CN203670577U - Oil and gas spring device with inerter and damper connected in parallel - Google Patents

Oil and gas spring device with inerter and damper connected in parallel Download PDF

Info

Publication number
CN203670577U
CN203670577U CN201420005797.XU CN201420005797U CN203670577U CN 203670577 U CN203670577 U CN 203670577U CN 201420005797 U CN201420005797 U CN 201420005797U CN 203670577 U CN203670577 U CN 203670577U
Authority
CN
China
Prior art keywords
chamber
gas spring
oil
oil hydraulic
damper
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420005797.XU
Other languages
Chinese (zh)
Inventor
蒋涛
陈龙
张孝良
汪若尘
沈钰杰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiangsu University
Original Assignee
Jiangsu University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiangsu University filed Critical Jiangsu University
Priority to CN201420005797.XU priority Critical patent/CN203670577U/en
Application granted granted Critical
Publication of CN203670577U publication Critical patent/CN203670577U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

The utility model discloses an oil and gas spring device with an inerter and a damper connected in parallel. The oil and gas spring device comprises a single-chamber oil and gas spring and a hydraulic motor. A hydraulic cylinder in the oil and gas spring device and a gas spring in the oil and gas spring device are of an integrated structure in a series connection mode, and therefore impact and vibration from pavement high-frequency sections can be buffered and reduced. When external force from a vehicle body and the ground is applied to a piston rod in a working cylinder in the axial direction of a shock absorber, a piston performs linear motion relative to a cylinder body, differential pressure is formed between an upper chamber of the hydraulic cylinder and a lower chamber of the hydraulic cylinder, working oil passes through a damper valve, the hydraulic motor and the gas spring, the functions of the inerter are achieved, and meanwhile the effect that the inerter is connected with the damper in parallel and then connected with the gas spring in series by combining the electromechanical analogy theory. The oil and gas spring device can be used for buffering and reducing impact and vibration caused by uneven pavement within the all-frequency-domain range, is compact in structure and flexible in arrangement, and has certain engineering application value.

