EP1776526A1 - Hydrauliksystem zum hochschwenken und herablassen von flügel-aufbauteilen eines lastkraftwagens - Google Patents

Hydrauliksystem zum hochschwenken und herablassen von flügel-aufbauteilen eines lastkraftwagens

Info

Publication number
EP1776526A1
EP1776526A1 EP05750504A EP05750504A EP1776526A1 EP 1776526 A1 EP1776526 A1 EP 1776526A1 EP 05750504 A EP05750504 A EP 05750504A EP 05750504 A EP05750504 A EP 05750504A EP 1776526 A1 EP1776526 A1 EP 1776526A1
Authority
EP
European Patent Office
Prior art keywords
hydraulic
line
external
hydraulic system
valves
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.)
Withdrawn
Application number
EP05750504A
Other languages
German (de)
English (en)
French (fr)
Inventor
Gisela Weber
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of EP1776526A1 publication Critical patent/EP1776526A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B13/00Details of servomotor systems ; Valves for servomotor systems
    • F15B13/02Fluid distribution or supply devices characterised by their adaptation to the control of servomotors
    • F15B13/06Fluid distribution or supply devices characterised by their adaptation to the control of servomotors for use with two or more servomotors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B15/00Fluid-actuated devices for displacing a member from one position to another; Gearing associated therewith
    • F15B15/20Other details, e.g. assembly with regulating devices
    • F15B15/202Externally-operated valves mounted in or on the actuator

