EP3195938B1 - Module de recouvrement des sections ou des éléments à protéger sur des surfaces fixes - Google Patents

Module de recouvrement des sections ou des éléments à protéger sur des surfaces fixes Download PDF

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Publication number
EP3195938B1
EP3195938B1 EP17000098.8A EP17000098A EP3195938B1 EP 3195938 B1 EP3195938 B1 EP 3195938B1 EP 17000098 A EP17000098 A EP 17000098A EP 3195938 B1 EP3195938 B1 EP 3195938B1
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EP
European Patent Office
Prior art keywords
module
cover element
cover
covering
milling
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.)
Active
Application number
EP17000098.8A
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German (de)
English (en)
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EP3195938A1 (fr
Inventor
Robert Grauer
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.)
Volkmann and Rossbach GmbH and Co KG
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Volkmann and Rossbach GmbH and Co KG
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Publication of EP3195938A1 publication Critical patent/EP3195938A1/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B13/00Machines or plants for applying liquids or other fluent materials to surfaces of objects or other work by spraying, not covered by groups B05B1/00 - B05B11/00
    • B05B13/005Machines or plants for applying liquids or other fluent materials to surfaces of objects or other work by spraying, not covered by groups B05B1/00 - B05B11/00 mounted on vehicles or designed to apply a liquid on a very large surface, e.g. on the road, on the surface of large containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/16Arrangements for controlling delivery; Arrangements for controlling the spray area for controlling the spray area
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C23/00Auxiliary devices or arrangements for constructing, repairing, reconditioning, or taking-up road or like surfaces
    • E01C23/06Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road
    • E01C23/08Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for roughening or patterning; for removing the surface down to a predetermined depth high spots or material bonded to the surface, e.g. markings; for maintaining earth roads, clay courts or like surfaces by means of surface working tools, e.g. scarifiers, levelling blades