Description

A kind of container hydro-pneumatic spring device in parallel with damper of being used to
Technical field
The utility model relates to a kind of hydro-pneumatic spring device, refers in particular to oneplant and be used to container and the hydro-pneumatic spring device of connecting with gas spring after damper parallel connection.
Background technique
In recent years, electromechanical integration becomes an important directions of development in science and technology.Now main what adopt is similar to electric current with power, and speed is similar to voltage is basic, quality, damping and the spring element of the setting up mechanical system electromechanical analogy theory corresponding with electric capacity, resistance and the inductance element of circuitry respectively.Due to the mass elements of mechanical system in fact with the electric capacity correspondence of one end ground connection, caused the non-correspondence of mechanical network and circuit network.Thereby electromechanical analogy theory is received great restriction on using.
For this phenomenon, a kind of mechanical device of being used to container by name arises at the historic moment.This device need to be not reference system with inertial coordinate, is a kind of real two-end-point element, the stressed acceleration that is proportional to respective ends at its two ends, and its proportionality constant is called " being used to matter coefficient ", and unit is kilogram.Its dynamics representation is , F is the suffered a pair of power of two-end-point; B is for being used to matter coefficient; v 2and v 1for the corresponding speed of two-end-point.
Owing to being used to container and can improving operational stability and the tire ground connection performance of automobile, coordinate smoothness and operational stability, improve vehicle riding comfort, dynamic performance stability, and it is various to have implementation method, and the feature such as space flexible arrangement, now study for automobile suspension system, wheel steering system, train suspension system, constructure shakeproof system and powered shock absorption device etc.
Hydro-pneumatic spring is the vehicle suspension technology of a kind of advanced technology, function admirable, it by hydraulic pressure with Pneumatic Transmission control technique together with suspension technological incorporation, be one of key technology being applied in special vehicle and large vehicle vibration insulating system, can improve Vehicle Driving Cycle smoothness and operational stability, minimizing dynamic load causes damage of components.
Hydro-pneumatic spring is using inert nitrogen gas as Elastic medium, the suspension system using fluid as power transmission medium.It is by gentle oil combination, utilize the compressibility of gas as the elastic element of suspension, utilize the flow resistance of fluid to realize vibration damping, utilize again the incompressibility of hydraulic pressure to realize the transmission of motion comparatively accurately and power simultaneously, by the elastic component of traditional suspension and vibration damper function, based on one, the little quality of volume is light, compact structure, be easy to arrange, do not require the expenditure of energy.The form of hydro-pneumatic spring has single air chamber, two air chamber and two-stage pressure type etc.Single chamber hydragas spring divides again not two kinds of separated types of oil-gas dividing and oil gas.
Chinese patent 201210426429.8 discloses a kind of integral type hydro-pneumatic spring device, it is in hydro-pneumatic spring damping clutch release slave cylinder, ball screw type to be coaxially set to be used to container work chamber, realize the structure of being used to container, damper, the parallel connection of gas spring three element, although this device can effectively cushion and decay from the shock and vibration of road surface low-frequency range, but cannot cushion and decay from the shock and vibration of road surface high band, and ball screw type is used to container and is had the problems such as non-linear factor such as cost is higher, processing is difficult for, palpus consideration frictional force.Chinese patent 200810123830.8 discloses a kind of hydraulic inert container device, and this device is by oil hydraulic cylinder, and high pressure hose and mass block form, in the application of vehicle, need in parallel with damping device, breakdown to avoid being used to container, working space is large simultaneously, arranges dumb.
Therefore,, flexible arrangement simple in structure in the urgent need to one in engineering, collection is used to the draft hitch of container and hydro-pneumatic spring one, realize and within the scope of full frequency-domain, the shock and vibration that cause from Uneven road are cushioned and decayed, can solve mechanical type and be used to container back clearance and the limited problem of bearing capacity simultaneously.
Summary of the invention
Technical problem to be solved in the utility model is: back clearance and the limited shortcoming of bearing capacity of being used to case in order to overcome mechanical type, and be merely able to buffering and decay from the limitation of shock and vibration within the scope of the low-frequency range of road surface, provide a kind of collection to be used to the device of container and hydro-pneumatic spring one, realization is used to container and can be born high load, provide height to be used to matter coefficient, realizes simultaneously within the scope of full frequency-domain the shock and vibration that cause from Uneven road are cushioned and decayed.
The utility model solves the technological scheme that its technical problem adopts: hydro-pneumatic spring can be integrated in one the elastic component of traditional suspension and vibration damper function, and hydraulic type is used to container and can be born high load simultaneously, realizes the high matter coefficient of being used to.Make full use of the fluid in hydro-pneumatic spring oil hydraulic cylinder, damping valve of damper is arranged in high pressure hose B, in oil hydraulic cylinder, realize vibration damper function; The lower semisphere chamber of air chamber is directly communicated with oil hydraulic cylinder, and the high pressure nitrogen in episphere chamber has been realized spring function; Oil hydraulic motor is connected with the aperture on the upper and lower wall of oil hydraulic cylinder in hydro-pneumatic spring respectively by high pressure hose A and high pressure hose B, the feature of utilization hydraulic motor arrangement transformation of energy, Flywheel on motor, realizes hydraulic type and is used to container function.The hydro-pneumatic spring that this device adopts is single air chamber oil-gas dividing, and rubber oil air bound film can be separated gas and fluid, prevents emulsion; Between oil hydraulic cylinder and protective housing, high pressure hose, adopt seal arrangement to be connected, the protection of gas spring, can prevent hydraulic cylinder for working oil liquid leakage simultaneously.
Oil hydraulic cylinder in hydro-pneumatic spring device is the integral structure of connecting with gas spring, be used to container and damper and share an oil hydraulic cylinder, container and the structural configuration simple possible of connecting with gas spring after damper parallel connection are used in employing, realize in vehicle suspension than being easier to.