Definitions

  • Hydraulic system for swiveling up and lowering the wing parts of a truck
  • the invention relates to a hydraulic system for swiveling up and lowering of wing-mounted parts of a truck according to the preamble of claim 1.
  • Such wing construction parts of a truck also called wing bodies, are pivotally hinged to the top of the truck body and can be folded up to open the side of the truck bed.
  • Wing bodies or wing body parts of a truck are traditionally folded up and down by double-acting hydraulic pistons.
  • the truck is e.g.
  • a control aggregate with a hydraulic pump driven by a motor is provided, which via two parallel-connected 4/3-way valves and mutually controlling non-return valves eight external hydraulic lines, namely one hydraulic line to each of the both chambers of each of the four hydraulic cylinder controls.
  • a blocking position of the check valves is subsequently set, so that the pressure set in the external hydraulic lines is blocked and the wing attachment part remains in its respective position.
  • hydraulic lines can burst, which can lead to a considerable damage and in addition to an immediate fall of the relevant wing assembly part and thus the endangerment of persons and objects. Furthermore, oil can escape from the bursting hydraulic lines, which can lead to contamination of the goods located in the loading space.
  • the invention has for its object to provide a hydraulic system that is inexpensive to implement and high security devis ⁇ makes.
  • the hydraulic cylinders are thus simply designed to be effective or with a spring return.
  • the spring return stroke can advantageously be effected by a gas spring integrated in the cylinder;
  • it can also z. B. may be provided a cylinder spring.
  • blocking valves according to the invention are arranged, which lock the pressure set in the relevant oil chamber in relation to the external hydraulic lines.
  • they can be integrated in the cylinders or their housings, so that no further lines are required between the shut-off valves and the oil chamber and thus cost-effective implementation with high safety is possible.
  • one, two or four external hydraulic lines can be provided, with one or two hydraulic lines in the vicinity of the hydraulic cylinders being provided with branches to their check valves.
  • the total length of external hydraulic lines can be significantly reduced to about one quarter of the total length of the conventional systems.
  • the total length of the external hydraulic lines is determined by the hydraulic lines outgoing from the control unit and only slightly by the branched hydraulic lines.
  • the oil chambers of the hydraulic cylinders can be connected to the hydraulic system by means of change-over valves without actuating the engine and bypassing or bypassing the pump.
  • change-over valves without actuating the engine and bypassing or bypassing the pump.
  • 2/2-way valves with either a basic position blocking on both sides and a switched position releasing on both sides, or with a basic position blocking the oil drain as a check valve and a switched position releasing the oil drain, can be used as check valves , Depending on the configuration of the check valves, they can be controlled by the control signal, which is also used for motor control, of a reset signal which is different therefrom.
  • Figure 1 is a perspective view of a truck according to the invention with hydraulically adjustable wing body parts.
  • FIG. 2 shows a circuit diagram of a hydraulic system according to the invention for adjusting the wing mounting parts according to a first embodiment with an external hydraulic line provided by the control unit;
  • FIG. 3 shows a hydraulic system according to the invention for controlling the wing attachment parts according to a further embodiment with two hydraulic lines and reversible pump starting from the control unit;
  • FIG. 4 shows a circuit diagram of a hydraulic system according to the invention for adjusting the wing-mounted parts according to another embodiment with two of the control unit already ⁇ existing hydraulic lines.
  • Fig. 5a is a front view and Fig. 5b is a plan view of a wing assembly part of Figure 1 in I unfolded state and II. Folded state.
  • FIG. 6a shows an axial section of an embodiment according to the invention of the single-acting hydraulic cylinder for adjusting the wing mounting part with integrated shut-off valve
  • FIG. 6b shows the radial section AA from FIG. 6 a
  • FIG. Fig. 6c is the circuit diagram of the hydraulic cylinder of Fig. 6 a, b;
  • a truck (lorry) 1 has a body 2 and two wing body parts 3, which are mounted on the body 2 in two, in the vehicle longitudinal direction extending, parallel pivot axes A.
  • the wing body parts 3 or wing bodies are designed with a rectangular cross-section, in the folded-in state close the cargo space of the truck 1 on three sides and give it in the unfolded or extended state shown in FIG. 1 towards the sides free. Accordingly, the two pivot axes A of the two wing attachment parts 3 lie relatively close to each other in the middle region of the truck 1 with bearings 4 in a front frame part 5 and a rear frame part 6 of the body 2.
  • the wing body parts 3 are pivoted by a respective rear hydraulic cylinder 7a or 7b and a front hydraulic cylinder 8a or 8b, which are articulated in body-side bearings 10 and wing-side bearings 11.
  • the hydraulic cylinders 7a, b, 8a, b are single-acting and connected via a hydraulic line 12, two hydraulic lines 12a, b or hydraulic lines 13 branched off from the hydraulic line or branches in branches 92, 93, 97 to a hydraulic control unit 14, e.g. is arranged on an underside of the body 2 of the truck 1.
  • a hydraulic control unit 14 e.g. is arranged on an underside of the body 2 of the truck 1.
  • b blocking valves are used or integrated, as will be explained in the following hydraulic circuit diagrams or schematics.
  • FIGS. 2 to 4 and 7 to 10 show various embodiments of the hydraulic system 16 according to the invention, each of which incorporates a control unit, hydraulic lines 12, 12a, b, 13 and hydraulic cylinders 7a, b and 8a, b, 56 and 60 electrical check valves 18 has.
  • the control unit 14 of the embodiment of FIG. 2 has a hydraulic tank 20, a hydraulic pump 22 driven by a motor 21, and a hydraulic control unit 23 connected to the hydraulic pump 22.
  • the control unit 23 has a shuttle valve 24 connected to the pump 22, which, when pressurized by a pumping operation of the hydraulic pump 22, changes from the closed or locked basic position to an open position and releases a hydraulic line 26, which via a quantity control valve 28 the Aus ⁇ transition of the hydraulic control unit 23 leads, which is connected via a connection of the control unit 14 with the laid on the truck 1 an external Hydraulik ⁇ line 12, which is connected via branches 92, 93 with other Hyd ⁇ raulik ein 13, In the closed or locked position shown, a return flow from the flow control valve 28 via the shuttle valve 24 to the hydraulic reservoir 20 is released.
