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An integrative simulation concept for extrusion blow molded plastic bottles

机译:挤出吹塑塑料瓶的一体化仿真概念

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It is well known that the mechanical properties of extrusion blow molded plastic bottles are influenced by the process conditions, which leads to local orthotropic process-dependent material parameters. In this study, these parameters as well as local orientation effects are for the first time considered in the structural analysis of extrusion blow molded products. Furthermore, an integrative simulation concept has been worked out which combines process simulation and structural analysis to take the process history of the plastic bottle into account. The elastic modulus is described as a function of process parameters like the local degrees of stretching and the mold temperature. Because the local degrees of stretching differ considerably, a new algorithm was developed which identifies the local degrees of stretching as well as their orientation using the results of the process simulation. For the data mapping between the process mesh and the structural analysis mesh, the self-developed MpCCI Mapper software was used. In a simulation of a top load test, the integrative simulation model was compared with the conventional model as well as with experimental data. Although in this particular case the influence of the orthotropic material model with respect to the local degrees of stretching is rather low, the general use of process dependent material parameters leads to much better results.
机译:众所周知,挤出吹塑塑料瓶的机械性能受到工艺条件的影响,这导致局部正交过程依赖性材料参数。在本研究中,这些参数以及局部取向效果首次考虑在挤出吹塑产品的结构分析中。此外,已经制定了一种综合模拟概念,其结合了过程模拟和结构分析,以考虑塑料瓶的过程历史。弹性模量被描述为过程参数的函数,如局部拉伸和模具温度。由于局部拉伸度大大不同,因此开发了一种新的算法,其识别使用过程模拟结果的局部拉伸度以及它们的取向。对于流程网格和结构分析网格之间的数据映射,使用自开发的MPCCI映射器软件。在顶部负载测试的模拟中,与传统模型以及实验数据相比,将综合仿真模型与实验数据进行比较。尽管在这种特殊情况下,正交材料模型相对于局部拉伸程度的影响相当低,但过程依赖性材料参数的一般使用导致了更好的结果。

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