绳子
材料科学
弯曲
纤维
复合材料
热的
变形(气象学)
结构工程
芯(光纤)
失效机理
热导率
工程类
物理
气象学
作者
Fanggang Ning,Xiaoru Li,Nick O Hear,Rong Zhou,Chuan Shi,Xin Ning
标识
DOI:10.1177/0040517518767147
摘要
Thermal damage is an important failure mechanism that affects the bending failure of fiber ropes. This is relevant because synthetic fibers often have a relatively low melting point and low thermal conductivity. In cyclic bending over sheave (CBOS), the heat generated by friction and deformation is not conducted rapidly to the external environment, and the temperature of the rope core increases quickly. This higher temperature greatly reduces the mechanical properties of the fiber, thus accelerating the final rope failure. In this paper, evidence of thermal damage in the bending process of a braided synthetic fiber rope is given. The test conditions inducing thermal damage are discussed, including stress level, bending frequency and diameter ratio. The reasons for the heat generation and the dynamic process of heat accumulation inside the rope during CBOS are also discussed. This study aims to provide theoretical and experimental guidance for the design and use of fiber rope.
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