The beneficial effects of the utility model are, hydraulic type is used to container and applies to hydro-pneumatic spring suspension design, introduce oil hydraulic motor as energy conversion component, in not changing hydro-pneumatic spring service behaviour and not improving vehicle body deadweight, realize the effect that increases spring carried mass, and then can improve run smoothness and the control stability of vehicle, in conjunction with electromechanical analogy theory, element is used to container and is had " logical high frequency, resistance low frequency " characteristic, can effective attenuation low-frequency vibration, element spring has " logical low frequency, resistance high frequency " characteristic, can effective attenuation dither, adopt in Vehicle Engineering application comparatively feasible be also easy to realize be used to container in parallel with damper after with gas spring cascaded structure, can within the scope of full frequency-domain, the shock and vibration that cause from Uneven road be cushioned and be decayed, can overcome the narrow limitation of arrangement space in vehicle chassis simultaneously, also be convenient to the Manufacture and application at Vehicle Engineering.
Accompanying drawing explanation
Below in conjunction with drawings and Examples, the present invention is further described.
Fig. 1 is a kind of schematic diagram of being used to the container hydro-pneumatic spring device in parallel with damper.
Fig. 2 is vehicle body acceleration power spectral density comparison diagram.
Fig. 3 is tire dynamic load power spectral density comparison diagram.
Fig. 4 is the moving stroke power spectral density comparison diagram of suspension.
In figure, 1. air chamber, 2. barrier film, 3. oil hydraulic cylinder, 4. damping active chamber, 5. piston, 6. clutch release slave cylinder cavity of resorption, 7. piston rod, 8. protective housing, 9. orifice valve, 10. high pressure hose B, 11. oil hydraulic motors, 12. high pressure hose A, 13. lower semisphere chambers, 14. episphere chambers.
Embodiment
Figure 1 shows that a kind of container hydro-pneumatic spring device in parallel with damper of being used to, comprise gas spring working portion, be used to container work part, damping working portion and protect part outward.Gas spring working portion comprises air chamber 1, episphere chamber 14, lower semisphere chamber 13 and rubber oil air bound film 2, air chamber 1 is divided into episphere chamber 14 and lower semisphere chamber 13 by rubber oil air bound film 2, in episphere chamber 14, be full of Elastic medium nitrogen, in lower semisphere chamber 13, be full of power transmission medium fluid, air chamber 1 is fixed on oil hydraulic cylinder 3 upper ends; Be used to container work part and comprise oil hydraulic motor 11, high pressure hose A12 and high pressure hose B10, oil hydraulic motor 11 is connected with the aperture of the upper and lower wall of damping shock absorber clutch release slave cylinder epicoele 4 and clutch release slave cylinder cavity of resorption 6 with high pressure hose B10 by high pressure hose A12; Damping working portion comprises orifice valve 9, piston 5, piston rod 7, oil hydraulic cylinder 3, oil hydraulic cylinder 3 is divided into clutch release slave cylinder epicoele 4 and clutch release slave cylinder cavity of resorption 6 by piston 5, have aperture at clutch release slave cylinder epicoele 4 upper walls and clutch release slave cylinder cavity of resorption 6 lower walls, clutch release slave cylinder cavity of resorption 6 is communicated with high pressure hose B10 by damping valve of damper 9, and clutch release slave cylinder epicoele 4 is communicated with lower semisphere chamber 13; Outer protection part comprises protective housing 8 and oil hydraulic cylinder 3, and protective housing 8 is fixed on oil hydraulic cylinder 3 lower ends by sealing configuration.
Working procedure below in conjunction with this device further illustrates: the damping valve of damper 9 in high pressure hose B10 is normally worked, high pressure hose A12, high pressure hose B10 and oil hydraulic motor 11 can independently be brought into play and be used to container function, and piston rod 7 is respectively two end points with air chamber 1.In the course of the work, there is compression or extensional motion in two-end-point, simultaneously piston rod 7 promote or the piston 5 that stretches along cylinder straight line motion, fluid is by high pressure hose A12, B10, from oil hydraulic cylinder 3 oil hydraulic motor 11 of flowing through, realized the function of being used to container; Flow through orifice valve 9 and promote rubber oil air bound film 2 and changed nitrogen pressure in first air chamber 14 of fluid, this process implementation be used to container and the working effect of connecting with gas spring after damper parallel connection.
The utility model makes full use of work fluid, and clutch release slave cylinder cavity of resorption is full of fluid and communicates with oil hydraulic motor, is different from traditional oils air spring work cavity of resorption and is made up of piston guide cylinder; Simultaneously the present invention makes full use of the gas spring in hydro-pneumatic spring, and can cushion and decay from the shock and vibration of road surface high band, and oil hydraulic cylinder and oil hydraulic motor leakage of oil can prevent work fluid high temperature time, be different from common container and the damper shunting means be used to.
In Vehicle Engineering application, the layout of bearing spring has larger flexibility; by utilizing the elastic elements such as leaf spring; protection spring outside one in parallel in structure of the present invention; and this structure and Chinese patent 201210426429.8 three element parallel-connection structures and traditional suspension structure are carried out to simulation in the frequency-domain comparative analysis, the results are shown in Figure 2, Fig. 3 and Fig. 4.
A kind of collection of the present utility model is used to container and hydro-pneumatic spring integrated device as seen from the figure, can within the scope of full frequency-domain, the shock and vibration that cause from Uneven road be cushioned and be decayed, and the disclosed a kind of integral type hydro-pneumatic spring device of Chinese patent 201210426429.8, although can effectively cushion and decay from the shock and vibration of road surface low-frequency range, cannot cushion and decay from the shock and vibration of road surface high band.
In sum, the utility model applies in the middle of the design of hydro-pneumatic spring suspension being used to structure of container, realize and be used to container and the structure of connecting with gas spring after damper parallel connection, this device adopts hydraulic type to be used to container, can bear high load, provide height to be used to matter coefficient, by electromechanical analogy theory, mechanical network structure is done the improvement of further parameter, can within the scope of full frequency-domain, the shock and vibration that cause from Uneven road be cushioned and be decayed, effectively improve the service behaviour of traditional passive suspension, in addition oil hydraulic cylinder oil leakage phenomenon can also prevent work fluid high temperature time.Generally, this structure and be convenient to layout and the application in vehicle chassis, is also conducive to the Design and manufacture of Vehicle Engineering, has certain engineering using value.

