Axial field rotary energy device with PCB stator with thermal expansion capability
An axial field rotary energy device has a PCB stator panel assembly between rotors with an axis of rotation. Each rotor has a magnet. The PCB stator panel assembly includes PCB panels. Each PCB panel can have layers, and each layer can have conductive coils. The PCB stator panel assembly can have a thermally conductive layer that extends from an inner diameter portion to an outer diameter portion thereof.
1. An axial field rotary energy device, comprising:
rotors having an axis of rotation, and each rotor comprises a magnet;
a housing enclosing the rotors and a stator assembly, the housing comprises alignment pins oriented in an axial direction, wherein the alignment pins position and secure the stator assembly, and the housing is mechanically coupled to the stator assembly;
the stator assembly is located axially between the rotors, and the stator assembly comprises:
printed circuit board (PCB) panels, each PCB panel comprises layers, each layer comprises coils;
an outer edge and mounting holes, wherein the mounting holes are located adjacent to the outer edge, such that the stator assembly is supported by housing exclusively adjacent the outer edge;
the mounting holes are elongated in shape and extend radially relatively to the axis of rotation, and the mounting holes have a sliding fit with the respective alignment pins;
relative to the axis of rotation, a circumferential air gap is unobstructed and located between an interior of the housing and an exterior of the stator assembly, and a diameter of the stator assembly can slide and grow into the circumferential air gap allowing for thermal expansion of the stator assembly; and
the housing comprises housing sections, and the stator assembly and the housing sections are coupled together to allow heat generated by the stator assembly to be conducted to the housing sections.
2. An axial field rotary energy device, comprising:
rotors having an axis of rotation, and each rotor comprises a magnet;
a housing enclosing the rotors and a stator assembly, the housing comprises alignment pins oriented in an axial direction, wherein the alignment pins position and secure the stator assembly, and the housing is mechanically coupled to the stator assembly;
the stator assembly is located axially between the rotors, and the stator assembly comprises discrete, PCB radial segments that are mechanically and electrically coupled together to form the stator assembly, wherein each PCB radial segment comprises:
printed circuit board (PCB) panels, each PCB panel comprises layers, and each layer comprises coils;
an outer edge and mounting holes, wherein the mounting holes are located adjacent to the outer edge, such that the stator assembly is supported by housing exclusively adjacent the outer edge;
the mounting holes are elongated in shape and extend radially relatively to the axis of rotation, and each mounting hole has a sliding fit with the respective alignment pin;
relative to the axis of rotation, a circumferential air gap is unobstructed and located between an interior of the housing and an exterior of the stator assembly, and a diameter of the stator assembly can slide and grow into the circumferential air gap allowing for thermal expansion of the stator assembly; and
the housing comprises housing sections, and the PCB radial segments and the housing sections are coupled together to allow heat generated by the PCB radial segments to be conducted to the housing sections.