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...
This Special Issue deals with improvements in the energy efficiency of electric devices, machines, a...
Vehicle systems that store and retrieve energy have commonly relied on lead-acid or lithium-ion batt...
AbstractStoring the excess mechanical or electrical energy to use it at high demand time has great i...
Industrial machines with reciprocating (oscillating) motion such as weaving looms tackle primarily h...
Industrial machines with reciprocating (oscillating) motion such as weaving looms tackle primarily h...
Cyclic loads such as weaving looms have an oscillating load torque profile which negatively affects ...
Benchmarking three different solutions to drive directly (i.e. without gearbox) the shedding mechani...
The increasing use of robots in the industry, the growing energy prices, and higher environmental aw...
© 2019 by the authors. Magnetic springs are a fatigue-free alternative to mechanical springs that co...
Flywheel energy storage (FES) system can have energy fed in the rotational mass of a flywheel, store...
Energy storage systems (ESS) are key elements that can be used to improve electrical system efficien...
This article presents crucial issues regarding the design, manufacture, and testing of a steel rotor...
Magnetic springs are a fatigue-free alternative to mechanical springs that could enable compliant ac...
Mechanical spring drives with energy recovery are designed to produce return-rotational movements in...
Flywheel Energy Storage Systems are interesting solutions for energy storage, featuring advantageous...
This Special Issue deals with improvements in the energy efficiency of electric devices, machines, a...
Vehicle systems that store and retrieve energy have commonly relied on lead-acid or lithium-ion batt...
AbstractStoring the excess mechanical or electrical energy to use it at high demand time has great i...
Industrial machines with reciprocating (oscillating) motion such as weaving looms tackle primarily h...
Industrial machines with reciprocating (oscillating) motion such as weaving looms tackle primarily h...
Cyclic loads such as weaving looms have an oscillating load torque profile which negatively affects ...
Benchmarking three different solutions to drive directly (i.e. without gearbox) the shedding mechani...
The increasing use of robots in the industry, the growing energy prices, and higher environmental aw...
© 2019 by the authors. Magnetic springs are a fatigue-free alternative to mechanical springs that co...
Flywheel energy storage (FES) system can have energy fed in the rotational mass of a flywheel, store...
Energy storage systems (ESS) are key elements that can be used to improve electrical system efficien...
This article presents crucial issues regarding the design, manufacture, and testing of a steel rotor...
Magnetic springs are a fatigue-free alternative to mechanical springs that could enable compliant ac...
Mechanical spring drives with energy recovery are designed to produce return-rotational movements in...
Flywheel Energy Storage Systems are interesting solutions for energy storage, featuring advantageous...
This Special Issue deals with improvements in the energy efficiency of electric devices, machines, a...
Vehicle systems that store and retrieve energy have commonly relied on lead-acid or lithium-ion batt...
AbstractStoring the excess mechanical or electrical energy to use it at high demand time has great i...