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A high-power magneto-rheological constant-acceleration soft-start device with a control system

A control system and magneto-rheological technology, applied in the direction of fluid clutches, clutches, mechanical equipment, etc., can solve problems such as difficult operation, difficult processing and assembly, and unreliable reliability, so as to improve transmission capacity and enhance shearing Yield strength, effect of ensuring servo control performance

Inactive Publication Date: 2018-02-13
宿州学院
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, increasing the number of friction plates not only makes the device more complicated, difficult to process and assemble, but also difficult to operate, and the reliability cannot be guaranteed
And above-mentioned magneto-rheological soft-starter does not realize effective control to its start-up acceleration

Method used

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  • A high-power magneto-rheological constant-acceleration soft-start device with a control system
  • A high-power magneto-rheological constant-acceleration soft-start device with a control system
  • A high-power magneto-rheological constant-acceleration soft-start device with a control system

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Experimental program
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Embodiment Construction

[0023] Below in conjunction with accompanying drawing and embodiment the present invention will be further described:

[0024] Such as figure 1 As shown, a high-power magneto-rheological constant-acceleration soft-start device with a control system is divided into a high-power magneto-rheological constant-acceleration soft-start device part and a control part;

[0025] Such as figure 2As shown, the high-power magneto-rheological soft-starter part includes a left magnetic shell 1, a liquid outlet / pressure measurement port 2, a left bearing cover 3, a left round nut 4, a left tapered roller bearing 5, a drive shaft 6, and a drive shaft. Disc 7, magnetic isolation ring 8, excitation coil 9, sealing ring 10, liquid inlet / pressurization port 11, driven disc 12, right magnetic shell 13, right tapered roller bearing 14, right round nut 15, slave Moving shaft 16 and right bearing end cover 17. The left magnetic conduction shell 1 and the right magnetic conduction shell 13 are fast...

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Abstract

The invention discloses a high-power magnetorheological constant acceleration soft start device and a control system thereof, and belongs to the field of magnetorheological fluid transmission. The high-power magnetorheological constant acceleration soft start device and the control system thereof comprise a device part and a control part. The device part is in a double-disc magnetorheological fluid transmission mode, the working faces of two transmission discs are provided with radial strip grooves, the space between the two discs is filled with magnetorheological fluid, and a magnet exciting coil is wound around the two discs. The control part is composed of a data processor, a master controller, a sensor, a current controller and a hydraulic cylinder control valve. The largest torsional moment of the magnetorheological soft start device is improved by pressurizing the magnetorheological fluid and changing the surface structures of the inner wall faces of the two discs, and a constant acceleration soft start system is controlled in the starting process.

Description

technical field [0001] The invention relates to a magnetorheological soft start device, in particular to a high-power magnetorheological constant acceleration soft start device with a control system. Background technique [0002] Magnetorheological fluid is a new type of intelligent material, which exhibits low-viscosity Newtonian-like fluid properties when there is no external magnetic field. In the case of an external magnetic field, the liquid form with good rheological properties can be turned into a solid-like material within milliseconds, and once the magnetic field loses its effect, it will return to the liquid state. Under the action of a magnetic field, the magnetic particles in the magnetorheological fluid can form microstructures such as through chains, branched chains, isolated chains, and columnar chains, and the ends of various microscopic chain structures are easy to break. Therefore, simply relying on shearing Mode is difficult to increase the yield strength...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16D35/00
CPCF16D35/00
Inventor 刘浩王楠张霖纵榜峰张明玉闫申王艳
Owner 宿州学院
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