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Design for Additive Bio-Manufacturing: From Patient-Specific Medical Devices to Rationally Designed Meta-Biomaterials

机译:增材制造的设计:从患者特定的医疗设备到合理设计的超生物材料

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摘要

Recent advances in additive manufacturing (AM) techniques in terms of accuracy, reliability, the range of processable materials, and commercial availability have made them promising candidates for production of functional parts including those used in the biomedical industry. The complexity-for-free feature offered by AM means that very complex designs become feasible to manufacture, while batch-size-indifference enables fabrication of fully patient-specific medical devices. Design for AM (DfAM) approaches aim to fully utilize those features for development of medical devices with substantially enhanced performance and biomaterials with unprecedented combinations of favorable properties that originate from complex geometrical designs at the micro-scale. This paper reviews the most important approaches in DfAM particularly those applicable to additive bio-manufacturing including image-based design pipelines, parametric and non-parametric designs, metamaterials, rational and computationally enabled design, topology optimization, and bio-inspired design. Areas with limited research have been identified and suggestions have been made for future research. The paper concludes with a brief discussion on the practical aspects of DfAM and the potential of combining AM with subtractive and formative manufacturing processes in so-called hybrid manufacturing processes.
机译:增材制造(AM)技术在准确性,可靠性,可加工材料的范围和商业可用性方面的最新进展使它们成为生产包括生物医学行业中使用的功能部件的有希望的候选者。 AM提供的无复杂度功能意味着非常复杂的设计变得可以制造,而批量大小差异则可以制造出完全针对患者的医疗设备。 AM设计(DfAM)方法旨在充分利用这些功能开发性能大大提高的医疗器械,以及生物材料与有益性能的空前组合,这些有益性能的组合源自微观上的复杂几何设计。本文回顾了DfAM中最重要的方法,特别是适用于加法生物制造的方法,包括基于图像的设计管道,参数和非参数设计,超材料,合理的和可计算的设计,拓扑优化以及生物启发的设计。已经确定了研究有限的领域,并提出了对未来研究的建议。本文最后简要讨论了DfAM的实际方面,以及在所谓的混合制造过程中将AM与减性和形成性制造过程相结合的潜力。

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