Direct Ink Writing on a Rotating Mandrel - Additive Lathe Micro-Manufacturing

Anupam Ajit Deshpande, Yayue Pan
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Abstract

Among the promising techniques within Additive Manufacturing (AM), Direct Ink Writing (DIW) stands out for its ability to work with a wide range of materials, including polymers, ceramics, glass, metals, and cement. However, DIW encounters a significant challenge in creating complex tubular structures, such as vascular scaffolds with micro scale features. To address this challenge, our research investigates a novel method known as Additive Lathe Direct Ink Writing (AL-DIW). AL-DIW entails the precise dispensing of ink onto a rotating mandrel to fabricate intricate hollow tubular structures with overhanging geometries. In this research, we present a series of test cases involving tubular structures, comprising straight-line patterns, curved line designs, and complex stent configurations, to underscore the efficacy of this technique in crafting hollow tubular geometries with micro-scale features. This study not only highlights the capabilities of AL-DIW but also contributes to the broader advancement of additive manufacturing techniques for various applications.
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在旋转心轴上直接涂墨 - 快速成型车床微制造
在增材制造(AM)领域前景广阔的技术中,直接墨水写入(DIW)因其能够处理包括聚合物、陶瓷、玻璃、金属和水泥在内的多种材料而脱颖而出。然而,DIW 在创建复杂的管状结构(如具有微尺度特征的血管支架)时遇到了巨大挑战。为了应对这一挑战,我们的研究探索了一种称为 "添加式车床直接油墨写入(AL-DIW)"的新方法。AL-DIW 需要在旋转心轴上精确分配墨水,以制造具有悬空几何形状的复杂空心管状结构。在这项研究中,我们展示了一系列涉及管状结构的测试案例,包括直线图案、曲线设计和复杂的支架配置,以强调该技术在制作具有微尺度特征的空心管状几何结构方面的功效。这项研究不仅凸显了 AL-DIW 的能力,还有助于在各种应用中更广泛地推进增材制造技术。
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