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EP2754507B1 - Dispositif de nettoyage haute pression mobile - Google Patents

Dispositif de nettoyage haute pression mobile Download PDF

Info

Publication number
EP2754507B1
EP2754507B1 EP13005930.6A EP13005930A EP2754507B1 EP 2754507 B1 EP2754507 B1 EP 2754507B1 EP 13005930 A EP13005930 A EP 13005930A EP 2754507 B1 EP2754507 B1 EP 2754507B1
Authority
EP
European Patent Office
Prior art keywords
high pressure
booth
cleaning unit
pressure cleaning
rails
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.)
Not-in-force
Application number
EP13005930.6A
Other languages
German (de)
English (en)
Other versions
EP2754507A1 (fr
Inventor
Erich Ortlieb
Andreas Ortlieb
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.)
Ortlieb Hochdruckwassertechnik GmbH
Original Assignee
Ortlieb Hochdruckwassertechnik GmbH
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 Ortlieb Hochdruckwassertechnik GmbH filed Critical Ortlieb Hochdruckwassertechnik GmbH
Priority to SI201330207A priority Critical patent/SI2754507T1/sl
Publication of EP2754507A1 publication Critical patent/EP2754507A1/fr
Application granted granted Critical
Publication of EP2754507B1 publication Critical patent/EP2754507B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/02Cleaning by the force of jets or sprays
    • B08B3/024Cleaning by means of spray elements moving over the surface to be cleaned
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B2203/00Details of cleaning machines or methods involving the use or presence of liquid or steam
    • B08B2203/02Details of machines or methods for cleaning by the force of jets or sprays
    • B08B2203/0211Case coverings

