4.7 Article

Use of compliant actuators for throwing rigid projectiles

期刊

PHYSICAL REVIEW E
卷 105, 期 2, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevE.105.025001

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  1. French Ministry of Armed Forces, Agence de l'Innovation Defense (Defence Innovation Agency)

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Elasticity can be used to accelerate objects and improve mechanical energy transfer efficiency by tuning the properties of elastic elements. Adding a soft layer matched to the ejection frequency of a rigid projectile can significantly enhance throwing efficiency.
Muscles and tendons, actuators in robotics, and various sports implements are examples that exploit elasticity to accelerate objects. Tuning the mechanical properties of elastic elements connecting objects can greatly enhance the transfer of mechanical energy between the objects. Here, we study experimentally the throw of rigid projectiles by an actuator, which has a soft elastic element added to the distal end. We vary the thickness of the elastic layer and suggest a simple mass-spring chain model to find the properties of the elastic layer, which will maximize the energy transfer from the actuator to the projectile. The insertion of a soft layer, impedance matched to the ejection frequency of the projectile mass, can increase the throwing efficiency by over 400%. Finally, we identify that very thick and very soft compliant layers could potentially lead to high efficiency and flexibility simultaneously.

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