Leakage-free electromagnetic fluid damper with electro-rheological fluids

A fluid damper and current variant technology, applied in vibration suppression adjustment, non-rotational vibration suppression, etc., can solve problems such as fluid leakage in the fluid damper, fluid damper use restrictions, etc., to achieve vibration suppression and large damping force , the effect is obvious

Inactive Publication Date: 2012-07-04
SOUTHEAST UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The fluid damper is an effective structural damper, but during the working process

Method used

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  • Leakage-free electromagnetic fluid damper with electro-rheological fluids
  • Leakage-free electromagnetic fluid damper with electro-rheological fluids
  • Leakage-free electromagnetic fluid damper with electro-rheological fluids

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Example Embodiment

[0037] The present invention will be further described below in conjunction with the drawings.

[0038] The present invention provides a non-leakage electromagnetism fluid damper, which uses magnetic force to push the piston in the damper to move. When the piston moves, the electromagnetism flows through the small circular through holes (damping holes) on the piston, and the electromagnetism flows It consumes energy when passing through the small round through hole (damping hole) on the piston, which has the effect of controlling vibration.

[0039] The following description of the embodiments of the present invention is merely exemplary in nature, and is never intended to limit the application or use of the present invention.

[0040] All springs take the form of circular springs. The upper surface of the piston 18 has a second T-shaped quadrilateral groove 29. The length of the second T-shaped quadrilateral groove 29 runs through the center of the piston 18, and the second T-shaped...

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Abstract

A leakage-free electromagnetic fluid damper with electro-rheological fluids comprises a disk (13), a bottom disk flange (23), a hydraulic cylinder (14), a disk flange (1) and a cylinder (9) with an opening, wherein the bottom disk flange (23) is opposite to the disk (13), the hydraulic cylinder (14) is used for leakage-free connection of the disk (13) and the bottom disk flange (23), the disk flange (1) is provided with a third unthreaded hole (25), two ends of the cylinder (9) are provided with disk flanges, the upper end of the cylinder (9) is provided with the upper end disk flange (12), the lower end of the cylinder (9) is provided with the lower end disk flange (10), and a lateral cylinder body of the cylinder (9) is provided with a circular through hole (56). When a piston in the magnetic traction damper moves, the electro-rheological fluids flow through a small circular through hole on the piston and simultaneously consume energy, and the viscosity of the electro-rheological fluids is changed by changing voltage between a positive plate and a negative plate according to the requirement on vibration control, so that vibration can be actively controlled.

Description

technical field [0001] The invention proposes "a non-leakage current variable electromagnetic fluid damper", which belongs to the field of structural vibration control and is active control. Background technique [0002] The fluid damper is an effective structural damper, but during the working process of the fluid damper, there is a possibility of fluid leakage in the fluid damper. limit. The invention proposes a non-leakage current variable electromagnetic fluid damper, which does not use a dynamic seal, and thus is not prone to liquid leakage faults. Contents of the invention [0003] Technical problem: The purpose of this invention is to propose a non-leakage current variant electromagnetic fluid damper, which is especially suitable for structural vibration control under the condition that no leakage is allowed. [0004] Technical solution: In order to solve the above technical problems, the technical solution provided by the invention is: [0005] The piston moveme...

Claims

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Application Information

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IPC IPC(8): F16F9/53
Inventor 韩玉林王芳刘娟关庆港贾春万江张居锁
Owner SOUTHEAST UNIV
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