Definitions

  • High-pressure cleaning devices typically have a high-pressure nozzle to which a high-pressure port is assigned in terms of flow.
  • a high-pressure pump can be connected via the high-pressure connection, which acts on the high-pressure nozzle with a medium under high pressure.
  • a medium for example, water comes into question, which in the application and cleaning fluids can be added.
  • Under high pressure is typically understood a pressure of at least 100 bar, with applications in the field of industrial cleaning often pressures of about 2500 bar are used.
  • High-pressure cleaning devices are used for example for cleaning various components of industrial plants or power plants. This is often done during downtime of such equipment, which is why a rapid, yet efficient cleaning is of great importance.
  • problems may arise at the high pressures already described due to the exit velocity of water from the high-pressure nozzle, which is about twice the speed of sound.
  • sound pressure levels of about 126 dBa are already reached due to the sonic boom, which are not only problematic for the operator in terms of occupational safety, but can also cause noise pollution far beyond the affected operation.
  • Another known device has a mini excavator, on whose Boom a high-pressure nozzle is attached. Although this increases the distance of the high pressure nozzle to the operator and achieves a certain degree of mobility, the problem of the noise pollution of the environment can not be solved in this way.
  • the US 2006124154 A1 shows a vehicle with a designed as a semi-trailer on a towing vehicle cabin, in which a cleaning device is arranged, which includes a U-shaped pipe bracket which is longitudinally displaceable within the cabin and are attached to the pressurized air or hydraulic fluid spray nozzles.
  • this known cleaning device is not used for cleaning by means of a loading device via a feed opening in the cabin objects introduced, but intended only for cleaning the interior of the cabin itself. Although this is accessible via a door.
  • This door is not used to load the cabin with items to be cleaned, but to load the cabin with a cargo to be transported.
  • the door is also designed only as a swing wing.
  • a lateral extension of a bottom portion of the cabin can not be formed thereby. It is also provided no charging device.
  • the provided in the known arrangement cabin is not enlarged. A laterally extendable from the cabin part to increase its interior is not provided.
  • a mobile high-pressure cleaning device which is arranged with a arranged on a chassis cabin and one in this provided, with a high-pressure connection fluidly connected high-pressure nozzle, which is mounted on a positioning and is movable by means of this within the cabin, the cabin having a positioning device containing, extendable part which is extendable transversely to the longitudinal direction of the cabin laterally to increase its interior, and wherein the cabin, which is externally fed by means of a feed device with material to be cleaned, on the side opposite the extendable part has a closable feed opening, which is associated with a flap which closes the feed opening in an upwardly folded state and forms an outer wall of the cabin and which, in a folded-down state, releases the loading opening and laterally widens a bottom section of the cabin, and via this lateral extension of the bottom section of the cabin the loading device into or out of the cabin.
  • the high-pressure cleaning device is mobile applicable and allows the cleaning of the material to be cleaned within the cabin, which provides sound protection both of the operator and the environment.
  • the operator no longer has to work inside the cabin, but instead can remotely control the positioning device and thus the cleaning process. This protects the operator and other persons in the neighborhood from the high-pressure nozzle even before the dangerous jet.
  • it is achieved that the pollution of the environment due to splashing, which occurs involuntarily when cleaning by high pressure, is avoided. All of the water used for cleaning, as well as any particles of dirt that are removed from the objects to be cleaned, remain inside the cabin and can be collected for disposal or reprocessing.
  • the chassis can be designed for example as a truck trailer. Alternatively, however, it could be, for example, the chassis of a truck, in which case the cab directly as a trailer of a truck, which also has a cab and a motor, can be trained.
  • the high pressure nozzle may be implemented in several known ways.
  • the high-pressure nozzle may be formed to generate a spot beam.
