CNRS-University of Montpellier, LIRMM, Montpellier, France.
National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan.
Sci Rep. 2021 Oct 8;11(1):20070. doi: 10.1038/s41598-021-99117-y.
Almost all robotic systems in use have hard shells, which is limiting in many ways their full potential of physical interaction with humans or their surrounding environment. Robots with soft-shell covers offer an alternative morphology which is more pleasant in both appearance and for haptic human interaction. A persisting challenge in such soft-shell robotic covers is the simultaneous realization of softness and heat-conducting properties. Such heat-conducting properties are important for enabling temperature-control of robotic covers in the range that is comfortable for human touch. The presented soft-shell robotic cover is composed of a linked two-layer structure: (1) The inner layer, with built-in pipes for water circulation, is soft and acts as a thermal-isolation layer between the cover and the robot structure, whereas (2) the outer layer, which can be patterned with a given desired texture and color, allows heat transfer from the circulating water of the inner part to the surface. Moreover, we demonstrate the ability to integrate our prototype cover with a humanoid robot equipped with capacitance sensors. This fabrication technique enables robotic cover possibilities, including tunable color, surface texture, and size, that are likely to have applications in a variety of robotic systems.
几乎所有正在使用的机器人系统都有硬壳,这在很多方面限制了它们与人类或周围环境进行物理交互的全部潜力。具有软壳覆盖物的机器人提供了一种替代形态,在外观和触觉人机交互方面都更加舒适。在这种软壳机器人覆盖物中,一个持续存在的挑战是同时实现柔软和导热性能。这种导热性能对于实现机器人覆盖物的温度控制在人类触摸舒适的范围内非常重要。所提出的软壳机器人覆盖物由一个连接的两层结构组成:(1)内层,内置用于水循环的管道,柔软,并在覆盖物和机器人结构之间充当隔热层,而(2)外层,可以用给定的所需纹理和颜色进行图案化,允许内部循环水将热量传递到表面。此外,我们展示了将我们的原型覆盖物与配备电容传感器的人形机器人集成的能力。这种制造技术能够实现机器人覆盖物的各种可能性,包括可调颜色、表面纹理和尺寸,这可能在各种机器人系统中有应用。