Corrosive-wear of buoy chain

C. Kohler
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引用次数: 2

Abstract

Abstract : Corrosive-wear, which is responsible for the majority of buoy chain degradation, was investigated in two laboratory studies. The objective of the first study was to isolate the two components, corrosion and wear, in order to determine each of their influences on the corrosive-wear process on steels. The second study was designed to produce uniform wear on the steel's surface, providing more accurate data on the steel's wear resistance and to determine the effects of alloy additions. The steel presently being used for buoy chain, which is similar in composition to ASTM 1022 steel, was compared to ASTM 4140, 4340, 8740, and a heat-treatment 4140 steel in order to identify a material which would provide a longer life buoy chain. The results of the experiments showed that the wear component contributed material losses of one to two orders of magnitude greater than the corrosion process. It was also determined that the 4340 steel would be the most suitable material for longer life buoy chain. This alloy's high nickel content would reduce the potential for pitting attack, which can be extremely damaging to a mooring. The microstructure of the 4340, with a low ferrite to pearlite ratio and fine grain size, would provide an increased wear resistance of up to four times greater than the 1022 steel. (Author)
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浮标链的腐蚀磨损
摘要:在两项实验室研究中,对造成浮筒链降解的主要原因腐蚀磨损进行了研究。第一项研究的目的是分离腐蚀和磨损这两个组成部分,以确定它们对钢的腐蚀磨损过程的影响。第二项研究的目的是在钢的表面产生均匀的磨损,提供更准确的钢的耐磨性数据,并确定合金添加的影响。目前用于浮标链的钢与ASTM 1022钢成分相似,与ASTM 4140、4340、8740和热处理4140钢进行了比较,以确定一种能提供更长的救生圈链的材料。实验结果表明,磨损对材料损失的贡献比腐蚀过程大一到两个数量级。同时确定4340钢是较长救生圈链条的最合适材料。这种合金的高镍含量可以减少点蚀的可能性,点蚀对系泊系统造成极大的破坏。4340的微观组织具有较低的铁素体与珠光体之比和细小的晶粒尺寸,其耐磨性比1022钢提高了4倍。(作者)
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