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Effects of process parameters and material properties on deformation process in tube hydroforming

机译:工艺参数和材料性能对管材液压成形变形过程的影响

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In this paper, factors affecting wall thickness distribution of the hydroformed tube are confirmed by FEM simulation and experimental work. The process model involves simple hydroforming of a square expanded product from a round tube using combined axial load and internal pressure. As factors, the stress ratio which is defined as nominal axial stress to nominal circumferential stress, coefficient of friction, n-value and anisotropic parameter r-value are considered. The results show that axial loading and better lubrication conditions improve the thickness distribution and r-value is one of the most important material parameters for tube hydroforming. It is found that fracture location of tube depends on process conditions and material properties and is not confined to a free bulged portion. Experimental results using an aluminum alloy tube (A6063) are in good agreement with FEM simulation results.
机译:通过有限元模拟和实验工作,确定了影响液压成形管壁厚分布的因素。该过程模型涉及使用组合的轴向载荷和内部压力对圆管中的方形膨胀产品进行简单的液压成型。作为因素,考虑了定义为名义轴向应力与名义周向应力的应力比,摩擦系数,n值和各向异性参数r值。结果表明,轴向载荷和更好的润滑条件改善了厚度分布,r值是管液压成型最重要的材料参数之一。发现管的断裂位置取决于工艺条件和材料特性,并且不限于自由的鼓出部分。使用铝合金管(A6063)的实验结果与FEM模拟结果非常吻合。

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