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Copper-Aluminothermic weld characterization on line pipes for cathodic protection

机译:阴极保护管线上的铜铝热焊接特征

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Copper-Aluminothermic weld is a process in which welder is generated by thermofusion. The necessary heat is obtained by the aluminum reducing effect above copper oxide, creating a high temperature exothermic reaction, in which melt and overheated copper is the filler material [1].This technique is used to joint rails in railway industry, in grounding welds [2, 3] and also in linepipes for cathodic protection. In this study copperaluminothermic weld is characterized for API 5L X46 and X52 steel linepipes for cathodic protection, considering two different thickness, changing the copper wire section and the flux amount. The purpose is to obtain the optimum welding conditions, therefore macroscopic and microscopic tests, and microhardness sweep are going to be performed on the heat affected zone. Twenty-five test tubes were realized, taking also into account different flux and gunpowder brands and melting pot sizes. An inadequate contact area can cause lack of pipe cathodic protection as well as an excessive copper diffusion into the grain boundaries can produce accelerated corrosion and microcracks in the base metal [4,1], for that reason is necessary to obtain optimum welding conditions according to the steel grade and pipe thickness.
机译:铜铝热焊接是通过热熔合产生焊工的过程。通过氧化铜上方的铝还原作用获得必要的热量,从而产生高温放热反应,其中熔融和过热的铜是填充材料[1]。该技术用于铁路工业中的钢轨,接地焊缝[ [2,3]以及在管道中进行阴极保护。在这项研究中,考虑到两种不同的厚度,改变了铜线的截面和焊剂的用量,对用于API 5L X46和X52阴极保护的钢制管线管的铜铝热焊接进行了表征。目的是获得最佳的焊接条件,因此将在热影响区进行宏观和微观测试以及显微硬度扫描。考虑到不同的助焊剂和火药品牌以及熔炉尺寸,实现了25个试管。接触面积不足会导致缺乏管道阴极保护,并且过多的铜扩散进入晶界会加速腐蚀,并在母材中产生微裂纹[4,1],因此必须根据以下条件获得最佳焊接条件:钢材等级和管道厚度。

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