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EXPERIMENTAL INVESTIGATION OF FATIGUE PERFORMANCE OF A 300 mm~2 COPPER POWER CONDUCTOR

机译:300 mm〜2铜功率导体疲劳性能的实验研究

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Electrical power cables are used in conjunction with floating units for provision of energy to installations on the sea bed, power from land to the floater, or export of power from a wind turbine to land. Power cables that are linked to a floating unit are subjected to fatigue loading from the waves and due to the movement of the vessel in the waves. Fatigue strength needs to be verified for design. Fatigue performance of a 300 mm~2 stranded copper conductor was investigated. The experimental work included fatigue tests of individual wires and full cross section conductors including unlubricated and lubricated conductors. Individual wires from different layers were tested in tension-tension mode with stress ratio R = 0.1. Full cross-section conductors were tested in cyclic reversed bending with constant tension at ends, simulating the loading at the top end of a conductor hanging off a floating structure through a bellmouth. The objective of this paper is experimental assessment of the fatigue strength of a 300 mm~2 copper conductor and to investigation of the mechanisms of fatigue crack initiation and growth in individual wires. At the time of submission the test program was still in progress, and conclusions are tentative only. An updated paper with complete results will be published at a later stage.
机译:电力电缆与浮动装置结合使用,可为海床上的设施提供能量,从陆地到浮子的电力或从风力涡轮机到陆地的电力输出。链接到浮动单元的电缆承受着波浪的疲劳载荷,并且由于船舶在波浪中的运动。疲劳强度需要进行设计验证。研究了300 mm〜2股铜绞线的疲劳性能。实验工作包括对单根导线和包括未润滑和已润滑导体在内的全截面导体的疲劳测试。在应力比R = 0.1的情况下,以张力-张力模式测试了来自不同层的单线。对完整横截面的导体进行循环反向弯曲测试,并在两端施加恒定张力,以模拟通过喇叭口悬在浮式结构上的导体顶端的负载。本文的目的是对300 mm〜2铜导体的疲劳强度进行实验评估,并研究单根线的疲劳裂纹萌生和扩展的机理。在提交时,测试程序仍在进行中,结论仅是暂定的。具有完整结果的更新论文将在以后发布。

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