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Fracture of high strength steel wires in corrosive environment

机译:腐蚀环境中高强度钢丝骨折

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This paper deals with the fracture of high strength steel wires under the influence of tensile stress and corrosive environment. The environmental agents include chlorides, sulfates and nitrates in the atmosphere. Under such environment, the wires experience two major forms of degradations: stress corrosion cracking and hydrogen embrittlement. Stress corrosion cracking produces material loss, pitting and cracking while hydrogen embrittlement is associated with loss in ductility and reduction in the fracture toughness. Both degradations lead to significant loss in tensile strength and eventual failure of the wires. A fracture mechanics model quantifying the degradation is discussed with a view toward assessing the load-carrying capacity of the wires.
机译:本文涉及高强度钢丝骨折,在拉伸应力和腐蚀性环境的影响下。环境试剂包括大气中的氯化物,硫酸盐和硝酸盐。在这种环境下,电线经历了两种主要的降解形式:应力腐蚀裂解和氢脆。应力腐蚀裂解产生物质损失,蚀力和裂缝,而氢脆与延展性损失相关,并且裂缝韧性降低相关。两种降解导致拉伸强度的显着损失,导线的最终失效。讨论量化降解的断裂力学模型,以评估电线的承载能力的视图。

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