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Influence of Object Material Properties and Geometry on Skin Temperature Responses During Contact

机译:物质性质和几何形状对接触期间皮肤温度响应的影响

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When the hand makes contact with an object, the changes in skin temperature provide information about not only the object's material composition but also its geometry. Consider, for example, the temperature difference felt when touching an aluminum block and a piece of aluminum foil. To study the thermal cues associated with material properties and object thickness, we measured the changes in skin temperature elicited when touching objects with varying material properties and geometries, and compared them to the theoretical predictions obtained from two thermal models, of which one assumes the object having an infinite thickness and the other takes into consideration the actual object thickness. The comparison results indicate that the former model is effective in capturing the rapid temperature changes at the moment of contact and the latter model is better at predicting the total change in skin temperature at the end of contact. These findings provide a knowledge basis for the development of thermal displays for material simulation and automatic object identification systems that identify an object's material composition and thickness based on thermal feedback.
机译:当手与物体接触时,皮肤温度的变化不仅提供了关于物体的材料组成,而且提供其几何形状。例如,考虑触摸铝块和一块铝箔时的温度差异。为了研究与材料特性和物体厚度相关的热量提示,我们测量了在接触具有不同材料性质和几何形状的物体时引发的皮肤温度的变化,并将其与来自两个热模型获得的理论预测进行比较,其中一个是假设对象的热模型具有无限厚度,另一个考虑到实际物体厚度。比较结果表明,前模型在接触时捕获快速温度变化,后者模型更好地预测接触结束时皮肤温度的总变化更好。这些发现提供了一种知识依据,用于开发用于材料仿真和自动对象识别系统的热显示器,其基于热反馈识别物体的材料组成和厚度。

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