Claims (4)

1. be used to the container hydro-pneumatic spring device in parallel with damper for one kind, it is characterized in that: comprise gas spring working portion, be used to container work part, damping working portion and protect part outward, described gas spring working portion comprises air chamber (1), episphere chamber (14), lower semisphere chamber (13) and barrier film (2), described air chamber (1) is spherical, air chamber (1) is divided into episphere chamber (14) and lower semisphere chamber (13) by described barrier film (2), in described episphere chamber (14), be full of Elastic medium, lower semisphere chamber is full of power transmission medium in (13); The described container work part of being used to comprises oil hydraulic motor (11), high pressure hose A(12) and high pressure hose B(10), described damping working portion comprises orifice valve (9), piston (5), piston rod (7), oil hydraulic cylinder (3), oil hydraulic cylinder (3) is divided into clutch release slave cylinder epicoele (4) and clutch release slave cylinder cavity of resorption (6) by described piston (5), has aperture at clutch release slave cylinder epicoele (4) sidewall and clutch release slave cylinder cavity of resorption (6) sidewall; Described oil hydraulic motor (11) is bidirectional variable oil hydraulic motor, oil hydraulic motor (11) one end is by high pressure hose A(12) be connected with the aperture on damping shock absorber clutch release slave cylinder epicoele (4) sidewall, the other end is by high pressure hose B(10) be connected with the aperture on damping shock absorber clutch release slave cylinder cavity of resorption (6) sidewall; Described air chamber (1) is fixed on oil hydraulic cylinder (3) top, and described clutch release slave cylinder epicoele (4) is communicated with lower semisphere chamber (13); Described damping valve of damper (9) is by clutch release slave cylinder cavity of resorption (6) and high pressure hose B(10) between power transmission medium be communicated with; Outer protection part comprises protective housing (8) and oil hydraulic cylinder (3), and described protective housing (8) is fixed on oil hydraulic cylinder (3) bottom; Described piston rod (7) one end connects piston (5), and the other end stretches out from protective housing (8) below.
2. a kind of container hydro-pneumatic spring device in parallel with damper of being used to according to claim 1, is characterized in that: the Elastic medium being full of in described episphere chamber (14) is nitrogen, and the power transmission medium being full of in lower semisphere chamber (13) is fluid.
3. a kind of container hydro-pneumatic spring device in parallel with damper of being used to according to claim 1 and 2, is characterized in that: the barrier film between described episphere chamber (14) and lower semisphere chamber (13) is rubber oil air bound film.
4. a kind of container hydro-pneumatic spring device in parallel with damper of being used to according to claim 1 and 2, is characterized in that: described oil hydraulic cylinder (3) adopts sealing configuration to be connected with protective housing (8).
CN201420005797.XU 2014-01-06 2014-01-06 Oil and gas spring device with inerter and damper connected in parallel Expired - Fee Related CN203670577U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420005797.XU CN203670577U (en) 2014-01-06 2014-01-06 Oil and gas spring device with inerter and damper connected in parallel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420005797.XU CN203670577U (en) 2014-01-06 2014-01-06 Oil and gas spring device with inerter and damper connected in parallel

