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Failure analysis of cold drawn prestressing steel wires subjected to stress corrosion cracking

机译:冷拔预应力钢丝应力腐蚀开裂的失效分析

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This paper analyzes the stress corrosion performance of cold drawn prestressing steels with different degrees of cold drawing, in the two cases of pure stress corrosion cracking and fracture by hydrogen embrittlement. Results show a progressively anisotropic stress corrosion behaviour with cold drawing, and this anisotropy could be induced by the microstructural orientation. Consequences for engineering design are derived on the basis of the calculation of the transition stress intensity factor (from the stress corrosion subcritical crack growth to the critical cleavage propagation). While in situations of pure stress corrosion cracking such a value is even higher than the fracture toughness of the material in air (due to crack tip blunting), in the case of hydrogen embrittlement there is a marked reduction of stress intensity factor value, which indicates that these steels are highly susceptible to this phenomenon.
机译:本文分析了在两种不同的纯应力腐蚀开裂和氢脆断裂情况下,不同冷拔程度的冷拔预应力钢的应力腐蚀性能。结果表明,随着冷拔的进行,各向异性应力腐蚀行为逐渐发生,并且这种各向异性可以由微观结构取向引起。在计算过渡应力强度因子的基础上得出了工程设计的结果(从应力腐蚀亚临界裂纹的生长到临界裂隙的扩展)。尽管在纯应力腐蚀开裂的情况下,该值甚至高于材料在空气中的断裂韧性(由于开裂尖端钝化),但在氢脆的情况下,应力强度因子值会明显降低,这表明这些钢很容易受到这种现象的影响。

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