IEEE Trans Haptics. 2017 Oct-Dec;10(4):456-465. doi: 10.1109/TOH.2017.2686849. Epub 2017 Jul 4.
We describe an instrument intended to study finger contacts under tangential dynamic loading. This type of loading is relevant to the natural conditions when touch is used to discriminate and identify the properties of the surfaces of objects-it is also crucial during object manipulation. The system comprises a high performance tribometer able to accurately record in vivo the components of the interfacial forces when a finger interacts with arbitrary surfaces which is combined with a high-speed, high-definition imaging apparatus. Broadband skin excitation reproducing the dynamic contact loads previously identified can be effected while imaging the contact through a transparent window, thus closely approximating the condition when the skin interacts with a non-transparent surface during sliding. As a preliminary example of the type of phenomenon that can be identified with this apparatus, we show that traction in the range from 10 to 1000 Hz tends to decrease faster with excitation frequency for dry fingers than for moist fingers.
我们描述了一种旨在研究手指在切向动态载荷下接触的仪器。这种类型的加载与触摸用于区分和识别物体表面特性的自然条件有关——在物体操纵过程中也至关重要。该系统包括一个高性能摩擦仪,能够在手指与任意表面相互作用时准确记录界面力的分量,同时结合高速、高清晰度成像设备。通过透明窗口对接触进行成像的同时,可以实现再现先前确定的动态接触载荷的宽带皮肤激励,从而更接近皮肤在滑动过程中与非透明表面相互作用时的情况。作为该仪器可识别的现象类型的初步示例,我们表明,在干燥手指的情况下,10 至 1000 Hz 范围内的牵引力随着激励频率的增加而减小的速度比湿润手指快。