Device for transmitting power through rotating magnetic fields
A device for the transmission of power using rotating magnetic fields includes a drive shaft with an external magnet, a pump shaft with an internal magnet suited to entrained by the external magnet, a rear tight chamber or containment body for the pump shaft and the internal magnet, the rear body being positioned between the internal magnet and external magnet. The rear body includes at least a glass-shaped casing and one or more probes buried within the thickness of the glass-shaped casing.
1. A device for transmitting power using rotating magnetic fields comprising:
a drive shaft;
an external magnet fitted on said drive shaft;
a pump shaft;
an internal magnet fitted on said pump shaft and configured to be entrained by said external magnet; and
a rear tight chamber or rear containment body for said pump shaft and said internal magnet,
wherein said containment body comprises a cup-shaped casing positioned between said internal magnet and said external magnet,
wherein said rear tight chamber or rear containment body consists of a first tight cup-shaped casing forming an external cup-shaped casing made of a non-metallic composite material and having a structural function, and a second cup-shaped casing forming an internal cup-shaped metal casing made and housed in said external cup-shaped casing, said second cup-shaped casing being configured to come directly into contact with a pumped fluid, and
further comprising a temperature sensor or probe that includes a miniaturized thermocouple disposed between said first and said second cup-shaped casing.
2. The device according to claim 1 , wherein said miniaturized thermocouple is connected to a cable inserted through a duct obtained in said rear tight chamber or rear containment body.
3. The device according to claim 1 , further comprising one or more additional sensors or probes configured to monitor operative conditions of the device and positioned between said external cup-shaped casing and said internal cup-shaped casing.
4. The device according to claim 1 , wherein said non-metallic composite material is a thermoplastic, thermoset, or ceramic material.
5. The device according to claim 1 , wherein said internal cup-shaped casing consists of at least one continuous layer covering an inner surface of said external cup-shaped casing, said at least one continuous layer having been deposited with a chemical or electrochemical process.
6. The device according to claim 1 , wherein the device is configured as a magnetic pump, said pump shaft being connected to one or more impellers.