Super-low-speed high-torque motor and crane with motor

A high-torque, ultra-low-speed technology, applied in the field of ultra-low-speed and high-torque motors, can solve problems such as temperature rise, vibration and noise increase, output drop, etc., to achieve the effect of high torque output

Active Publication Date: 2014-11-19
JIANGXI GONGBU MACHINERY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Existing motors of this kind run well at high speeds, but when they need to run at low speeds (including ultra-low speeds), the negative effects such as harmonic torque and cogging torque become very obvious, temperature rises, vibration and noise increase Large, output drops, and even irreversible demagnetization may occur, these defects seriously hinder the applic

Method used

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  • Super-low-speed high-torque motor and crane with motor
  • Super-low-speed high-torque motor and crane with motor
  • Super-low-speed high-torque motor and crane with motor

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specific Embodiment approach

[0095] For example, the ventilation and heat dissipation in the motor can be carried out through the stator outer heat dissipation air duct and the stator inner heat dissipation air duct. In this case, the two end pressure equalization air gap bands 12 should be respectively connected to the respective ventilation air ducts 14, The ventilation duct can be opened on the fixed plate at the corresponding end and connected with the end uniform pressure air gap zone at the corresponding end (see Figure 7 ), in order to simplify the structure, reduce wind resistance and improve efficiency, the ventilation channel on one of the fixed plates (such as the fixed plate at the right end) is used as the air intake channel, and the ventilation channel on the other fixed plate (such as the fixed plate at the left end) The channel is used as an air outlet channel. When forced ventilation is required, at least one of the ventilation channels on the fixed plate is provided with a forced ventila...

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Abstract

The invention discloses a super-low-speed high-torque motor and a crane with the motor. The motor comprises an outer rotor and a stator. The stator is provided with a stator temperature sensor for collecting a temperature signal within the stator. The outer cylinder inner side of the outer rotor is fixedly equipped with a plurality of permanent magnets which are the same tile-shaped hexahedral structures and are regularly arranged along a circumferential direction and an axial direction. A plurality of permanent magnets are arranged in any circumferential and any axial direction. Two circumferential side faces of the permanent magnets are inclined plane shapes with inside cutting angle shapes, and the angle of a cutting angle is 5 degrees to 35 degrees. According to the crane with the motor, the outer cylinder of the motor is used as the winding drum of a lifting mechanism. The motor can normally run in the condition of low speed (super low speed) and large torque, the operation is stable, the vibration is small, the noise is small, the temperature rise is small, and the motor is mainly used for a crane, a port machine, a tower crane, an elevator, a winding machine and other similar occasion.

Description

technical field [0001] The invention relates to an ultra-low-speed high-torque motor, and also relates to a high-torque crane that directly uses the outer cylinder of the motor as a drum. Background technique [0002] Existing motors include a rotor and a stator. Usually, the structure of the stator inside the outer rotor is adopted. There are also some motors with the rotor outside and the stator inside. This kind of motor is called an outer rotor motor. The stator core of the outer rotor motor is installed on the fixed central shaft, and the winding is embedded on the core. The rotor is cylindrical and located outside the stator. The two ends of the outer cylinder of the rotor are equipped with fixed discs, which are connected to the central shaft through bearings. After the winding is energized, a rotating magnetic field is generated, which interacts with the permanent magnet installed on the inner wall of the rotor to drive the rotor to rotate. Existing motors of this k...

Claims

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Application Information

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IPC IPC(8): H02K21/22H02K1/27H02K1/16H02K9/04H02K11/00H02K5/16B66D1/12H02K11/25
Inventor 喻连生秦军喻林
Owner JIANGXI GONGBU MACHINERY
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