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Data-driven Design of Customized Porous Lattice Sole Fabricated by Additive Manufacturing

机译:添加剂制造制造的定制多孔晶格鞋底的数据驱动设计

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Additive Manufacturing technologies enable the fabrication of structures with multiscale complexities without increasing their cost. To take advantage of the unique design freedom enabled by additive manufacturing processes, this paper reports a new design method that can generate a fully customized porous shoe sole. The proposed design method contains five major steps and can generate a fully customized shoe sole with customized features on both macro and mesoscale. Specifically, compared to a conventional flat shoe sole, the top surface of a customized sole can fully conform to the bottom surface of patient’s feet, which can significantly reduce the peak plantar pressure. In addition to that, the strut diameters of designed lattice structures can also be customized based on the proposed data-driven design optimization algorithm. By varying the struts’ diameters on the different regions of the designed lattice shoe sole, the peak plantar pressure can be further minimized. The case study provided in this paper shows the proposed method that can significantly improve the performance of customized shoe sole. This promising result indicates that additive manufacturing fabricated lattice shoe soles can be a potential solution to prevent or treat diabetic ulcers.
机译:添加剂制造技术使得具有多尺度复杂性的结构的制造,而不会增加其成本。为了利用可通过添加剂制造工艺实现独特的设计自由,本文报告了一种新的设计方法,可以产生完全定制的多孔鞋底。所提出的设计方法包含五个主要步骤,可以在宏和Mesoscale上产生完全定制的鞋底,具有定制的功能。具体地,与传统的平鞋鞋底相比,定制鞋底的顶表面可以完全符合患者脚的底表面,这可以显着降低峰值的峰值压力。除此之外,还可以根据所提出的数据驱动设计优化算法定制设计的晶格结构的支柱直径。通过在设计的格子鞋底的不同区域上改变支柱的直径,可以进一步最小化峰值跖跖。本文提供的案例研究显示了所提出的方法,可以显着提高定制鞋底的性能。这一承诺结果表明,添加剂制造制造的格子鞋底可以是预防或治疗糖尿病溃疡的潜在溶液。

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