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Creating load-adapted mechanical joints between tubes and sheets by controlling the material flow under plastically unstable tube upsetting

机译:通过控制塑料不稳定管镦粗地位的材料流动在管和板之间产生装载适应的机械接头

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Mechanical joining processes provide various advantages over conventional fusion welding of metallic components such as shorter cycle times, little or no heat input and reduced need for subsequent surface finishing operations. Several investigations in the past have shown that joints between tubes and sheets or plates can be manufactured by upsetting operations. Under axial compression, the tube develops a plastic instability in form of bulge. In-between two such bulges, a force and form fit to sheet material can be created. Previous work concentrated on forming fully developed bulges, i.e., at the end of the bulging process, both hinges of the bulge are in contact. This paper presents a numerical and experimental study aiming at optimizing the bulge shape to increase the bearable limit loads. Two new bulge designs are investigated, an 'arrow bulge' and a 'wave bulge'. The paper details the results of FE-simulations of the bulge shapes under bending and torsion loads. Forming tools were designed and ' both bulge shapes we're produced experimentally. The results show that the material flow under compressive plastic instability can be controlled and that the resulting bulge shapes yield improved strength in various load cases.
机译:机械连接过程提供了与金属部件的传统融合焊接的各种优点,例如较短的循环时间,很少或没有热输入,并且需要减少随后的表面精加工操作。过去的几种研究表明,通过镦锻操作,可以制造管和片材或板之间的接头。在轴向压缩下,管以凸起的形式发育塑料不稳定。在两个这样的凸起中,可以产生用于片材的力和形式适合片材。以前的工作集中在形成完全发育的凸起,即在凸出过程结束时,凸起的两个铰链都接触。本文介绍了一个数字和实验研究,旨在优化凸起形状,以增加可耐受限制载荷。调查了两个新的凸起设计,一个“箭头凸起”和“波浪凸起”。本文详细说明了弯曲和扭转负荷下凸起形状的Fe-Simulations的结果。设计了成型工具,并“我们都在实验生产的凸起形状。结果表明,可以控制压缩塑料不稳定性的材料流动,并且所得凸起形状在各种载荷壳体中产生改善的强度。

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