首页> 外文会议>ASME international mechanical engineering congress and exposition >EFFECT OF SEA-WATER ENVIRONMENT ON THE TENSILE AND FATIGUE PROPERTIES OF SYNTHETIC YARNS
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EFFECT OF SEA-WATER ENVIRONMENT ON THE TENSILE AND FATIGUE PROPERTIES OF SYNTHETIC YARNS

机译:海水环境对合成纤维拉伸和疲劳性能的影响

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Synthetic fibers are used for critical performance applications of marine rope and cable industries, apart from military applications. The high strength-to-weight ratio and corrosion resistance offered by polymeric synthetic fibers makes them superior alternatives to steel wire ropes particularly in marine applications. These marine ropes and cables are subjected to a complex history of static and cyclic mechanical loading during service, leading to sudden and unexpected failure. The presence of corrosive sea water medium during service adds to the complexity of the problem. Thus, it is essential to study the tensile and fatigue performance of these synthetic fibers in the presence of sea water. In this study, experiments were conducted to examine the effect of marine environment on Vectran (Liquid Crystal Polymer) yarns. The first set of experiments analyzed the tensile strength degradation of Vectran yarns when exposed to simulated sea water for two months. The experiments were performed on Parallel continuous filament yarns and Twisted continuous filament yarns (0.5 twists per centimetre) and the results compared. In the second set of experiments, Vectran yarns were subjected to load controlled fatigue in dry state and continuously wetted state under tension-tension loading at a nominal frequency of 0.1-0.5 Hz. Stress vs. Number of cycles graphs were plotted to compare the fatigue performance in dry and wet conditions. Fatigue experiments were performed on Parallel and Twisted yarns to study the combined effect of twisting and wetting. Scanning Electron Microscopy was used to observe filament surface and failure mechanism. The results indicate that, twisting the continuous filament yarns improves both tensile strength and fatigue performance. Sea water exposure degrades the tensile strength of Parallel yarns. Twisted yarns show no such degradation. The fatigue performance of Parallel yarns appears to be higher in dry state compared to wet state. The fatigue performance of Twisted yarns seems to increase with wetting. SEM images show that failure of filaments is by severe fibrillation.
机译:除军事用途外,合成纤维还用于船用绳索和电缆行业的关键性能应用。聚合物合成纤维具有很高的强度重量比和耐腐蚀性,使其成为钢丝绳的极佳替代品,特别是在船舶应用中。这些船用绳索和电缆在使用过程中会经历复杂的静态和周期性机械载荷历史,从而导致突然的意外故障。维修期间腐蚀性海水介质的存在增加了问题的复杂性。因此,在海水存在下研究这些合成纤维的拉伸和疲劳性能至关重要。在这项研究中,进行了实验以检查海洋环境对Vectran(液晶聚合物)纱线的影响。第一组实验分析了Vectran纱线在模拟海水中暴露两个月后其抗拉强度下降的情况。在平行连续长丝纱线和加捻连续长丝纱线(0.5捻/厘米)上进行实验,并将结果进行比较。在第二组实验中,Vectran纱线在0.1-0.5 Hz的标称频率下在张力和张力负载下处于干燥状态和连续润湿状态下,受到负载控制的疲劳。绘制了应力与循环次数的关系图,以比较在干燥和潮湿条件下的疲劳性能。对平行纱线和加捻纱线进行了疲劳试验,以研究加捻和润湿的综合作用。用扫描电子显微镜观察灯丝表面和破坏机理。结果表明,加捻连续长丝纱线可同时提高抗张强度和疲劳性能。海水暴露会降低平行纱的拉伸强度。加捻纱没有这种降解。与湿态相比,平行纱在干态下的疲劳性能似乎更高。加捻纱的疲劳性能似乎随着润湿而增加。 SEM图像表明,细丝的失效是由于严重的原纤化引起的。

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