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首页> 外文期刊>Journal of Applied Physics >The energy flow and mechanical modeling of soft chemo-mechanical machines
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The energy flow and mechanical modeling of soft chemo-mechanical machines

机译:软化学机械的能量流和力学建模

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摘要

Soft chemo-mechanical (SCM) machines convert chemical energy into mechanical energy. They have the advantages of fast actuation and compliant deformation and possess wide applications in soft robots and flexible smart devices. Using experiments and theoretical modeling, this paper investigates the chemo-mechanical energy flows and the energy conversion cycle in the pressure and volume (P-V) plane of an SCM machine consisting of a soft membrane and cylindrical chambers. The machine generates 16.1 mJ of mechanical energy per cycle. We study heat dissipation as the key issue affecting the conversion efficiency. The states of the conversion cycle calculated from mechanical modeling fit well with those measured experimentally. The design principles and the theoretical methods can be used to guide the fabrication and characterization of SCM actuators and robots. Published by AIP Publishing.
机译:软化学机械(SCM)机器将化学能转化为机械能。它们具有快速启动和顺应形变的优点,并在软机器人和柔性智能设备中具有广泛的应用。使用实验和理论模型,本文研究了由软膜和圆柱腔组成的SCM机器在压力和体积(P-V)平面上的化学机械能流和能量转换循环。机器每个周期产生16.1 mJ的机械能。我们将散热视为影响转换效率的关键问题。通过机械建模计算出的转换周期状态与实验测量的状态非常吻合。设计原理和理论方法可用于指导SCM执行器和机器人的制造和表征。由AIP Publishing发布。

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