Magnetorheological fluid-based semi-active control variable inertia dual-mass flywheel

A dual-mass flywheel, semi-active control technology, applied in the direction of flywheel, rotational vibration suppression, vibration suppression adjustment, etc., can solve the problems of small damping torque, small working gap area, unsatisfactory torsional stiffness, etc., to achieve attenuation of torsional vibration, attenuation The effect of broadband torsional vibration

Active Publication Date: 2019-06-28
JILIN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the above-mentioned dual-mass flywheels have defects such as small working gap area, small damping torque, and torsional stiffness that cannot meet the needs of multiple working conditions of the vehicle.

Method used

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  • Magnetorheological fluid-based semi-active control variable inertia dual-mass flywheel
  • Magnetorheological fluid-based semi-active control variable inertia dual-mass flywheel
  • Magnetorheological fluid-based semi-active control variable inertia dual-mass flywheel

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Embodiment Construction

[0033] The present invention is described in detail below in conjunction with accompanying drawing:

[0034] The present invention applies the magnetorheological fluid technology to the dual-mass flywheel, and designs a novel variable inertia semi-actively controlled dual-mass flywheel, which includes the selection of the number of layers of the magnetorheological fluid fluid gap and the sealing of the damping liquid chamber , the arrangement of the excitation device, the arrangement of the primary flywheel group and the secondary flywheel group, and the application of the variable inertia disc, etc., realize the semi-active control of the damping of the dual mass flywheel, in the lower frequency and higher frequency working range required by the vehicle Both can meet the normal performance requirements and improve the ride comfort in the car.

[0035] The magnetorheological fluid-based semi-active control variable inertia dual-mass flywheel of the present invention is compose...

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Abstract

The invention relates to a magnetorheological fluid-based semi-active control variable inertia dual-mass flywheel, and aims to solve the problems of uncontrollable damping and small adjustable dampingrange of the existing dual-mass flywheel. The magnetorheological fluid-based semi-active control variable inertia dual-mass flywheel comprises a primary flywheel assembly, a secondary flywheel assembly, an excitation device, a damping liquid chamber assembly, a magnetorheological fluid, an inner rotor, two variable inertia discs and two arc-shaped springs; the primary flywheel assembly is supported on each of a second flywheel connecting shaft and the secondary flywheel assembly; the secondary flywheel assembly is matched with the second flywheel connecting shaft; a force transferring plate is in rigid connection with a second flywheel; the two arc-shaped springs are symmetrically mounted in two arc-shaped grooves of the primary flywheel assembly; the inner rotor and the two variable inertia discs are matched with the second flywheel connecting shaft; damping plates are matched with damping clamping grooves in a damping liquid chamber shell to form a plurality of layers of fluid gaps;an upper damping liquid chamber shell is connected with a lower damping liquid chamber shell through shell extending plates at cross sections; and the excitation device is fixed to the outer side ofthe damping liquid chamber shell.

Description

technical field [0001] The invention relates to a transmission vibration reduction and damping part of an automobile, in particular to a semi-active control variable inertia dual-mass flywheel based on magneto-rheological fluid. Background technique [0002] The viscosity and yield stress of magnetorheological fluid can change with the change of the external magnetic field, and this change has the characteristics of fast, reversible and controllable. Under the action of an external magnetic field, it can instantly change from a liquid-like state to a solid-like state, and its viscosity suddenly increases or even loses its fluidity. At this time, it has a certain shear yield stress. As the current in the coil increases, the yield stress of the magneto-rheological fluid increases, and the process responds quickly, is continuous and reversible. The characteristic that magnetorheological fluid can produce magnetorheological effect enables it to be widely used in engineering. Ap...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16F15/31F16F9/53F16F15/14
Inventor 陈志勇李松
Owner JILIN UNIV
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