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Process Planning for the Lateral Extrusion of a Pipe with a Lost Core

机译:用损失芯的管道横向挤出的过程规划

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In this paper, the authors discuss process planning for the lateral extrusion of a pipe with a lost core. In this process, maximum longitudinal length of the bulged part is restricted by the balance of the extrusion speed of the material and the lost core. In the free bulging condition, longitudinal length is limited to the pipe radius, because the extrusion speed of the core is slower than that of the pipe material when the longitudinal length of the bulged part is longer. The authors designed a two-stage forming process using the transit shape of a truncated cone to solve this problem. The dimensions of the truncated cone were estimated through trial-and-error using a commercial FEM simulator and considering the stretch effect for wrinkles of the pipe by deformation and traveling of the lost core. Finally, the authors conducted experiments to confirm the design's validity. As a result, a longer longitudinal length of the bulged part than the pipe radius was successfully obtained.
机译:在本文中,作者讨论了横向挤压管道侧向磁芯的过程规划。在该过程中,凸出部分的最大纵向长度受到材料挤出速度的平衡和损失的芯的限制。在自由凸起条件下,纵向长度限于管道半径,因为当凸出部分的纵向长度更长的纵向长度时,芯的挤出速度比管材的挤出速度慢。作者设计了一种使用截短锥体的过境形状来解决这一问题的两级成型过程来解决这个问题。通过使用商业有限元模拟器的试验和误差估计截短的锥体的尺寸,并考虑到管道皱纹通过变形和丢失芯的行进的拉伸效果。最后,作者进行了实验以确认设计的有效性。结果,成功地获得了比管半径的凸出部分的较长纵向长度。

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