Failure Analysis of Wire Rope

B. Miller
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Abstract

Mechanical properties of wire ropes, their chemical composition, and the failure analysis process for them are described. The wires are manufactured from high-carbon, plain carbon steel, with high-strength ropes most often manufactured from AISI Grade 1074. During visual failure examination, the rope, strand, and wire diameters should all be measured. Examination should also address the presence or absence of lubricant, corrosion evidence, and gross mechanical damage. Failed wires can exhibit classic cup-and-cone ductile features, flat fatigue features, and various appearances in-between. However, wires are often mechanically damaged after failure. Most nondestructive evaluation (NDE) techniques are not applicable to wire rope failures. Electron microscope fractography of fracture surfaces is essential in failure analysis. Fatigue is the most important fracture mode in wire ropes. Metallographic features of wire ropes that failed because of ductile overload and fatigue are described.
钢丝绳失效分析
介绍了钢丝绳的力学性能、化学成分及失效分析方法。钢丝由高碳,普通碳钢制成,高强度绳通常由AISI 1074级制造。目测故障检查时,应测量钢丝绳、股线和钢丝的直径。检查还应确定是否存在润滑剂、腐蚀证据和严重的机械损伤。失效导线可以表现出经典的杯锥延展性特征,扁平疲劳特征,以及介于两者之间的各种外观。然而,电线在故障后往往会机械损坏。大多数无损评价(NDE)技术不适用于钢丝绳失效。断口表面的电子显微镜断口形貌在失效分析中是必不可少的。疲劳断裂是钢丝绳最主要的断裂方式。描述了因韧性过载和疲劳而失效的钢丝绳的金相特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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