C Conferentia Proceedings
COB-2015-2727 Dynamics, Control, Vibrations and Acoustics of Mechanical

Magnetic springs: fast energy storage for reciprocating industrial drivetrains

Branimir Mrak1; Walter Driesen1; Wim Desmet2

1 Flanders Make; 2 KU Leuven, Department of Mechanical Engineering

doi:10.20906/CPS/COB-2015-2727

Resumo

Industrial machines with reciprocating (oscillating) motion such as weaving looms tackle primarily high inertial loads, conventionally operating within frequency ranges of 5-15 Hz with relatively large strokes. Recent trends of individual electrification of parts of weaving loom drivetrains for reasons of increased flexibility of use make this problem even worse, as the inertial loads are less averaged out. Adding springs to such oscillating drivetrains can allow to improve the energy efficiency and downsize the actuators. To get an estimation of energy sinks and peak power consumption in a reciprocating drivetrain of a weaving loom, a spring assisted demonstrator available at Flanders Make has been modelled using a 1D multiphysical dynamic model. Next to energy requirements, industrial machines have strict lifetime demands. Target lifetime of 50 000 hours results in over 1E9 spring cycles. Mechanical spring design and fatigue modelling for this number of cycles is a difficult design problem with high levels of uncertainty. Therefore, magnetic springs are proposed instead of mechanical springs as a technological novelty with benefits of no material fatigue and additional flexibility in design. In the developed drivetrain model the mechanical spring is replaced by an off-the-shelf magnetic spring in order to perform a first estimation of the impact on the dynamic behavior.

Palavras-chave: model based design; magnetic spring; spring assisted drivetrain; energy efficient oscillating drivetrain

Como citar

Branimir Mrak; Walter Driesen; Wim Desmet. “Magnetic springs: fast energy storage for reciprocating industrial drivetrains”. 23rd ABCM International Congress of Mechanical Engineering. COBEM2015. 2015. DOI: 10.20906/CPS/COB-2015-2727