Publications (1)

Publication Number Publication Date
CN203670577U true CN203670577U (en) 2014-06-25

Family

ID=50966878

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420005797.XU Expired - Fee Related CN203670577U (en) 2014-01-06 2014-01-06 Oil and gas spring device with inerter and damper connected in parallel

Country Status (1)

Country Link
CN (1) CN203670577U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103711827A (en) * 2014-01-06 2014-04-09 江苏大学 Hydro-pneumatic spring device with inerter and damper connected in parallel
CN105782333A (en) * 2016-04-22 2016-07-20 浙江大学 Composite semi-active ultralow-frequency vibration isolating device
CN113389838A (en) * 2021-07-01 2021-09-14 深圳大学 Inertial volume-damping-rigidity fluid type realization device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103711827A (en) * 2014-01-06 2014-04-09 江苏大学 Hydro-pneumatic spring device with inerter and damper connected in parallel
CN105782333A (en) * 2016-04-22 2016-07-20 浙江大学 Composite semi-active ultralow-frequency vibration isolating device
CN105782333B (en) * 2016-04-22 2018-01-05 浙江大学 A kind of active superlow frequency vibration isolating device of combined type half
CN113389838A (en) * 2021-07-01 2021-09-14 深圳大学 Inertial volume-damping-rigidity fluid type realization device
CN113389838B (en) * 2021-07-01 2022-08-26 深圳大学 Inertial volume-damping-rigidity fluid type realization device

Similar Documents

Publication Publication Date Title
CN103711827A (en) Hydro-pneumatic spring device with inerter and damper connected in parallel
CN104903128B (en) With passive and Active suspension of the energy using optimization
CN104373497B (en) Parallel-connection liquid-electricity feed suspension system
CN102937159A (en) Integrated hydro-pneumatic spring device
Xue et al. Study of art of automotive active suspensions
CN103267081B (en) A kind of piezoelectric power generation type damping-adjustable hydro-pneumatic suspension for engineering machinery or farm machinery
CN109733154B (en) Damping and inertial volume adjustable interconnected ISD suspension and system
CN203297461U (en) Hydro-pneumatic spring with variable parameters
CN104044429A (en) Hydraulic interconnection ISD (Inerter-Spring-Damper) hanger bracket
CN103195856A (en) Parameter variable hydro-pneumatic spring
CN105972136B (en) A kind of feed energy suspension of damp adjustable 1/2
CN208452731U (en) A kind of rigidity and damp adjustable hydro pneumatic suspension structure
CN203670577U (en) Oil and gas spring device with inerter and damper connected in parallel
CN204284289U (en) A kind of amplitude selects vibration damper
CN105909722A (en) Damping-adjustable shock absorber using magnetorheological fluid
CN201273355Y (en) Self-protecting variable-damping hydraulic buffer
CN103423363A (en) Hydraulic damper with actively-adjustable damping
WO2017038577A1 (en) Cylinder device
CN105134855A (en) Novel oil-gas damper
CN203477160U (en) Hydraulic shock absorber with active adjustable damping
CN103775555A (en) Push rod type stiffness stepless adjustment hydro-pneumatic spring
CN201317237Y (en) Adjustable oil-gas suspension with controllable throttle area and three-level damping
CN207673772U (en) A kind of pneumatic cylinder
CN109667878A (en) Composite Field formula magneto-rheological vibration damper
CN2567137Y (en) Floating piston inflation rear shock absorber

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140625

Termination date: 20150106

EXPY Termination of patent right or utility model