  • it may also be configured to generate a lateral beam.
  • the high-pressure nozzle can also be designed such that it is set in rotation by the jet and thus the jet likewise rotates. This can be advantageous, for example, for cleaning pipes.
  • the high pressure port is used to connect the high pressure nozzle to a high pressure source.
  • a high pressure source for example, a high pressure pump is considered.
  • the chassis is designed as a truck trailer, such a high-pressure pump may for example be mounted on a truck, which is designed for pulling the truck trailer.
  • the high pressure port may be connected to a high pressure pump on the same truck.
  • the truck may also contain a tank for cleaning fluid.
  • a tank for wastewater and / or a water treatment plant can be located on the truck.
  • the high-pressure connection can also be used to be connected to an external high-pressure source, for example a central supply of water, which is present in any case in an industrial plant, under high pressure.
  • the positioning device serves to position the high-pressure nozzle at the point where it is needed for cleaning various objects.
  • the positioning device is advantageously designed so that it can be controlled from outside the cabin.
  • a camera or an array of cameras can be used.
  • sensors such as ultrasonic sensors, which can measure a distance of the positioning to various objects, but can be used for control.
  • the positioning device can also be designed such that it automatically passes through a predetermined path. Thus, for example, for a Variety of successive cleaning steps of similar objects the way once be programmed so that then no further intervention of the operator is necessary.
  • the programming can be carried out, for example, by the operator entering the cabin with the high pressure switched off and the positioning device being moved by means of a manual control so that the desired cleaning effect can be achieved later, ie when the high pressure is switched on.
  • the positioning device is preferably a robot. This can be a commercially available robot. Such is usually adjustable by six axes and has a control with a 6D mouse. This allows exact positioning of the high pressure nozzle using here, for example, six degrees of freedom.
  • the retractable part containing the positioning device results in the extended state, an enlargement of the interior of the cabin, without exceeding the permissible outside dimensions of a truck trailer etc. in the ready to drive state.
  • the positioning can be housed while driving the high pressure cleaning device according to the invention in the cabin and when performing cleaning the central area of the cabin can release for a feeder, which is moved over the lowered, the feed opening associated flap.
  • the flap results in the folded state a reliable closure of the loading opening and in the folded down a lateral, provided to facilitate the loading of the cabin loading device associated extension of a bottom portion of the cabin, which ensures high reliability, and ease of use.
  • the positioning device is movable on longitudinal rails extending along the longitudinal direction of the car within the cabin.
  • an additional degree of freedom for the positioning can be obtained, which allows the positioning of the high-pressure nozzle at even more different locations.
  • This also allows the full length of a truck trailer, which For example, be about 10 m, to use for cleaning.
  • the number of necessary feed operations can be reduced.
  • the longitudinal rails are formed as linear guides and surround the positioning device such that the positioning is only one-dimensionally movable.
  • linear guides are known from the prior art. They are for example designed so that the positioning device runs on rollers in a three-sided enclosing, one-sided open profile, with a short distance above the rollers, a limitation of the profile runs so that the rollers can not escape upwards.
  • two such linear guides are used in parallel, which together lead the positioning.
  • the positioning is effectively protected against any tilting, which typically occurs in the field of industrial cleaning forces, which correspond to a mass of about 150 kg, that care must be taken when positioning the high-pressure nozzle that the positioning does not tip over but this can be positioned so that the best possible cleaning effect is achieved.
  • the longitudinal rails are arranged on a bottom portion of the extendable part. This makes it possible to install the positioning device so that it is located in the extended state of the extendable part at the edge of the then enlarged cabin. Thus, the available space within the cabin can be ideally exploited.
