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Systematic Approach to Problem Solving of Low Quality Arc Welding during Pipeline Maintenance Using ARIZ (Algorithm of Inventive Problem Solving)

机译:使用ARIZ(创造性问题解决算法)解决管道维修中劣质弧焊问题的系统方法。

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The pipelines in the oil and gas industry must be regularly checked for possible corrosion that might cause leakage of oil and gas. Magnetic flux leakage (MFL) technique is a magnetic method of nondestructive testing that is used to detect corrosion and metal loss in steel pipelines. The MFL device travels inside a pipeline to inspect the corrosion parts with a powerful magnet which is used to magnetize the pipe wall. At areas where there is corrosion or missing metal, the magnetic field leaks from the pipe wall and will be detected by magnetic sensors placed between the poles of the magnet and data is transmitted to the outside recording device for analysis. The problem occurs when it is necessary to remove the damaged segments of the pipe and replace them with the new ones by welding them to the existing pipelines. It is found that welding rod and arc column are subjected to some kind of force that causes them to deviate from the right position. In this paper, the problem of low quality arc welding during pipeline maintenance due to residual magnetic field on the pipeline caused by MFL inspection device is systematically analyzed to find the root causes and ideal solution of which internal resources are utilized, is attained by using ARIZ (in this paper, magnetic field from welding current is selected). Computer simulation using finite element method and field test are conducted and show satisfactory result for the proposed idea. (41 views)
机译:石油和天然气行业的管道必须定期检查是否存在可能导致油气泄漏的腐蚀。磁通量泄漏(MFL)技术是一种无损检测的磁性方法,用于检测钢管中的腐蚀和金属损失。 MFL设备在管道内行进,用强大的磁体检查腐蚀部位,该磁体用于对管壁进行磁化。在存在腐蚀或金属缺失的区域,磁场会从管壁漏出,并且将被放置在磁体两极之间的磁传感器检测到,并且数据会传输到外部记录设备进行分析。当有必要移除损坏的管段并通过将其焊接到现有管道上来更换新的管段时,就会出现问题。发现焊条和电弧柱承受某种力,使它们偏离正确的位置。本文系统分析了MFL检测装置在管道维修过程中由于管道上残留的磁场而产生的低质量弧焊问题,找到了根本原因,并提出了利用ARIZ进行内部资源利用的理想解决方案。 (在本文中,选择焊接电流产生的磁场)。进行了使用有限元方法的计算机仿真和现场测试,结果表明该想法令人满意。 (41观看次数)

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