Enabling Multi-Material 3D Printing for Designing and Rapid Prototyping of Deformable and Interactive Wearables

Aluna Everitt, Alexander Keith Eady, A. Girouard
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引用次数: 4

Abstract

Deformable surfaces with interactive capabilities provide opportunities for new mobile interfaces such as wearables. Yet current fabrication and prototyping techniques for deformable surfaces, that are both flexible and stretchable, are still limited by complex structural design and mechanical surface rigidity. We propose a simplified rapid fabrication technique that utilizes multi-material 3D printing for developing customizable and stretchable surfaces for mobile wearables with interactive capabilities embedded during the 3D printing process. Our prototype, FlexiWear, is a dynamic surface with embedded electronic components that can adapt to mobile body shape/movement and applied to contexts such as healthcare and sports wearables. We describe our design and fabrication approach using a commercial desktop 3D printer, the interaction techniques supported, and possible application scenarios for wearables and deformable mobile interfaces. Our approach aims to support rapid development and exploration of deformable surfaces that can adapt to body shape/movement.
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实现多材料3D打印,用于设计和快速成型可变形和交互式可穿戴设备
具有交互功能的可变形表面为可穿戴设备等新型移动界面提供了机会。然而,目前可变形表面的制造和原型技术,既灵活又可拉伸,仍然受到复杂结构设计和机械表面刚度的限制。我们提出了一种简化的快速制造技术,利用多材料3D打印为移动可穿戴设备开发可定制和可拉伸的表面,并在3D打印过程中嵌入交互功能。我们的原型flexwear是一种内置电子元件的动态表面,可以适应移动的身体形状/运动,并应用于医疗保健和运动可穿戴设备等环境。我们描述了我们使用商用桌面3D打印机的设计和制造方法,支持的交互技术,以及可穿戴设备和可变形移动接口的可能应用场景。我们的方法旨在支持快速开发和探索可以适应身体形状/运动的可变形表面。
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