  • a safety valve 30 is additionally connected between the quantity control valve 28 and the hydraulic container 20 and thus bridges the shuttle valve 24 and the hydraulic pump 22 in the event of overpressure in the hydraulic line 26 and switched shuttle valve 24.
  • the electric check valves 18 are designed as double-blocking 2/2-way valves which are locked in the basic position of the hydraulic system 16 shown in FIG. 2 on both sides and upon receipt of a corresponding electrical control signal S, which also the Motor 21 drives, are switched to their open position.
  • the hydraulic cylinders 7a, b and 8a, b are designed as single-acting, pneumatically sprung or gas-sprung hydraulic cylinders.
  • the check valves 18 are advantageously also operated manually, eg lever-operated as shown in the figures.
  • the engine 21 is switched off, with the electric shut-off valves 18 separating the oil chambers 32 of the hydraulic cylinders 7 a, b and 8 a, b from the hydraulic line 12.
  • the internal hydraulic line 26 of the blocking unit 23 and the external hydraulic line 12, which run on the truck 1 or its body 2, are thus depressurized. If the pressure in the hydraulic lines 12 increases, for example due to an increase in temperature, if the truck 1 is turned off at cold temperature and is significantly heated, for example, strong sunlight, so this pressure increase is not on the locked check valves 18 to the hydraulic cylinder 7a, b and 8a , b, but via the shuttle valve 24 to the Hydraulik ⁇ tank 20 output.
  • the driver or user places a switch which, directly or via a control device of the truck 1, receives control signals S both to the motor 21 and to the relevant electrical blocking valves 18, eg two or four electric check valves 18, outputs.
  • the motor 21 drives the pump 22, so that the external hydraulic line 12 is pressurized and via the open shut-off valves 18, the respective oil chambers 32 are pressurized and adjust the piston 33.
  • a control signal S can again be output to the check valves 18, without actuation of the engine 21, which opens them so that the single-acting hydraulic cylinders 7a, b and 8a, b be reset due to the spring action of the gas spring 34 and supplement the weight of the wing assembly parts 3 and the hydraulic fluid from the ⁇ lkammem 32 via the open check valves 18 and the external hydraulic line 12 and the shuttle valve 24 in the hydraulic reservoir 20 is output.
  • a gentle, damped closing of the wing-mounting parts 3 is achieved by the flow control valve 28.
  • each hydraulic cylinder 7a, b, 8a, b is also formed as 2/2-way valves, but - as an alternative to Fig. 2 - in the basic position shown or rest position one-sided blocking, so that they as a check valve Prevent reflux of the hydraulic fluid from the oil chamber 32 and allow in the switched position only a return flow from the oil chamber 32 into the hydraulic lines 12.
  • a reversible hydraulic pump 39 is driven, emanating from the two symmetrical branches, which are each secured via safety valves 43 and additional check valves 40 against the hydraulic tank 20, so that both the occurrence of too high Overpressure and a negative pressure at the outputs of the hydraulic pump 39 is avoided.
  • exchange valves 41 are connected to the hydraulic pump 39, which correspond to the above-described shuttle valves 24 from FIG. 2 and open to a common internal hydraulic line 42 during a pumping operation.
  • Two quantity control valves 44 are connected in parallel to the internal hydraulic line 42, to each flow control valve 44 via two external hydraulic lines 12a, b and optionally via a branch 97 and hydraulic line 13 on the one hand, the two right hydraulic Zy-. Linder 7a and 8a and on the other hand, the two left hydraulic cylinders 7b and 8b are connected via a respective hydraulic shut-off valve 37.
  • the switching situations of the embodiment of FIG. 3 are essentially the same as those of FIG. 2.
  • the stop valves 37, the external hydraulic lines 12 are depressurized and via the shuttle valves 41 di ⁇ connected directly to the hydraulic tank 20.
  • the motor 39 is in turn switched on by a control signal S; however, unlike Fig. 2, the check valves 37 are not switched.
  • the adjustment operation is terminated by turning off the motor 39, the pressure in the oil chamber 32 being held by the check valves 37.
  • the pressure stored in the external hydraulic lines 12a, 13b and the in-line hydraulic line 42 can in turn be discharged directly into the hydraulic tank 20 when the engine 29 is switched off.
  • reset signals R are input to the check valves 37, which open them and release the direct return flow into the hydraulic tank 20 via the quantity control valves 44 and the shuttle valves 41.
  • the check valves 37 can also be operated manually.
  • the control unit 14 is basically constructed according to those of FIG. 2, wherein to the motor 21 and the pump 22, a hydraulic control unit 46 is connected, which - unlike in Fig. 2 - on the internal Hydraulic line 26 has two parallel-connected flow control valves 28 which are connected to the internal Hydrauliklei ⁇ device 26 each via an electrically or electromagnetically actuated, designed as a 2/2-way valve with a base position open on both sides and a double-sided blocking switched position control valve 48 sen ,
  • the control valves 48 can thus optionally be applied to the left and / or right external hydraulic line 12 a, 12 b with pressure and
  • the cylinder 7a, 8a or the cylinder 7b, 8b or all cylinders 7a, b, 8a, b are actuated during a pumping operation.
  • FIG. 5 shows the wing construction part 3 in the unfolded position I and the folded-in position II, wherein the arrangement applies to all single-acting hydraulic cylinders 7a, 7b and 8a, b in this or mirror-image arrangement.
  • the check valves 18 can be integrated into the hydraulic cylinders 7a, b and 8a, b as well as the corresponding hydraulic cylinders of the further embodiments corresponding to 6.12.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Fluid-Pressure Circuits (AREA)
  • Actuator (AREA)
EP05750504A 2004-06-28 2005-05-19 Hydrauliksystem zum hochschwenken und herablassen von flügel-aufbauteilen eines lastkraftwagens Withdrawn EP1776526A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102004031202A DE102004031202B4 (de) 2004-06-28 2004-06-28 Hydrauliksystem zum Hochschwenken und Herablassen von Flügel-Aufbauteilen eines Lkws
PCT/EP2005/005425 WO2006000277A1 (de) 2004-06-28 2005-05-19 Hydrauliksystem zum hochschwenken und herablassen von flügelaufbauteilen eines lkws

