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Multi-material plastic part design via the level set shape and topology optimization method

机译:通过水平集形状和拓扑优化方法设计多材料塑料零件

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摘要

This work presents a new multi-material level set topology optimization method which is developed especially for designing plastic parts. Instead of representing the structure using multiple level set functions, this new method employs only one level set function to describe the material/void interface. The injection moulding filling simulation is used to determine the material/material interfaces. Because plastic parts are targeted, domain-specific knowledge is carefully investigated to improve the optimization algorithm. Both homogeneous and heterogeneous fibre-reinforced plastics are considered as potential material phases. For the latter, one extra design freedom, fibre orientation distribution, is introduced. Instead of generating incremental interior voids, which complicates the mould design and part ejection, shape-fixed interior voids could be predefined inside the design domain for functional or assembly purposes. This is represented by an additional level set function. A few numerical examples are studied to demonstrate the effectiveness of the proposed method.
机译:这项工作提出了一种新的多材料水平集拓扑优化方法,该方法是专门为设计塑料零件而开发的。代替使用多个级别集函数来表示结构,此新方法仅使用一个级别集函数来描述材质/空隙界面。注塑填充模拟用于确定材料/材料界面。由于塑料零件是针对性的,因此会仔细研究特定领域的知识以改进优化算法。均质和非均质纤维增强塑料均被视为潜在的材料相。对于后者,引入了一种额外的设计自由度,即纤维取向分布。代替生成使模具设计和零件弹出复杂化的递增内部空隙,可以在设计领域内为功能或组装目的预先定义形状固定的内部空隙。这由附加的级别设置功能表示。研究了一些数值例子,以证明该方法的有效性。

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