arXiv:2605.21836cs.RO2026-05被引 1

解析软性气动执行器的受力机制,助力可穿戴机器人设计

Analytical and Experimental Force Analysis of a Soft Linear Pneumatic Actuator

  • 建立准静态模型,融合压力、几何与轴向刚度分析输出力
  • 125 kPa下伸长40 mm时推力从112 N降至接近0
  • 外部负载会延迟并降低低中压下的力输出,影响显著

软套筒执行器(SSAs)作为可穿戴与辅助机器人系统的气动驱动新方法,通过将驱动结构集成于套筒形几何中,减少了对外部固定层和传动机构的依赖,同时保持与肢体表面的顺应性。然而,其输出力随伸长变化、外部载荷影响及轴向刚度的机械作用仍缺乏充分解释。本文对线性软套筒执行器(LSSA)进行了分析与实验力特性研究。构建了准静态分析模型,将净轴向力表示为由端盖和折叠壁产生的压力贡献,减去轴向刚度相关力。模型包含内部压力、投影压力面积、折叠壁几何、轴向位移及实验拟合的轴向刚度关系。通过预定伸长和静载实验评估执行器响应。在125 kPa压力下,输出力从零伸长时的约112 N下降至40 mm伸长时几乎为零;静载加载延迟了可测力的产生,并显著降低了低中压下的力输出。结果表明,LSSA的力生成受压力、几何、位移、载荷及轴向刚度耦合效应共同支配。

原文摘要 · Abstract (English)

Soft sleeve actuators (SSAs) have recently been developed as a pneumatic actuation approach for wearable and assistive robotic systems. By integrating the actuation structure into a sleeve-like geometry, these actuators can reduce reliance on external attachment layers and transmission mechanisms while maintaining compliance with limb-shaped surfaces. However, the force-generation behavior of SSAs remains insufficiently explained, particularly with respect to the variation of output force during extension, the influence of external loading, and the mechanical role of axial stiffness. This paper presents an analytical and experimental force analysis of a linear soft sleeve actuator (LSSA). A quasi-static analytical model was developed by expressing the net axial force as the pressure-generated contribution from the cap and folded walls, reduced by the force associated with axial stiffness. The model incorporates internal pressure, projected pressure areas, folded wall geometry, axial displacement, and an experimentally fitted axial stiffness relation. Prescribed-extension and static-load experiments were conducted to evaluate the actuator response. At 125 kPa, the generated force decreased from approximately 112 N at zero extension to nearly zero at 40 mm. Static loading delayed measurable force generation and reduced force output, particularly at low and intermediate pressures. The results show that LSSA force generation is governed by coupled effects of pressure, geometry, displacement, loading, and axial stiffness.

气动执行器软体机器人力分析可穿戴

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