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Theoretical and experimental study on the hydroforming of bifurcation tube

机译:分叉管液压成形的理论和实验研究

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摘要

Hydroforming is one kind of plasticity working, which can be used to increase the diameter, to change the geometry, or to expand the outer walls of cylindrical shells or tubes. The forming principle of hydroforming is by using a die to constrain the outer geometry of a tube and then pumping high pressure oil into the inner tube, so as to force part of the tube to flow into the die cavity. In order to prevent local thinning and to improve material flow capability, an axial force may be imposed on the both sides of the tube. If the axial force is not imposed correctly, a buckling defect will occur. The forming theory and plasticity of the hydrostatic bulging process are studied. The parameter effects on the hydrostatic bulging process will be analyzed by using a DEFORM-3D finite element analysis package. A new approach to measure 3D deformations and plastic strains in forming parts is also presented. A strain analysis module is also built based on the geometry of deformed grids and initial grids. The principal stretch ratios and angle changes of grid patterns are calculated, and the logarithmic strains are also computed.
机译:液压成型是一种可塑性加工,可用于增加直径,更改几何形状或扩展圆柱壳或管的外壁。液压成型的形成原理是通过使用模具来约束管的外部几何形状,然后将高压油泵入内管,从而迫使管的一部分流入模具腔中。为了防止局部变薄并提高材料流动能力,可在管的两侧施加轴向力。如果未正确施加轴向力,则会发生屈曲缺陷。研究了静水鼓胀过程的形成原理和可塑性。将使用DEFORM-3D有限元分析软件包来分析参数对静水鼓胀过程的影响。还提出了一种测量成形零件中3D变形和塑性应变的新方法。应变分析模块还基于变形网格和初始网格的几何形状构建。计算网格图案的主拉伸比和角度变化,并计算对数应变。

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