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INVESTIGATION OF TUBE HYDROFORMING PROCESS ENVELOPE FOR MACRO/MESO SCALABILITY

机译:用于宏观/介观可扩展性的管子加氢过程包络的研究

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摘要

The process of tube hydroforming (THF) requires tube stock to be internally pressurized and possibly axially fed inside a die cavity in which the tube plastically deforms to fill the cavity. The purpose (of this investigation) is to explore the impact of the tube geometry, diameter and wall thickness, on the formability of a part. Knowing how the scale of the tube influences formability should allow projections on the performance at the meso forming scale. The most common type of failure is tube wall nominal thickness reduction in excess of 20%. Reductions greater than 20% are deemed more likely for rupture and buckling due to axial forces. Tribological properties are also investigated to determine the impact of friction coefficients on the thinning of the tube wall. The friction impact on the forming dictates the lubrication requirements of the THF process. Process modeling simulations using the finite element method (FEM) are conducted analyze the effect of the various parameters that limit THF processes. Scaling the simulation for meso forming indicates promising results. The macro analysis indicates the tube is capable of being formed at smaller scale.
机译:管液压成型(THF)的过程需要对管坯进行内部加压,并可能在模腔内轴向进给,模腔在其中发生塑性变形以填充模腔。 (此研究的目的)是探索管的几何形状,直径和壁厚对零件可成型性的影响。知道管子的尺寸如何影响可成形性,应允许以中观成形尺寸预测性能。最常见的故障类型是管壁公称厚度减小超过20%。减小大于20%的减小被认为是由于轴向力而导致破裂和屈曲的可能性。还研究了摩擦学性质,以确定摩擦系数对管壁变薄的影响。摩擦对成形的影响决定了THF工艺的润滑要求。进行了使用有限元方法(FEM)进行的过程建模仿真,以分析限制THF过程的各种参数的影响。缩放模拟以进行介观成形表明有希望的结果。宏观分析表明,该管能够以较小的比例成型。

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