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Experimental analysis and numerical modelling of the forming process of polypropylene replicas of micro-cavities using hot embossing

机译:用热压花成型微腔聚丙烯复制品的实验分析和数值模拟

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摘要

Numerical modelling of the deformation of a polymer using the finite elements method in axisymetrical mode was performed using the LsDyna® software to describe the filling of micro-cavities during the forming process of the material using the hot embossing. These simulations firstly allow verifying whether the chosen forming process conditions promote or not an optimized filling of the superficial cavities in order to achieve precise replicas which best reproduce the superficial topography of the mould. The simulations were carried out to evaluate the filling of the cavities taking into account the mechanical behaviour of the selected polymer into the model. Moreover, these models were developed to verify the effect of the distribution of the mould cavities on their filling. The influence of the mobility of non deformable rigid plates on the filling of the cavities represents an auxiliary variable. In the approach presented, the compression plates are assumed to be parallel and non deformable, whereas the polymer disk follows a rubbery behaviour around a temperature equal to 140°C. Globally the modelling results are satisfactory for they are rather close to the experimental observations conducted. In summary, the effect of the normal stress as also the distribution of micro-cavities at the mould surface seem to prevail in the case of the forming process by hot embossing.
机译:使用LsDyna®软件,使用有限元方法在轴对称模式下对聚合物变形进行了数值模拟,以描述在使用热压花成型材料的过程中微腔的填充。这些模拟首先允许验证所选择的成型工艺条件是否促进了浅型腔的优化填充,以实现精确复制品,该复制品最佳地再现了模具的浅层形貌。考虑到所选聚合物在模型中的机械性能,进行了仿真以评估型腔的填充。此外,开发了这些模型来验证模具型腔的分布对其填充的影响。不可变形的刚性板的运动性对空腔填充的影响是辅助变量。在提出的方法中,假定压缩板是平行的且不可变形,而聚合物盘在等于140°C的温度下具有橡胶行为。在全球范围内,建模结果令人满意,因为它们与所进行的实验观察相当接近。总而言之,在通过热压花进行成型的情况下,法向应力的影响以及模具表面上微腔的分布似乎占主导。

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