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Stress corrosion cracking and fracture toughness variation of high strength steels.

机译:高强度钢的应力腐蚀开裂和断裂韧性变化。

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摘要

The stress corrosion cracking process is at this moment an unknown mechanism of deterioration. It is a process that implies the joint action of the media, the presence of corrosion or a surface defect and of stress in the metal. Prestressing tendons can suffer SCC jointly with hydrogen embrittlement which dramatically changes not only the type of fracture (from ductile to brittle) but also the kinetics of the process leading to unexpected collapses. The metal should be resistant to this type of process which can be characterized by its toughness and therefore by its damage tolerance. This research shows that the Fracture Toughness change when the steel corrodes, questioning the idea that is an intrinsic characteristic of the material. The reduction in the fracture toughness of steel wires when they are in contact to aggressive media involve that the material fractures with a lower crack depth for the same stress level. That means that the material becomes less damage tolerant, which implies that it is necessary to detect defects of smaller size, as for example, small notch, pits or superficial cracks. In the paper some results of the percentage of decrease of the toughness of prestressing wires suffering corrosion are presented.
机译:此时,应力腐蚀开裂过程是未知的劣化机理。这是暗示介质的联合作用,金属中存在腐蚀或表面缺陷以及应力的过程。预应力筋会遭受SCC和氢脆的影响,这不仅会显着改变断裂的类型(从延性到脆性),还会显着改变过程的动力学,从而导致意外的坍塌。金属应能抵抗这种类型的过程,这种过程的特征在于其韧性,并因此具有抗损伤性。这项研究表明,当钢腐蚀时,断裂韧性会发生变化,这质疑了这种材料固有的特性。当钢丝与侵蚀性介质接触时,其断裂韧性的降低涉及在相同应力水平下,材料的断裂深度较低。这意味着材料的抗损伤性降低,这意味着必须检测较小尺寸的缺陷,例如小缺口,凹坑或表面裂纹。在本文中,提出了预应力线材的韧性下降百分比的一些结果,这些线材受到腐蚀。

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