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Numerical and experimental study on expansion forming of inner grooved tube

机译:内沟槽管膨胀成形的数值与实验研究

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摘要

Inner grooved copper tubes have attracted more and more attention in recent years. In mass production of tube-fin heat exchanger plates in ACR (air conditioning and refrigeration) industry, mechanical expansion is a key forming process which joins the fins to the tubes. During the process, the spiral grooves inside the tube with thermally efficient geometries are deformed and the tube-fin joints are influenced by the groove layer. In this paper, tube expansion forming process is studied and effect of the groove shape on forming quality is analyzed. Experiments are performed with tubes of different groove types. FE (finite element) model of the forming process is developed. Influences of the key geometry parameters, such as groove height ratio, apex and helix angle, on strength of the grooves as well as tube wall thinning are investigated. Sections of the tube-fin joints are observed and the die geometry on the joining status is examined. The results indicate that helix angle has significant effect on groove height reduction while groove height ratio is the main factor influencing the deformation resistant force; outer diameter and radius of the front part of the expanding die influence the tube-fin joining status.
机译:内沟槽铜管近年来引起了越来越多的关注。在ACR(空调和制冷)行业的管翅式换热器板的批量生产中,机械膨胀是将翅片连接到管的关键成型工艺。在此过程中,具有热有效几何形状的管子内部的螺旋形沟槽会变形,并且管-翅片接缝会受到沟槽层的影响。本文研究了扩管成形过程,分析了槽形对成形质量的影响。使用不同凹槽类型的管进行实验。开发了成形过程的有限元模型。研究了关键几何参数(例如凹槽高度比,顶点和螺旋角)对凹槽强度以及管壁变薄的影响。观察管翅式接头的截面,并检查接合状态下的模具几何形状。结果表明,螺旋角对减小槽高有显着影响,而槽高比是影响抗变形力的主要因素。扩口模前部的外径和半径会影响管翅片的连接状态。

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