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TOWARD METAMODELS FOR COMPOSABLE AND REUSABLE ADDITIVE MANUFACTURING PROCESS MODELS

机译:对于可可组合和可重复使用的添加剂制造工艺模型的元模型

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Though the advanced manufacturing capabilities offered by additive manufacturing (AM) have been known for several decades, industry adoption of AM technologies has been relatively slow. Recent advances in modeling and simulation of AM processes and materials are providing new insights to help overcome some of the barriers that have hindered adoption. However, these models and simulations are often application specific, and few are developed in an easily reusable manner. Variations are compounded because many models are developed as independent or proprietary efforts, and input and output definitions have not been standardized. To further realize the potential benefits of modeling and simulation advancements, including predictive modeling and closed-loop control, more coordinated efforts must be undertaken. In this paper, we advocate a more harmonized approach to model development, through classification and metamodeling that will support model composability, reusability, and integration. We review several types of AM models and use direct metal powder bed fusion characteristics to provide illustrative examples of the proposed classification and metamodel approach. We describe how a coordinated approach can be used to extend modeling capabilities by promoting model composability. As part of future work, a framework is envisioned to realize a more coherent strategy for model development and deployment.
机译:虽然添加剂制造业(AM)提供的先进制造能力已知几十年来,但行业采用AM技术相对缓慢。近期建模和模拟AM流程和材料的进展正在提供新的见解,以帮助克服已经阻碍了采用的一些障碍。然而,这些模型和仿真通常是特定于应用的,并且很少有以易于使用的方式开发。变化复合,因为许多型号被开发为独立的或专有的努力,并且输入和输出定义尚未标准化。为了进一步实现建模和仿真进步的潜在益处,包括预测建模和闭环控制,必须采取更多协调的努力。在本文中,我们通过分类和元模型来提倡更谐波的模型开发方法,将支持模型可协调性,可重用性和集成。我们审查了几种类型的AM型号,并使用直接金属粉床融合特性来提供所提出的分类和元模型方法的说明性示例。我们描述了如何通过推广模型可组件来扩展建模能力的协调方法。作为未来工作的一部分,设想了一个框架,以实现更加连贯的模型开发和部署策略。

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