  • the material to be cleaned can end positioned laterally next to the longitudinal rails, so that the positioning device can be moved along the longitudinal extent of this material. With appropriate mobility of the positioning, the high pressure nozzle can then be spent on all the necessary places to clean the material to be cleaned.
  • the high-pressure cleaning device has a number of transverse rails, which extend transversely to the longitudinal direction of the cabin and on which the charging device is mobile. If the loading device is a carriage, the carriage can thus be moved along the transverse rails.
  • These cross rails like the already mentioned longitudinal rails, can be designed as linear guides which provide a merely one-dimensional mobility of the loading device.
  • At least a first set of cross rails and a second set of cross rails may be provided, wherein the first set of cross rails, a first carriage is assigned and the second set of cross rails, a second carriage is assigned.
  • the first carriage and the second carriage are further preferably connected together to form a common charging device.
  • a larger contact surface can be provided for to be cleaned material, the material to be cleaned is then spent with simultaneous insertion of two carriages in the cabin.
  • the connection of the two carriages can be done for example by a flat plate, which is suitable for the purpose mentioned.
  • a bottom portion of the extendable part is arranged above the cross rails in a retracted state of the extendable part. This allows a simple design and a good seal of the cabin down, where adjacent to the cross rails sealing devices can be provided, which reliably seal the cabin downwards.
  • rails are attached to the inside of the cabin facing side of the flap, which laterally extend the cross rails in the folded-down state of the hinged part. This can be provided in a simple way a way to push a feeder, such as a trolley, over the interior of the cabin to the outside and there to load with material to be cleaned.
  • the cabin is designed as a container, on whose one longitudinal side the extendable part is formed, and on whose longitudinal side opposite this longitudinal side, the hinged part is formed. This achieves a simple structural design.
  • a remote control for remotely controlling the positioning of be provided from outside the cabin. This allows easy and safe operation.
  • the positioning device in particular, when it is a robot, a rubber protection on which the positioning surrounds and prevents contamination of the positioning during the cleaning process.
  • the rubber protection can be made inflatable.
  • other types of protection in particular of other materials, may also be used.
  • FIG. 1 shows a high-pressure cleaning device 20, which is attached to a truck 10. This is done via a drawbar 105.
  • a high pressure pump 15 and a tank 18 are mounted for cleaning fluid, which serves to supply the high pressure cleaning device 20 with water under high pressure.
  • the high-pressure cleaning device 20 has a container-designed cabin 100, which is mounted on a chassis 120. This is in the present case designed as a truck trailer.
  • the high-pressure cleaning device 100 has a high-pressure connection 110.
  • a suitable hose can be connected by means of an adapter.
  • the high-pressure cleaning device 20 has a remote control 115 which allows external control.
  • the high pressure cleaning device 20 is mobile. It can be pulled by means of the truck 10 to any desired location.
  • the total length of such an embodiment is typically about 20 m.
  • the sole length of the trailer is typically about 10 m.
  • FIG. 2 shows a sectional view through the cabin 100 on the chassis 120.
  • the cabin 100 has a feed opening 133 which is closed by a hinged part 130.
  • the foldable part 130 forms part of an outer wall of the car 100.
  • a loading device in the form of a trolley 140.
  • the trolley 140 is mounted on two cross rails, of which in the figure of Fig. 2 only a first cross rail 145 is visible.
  • the carriage 140 In order to be displaceable on the cross rails, the carriage 140 has a first roller 146 and a second roller 147. With the two rollers 146, 147 of the carriage 140 is one-dimensionally displaceable along the cross rails.
  • the carriage 140 may be used to drive material to be cleaned into the interior of the cab 100. It will be shown later how this can be done.
  • the cab 100 further includes an extendable member 150.
