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关于采用电弧焊增材制造提高管道连接端口强度和耐久性的研究。

The research on enhancing the strength and durability of pipeline connection ports using arc welding additive manufacturing.

作者信息

Chen Xiaoben, Zhang Bo, Shen Fanglin, Jiao Chunxiao, Chang Jingshu, Feng Chuan, Li Wei

机构信息

Construction Project Management Branch, National Petroleum and Natural Gas Pipeline Network Group Co., Ltd., Langfang, China.

School of Mechanical Engineering, University of Science and Technology Beijing, Beijing, China.

出版信息

PLoS One. 2025 Jun 4;20(6):e0324598. doi: 10.1371/journal.pone.0324598. eCollection 2025.

Abstract

In long-distance pipelines, the connection between pipelines is often the weakest link. During the manufacturing process of pipelines, roundness errors or defects are inevitable, and the greater the difference between the maximum and minimum diameters, the greater the impact on the strength of pipeline connections. At present, the main method to improve the pipe end is casting upsetting. However, there are currently no reports on using additive manufacturing technology to optimize pipeline ellipticity and improve pipe end strength and stiffness. This article solves the problem of weak weld strength at the connection end of oil pipelines and proposes for the first time the method of using arc additive manufacturing technology to thicken and reinforce the pipe end. By analyzing the ellipticity of the pipe end, arc based additive manufacturing technology is used to thicken the pipe end, thereby improving the strength and stiffness of the pipeline connection weld. This paper establishes a mathematical model for optimizing the design of pipeline connection ends, with remanufacturing thickness, length, and pipe end radius as design variables and pipe end strength and stiffness as constraints, and obtains the optimal parameter combination. The optimization results show that under typical working conditions, the optimized pipe end strength is significantly improved, the strain is significantly reduced, and the pipeline can withstand higher pressure, thereby improving the overall reliability and safety of the pipeline.

摘要

在长输管道中,管道之间的连接往往是最薄弱的环节。在管道制造过程中,圆度误差或缺陷不可避免,最大直径与最小直径之差越大,对管道连接强度的影响就越大。目前,改善管端的主要方法是铸造镦粗。然而,目前尚无关于使用增材制造技术优化管道椭圆度、提高管端强度和刚度的报道。本文解决了输油管道连接端焊接强度薄弱的问题,并首次提出了采用电弧增材制造技术对管端进行增厚强化的方法。通过分析管端椭圆度,利用电弧增材制造技术对管端进行增厚,从而提高管道连接焊缝的强度和刚度。本文建立了管道连接端优化设计的数学模型,以再制造厚度、长度和管端半径为设计变量,以管端强度和刚度为约束条件,得到了最优参数组合。优化结果表明,在典型工况下,优化后的管端强度显著提高,应变显著降低,管道能够承受更高的压力,从而提高了管道的整体可靠性和安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fad8/12136347/dd2867d9a8c7/pone.0324598.g001.jpg

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