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EFFECTS OF CYCLIC PLASTIC STRAIN ON HYDROGEN ENVIRONMENT ASSISTED CRACKING IN HIGH-STRENGTH STEEL

机译:循环塑性应变对高强度钢氢气环境的影响

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Cyclic loading tests were performed on micro-notched samples of high-strength steel S690QL (standard EN 10137-2) in air and under cathodic polarization in a saline solution. These specimens were modeled and their behavior simulated by finite elements calculations with a combined nonlinear isotropic-kinematic hardening constitutive law. This model can simulate cyclic softening and ratcheting effect of the high-strength steel. Stress and strain fields in the vicinity of the notch-tip were calculated. Results show a strong dependence of the crack initiation with plastic strain accumulation. Hydrogen assisted cracking mechanism is discussed based on arrangements of dislocations structures.
机译:在空气中的高强度钢S690QL(标准EN 10137-2)的微缺痕样品和盐水溶液中的阴极偏振下进行循环加载试验。这些样品被建模及其通过有限元计算模拟的行为,其具有组合的非线性各向同性 - 运动型硬化构成型法。该模型可以模拟高强度钢的循环软化和棘轮效果。计算了凹口附近的应力和应变场。结果表明裂纹启动与塑料应变累积的强烈依赖。基于位错结构的布置讨论了氢辅助裂解机构。

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