  • the extendable part 150 In the state which in FIG. 2 is shown, the extendable part 150 is not extended, but completely retracted. So it closes flush with the rest to the outside Exterior wall of the cabin 100 from. Since in the illustrated state, the folding part 130 is folded up and not projecting outward, the high pressure cleaning device 20 in this state has external dimensions, which are suitable for transport on public roads. The high-pressure cleaning device can thus be moved to a place where a cleaning is to be performed.
  • the extendable part 150 can be moved along several rails, as shown in FIG Fig. 2 only a rail 155 can be seen. In order to be moved along this rail, a third roller 156 and a fourth roller 157 are provided. This makes it possible to transfer the extendable member 150 to an extended state, which will be described later with reference to FIG Fig. 3 will be described. Thus, the interior of the cabin 100 can be expanded.
  • the extendable part 150 is arranged above the transverse rails 145 of the trolley 140, which means in particular that a bottom section of the extendable part 150 is arranged above the transverse rails 145. This allows for an advantageous sealing of the lower area between the extendable part 150 and the floor of the car 100.
  • a positioning or manipulation device is provided, here in the form of a movable robot 200 which operates as a manipulation device.
  • the robot 200 is arranged displaceably on a first longitudinal rail 205 and a second longitudinal rail 206.
  • the robot 200 is also connected to a high pressure nozzle which serves to perform a high pressure cleaning operation.
  • the high-pressure nozzle is attached to the arm of the robot 200, which generally has a plurality of axes of movement for performing a manipulation movement. It is therefore sufficient if the robot 200 can be moved linearly as a whole.
  • the longitudinal rails 205, 206 are accordingly designed as linear guides, on which the Robot 200, which may preferably be rotatable about a vertical axis, along the longitudinal direction of the car 100 can be moved.
  • the Robot 200 which may preferably be rotatable about a vertical axis, along the longitudinal direction of the car 100 can be moved.
  • FIG. 3 shows the high-pressure cleaning device 20 in other states than in FIG. 2 .
  • Fig. 2 In contrast to Fig. 2 is in the representation of Fig. 3 the extendable part 150 extended.
  • the robot 200 is outside the room, which in the representation of Fig. 2 forms the interior of the cabin 100.
  • the robot 200 can be moved along the two longitudinal rails 205, 206, which allows its positioning at a required location.
  • the entire interior of the car 100 can be laterally of the extendable part 150, ie substantially the space in the dimensions which in the retracted part 150 retractable part 150 form the outside dimensions of the car 100 Introduction of material to be cleaned are used.
  • a support 159 is mounted in an outer portion of the extendable member 150. This serves to support the extendable part 150 in addition to the chassis 120 on the outside. Thus, a break of the extendable part 150 or a tilting of the high-pressure cleaning device 20 due to weight shift can be prevented.
  • the foldable part 130 is in FIG. 3 shown in three different states.
  • This state is to be understood as a transitional state, which may occur, for example, during installation or when the transportability of the high-pressure cleaning device 20 is established.
  • the folding part 130 is shown in a state in which it extends a bottom surface of the cabin 100.
  • cross rails 145 are extended, by appropriately designed on the folding part 130 expanding crossbars. This makes it possible to drive out the carriage 140 to the outside on the fold-down folding part 130. Even such a condition is in FIG. 3 shown, namely the one in which the carriage 140 is located on the far left on the folding part 130.
  • the carriage 140 is in its illustrated position on the hinged part 130, this can be loaded with material to be cleaned.
  • an external crane can be used.
  • the carriage 140 can be moved into the interior of the cabin 100, which, for example, the in Fig. 3 shown right state of the carriage 140 corresponds.
  • the mobile part 130 can be folded up again.
  • the material to be cleaned, which is located on the carriage 140 can then be cleaned by means of a high-pressure nozzle connected to the robot 200.
  • the robot 200 can be moved along the two longitudinal rails 205, 206 to the desired positions.
  • the cabin 100 Due to the completed construction of the cabin 100, which arises again when the hinged part 130 is brought back into its folded position and thus closes the loading opening 130, it is achieved that the noise arising during cleaning largely remains inside the cabin 100 and only in one acceptable level.
