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Fatigue durability of nylon rope for permanent mooring design

机译:永久系泊设计尼龙绳索的疲劳耐久性

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Over the last nine years three major research studies have led to the development of a new design of nylon rope suitable for permanent moorings with design lives in the region of at least 20 to 30 years. Prior to this research nylon rope designs had a fatigue performance which was only adequate for temporary moorings typically lasting six months to a few years. This paper reviews two pivotal very long duration tests (10 and 20 million cycles) which were inspected for damage following completion of the load cycling, before measuring the residual breaking strength. In addition to these very long duration tests which were undertaken with load ranges more representative of wave loading, to account for all the ranges experienced through life it is necessary to be able to calculate any strength loss. Hence, a series of "partial life" fatigue tests was conducted to determine the strength loss for a series of load ranges. In these tests rope samples were cycled to a representative number of cycles which the rope would experience in service before stopping the test to assess the accumulated damage by means of a series of rope yarn tests. The residual breaking strength data is presented for critical layers through the cross-section which clearly identifies how yarns in different positions in the rope are exposed to varying degrees of inter-strand abrasion. A preliminary strength loss relationship was developed which could then be used to calculate strength loss for the fatigue spectrum based on an example mooring analysis of a WEC device. This work was successfully undertaken under the umbrella of UK Government funded Research and Development test programmes driven by consultancy firm Tension Technology International (TTI), as part of a team with rope-maker, certification body and wave energy converter (WEC) developer. The results of these projects have created a new technology enabling improved mooring systems with the additional benefit of significant cost reduction for the renewables industry. This technology can also be applied to any offshore mooring system where first order motions create high peak line loads.
机译:在过去的九年来,三个主要的研究研究导致开发适用于永久停泊的尼龙绳索的新设计,其中设有至少20至30年的设计。在本研究之前,尼龙绳索设计具有疲劳性能,仅适用于临时停泊,通常持续六个月到几年。本文评论了两种枢轴非常长的持续时间测试(10和2000万个循环),在测量残留断裂强度之前,在载荷循环完成后,在载荷循环后进行检查。除了与负载范围进行的波浪负荷所开展的这些非常长的持续时间测试之外,要考虑通过生活所经历的所有范围,有必要能够计算任何强度损失。因此,进行了一系列“部分寿命”疲劳试验以确定一系列负载范围的强度损耗。在这些测试中,绳索样品被循环到代表性的循环循环,在停止测试之前绳索在服务中经验,以通过一系列绳索测试评估累积损坏。通过横截面向临界层呈现残余断裂强度数据,该横截面清楚地识别绳索中不同位置中的纱线的纱线是如何暴露于不同程度的横跨磨损程度。开发了一种初步强度损失关系,其可以使用基于WEC器件的示例性系泊分析来计算疲劳谱的强度损失。这项工作在英国政府资助的研发测试计划下成功开展了由咨询公司紧张技术国际(TTI)驱动的资助研发测试计划,作为绳索制造商,认证机构和波能源转换器(WEC)开发商团队的一部分。这些项目的结果创造了一种新技术,可改善系泊系统,为可再生能源行业大大降低的额外收益。该技术也可以应用于任何海上系泊系统,其中一阶动机创造了高峰线负荷。

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