Publications (1)

Publication Number Publication Date
EP1776526A1 true EP1776526A1 (de) 2007-04-25

Family

ID=34969828

Family Applications (1)

Application Number Title Priority Date Filing Date
EP05750504A Withdrawn EP1776526A1 (de) 2004-06-28 2005-05-19 Hydrauliksystem zum hochschwenken und herablassen von flügel-aufbauteilen eines lastkraftwagens

Country Status (7)

Country Link
US (1) US20070130937A1 (ja)
EP (1) EP1776526A1 (ja)
JP (1) JP4068660B2 (ja)
CN (1) CN1946941A (ja)
AU (1) AU2005256348A1 (ja)
DE (1) DE102004031202B4 (ja)
WO (1) WO2006000277A1 (ja)

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DE102006013847B4 (de) * 2006-03-25 2008-05-08 Faurecia Autositze Gmbh Kraftfahrzeugsitz
DE102006037206B3 (de) * 2006-08-09 2008-01-03 Gisela Weber Hydrauliksystem zum Verstellen eines Fahrzeug-Faltdachs, Fahrzeug-Faltdach mit einem derartigen Hydrauliksystem und Verfahren zum Verstellen des Fahrzeug-Faltdachs
DE102006053523B3 (de) * 2006-11-07 2008-01-31 Orten Karlsdorf-Neuthard Gmbh & Co. Kg Vorrichtung zum Überführen einer Wand eines Transportbehälters zwischen einer Schliessstellung und einer Offenstellung und Transportbehälter
US20090094897A1 (en) * 2007-06-04 2009-04-16 Gregg Dane W Liftgate hydraulic closure cylinder
DE102008010249B4 (de) 2008-02-20 2022-08-25 Stabilus Gmbh Antriebseinrichtung
DE102008049135A1 (de) * 2008-09-26 2010-04-08 Gisela Weber Hydrauliksystem zum Verstellen von Flügel-Aufbauteilen eines Lkws
DE202009002125U1 (de) 2009-02-13 2009-05-20 Fahrzeugbau Heinz Böse GmbH Aufbau eines Transportfahrzeugs
CN103587841A (zh) * 2013-10-24 2014-02-19 阮春雨 一种用于商品车运输、存储和展示的可移动飞翼箱体
CN110588685B (zh) * 2019-10-23 2022-02-01 西南交通大学 一种基于快递业务的动车车厢侧墙驱动装置
CN112793401B (zh) * 2020-12-31 2022-05-24 金湖县华明客车门系统有限公司 一种公交车内摆门及其应急逃生机构
DE102022114096A1 (de) * 2022-06-03 2023-12-14 Winz Baggerarbeiten Gmbh Mobile hydraulische Baumaschine mit Notstopventilen und Verfahren zur Steuerung einer mobilen hydraulischen Baumaschine

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SE424172B (sv) * 1981-09-14 1982-07-05 Bror Sture Fredin Stedanordning for en bil med en fast sida och en hoglyftande flaklem
DE3148852A1 (de) * 1981-12-10 1983-06-23 Emil Dautel GmbH, 7105 Leingarten Elektro-hydraulische steuerschaltung fuer eine ladebordwand
KR940007559B1 (ko) * 1984-11-05 1994-08-20 가부시기가이샤 산요오 미까와 보데 하물(荷物) 적재대
DE3612252A1 (de) * 1986-04-11 1987-10-22 Stoll Maschf Gmbh Wilhelm Ladebordwand
DE4430437B4 (de) * 1994-08-29 2004-01-29 Dautel Gmbh Ladevorrichtung für Lastfahrzeugaufbauten mit einer Hubladebühne
EP0787643B1 (en) * 1995-08-22 2002-07-17 Toray Industries, Inc. Panel and cargo compartment for a truck
JP2001121971A (ja) * 1999-10-27 2001-05-08 Maruyasu Kk ウイング開閉装置
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Also Published As

Publication number Publication date
CN1946941A (zh) 2007-04-11
WO2006000277A1 (de) 2006-01-05
US20070130937A1 (en) 2007-06-14
AU2005256348A1 (en) 2006-01-05
JP2007533931A (ja) 2007-11-22
DE102004031202B4 (de) 2007-04-19
DE102004031202A1 (de) 2006-01-12
JP4068660B2 (ja) 2008-03-26

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