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Effect of stress corrosion cracking on stress-strain response of steel wires used in prestressed concrete beams

机译:应力腐蚀开裂对预应力混凝土梁用钢丝应力-应变响应的影响

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摘要

This paper presents an experimental study of the stress corrosion cracking (SCC) process on 8-mm-diam-eter wires which are used industrially in precast concrete prestressed by pre-tension. The service life of steel wires under accelerated SCC and the reduction of their mechanical performance are studied. A dynamic analysis to detect the damage to corroded wire due to SCC before brittle failure and the influence of internal defects on the service life of stress corroded wire are also presented. The study shows that stress corrosion cracking is characterized by an evolution to SCC from pitting corrosion attacks that result in the development of both micro-cracking and micro-voids in the steel bulk. The stress level does not influence the composition of corrosion products. It is a major factor of SCC development, leading to a considerable reduction in the ultimate strain and thus to brittle failure of the corroded wires. Local defects on the steel surface increase the SCC effect due to stress corrosion concentration. A reduction in the elastic modulus and the elastic limit, which may reach 25% and 15%, respectively, can be expected due to steel micro-cracking. No damage detection through mechanical analysis seems possible before the brittle failure occurs as the corrosion is very localized and so does not globally reduce the tension in the wires.
机译:本文介绍了对直径8毫米的钢丝进行应力腐蚀开裂(SCC)工艺的实验研究,该钢丝在工业上用于预拉伸预应力混凝土。研究了加速SCC条件下钢丝的使用寿命及其力学性能的降低。提出了一种动态分析方法,用于检测脆性破坏之前由SCC引起的腐蚀丝损坏,以及内部缺陷对应力腐蚀丝使用寿命的影响。研究表明,应力腐蚀开裂的特征是从点腐蚀开始向SCC演变,这导致了钢坯中的微裂纹和微孔的发展。应力水平不影响腐蚀产物的成分。这是SCC发展的主要因素,导致极限应变的显着降低,从而导致腐蚀的钢丝脆性破坏。由于应力腐蚀集中,钢表面的局部缺陷会增加SCC效应。由于钢的微裂纹,可以预期其弹性模量和弹性极限分别下降25%和15%。由于腐蚀非常局部化,因此在脆性破坏发生之前似乎不可能通过机械分析来检测损坏,因此不会整体降低导线中的张力。

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  • 来源
    《Corrosion science》 |2009年第6期|1453-1459|共7页
  • 作者单位

    Universite de Toulouse, UPS, INSA, LMDC, Laboratoire Materiaux et Durabilite des Constructions, 137 Avenue de Rangueil, F 31077 Toulouse, France;

    Universite de Toulouse, UPS, INSA, LMDC, Laboratoire Materiaux et Durabilite des Constructions, 137 Avenue de Rangueil, F 31077 Toulouse, France;

    Universite de Toulouse, UPS, INSA, LMDC, Laboratoire Materiaux et Durabilite des Constructions, 137 Avenue de Rangueil, F 31077 Toulouse, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    steel wire; C. Stress corrosion; brittle failure; micro-crack; A. Concrete;

    机译:钢丝;C.应力腐蚀;脆性破坏微裂纹A.混凝土;

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