论文标题
Flexkeys:快速自定义的3D打印触觉输入设备,无需组装
FlexKeys: Rapidly Customizable 3D Printed Tactile Input Devices with No Assembly Required
论文作者
论文摘要
物理输入设备是用户和计算系统之间的触觉接口。这些设备通常是由电气和机械组件组成的复杂组件,使自定义变得困难并且无法触及非工程。尽管这些组件现在可以按需打印3D,但仍必须独立设计和组装。我们提出了Flexkeys,这种方法可以在多种物质3D打印机上单个打印机中创建包括电气和可变形组件的设备,不需要组装。设计人员可以自定义设备,包括钥匙的输入类型,旅行距离和布局,表面纹理以及将所有电信号直接路由到微控制器插座。在许多情况下,这些设备不需要支撑材料,就可以在打印完成的那一刻生产功能设备。我们通过创建自定义键盘并报告有关单个输入键的验证测量以及突出显示其他设计来证明这种方法。这项工作为降低非工程师设计定制触觉输入的进入障碍提供了第一步,使职业和物理治疗师,临床医生和教育者能够根据他们对个人用户需求的评估直接设计和创建设备。
Physical input devices serve as a tactile interface between users and computing systems. These devices are often complex assemblies that consist of both electrical and mechanical components making customization difficult and out of reach for non-engineers. While these components can now be 3D printed on demand, they must still be independently designed and assembled. We present FlexKeys, an approach in which devices that include both electrical and deformable components can be created in a single print on a multi-material 3D printer, requiring no assembly. Designers can customize devices including the input type, travel distance and layout of keys, textures of surfaces, and route all electrical signals directly to a microcontroller socket. In many instances, these devices require no support material, producing a functional device the moment a print finishes. We demonstrate this approach by creating a customized keyboard and report on validation measurements of individual input keys as well as highlighting additional designs. This work provides the first step towards lowering the barrier to entry for non-engineers to design custom tactile inputs, enabling occupational and physical therapists, clinicians, and educators to design and create devices directly based on their assessments of individual user needs.