Honda motor co., ltd. (20240333055). ROTATING ELECTRIC MACHINE simplified abstract

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ROTATING ELECTRIC MACHINE

Organization Name

honda motor co., ltd.

Inventor(s)

Manabu Yazaki of Wako-shi (JP)

Kenichi Senda of Wako-shi (JP)

ROTATING ELECTRIC MACHINE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240333055 titled 'ROTATING ELECTRIC MACHINE

Simplified Explanation: The abstract describes a rotor of a rotating electric machine with a coolant flow path formed in the rotating shaft, including a first flow path, a second flow path, and a communication flow path.

  • The rotor of the rotating electric machine has a rotating shaft with a coolant flow path.
  • The coolant flow path consists of a first flow path extending along the axial direction of the shaft and a second flow path on the outer circumferential side of the first flow path.
  • The first and second flow paths communicate with each other via a communication flow path.

Potential Applications: 1. Electric vehicles 2. Industrial machinery 3. Renewable energy systems

Problems Solved: 1. Efficient cooling of the rotating shaft 2. Enhanced performance and longevity of the electric machine

Benefits: 1. Improved thermal management 2. Increased reliability and durability 3. Energy efficiency

Commercial Applications: Cooling systems for electric motors in electric vehicles, industrial machinery, and renewable energy systems.

Prior Art: Prior art related to this technology may include patents or research papers on cooling systems for rotating electric machines.

Frequently Updated Research: Stay updated on advancements in cooling technologies for electric machines and their applications in various industries.

Questions about Rotating Electric Machine Cooling Systems: 1. How does the design of the coolant flow path impact the efficiency of the cooling system? 2. What are the key factors to consider when implementing a coolant flow path in a rotating electric machine for optimal performance and longevity?


Original Abstract Submitted

a rotor of a rotating electric machine includes a rotating shaft. a coolant flow path is formed in the rotating shaft. the coolant flow path includes a first flow path and a second flow path. the first flow path extends from one end part of the rotating shaft toward another end part along an axial direction of the rotating shaft. the second flow path extends toward the other end part of the rotating shaft on an outer circumferential side of the first flow path. the coolant flow path further includes a communication flow path. the first flow path and the second flow path communicate with each other via the communication flow path.