Energy storage suspension with left suspension and right suspension being communicated

A through-type, left-right technology, applied in suspension, elastic suspension, interconnection system, etc., can solve the problems of wheel vibration isolator damage, inertial vessel being easily "breakdown, failure, etc., to reduce body roll. , The effect of improving vehicle handling stability and low cost

Inactive Publication Date: 2013-09-04
JIANGSU UNIV
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Problems solved by technology

[0003] Chinese patent 200810123830.8 discloses a vehicle suspension using an inerter, including a parallel body composed of a damper and an inerter, and a parallel body composed of a damper and a spring. The two parallel bodies are connected in series to form a two-stage vehicle suspension , in theory, it can buffer and attenuate the shock and vibration caused by uneven road surface in the whole frequen

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  • Energy storage suspension with left suspension and right suspension being communicated

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Embodiment Construction

[0016] The present invention will be further described below in conjunction with drawings and embodiments.

[0017] The present invention comprises beam 1, cross bar 6, left swing arm 2, left wheel vibration isolator 3, left vehicle body vibration isolator 4, right swing arm 10, right wheel vibration isolator 9 and right vehicle body vibration isolator 8.

[0018] The crossbeam 1 and the vehicle body 7 are connected symmetrically through two fixed rods 5, and the crossbar 6 is hinged at the middle part of the crossbeam 1 and can rotate around the middle hinge axis.

[0019] The upper end of the left wheel vibration isolator 3 and the lower end of the left body vibration isolator 4 are coaxially hinged on the left end of the cross bar 6, and the upper end of the right wheel vibration isolator 9 and the lower end of the right body vibration isolator 8 are coaxially hinged on the right end of the cross bar 6. The rod 6 is horizontal when in the equilibrium position; ...

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Abstract

The invention relates to vehicle suspensions, in particular to an energy storage suspension. A left suspension and a right suspension of the energy storage suspension are connected through a cross bar, and an inerter is used in the energy storage suspension. According to the energy storage suspension with the left suspension and the right suspension being communicated, the upper end of a left wheel vibration isolator and the lower end of a left vehicle body vibration isolator are coaxially hinged to the left end of the cross bar, the upper end of the right wheel vibration isolator and the lower end of the right vehicle body vibration isolator are coaxially hinged to the right end of the cross bar, and the cross bar is hinged to the middle portion of a suspension beam and is capable of rotating around a middle hinge shaft. By means of the beam which is connected with the left suspension and the right suspension, all the static loads of the vehicle body act on the left wheel vibration isolator and the right wheel vibration isolator, and thus the technical defect that the inerter is easy to puncture under the action of the vehicle body loads is overcome. By means of the vehicle body vibration isolators, the lower frequency peak of the vehicle body vertical acceleration is restrained. By means of the wheel vibration isolators, the high frequency peak of tyre dynamic loads is restrained. By means of the cross bar which are connected with the left suspension and the right suspension, the stress interaction of the left suspension and the right suspension is reduced, lateral incline of the vehicle body is reduced, therefore, the steering stability ofe the vehicle is improved, and the purposes that people sit in the vehicle comfortably and a driver drives safely are achieved.

Description

technical field [0001] The invention relates to a vehicle suspension, in particular to a vehicle suspension which adopts a horizontal bar penetrating the left and right suspensions and uses an inerter. Background technique [0002] Suspension has a significant impact on vehicle handling stability and ride comfort. The damping and stiffness of traditional passive suspension cannot be changed with the change of road surface conditions, so it is difficult to meet people's requirements for vehicle suspension performance. Although active and semi-active suspension technologies can improve the dynamic performance of vehicles, the cost of active suspension is relatively high, and semi-active suspension has time-lag problems, so there are few applications in real vehicles. Chinese and foreign researchers are actively exploring New technology to improve suspension performance. In 2003, based on the theory of electromechanical similarity, Smith proposed an ideal inerter that is comp...

Claims

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Application Information

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IPC IPC(8): B60G15/06B60G21/05
Inventor 汪若尘吴涛陈龙施德华
Owner JIANGSU UNIV
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