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Energy-Free Adjustment of Gravity Equilibrators Using the Virtual Spring Concept

机译:使用虚拟弹簧概念的重力平衡器的无能量调整

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People with neuromuscular diseases often have limited muscle force, and many rely on mobile arm supports to move their arms. Most of these make use of static balancing, a useful concept to reduce the operating effort of mechanisms, where spring mechanisms are used to achieve a constant total potential energy, thus eliminating any preferred position. Once statically balanced, the mechanism can be moved virtually without operating energy. This allows the patients using an arm support to move their arms freely. In some cases it is desirable to adjust the balancer characteristic, for instance due to a change of payload when picking up an object. In all available arm support mechanisms this adjustment is associated with considerable mechanical effort, while clearly this application would benefit greatly from an energy-free adjustment. Recently several methods have been invented to adjust spring and linkage-based static balancers with no need for external energy, by conserving the total energy in the system. The technique discussed in this paper is based on substituting an initial spring by two substitute springs. The two substitute springs generate a virtual spring with the same spring properties as the initial spring, with one unique difference: the virtual spring can be elongated or shortened while no work is done. Consequently, no external energy is needed for the adjustment. A table-top demonstrator has been developed, showing the feasibility of the concept.
机译:患有神经肌肉疾病的人往往有有限的肌肉力量,并且许多人依赖于移动臂支撑,以移动他们的手臂。其中大多数利用静态平衡,一种有用的概念来减少机构的操作努力,其中弹簧机构用于实现恒定的总势能,从而消除了任何优选位置。一旦静态平衡,该机构就可以实际上移动而不运行能量。这允许患者使用臂支撑件自由地移动臂。在某些情况下,希望调整平衡器特性,例如由于拾取对象时有效载荷的变化。在所有可用的ARM支持机制中,这种调整与相当大的机械努力相关,而这种应用可以从无能量调整中受益匪浅。最近,已经发明了几种方法来调整弹簧和基于链接的静态平衡器,通过节省系统中的总能量,不需要外部能量。本文讨论的技术基于将初始弹簧代替两个替代弹簧。两个替补弹簧产生虚拟弹簧,具有与初始弹簧相同的弹簧属性,具有一个独特的差异:虚拟弹簧可以伸长或缩短,而无需工作。因此,调整不需要外部能量。已经开发了桌面演示,显示了概念的可行性。

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