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A novel printing channel design for multi-material extrusion additive manufacturing

机译:多材料挤出添加剂制造的新型印刷通道设计

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摘要

Additive manufacturing has a great potential in terms of its capability to produce components with complex geometries and to make multi-material and composite products by combining different materials in a single manufacturing platform. Current trends for the multi-material extrusion additive manufacturing process are categorized by multi-nozzle systems and multi-material inlet systems. In the case of multiple nozzle system, materials are deposited from different nozzles in sequence. On the other hand, in the case of multi-material inlet system, different materials are sent into a mixing tube and deposited as a mixture of materials. In this case, functionally graded parts can be fabricated by changing the volume fraction of two or more materials. Hence, the fabrication of parts with a continuous material supply by varying ratios for the extrusion technologies requires the development of printing heads with suitable printing channels, capable of varying the mixing ratio of different materials. To evaluate the effect of different printing channel designs on the material’s flow pattern and the functionally graded material printability, this paper presents a three-dimensional transient computational fluid dynamics (CFD) simulation of the two miscible liquid-liquid system in a printing channel. Different geometries and materials are considered
机译:添加剂制造在其能力方面具有很大的潜力,其生产具有复杂几何形状的部件,并通过将不同的材料组合在单一制造平台中来制备多材料和复合产品。多材料挤出添加剂制造工艺的当前趋势由多喷嘴系统和多材料入口系统分类。在多个喷嘴系统的情况下,依次从不同的喷嘴沉积材料。另一方面,在多材料入口系统的情况下,将不同的材料送入混合管中并作为材料的混合物沉积。在这种情况下,可以通过改变两种或更多种材料的体积分数来制造功能渐变部件。因此,通过不同的挤出技术的不同比例制造具有连续材料供应的部件需要开发具有合适的印刷通道的印刷头,能够改变不同材料的混合比。为了评估不同打印通道设计对材料的流动模式和功能梯度材料可印刷性的影响,本文介绍了印刷通道中两个可混溶液液系统的三维瞬态计算流体动力学(CFD)模拟。考虑了不同的几何形状和材料

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