  • the cabin 100 sound-absorbing materials.
  • water used for cleaning and dirt detached from the material to be cleaned injected uncontrollably over a larger area. Rather, the water and the dirt within the cabin remain 100 and can be collected there. The water can then be disposed of or recycled, for example.
  • the folding part 130 can also be folded down to remove the cleaned material after completion of the cleaning process.
  • the folding part 130 is again in its folded-down position, as in Fig. 3 shown, brought.
  • the carriage 140 is moved to its illustrated left position, which makes it possible to remove the cleaned material, for example by means of a suitable crane.
  • a support 139 is provided on an outer side of the foldable member 130. This supports - similar to the support 159 - the hinged part 130 in addition to the chassis 120 outside and thus prevents breakage of the hinged part 130 or tilting of the Hochdruckreiniguns device 20 due to excessive externally applied loads.
  • FIG. 4 shows a further schematic sectional view of the car 100, wherein in particular the robot 200 can be seen in greater detail.
  • the robot 200 has a first arm 210 and a second arm 215.
  • the first arm 210 and the second arm 215 are movable relative to each other, as well as the first arm 210 is movable on a main body of the robot 200, which in turn is linearly movable and preferably rotatable about a vertical axis.
  • a high-pressure cleaning nozzle 220 is arranged at the end of the second arm 215. This is fluid with the high pressure port 110, which in FIG. 1 was shown connected.
  • the high-pressure nozzle 220 thus makes it possible to inject a cleaning medium supplied through the high-pressure port 110, for example water, under high pressure onto material to be cleaned. Thus, a cleaning effect can be achieved and thus the material to be cleaned can be cleaned.
  • the robot 200 is movable along the already mentioned longitudinal rails 205, 206, wherein in the illustration of Fig. 4 only one of the two longitudinal rails, namely the longitudinal rail 205 can be seen. This makes it possible to position the robot along the longitudinal extent of the car 100 corresponding longitudinal extent of the receiving him movable retractable part 150 at different locations. If the robot 200 is a conventional robot with six degrees of freedom, the mobility along the longitudinal rails 205, 206 results in an additional degree of freedom.
  • FIG. 4 In addition to the already mentioned rail 155, on which the extendable part 150 can be moved, four additional rails 151, 152, 153, 154 are shown. Also on these runs the extendable part 150 between its retracted and its extended state. Thus, the extendable part 150 is supported along the longitudinal direction of the car 100 in a plurality of places. This prevents bending of the extendable part 150 along the longitudinal direction of the car 100.
  • FIG. 4 to see that not only the already discussed carriage 140, but still another carriage 141 is present.
  • Further carriages 141 like the already mentioned carriages 140, can be displaced on corresponding transverse rails and can also be pushed onto the fold-out part 130 in the folded-down state of the fold-out part 130 and thus pushed out of the interior of the cab 100.
  • the further carriage 141 can be used to spend to be cleaned material in the cabin 100 and remove it again.
  • the explanations regarding the trolley 140 also apply to the further trolley 141.
  • FIG. 5 shows a schematic plan view of the high pressure cleaning device 20 in a slightly modified compared to the aforementioned embodiment embodiment. It should be understood that in the presentation of Fig. 5 the extendable part 150 is in its extended state and that the foldable part 130 is in its folded down state.
  • FIG. 5 left side of the cab 100 to see the drawbar 105, with which the high pressure cleaning device 20 can be attached to a truck.
  • the two longitudinal rails 205, 206 are shown, along which the robot 200 can be moved.
  • the rails 151, 152, 153, 155 along which the extendable member 150 can be displaced between its retracted condition and its extended condition.
  • connection 148 between the two carriages 140, 141 which can be connected to one another thereby, resulting in a common large carriage.
  • the connection 148 is different expressed together with the two carriages 140, 141 a continuous surface with which the interior of the cabin 100 can be charged with material to be cleaned. This may be advantageous both for use in cleaning a variety of smaller items, as well as for use in cleaning a particularly large and bulky item.

