time required for the enhancement of the hydrogen entry efficiency.
机译:本文综述了尝试通过慢速应变率试验(SSRT)对带缺口的圆棒试样进行评估以评估高强度螺栓钢的延迟断裂性能的实验研究。预充氢试样的缺口抗拉强度(NTS)与氢含量之间的关系通过幂律关系进行近似。已经发现,局部应力和局部扩散氢浓度控制了延迟断裂的发生。考虑到从环境中吸收氢的影响,对带缺口的钢筋样品进行了循环腐蚀测试(CCT)和室外暴露,并使用SSRT测量了它们的NTS。由NTS的降低估计的高强度钢对延迟断裂的敏感性与通过室外暴露试验获得的钢的高强度螺栓的断裂率相对应,并且在考虑氢吸收的情况下成功地进行了评估。通过电化学氢渗透测试监测CCT下的氢进入行为,并且观察到随着锈层的生长氢进入的连续增加。建议延迟断裂的“延迟”是提高氢进入效率所需的时间。

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