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Hydrogen Embrittlement Susceptivity of Hot-dip Galvanized Steel in Wet-dry Cyclic Simulated Marine Atmospheric Environment

机译:热浸镀锌钢在湿干循环模拟海洋大气环境中的氢气脆化易感性

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摘要

Hydrogen permeation and embrittlement behavior of hot-dip galvanized steels in wet-dry cyclic simulated marine atmospheric environment was investigated by hydrogen permeation current measurement using modified Devanathan-Stachurski cell, slow strain rate tensile test and scanning electron microscopy technique. It was found that hydrogen absorption was accelerated in wet-dry cyclic environment. On the other hand, hydrogen absorption and permeation reduced the percentage elongation after fracture of galvanized steel specimens; meanwhile, the fracture characteristics of samples fringe occurred some lacerated phenomena, i.e., galvanized steels show a higher susceptivity of hydrogen embrittlement when exposed to wet-dry cyclic marine atmospheric environment.
机译:通过改进的德那森 - Stachurski池,慢应变率拉伸试验和扫描电子显微镜技术研究了湿干循环模拟海洋大气环境中热浸循环模拟船舶环境中热浸镀锌钢的氢渗透和脆化行为。发现在湿干循环环境中加速了氢吸收。另一方面,氢吸收和渗透率降低了镀锌钢标本骨折后的伸长率;同时,样品的裂缝特性发生一些撕裂现象,即镀锌钢在暴露于湿干循环海洋大气环境时显示出氢脆化的易感性。

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