Flexibles: Deformation-Aware 3D-Printed Tangibles for Capacitive Touchscreens

Flexibles: Deformation-Aware 3D-Printed Tangibles for Capacitive Touchscreens
复制标题

DOI:
10.1145/3025453.3025663
复制
发表时间:
2017-05
期刊:
Proceedings of the 2017 CHI Conference on Human Factors in Computing Systems
影响因子:
--
通讯作者:
Martin Schmitz;Jürgen Steimle;Jochen Huber;Niloofar Dezfuli;M. Mühlhäuser
Martin Schmitz;Jürgen Steimle;Jochen Huber;Niloofar Dezfuli;M. Mühlhäuser
中科院分区:
其他
文献类型:
--
作者:
Martin Schmitz;Jürgen Steimle;Jochen Huber;Niloofar Dezfuli;M. Mühlhäuser

文献摘要

相似文献

我们推出了3D打印的柔性有形物体,它们具有变形感知能力,并在电容式触摸屏上运行。可变形物为与屏幕上的有形物的交互添加了富有表现力的变形输入。基于不同类型的变形映射,我们贡献了一组3D打印机制,可以捕获具有多个强度级别的按压,挤压和弯曲输入。它们可以集成到具有自定义几何形状和不同位置的3D打印对象中。Flexible在消费级3D打印机上一次性打印而无需进一步组装。通过一系列的交互式原型,示例应用程序和技术评估,我们展示了技术的可行性和广泛的适用性。
We introduce Flexibles: 3D-printed flexible tangibles that are deformation-aware and operate on capacitive touchscreens. Flexibles add expressive deformation input to interaction with on-screen tangibles. Based on different types of deformation mapping, we contribute a set of 3D-printable mechanisms that capture pressing, squeezing, and bending input with multiple levels of intensities. They can be integrated into 3D printed objects with custom geometries and on different locations. A Flexible is printed in a single pass on a consumer-level 3D printer without requiring further assembly. Through a series of interactive prototypes, example applications and a technical evaluation, we show the technical feasibility and the wide applicability of Flexibles.