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Towards joining by plastic buckling of hollow polyvinylchloride profiles

机译:通过中空聚氯乙烯型材的塑性屈曲来实现连接

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This paper investigates the collapse by buckling of hollow polyvinylchloride profiles with various cross sections. The presentation identifies the modes of deformation and the critical buckling loads and investigates the possibility of developing innovative mechanical joining processes built upon the formation of bellow shapes (wrinkles) by radial outward flow. The methodology draws from the fundamentals of material characterization and plastic buckling by compression between flat parallel platens to the experimental and finite element analysis of the formation of wrinkles by compression in a semi-closed tool. Results show that the formation of wrinkles in hollow polyvinylchloride profiles at room temperature is limited to geometric features within a compact range. The connection of hollow polyvinylchloride profiles to polycarbonate sheets is given as examples of application of wrinkles in mechanical joining.
机译:本文研究了具有各种横截面的空心聚氯乙烯型材的屈曲破坏。该演讲指出了变形的模式和临界屈曲载荷,并研究了通过径向向外流动形成波纹管形状(皱纹)而开发出创新的机械连接工艺的可能性。该方法学从材料特征和平坦的平行压板之间通过压缩产生的塑性屈曲的基本原理,到通过半封闭工具通过压缩形成皱纹的实验和有限元分析。结果表明,室温下空心聚氯乙烯轮廓中的皱纹形成仅限于紧凑范围内的几何特征。中空聚氯乙烯型材与聚碳酸酯板的连接作为在机械连接中应用皱纹的示例。

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