Landscapes

  • Vehicle Cleaning, Maintenance, Repair, Refitting, And Outriggers (AREA)
  • Cleaning By Liquid Or Steam (AREA)

Claims (13)

  1. Dispositif mobile de nettoyage à haute pression (20) comprenant une cabine (100) disposée sur un châssis (120) et une buse haute pression (220) qui est prévue dans celle-ci et est en communication fluidique avec un raccord haute pression et qui est montée sur un dispositif de positionnement (200) et peut être déplacée au moyen de celui-ci à l'intérieur de la cabine (100), la cabine (100) présentant une partie (150) apte à être sortie qui contient ledit dispositif de positionnement (200) et qui peut être sortie latéralement transversalement à la direction longitudinale de la cabine (100) pour agrandir l'espace intérieur de celle-ci, et ladite cabine (100) qui peut être alimentée de l'extérieur, au moyen d'un dispositif d'alimentation (140, 141), en matériel à nettoyer présentant, sur le côté opposé à ladite partie (150) apte à être sortie, une ouverture d'alimentation (133) qui est apte à être fermée et à laquelle est associé un volet (130) qui, dans un état relevé, ferme ladite ouverture d'alimentation (133) et forme une paroi extérieure de la cabine (100) et qui, dans un état rabattu, libère ladite ouverture d'alimentation (133) et élargit latéralement une section de fond de la cabine (100), et ledit dispositif d'alimentation (140, 141) pouvant être rentré dans ou bien sorti de la cabine (100) via cet élargissement latéral d'une section de fond de la cabine (100).
  2. Dispositif de nettoyage à haute pression (20) selon la revendication 1, dans lequel ledit dispositif de positionnement (200) est réalisé en tant que dispositif de manipulation destiné à manipuler ladite buse haute pression (220) y montée, de préférence sous forme d'un robot.
  3. Dispositif de nettoyage à haute pression (20) selon l'une quelconque des revendications précédentes, dans lequel ledit dispositif de positionnement (200) est déplaçable à l'intérieur de la cabine (100) sur des rails longitudinaux (205, 206) s'étendant le long de la direction longitudinale de la cabine (100) et disposés sur une section de fond de ladite partie (150) apte à être sortie.
  4. Dispositif de nettoyage à haute pression (20) selon la revendication 3, dans lequel lesdits rails longitudinaux (205, 206) sont réalisés en tant que guides linéaires et entourent des organes d'engagement du dispositif de positionnement (200) de telle sorte que le dispositif de positionnement (200) ne peut être déplacé que de manière unidimensionnelle.
  5. Dispositif de nettoyage à haute pression (20) selon l'une quelconque des revendications précédentes, dans lequel ledit dispositif d'alimentation (140, 141) comprend un chariot déplaçable.
  6. Dispositif de nettoyage à haute pression (20) selon la revendication 5, dans lequel un nombre de rails transversaux (142, 143, 144, 145) est prévu qui s'étendent transversalement à la direction longitudinale de la cabine (100) et sur lesquels ledit dispositif d'alimentation (140, 141) peut être déplacé.
  7. Dispositif de nettoyage à haute pression (20) selon la revendication 6, dans lequel au moins un premier jeu de rails transversaux (145, 142) et un deuxième jeu de rails transversaux (143, 144) sont prévus et un premier chariot déplaçable (140) est associé audit premier jeu de rails transversaux (145; 142) et un deuxième chariot déplaçable (141) est associé audit deuxième jeu de rails transversaux (143, 144), et dans lequel ledit premier chariot déplaçable (140) et ledit deuxième chariot déplaçable (141) peuvent être reliés pour former un grand chariot commun d'alimentation.
  8. Dispositif de nettoyage à haute pression (20) selon l'une quelconque des revendications 6 ou 7, dans lequel, dans un état rentré de ladite partie (150) apte à être sortie, une section de fond de la partie (150) apte à être sortie est disposée au-dessus des rails transversaux (142, 143, 144, 145).
  9. Dispositif de nettoyage à haute pression (20) selon l'une quelconque des revendications précédentes, dans lequel des rails sont montés sur la face du volet (130) qui montre vers l'intérieur de la cabine (100), qui, en état rabattu du volet (130), rallongent latéralement les rails transversaux (142, 143, 144, 145).
  10. Dispositif de nettoyage à haute pression (20) selon l'une quelconque des revendications précédentes, dans lequel ladite cabine (100) est réalisée en tant que conteneur sur l'un des grands côtés duquel est réalisée ladite partie (150) apte à être sortie, et sur le grand côté de celui-ci qui est opposé à ce grand côté est réalisé ledit volet (130).
  11. Dispositif de nettoyage à haute pression (20) selon l'une quelconque des revendications précédentes, dans lequel une télécommande (115) destinée à télécommander le dispositif de positionnement (200) de l'extérieur de la cabine (100) est prévue.
  12. Dispositif de nettoyage à haute pression (20) selon l'une quelconque des revendications précédentes, dans lequel ledit châssis (120) est réalisé comme remorque de poids lourd qui peut être attelée à un poids lourd (10).
  13. Dispositif de nettoyage à haute pression (20) selon la revendication 12, dans lequel une pompe à haute pression (15) qui peut être reliée audit raccord haute pression (110) pour délivrer un liquide de nettoyage sous haute pression est disposée sur le poids lourd (10), et sur lequel est prévu en outre de préférence au moins un réservoir (18) pour liquide de nettoyage.
EP13005930.6A 2013-01-09 2013-12-19 Dispositif de nettoyage haute pression mobile Not-in-force EP2754507B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SI201330207A SI2754507T1 (sl) 2013-01-09 2013-12-19 Mobilna visokotlačna čistilna naprava

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102013000167.6A DE102013000167A1 (de) 2013-01-09 2013-01-09 Mobile Hochdruckreinigungsvorrichtung

Publications (2)

Publication Number Publication Date
EP2754507A1 EP2754507A1 (fr) 2014-07-16
EP2754507B1 true EP2754507B1 (fr) 2016-03-16

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EP13005930.6A Not-in-force EP2754507B1 (fr) 2013-01-09 2013-12-19 Dispositif de nettoyage haute pression mobile

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EP (1) EP2754507B1 (fr)
DE (1) DE102013000167A1 (fr)
ES (1) ES2571438T3 (fr)
PL (1) PL2754507T3 (fr)
SI (1) SI2754507T1 (fr)

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EP3173161A1 (fr) 2015-11-25 2017-05-31 Buchen Umweltservice GmbH Dispositif de nettoyage haute pression mobile à engrenage commutable
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DE102013000167A1 (de) 2014-07-10
SI2754507T1 (sl) 2016-07-29
EP2754507A1 (fr) 2014-07-16
PL2754507T3 (pl) 2016-09-30
ES2571438T3 (es) 2016-05-25

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