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Effects of hydrogen assisted stress corrosion on damage tolerance of a high-strength duplex stainless steel wire for prestressing concrete

机译:氢辅助应力腐蚀对预应力混凝土用高强度双相不锈钢丝损伤容限的影响

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摘要

The study brings new insights on the hydrogen assisted stress corrosion on damage tolerance of a high-strength duplex stainless steel wire which concerns its potential use as active reinforcement for concrete prestressing. The adopted procedure was to experimentally state the effect of hydrogen on the damage tolerance of cylindrical smooth and precracked wire specimens exposed to stress corrosion cracking using the aggressive medium of the standard test developed by FIP (International Prestressing Federation). Stress corrosion testing, mechanical fracture tests and scanning electron microscopy analysis allowed the damage assessment, and explain the synergy between mechanical loading and environment action on the failure sequence of the wire. In presence of previous damage, hydrogen affects the wire behavior in a qualitative sense, consistently to the fracture anisotropy attributable to cold drawing, but it does not produce quantitative changes since the steel fully preserves its damage tolerance.
机译:这项研究为氢辅助应力腐蚀对高强度双相不锈钢线的损伤耐受性带来了新的见解,这涉及其潜在用途作为混凝土预应力的主动增强。所采用的程序是使用国际预应力联合会(FIP)开发的标准试验的侵蚀性介质,通过实验说明氢对暴露于应力腐蚀开裂的光滑且预破裂的圆柱形光滑钢丝试样的损伤容限的影响。应力腐蚀测试,机械断裂测试​​和扫描电子显微镜分析可以对损伤进行评估,并解释了机械载荷和环境作用对导线故障顺序的协同作用。在存在先前的损坏的情况下,氢会在质量上影响焊丝的性能,这始终归因于冷拔引起的断裂各向异性,但由于钢完全保留了其耐损伤性,因此氢不会产生定量变化。

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