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ON NUMERICAL MODELING OF EQUAL CHANNEL ANGULAR EXTRUSION OF ULTRA HIGH MOLECULAR WEIGHT POLYETHYLENE

机译:超高分子量聚乙烯等电气角挤出的数值模拟

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Ultra high molecular weight polyethylene (UHMWPE) is widely used in biomedical applications, e.g. as a bearing surface in total joint arthroplasty. Recently, equal channel angular extrusion (ECAE) was proposed as a processing method to achieve higher molecular entanglement and superior mechanical properties of this material. Numerical modeling can be utilized to evaluate the influence of such important manufacturing parameters as the extrusion rate, temperature, geometry of the die, back pressure and friction effects in the ECAE of polyethylenes. In this paper we focus on the development of efficient FE models of ECAE for UHMWPE. We study the applicability of the available constitutive models traditionally used in polymer mechanics for UHMWPE, evaluate the importance of the proper choice of the friction parameters between the billet and the die, and compare the accuracy of predictions between 2D (plane strain) and 3D models. Our studies demonstrate that the choice of the constitutive model is extremely important for the accuracy of numerical modeling predictions. It is also shown that the friction coefficient significantly influences the punch force and that 2D plane strain assumption can become inaccurate in the presence of friction between the billet and the extrusion channel.
机译:超高分子量聚乙烯(UHMWPE)广泛用于生物医学应用中,例如,作为总关节成形术中的轴承表面。最近,提出了等于沟道角挤出(ECAE)作为实现更高分子缠结和该材料的优异机械性能的加工方法。可以利用数值建模来评估这种重要的制造参数作为挤出速率,温度,几何形状的挤出速率,温度,几何形状的影响,在聚乙烯的ECAE中。在本文中,我们专注于UHMWPE的ECAE高效FE模型的开发。 We study the applicability of the available constitutive models traditionally used in polymer mechanics for UHMWPE, evaluate the importance of the proper choice of the friction parameters between the billet and the die, and compare the accuracy of predictions between 2D (plane strain) and 3D models 。我们的研究表明,本构模型的选择对于数值建模预测的准确性非常重要。还示出了摩擦系数显着影响冲头,并且2D平面应变假设在坯料和挤出通道之间的摩擦存在下可能变得不准确。

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