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Double-rod variable-orifice active single-control variable-damping magneto-rheological damper

A magnetorheological damper, orifice technology, applied in the direction of shock absorbers, shock absorbers, springs/shock absorbers, etc., can solve the problems such as the limitation of the adjustment range of damping force, and achieve the effect of widening the upper limit and reasonable structure

Inactive Publication Date: 2015-12-23
CHANGZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the magnetorheological damper in the prior art realizes variable damping, it still has certain disadvantages: the working gap between the outer peripheral wall of the piston and the inner peripheral wall of the working cylinder is constant, and the change of the damping force depends entirely on the change of the external magnetic field. Therefore, the adjustment range of the damping force is limited

Method used

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  • Double-rod variable-orifice active single-control variable-damping magneto-rheological damper
  • Double-rod variable-orifice active single-control variable-damping magneto-rheological damper

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Embodiment Construction

[0011] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0012] see figure 1 As shown, the dual-rod variable orifice active single-control variable damping magnetorheological damper of the present invention includes a working cylinder module 1, two sets of end cover modules 2 with identical structures, a piston module 3, a working gap 43, a power supply 5. Two sets of end cover modules 2 are respectively installed at both ends of the working cylinder module 1, and the piston module 3 is installed inside the working cylinder module 1; the working cylinder module 1 includes a rheological fluid cylinder 11, an installation The energizing coil 12 on the rheological fluid cylinder 11 and the coil shielding layer 13 installed outside the energizing coil 12 .

[0013] The end cover module 2 includes an end cover body 21, a bearing hole 22 arranged on the end cover body 21, a bearing 23 installed ...

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Abstract

The invention discloses a double-rod variable-orifice active single-control variable-damping magneto-rheological damper, and belongs to the field of variable-damping structure vibration isolation magnetorheological fluid instruments. The double-rod variable-orifice active single-control variable-damping magneto-rheological damper comprises a working cylinder body module, two sets of end cover modules which are completely the same in structure, a piston module, a working gap and a power source; the two sets of end cover modules are arranged at the two ends of the working cylinder body module respectively, and the piston module is arranged inside the working cylinder body module; the working cylinder body module comprises a rheological fluid cylinder body, an electrifying coil and a coil shielding layer; the diameter of a gradually-changed throttling column is changed linearly along the axis, the diameter of the middle portion of the column is maximum, and the diameters of the two ends of the column are minimum; and the inner diameter of an orifice is equal to the maximum diameter of the gradually-changed throttling column. According to the variable-damping magneto-rheological damper, the structure is compact, the working gap is changed through the gradually-changed throttling column, and the strength of a magnetic field is controlled through the power source.

Description

technical field [0001] The invention relates to the field of vibration-isolation magneto-rheological fluid instruments with a variable damping structure, in particular to a dual-rod variable orifice active single-control variable-damping magnetorheological damper. Background technique [0002] Magneto-rheological damper is an intelligent vibration reduction instrument widely used in structural vibration control fields such as automobiles, bridges, and buildings, and plays an important role in structural vibration reduction. The existing magnetorheological damper changes the viscosity of the fluid through the application of an external magnetic field, so that the magnetorheological fluid obtains different damping forces through the working gap between the outer peripheral wall of the piston and the inner peripheral wall of the working cylinder. Although the magnetorheological damper in the prior art realizes variable damping, it still has certain disadvantages: the working ga...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16F9/53F16F9/34
Inventor 班书昊李晓艳胡爱萍蒋学东谭邹卿席仁强
Owner CHANGZHOU UNIV
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