首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Density characteristics of laser-sintered three-dimensional printing parts investigated by using an integrated finite element analysis-based evolutionary algorithm approach
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Density characteristics of laser-sintered three-dimensional printing parts investigated by using an integrated finite element analysis-based evolutionary algorithm approach

机译:基于集成有限元分析的进化算法研究激光烧结三维印刷件的密度特性

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摘要

An integrated finite element analysis-evolutionary algorithm simulation approach is proposed in this work to model the density characteristics of the three-dimensional printing, specifically for selective laser sintering process. The approach consists of modeling sintering phenomenon by finite element analysis simulation, which is further fed into an evolutionary algorithm cluster comprising genetic programming. The integrated approach is useful to model the functional relationship of density characteristic of selective laser sintering-fabricated components with respect to laser power, scan velocity and scan spacing. Performance of the proposed model is evaluated against the actual results obtained from the literature. We find that our proposed finite element analysis-evolutionary algorithm model is able to model the selective laser sintering process very well, which can be used to complement the analytically and experimentally obtained results. For the validation of the robustness of the model, we also conducted sensitivity and parametric analyses and investigated the specific influence, and variation, of each of the input process parameters on the density of the selective laser sintering-fabricated component. It was found that scan spacing has the least influence, whereas scan velocity has the highest influence on the density of the selective laser sintering-fabricated component. Non-linear relationships unveiled between the process parameters highlight the capability of the model in simulating the density characteristic of the complex selective laser sintering process in uncertain input conditions.
机译:在这项工作中,提出了一种集成的有限元分析-进化算法仿真方法来模拟三维打印的密度特性,特别是针对选择性激光烧结过程。该方法包括通过有限元分析模拟对烧结现象进行建模,然后将其进一步馈入包含遗传规划的进化算法集群中。该集成方法可用于对选择性激光烧结制造的组件的密度特性相对于激光功率,扫描速度和扫描间隔的函数关系进行建模。根据从文献中获得的实际结果,评估了所提出模型的性能。我们发现,我们提出的有限元分析-演化算法模型能够很好地模拟选择性激光烧结过程,可用于补充分析和实验获得的结果。为了验证模型的鲁棒性,我们还进行了敏感性和参数分析,并研究了每个输入工艺参数对选择性激光烧结制造部件的密度的特定影响和变化。发现扫描间隔对选择性激光烧结制造的部件的密度影响最小,而扫描速度对选择性激光烧结制造的组件的密度影响最大。工艺参数之间揭示的非线性关系突出了模型在不确定的输入条件下模拟复杂的选择性激光烧结工艺的密度特性的能力。

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