Magneto-rheological elastomer double outlet rod single ring film damper

A magnetorheological elastomer, double-rod technology, applied in liquid shock absorbers, vibration suppression adjustment, non-rotational vibration suppression, etc., can solve the problems of large piston mass, small clearance, and difficulty in applying vibration reduction requirements.

Inactive Publication Date: 2013-11-13
谭苹
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The magneto-rheological damper is an intelligent damping device. The existing magneto-rheological damper mostly adopts the structure of piston and working cylinder. The piston is mostly a cylindrical shape made of magnetically conductive metal. The viscosity of the magnetorheological fluid in the middle is used t

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  • Magneto-rheological elastomer double outlet rod single ring film damper
  • Magneto-rheological elastomer double outlet rod single ring film damper
  • Magneto-rheological elastomer double outlet rod single ring film damper

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Embodiment Construction

[0012] The structure of the present invention is described in detail below in conjunction with accompanying drawing:

[0013] see Figure 1 to Figure 4 , which is a specific structure of the present invention, a magneto-rheological elastomer double-rod single-ring film damper, which includes a working cylinder 4, a damping rod 18, two ring-shaped damping films 3 and 9, two ring-shaped damping Sheets 1 and 12 and a double-sided annular electromagnet 8; wherein: the working cylinder 4 is cylindrical, and the two ends of the working cylinder 4 are fixed with end caps 10 made of magnetic materials, in the center hole of the end cap 10 Sliding bearings 17 are installed; the outer circumference of the double-sided annular electromagnet 8 is fixed on the inner wall of the working cylinder 4 between the two end covers 10, and the distance between the double-sided annular electromagnet 8 and the two end covers 10 is equal There are 4 pairs of magnetic poles 15 evenly distributed on a ...

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Abstract

The invention discloses a magneto-rheological elastomer double outlet rod single ring film damper. The damper comprises a working cylinder, a damping rod, two annular damping films, two annular damping sheets and a double-sided annular electromagnet, wherein the working cylinder is cylindrical; end covers are fixed to the two ends of the working cylinder; the outer circumference of the two-sided annular electromagnet is fixed to the inner wall of the working cylinder between the two end covers; at least four pairs of magnetic poles are uniformly distributed on each annular surface of the two-sided annular electromagnet; an excitation coil is wound on each magnetic pole; the two annular damping films consist of magneto-rheological elastomers; the outer circumferences of the annular damping sheets are fixed to the inner circumferences of the annular damping films; the outer circumferences of the two annular damping films are fixed to the inner wall of the working cylinder between the two-sided annular electromagnet and the two end covers in parallel respectively; the damping rod penetrates through middle holes in the two annular damping sheets and the two annular damping sheets are fixed to the middle part of the damping rod; and the two ends of the damping rod extends out of the two ends of the working cylinder through sliding bearings on the two end covers of the working cylinder.

Description

technical field [0001] The invention belongs to a magneto-rheological damper, in particular to a magneto-rheological elastic body double-out rod single-ring film damper. Background technique [0002] The magneto-rheological damper is an intelligent damping device. The existing magneto-rheological damper mostly adopts the structure of piston and working cylinder. The piston is mostly a cylindrical shape made of magnetically conductive metal. The viscosity of the magnetorheological fluid in the middle is used to adjust the output damping force. This kind of magnetorheological damper with a cylindrical piston structure is difficult to apply due to the large mass of the piston and the small gap between the piston and the working cylinder. The vibration reduction requirements for high-frequency and small-amplitude vibration occasions. Contents of the invention [0003] Aiming at the problem that the mass of the piston in the existing magneto-rheological damper is too large to...

Claims

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Application Information

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IPC IPC(8): F16F9/20F16F9/53
Inventor 谭和平谭林谭苹谭真
Owner 谭苹
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