This paper deals with a comparative study on using water and air as actuation means for the control of a fluidic muscle (designed for air) and assesses the performance, particularly from a dynamic and energetic point of view. A medium with higher bulk modulus such as oil/water is believed to increase pressure and force bandwidths and reduce sensitivity to load variations, as is the case with conventional hydraulic stiff actuation systems. However in this application the inherent flexibility of the muscle plays a major role. Water has been chosen because of its non-flammability, environmental friendliness and the low solubility of air in it. The operating pressure range of the pneumatic muscle is 0-6 bar (typical range of a pneumatic system) that is well below typical operating pressures of hydraulic systems (typically over 100 bar). At such low pressures the dynamic behaviour of water is less predictable because of the higher likelihood of entrapped air in the water which physically oc...

Water/Air Performance Analysis of a Fluidic Muscle / Focchi, M; Guglielmino, E; Semini, C; Parmiggiani, A; Tsagarakis, Ng; Vanderborght, B; Caldwell, Dg. - (2010), pp. 2194-2199. ( 23rd IEEE/RSJ 2010 International Conference on Intelligent Robots and Systems, IROS 2010 Taipei, Taiwan October 18-22, 2010,) [10.1109/IROS.2010.5650432].

Water/Air Performance Analysis of a Fluidic Muscle

Focchi M
;
2010-01-01

Abstract

This paper deals with a comparative study on using water and air as actuation means for the control of a fluidic muscle (designed for air) and assesses the performance, particularly from a dynamic and energetic point of view. A medium with higher bulk modulus such as oil/water is believed to increase pressure and force bandwidths and reduce sensitivity to load variations, as is the case with conventional hydraulic stiff actuation systems. However in this application the inherent flexibility of the muscle plays a major role. Water has been chosen because of its non-flammability, environmental friendliness and the low solubility of air in it. The operating pressure range of the pneumatic muscle is 0-6 bar (typical range of a pneumatic system) that is well below typical operating pressures of hydraulic systems (typically over 100 bar). At such low pressures the dynamic behaviour of water is less predictable because of the higher likelihood of entrapped air in the water which physically oc...
2010
IEEE/RSJ InternationalConference on Intelligent Robots and Systems (IROS)
345 E 47TH ST, NEW YORK, NY 10017 USA
IEEE
9781424466757
Focchi, M; Guglielmino, E; Semini, C; Parmiggiani, A; Tsagarakis, Ng; Vanderborght, B; Caldwell, Dg
Water/Air Performance Analysis of a Fluidic Muscle / Focchi, M; Guglielmino, E; Semini, C; Parmiggiani, A; Tsagarakis, Ng; Vanderborght, B; Caldwell, Dg. - (2010), pp. 2194-2199. ( 23rd IEEE/RSJ 2010 International Conference on Intelligent Robots and Systems, IROS 2010 Taipei, Taiwan October 18-22, 2010,) [10.1109/IROS.2010.5650432].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/369487
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