Tognetti Alessandro, Carbonaro Nicola, Zupone Giuseppe, De Rossi Danilo
Interdepartmental Research Center E. Piaggio, Fac. of Eng., Univ. Pisa, Italy.
Conf Proc IEEE Eng Med Biol Soc. 2006;2006:2510-3. doi: 10.1109/IEMBS.2006.260574.
The present work is about the realization and the characterization of a novel data glove able to detect hand kinematic configurations. The sensing glove has been realized by directly integrate sensors in the fabric used to manufacture the glove. Main specifications for the realized device are lightness, wearability and user comfort. As a fundamental requirement to address this purpose we have estimated the employment of a material which does not substantially change the mechanical properties of the fabric and maintains the wearability of the garment. To obtain this result, we have integrated sensor networks made by conductive elastomer into an elastic fabric used to manufacture the sensing glove. Electrically conductive elastomer composites show piezoresistive properties when a deformation is applied. Conductive elastomers materials can be applied to fabric or to other flexible substrate and they can be employed as strain sensors. To validate the realized device, a function that relates glove sensor values to hand motion has been realized and tested.
本工作是关于一种能够检测手部运动学配置的新型数据手套的实现与特性研究。该传感手套是通过将传感器直接集成到用于制造手套的织物中实现的。所实现设备的主要规格是轻便、可穿戴性和用户舒适度。作为实现这一目标的基本要求,我们估计要使用一种不会显著改变织物机械性能并保持服装可穿戴性的材料。为了获得这一结果,我们将由导电弹性体制成的传感器网络集成到用于制造传感手套的弹性织物中。当施加变形时,导电弹性体复合材料表现出压阻特性。导电弹性体材料可以应用于织物或其他柔性基材,并且可以用作应变传感器。为了验证所实现的设备,已经实现并测试了一种将手套传感器值与手部运动相关联的功能。