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End formation of a round tube into a square section having small corner radii

机译:将圆管的端部形成为具有小拐角半径的方形截面

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Expansion and reduction are the two common end forming processes for tubes. In the tube end expansion process using a square punch, it is difficult to obtain a small corner radii due to the stretching of the tube around the punch corners. The wall thickness around the corners is small when compared to the side wall. Hence, a tube having a poor square look is formed. In this study, a 2-stage end expansion of a round tube end into a square section having an improved square look i.e. small corner radii and increase in wall thickness around corners is developed. In the 1st stage, the tube end is flared into a cone shape using a 30° conical die by axial compression. In the 2nd stage, the conical end of the tube is drawn through a taper square die using a conical bottom square punch, and a near square section is formed. A 15% ironing ratio is applied during the drawing process to flatten the side wall of the square. Experimental and FEM simulation were performed to evaluate and to verify the forming process. Although the height of the square section increases when the punch stroke at the 1st stage is increased. However, this increase is limited by the buckling of the pipe at the circular section of the thick blank tube. Since the conical end is drawn into a square section having different radial lengths, the bottom of the square section is uneven. The uneven bottom end is trimmed off in the later process. A square section having a maximum height of 32 mm after trimming is successfully obtained from the experiment for the punch stroke, S = 44 mm using an API 5 L tube.
机译:膨胀和缩小是管材的两种常见的端部成形工艺。在使用方形冲头的管端膨胀过程中,由于管围绕冲头拐角的拉伸而难以获得小的拐角半径。与侧壁相比,拐角处的壁厚较小。因此,形成了具有不良方形外观的管。在该研究中,开发了将圆管端部的两阶段端部膨胀成具有改善的正方形外观即小拐角半径和拐角周围的壁厚增加的正方形截面。在第一阶段,使用30°锥形模具通过轴向压缩将管端扩口成圆锥形。在第二阶段中,使用圆锥形底部方形冲头通过锥形方形模具拉出管的圆锥形末端,并形成近方形截面。在拉伸过程中施加15%的熨烫率以使正方形的侧壁变平。进行了实验和有限元模拟,以评估和验证成形过程。当第一阶段的冲压行程增加时,正方形部分的高度会增加。但是,这种增加受到在厚的空白管子的圆形截面处管子弯曲的限制。由于锥形端被拉成具有不同径向长度的正方形部分,因此正方形部分的底部是不平坦的。不平坦的底端在后续过程中被修剪掉。使用API​​ 5 L管从冲头的实验中成功获得修整后最大高度为32 mm的正方形截面,S = 44 mm。

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