A composite hub was successfully designed and fabricated for a flywheel rotor of 51 kWh energy storage capacities. To be compatible with a rotor, designed to expand by 1% hoop strain at a maximum rotational speed of 15,000 rpm, the hub was flexible enough in the radial direction to deform together with the inner rotor surface. This hub is also stiff in the conical deformation mode to increase the vibration frequency for high rotational speed. A dome type hub of carbon-glass/epoxy has been developed to be press-fitted into the rotor with interference in order to offset the hoop strain. A series of parametric study were sequentially performed to determine fiber fractions, layer thickness, winding angles, interference, and the shape of the geo...
A multi-objective optimization strategy to find optimal designs of composite multi-rim flywheel roto...
Most recent research on flywheel rotors has focused on high-speed composite rotors as the storage el...
The University of Texas Center for Electromechanics (UT-GEM) is developing flywheel energy storage s...
An advanced composite flywheel rotor consisting of intra and inter hybrid rims was designed to optim...
Flywheel energy storage systems employing high-speed composite flywheels and advanced electric motor...
ABSTRACT: The pre-compression that develops in a press-fit multi-rim rotor suppresses tensile stress...
This paper discusses three different rim design cases of a hybrid composite flywheel rotor using str...
This study was conducted to investigate the stress, strain, and strength ratio distributions in the ...
This thesis is a part of a larger project that focuses on the development of a highspeed, high energ...
This paper presents the work performed to develop a multiring composite material flywheel and improv...
This project studied flywheel rotor design for high speed flywheel energy storage systems. A two-dim...
This study on the enhancement of high-speed flywheel energy storage is to investigate composite mate...
The design of a flywheel which incorporates a circumferentially wound rim is described. The design r...
An integrated general formulation for the analysis and design of flywheel rotors made out of composi...
A multi-objective optimization strategy to find optimal designs of composite multi-rim flywheel roto...
A multi-objective optimization strategy to find optimal designs of composite multi-rim flywheel roto...
Most recent research on flywheel rotors has focused on high-speed composite rotors as the storage el...
The University of Texas Center for Electromechanics (UT-GEM) is developing flywheel energy storage s...
An advanced composite flywheel rotor consisting of intra and inter hybrid rims was designed to optim...
Flywheel energy storage systems employing high-speed composite flywheels and advanced electric motor...
ABSTRACT: The pre-compression that develops in a press-fit multi-rim rotor suppresses tensile stress...
This paper discusses three different rim design cases of a hybrid composite flywheel rotor using str...
This study was conducted to investigate the stress, strain, and strength ratio distributions in the ...
This thesis is a part of a larger project that focuses on the development of a highspeed, high energ...
This paper presents the work performed to develop a multiring composite material flywheel and improv...
This project studied flywheel rotor design for high speed flywheel energy storage systems. A two-dim...
This study on the enhancement of high-speed flywheel energy storage is to investigate composite mate...
The design of a flywheel which incorporates a circumferentially wound rim is described. The design r...
An integrated general formulation for the analysis and design of flywheel rotors made out of composi...
A multi-objective optimization strategy to find optimal designs of composite multi-rim flywheel roto...
A multi-objective optimization strategy to find optimal designs of composite multi-rim flywheel roto...
Most recent research on flywheel rotors has focused on high-speed composite rotors as the storage el...
The University of Texas Center for Electromechanics (UT-GEM) is developing flywheel energy storage s...