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Process-level modeling and simulation for HP's Multi Jet Fusion 3D printing technology

机译:惠普Multi Jet Fusion 3D打印技术的过程级建模和仿真

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摘要

The 3D printing technology is expected to revolutionize part manufacturing by enabling rapid and inexpensive production at a small scale. HP's Multi Jet Fusion 3D printing technology is developed to provide new levels of part quality in a fast and inexpensive way compared to existing 3D printing technologies. The printed part quality is determined by the interplay of the printing device and materials used for printing. Thus, it is essential to have a proper cyber-physical system model for the printing system for process-level simulation of the HP's Multi Jet Fusion technology. In this paper, we propose an approach for the process-level modeling and simulation of HP's Multi Jet Fusion technology. Our approach can be used to carry out simulation of the 3D printing system, to provide guidance for optimization and development of the printing process and exploration of materials. Preliminary results potentially indicate that the simulation of our proposed model is significantly faster than the finite element method, which is a widely used technique for 3D printing simulation.
机译:预计3D打印技术将实现小批量快速廉价的生产,从而彻底改变零件制造。与现有3D打印技术相比,HP的Multi Jet Fusion 3D打印技术旨在以快速且廉价的方式提供更高水平的零件质量。印刷零件的质量取决于印刷设备和印刷材料的相互作用。因此,为打印系统建立适当的网络物理系统模型对于HP的Multi Jet Fusion技术的过程级仿真至关重要。在本文中,我们提出了一种用于HP Multi Jet Fusion技术的过程级建模和仿真的方法。我们的方法可用于进行3D打印系统的仿真,为优化和开发打印过程以及探索材料提供指导。初步结果可能表明,我们提出的模型的仿真速度明显快于有限元方法,后者是3D打印仿真中广泛使用的技术。

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