1. Field of the Invention
The present invention relates to a motor, in particular a motor having more magnets on effective area of the rotor to improve efficiency of the motor thereof.
2. Description of the Related Art
Heretofore, it is known in modem industry that power is needed to drive machinery in rotation or movement in other forms, motors are generally applied as power source; motors can convert electrical power or magnetic energy into mechanical power, motors are widely applied in different variety of industries, electrical appliances, transportation systems, and have become an indispensable device.
Motors can be classified into DC, AC, brushless and brush types, in general, the structure of the motor consists of a rotor and a stator, magnetic flux distribution between rotor and stator activates rotor rotate, the rotation of motor transmits and provides mechanical energy needed. Magnet has magnetic characteristics, permanent magnet motor applies magnetic flux provided by magnet, permanent magnet motors can produce larger torque within the limited space with higher efficiency and more precision, so they own more attention in the market.
Refer to
Refer to
As shown in the
In view of the aforementioned problems of the prior art, it is a primary objective of the present invention to provide a motor with rotor having more magnets on an effective surface for higher efficiency.
To achieve the foregoing objective, the present invention consists of a stator, a rotor and a rotation shaft, the rotor forms a plurality number of rotor poles, each rotor pole has a magnet, a concave arc is on the outer side of each magnet, and forms the first, the second and the third surfaces near inside of each magnet, the concave arc connects to the first and the third surfaces with connecting plans respectively, each connecting plan nears the periphery surface of that rotor, the angles formed by the first surface, the third surface with the second surface are θ1, and θ3 respectively, when the number of rotor magnet poles is P that satisfies “90+ (180/P)” degree condition, the slope of the tangent of the concave arc near the first surface is equal or smaller than the slope of the first surface, the slope of the tangent of the concave arc near the third surface is equal or smaller than the slope of the third surface, the magnet design makes rotor have more area for magnets on effective surface to lift the efficiency of motor, and reduce rotation noise.
The accomplishment of the above-mentioned object of the present invention will become apparent from the following description and its accompanying drawings which disclose illustrative an embodiment of the present invention, and are as follows:
The technical content of the present invention will become apparent by the detailed description of the following embodiments and the illustration of related drawings as follows.
The present invention improves regular motors, with reference to
The stator 21 further consists of a round shape main body 111 and a plurality number of stator magnetic poles 212, all stator magnetic poles 212 are protruding installed inside the round shape main body 211, a storage space is within each of the stator magnetic pole 212.
The rotor 22 is installed inside the storage space and form air gap with each stator magnetic pole 212, the rotor 22 has an even number of rotor magnetic poles 221, magnets 222 are inside the rotor magnetic poles 221.
The rotor magnetic poles 221 are installed in even number, when the number of rotor magnetic poles 221 is P, the number of stator magnetic pole is “P+ (P/2)”, the implementation of the present invention has a four-pole motor as example, there are four rotor magnetic poles 221 and four stator magnetic poles 212.
Even number of magnets are each installed inside a rotor magnetic pole 221, magnets 222 are made of iron oxide material, a concave arc R1 is on the outer side of each magnet 222, and forms the first, the second and the third surfaces S1, S2, S3 near inside of each magnet 222, the concave arc connects R1 to the first and the third surfaces S1, S3 with a connecting plan S4 respectively, each connecting plan S4 nears the periphery surface of that rotor 22, the angles formed by the first surface, the third surface S1, S3 with the second surface S2 are θ1, and θ3 respectively, when the number of rotor magnet poles 221 is P that satisfies “90+ (180/P)” degree condition, as example shown in fig, P=4, θ1=θ 3=135°, the slope of the tangent (LA) of the concave arc R1 near the end A of the first surface S1 is equal or smaller than the slope of the first surface S1, the slope of the tangent (LB) of the concave arc R1 near the end B the third surface S3 is equal or smaller than the slope of the third surface S3, the first surface and the third surface S1, S3 of adjacent magnets 222 are parallel to each other.
The rotation axis 23 is installed on the center of rotor 22 and forms a body with the rotor 22.
The second application sample shown in
The implementation of the present invention, the magnet design makes rotor have more magnets applied on the effective surface to lift the efficiency of motor, and reduce rotation noise.
Refer to
Furthermore, a rivet holes 224 is on the rotor magnetic pole 221, the distance of the concave arc R1 and the rivet hole 224 is greater than 0.5 mm, the scheme enhances the structural strength of rotor 22, when rivet hole 224 is not applied and remain empty that reduces the inertia of the rotor 22 and serves as cooling purposes.
While a preferred embodiment of the invention has been shown and described in detail, it will be readily understood and appreciated that numerous omissions, changes and additions may be made without departing from the spirit and scope of the invention.