Definitions

  • the present invention relates to a module for covering vulnerable sections or elements on mounted surfaces. Further, the present invention relates to a milling device for removing applied on a fixed surface job with a module for covering vulnerable sections or elements on mounted surfaces.
  • Such fastened surfaces are located at traffic routes (roads), parking garages, parking lots, airports (runways, taxiways), factory grounds, railway station grounds, concrete traffic routes, concrete structures (such as bridges) and the like.
  • traffic routes roads
  • parking garages parking lots
  • airports runways, taxiways
  • factory grounds railway station grounds
  • concrete traffic routes concrete structures (such as bridges) and the like.
  • applied on paved surfaces are lane markings or tire wear on aircraft on a runway.
  • the order consists in particular of adhesive strips, sprayed plastic, cold plastic, thermoplastic, paint or epoxy resin materials.
  • paved surfaces such as roads and runways also have vulnerable sections or components, such as bitumen joints at road segments or transverse joints at patch sites.
  • Such sensitive sections or components may be at the demarcation or removal of other types of order due to the high Pressure from the spray nozzles on the road or the paved surface discharged blasting steel to be damaged. It is therefore an object of the present invention to provide a module of the type described, with which prevents damage to sensitive or vulnerable components of fastened surfaces while affecting the process speed of the milling process in the removal of the order on the surfaces attached by the module for Covering sensitive sections or elements is avoided. This object is achieved with a module for covering vulnerable sections or elements on fixed surfaces with the features of claim 1. Further embodiments emerge from the dependent claims 2 to 13.
  • the module according to the invention for covering vulnerable sections or elements on fixed surfaces comprises at least one fastening device for fixing the module to a milling device for removing applied on a fixed surface order, at least one displaceable cover member for covering a vulnerable portion or element and at least one displacement device for displacing the at least one cover member relative to the at least one fastener.
  • the at least one displacement device is designed such that at least one relative movement can take place between the at least one cover element and the at least one fastening device for a covering operation of a section or element requiring protection.
  • the module according to the invention makes it possible to protect the sensitive sections or components, such as bitumen joints or transverse joints.
  • the demarcation process or the removal of the job is not affected, since in the covering of the at least one cover a relative movement between the at least one cover and the at least one fastening device can be carried out, wherein the fastening device is attached to the milling device.
  • the process speed of demarcation or removal of the job is not reduced by the covering of the sensitive portion or element.
  • the at least one cover element of the module according to the invention prevents the jet of abrasive material, such as a fluid or sand jet, from being discharged under high pressure from impacting on sensitive sections or elements such as bitumen joints or transverse joints.
  • the at least one cover member is located in the vertical direction between the joint and the spray nozzles for discharging the abrasive jet, so that the abrasive jet hits the cover member, but not the sensitive member of the attached surface.
  • An abrasive jet can be generated with any conceivable abrasive such as sand, water, various granules and other solids, gases and mixtures of solids and liquids or gases.
  • the at least one fastening device can be coupled to the at least one fastening device.
  • the coupling can be done for example via a rail arrangement or fittings.
  • sensitive sections or elements such as bitumen joints or transverse joints can be protected on paved surfaces having a width of 200-400 mm.
  • the at least one cover element can be displaceable according to an embodiment of the invention by means of the at least one displacement device between a rest position and a covering position.
  • the rest position is located at a position that the milling process, i. the process of demarcating or ablating the job is not affected on the entire workable area.
  • the rest position of the at least one cover element is selected in such a way that the at least one cover element is provided with a movement pattern which is as simple and fast as possible, as e.g. a linear movement, from the rest position can be converted into the covering position. It is thereby achieved that the transfer of the at least one cover element from the rest position into the covering position does not hinder or impair the demarcation process or the milling process.
  • the at least one displacement device can hold the at least one cover element in a covering process for a vulnerable element in the covering position.
  • the at least one displacement device can bring the at least one cover element into contact with the attached surface in order to cover the element requiring protection.
  • the at least one cover member After the at least one cover of the At least one displacement device has been brought into contact with the sensitive component of the fixed surface, the at least one displacement device during the covering process, the at least one cover member at the predetermined and assumed position on the protected portion or element of the attached surface hold.
  • the position of the at least one covering element on the sensitive section or element can thereby be reliably maintained during a milling operation even when the jet of abrasive agent, for example a jet of water, is applied to the at least one covering element at high pressure from the spray nozzles.
  • the at least one displacement device can be configured such that the at least one fastening device can perform a relative movement relative to the at least one cover element in a covering process for a section requiring protection.
  • the at least one cover element remains at the position predetermined by the at least one displacement device on the protected section or element of the fixed surface, while the at least one fastening device can perform a relative movement to the stationary cover element.
  • a masking operation during a milling operation may be as follows: the cover element is displaced from the rest position to the covering position and in the covering position from the at least one displacing device stationary to the sensitive section or element held the paved surface.
  • the milling process continues undisturbed.
  • the milling device together with the fastening device of the module, performs a relative movement relative to the stationary held at least one cover element. After the cover has been completely “run over” by the milling device during the milling process, the cover is transferred back to the rest position.
  • the at least one displacement device may comprise at least one first cylinder arrangement for displacing the at least one cover element along the longitudinal axis of the milling device.
  • a cylinder arrangement may be coupled to the at least one cover element at each end of the at least one cover element.
  • the at least one cylinder arrangement can be formed, for example, by one or more travel cylinders, via which the at least one cover element is displaced along the longitudinal axis of the attachment device can.
  • the at least one first cylinder arrangement may be coupled to the at least one fastening device.
  • the at least one fastening device extends at least along the travel path of the at least one cylinder arrangement.
  • the at least one displacement device may have at least one second cylinder arrangement for displacing the at least one cover element in the vertical direction.
  • the at least one covering element can be approximated to the fastened surface or removed from it in the vertical direction.
  • the at least one second cylinder arrangement can serve to displace the at least one cover element from the rest position into the covering position and to hold it in the covering position during the covering operation.
  • the at least one second cylinder arrangement can press the at least one cover element against the surface of the sensitive component or surface, such as a traffic route, so that the at least one cover element also has its position on the sensitive section or element under the influence of the blasting agent jet of the milling device can comply.
  • the at least one second cylinder arrangement may be coupled to the at least one first cylinder arrangement.
  • the at least one second cylinder arrangement can be displaced together with the at least one cover element from the at least one first cylinder arrangement in the longitudinal direction of the fastening device.
  • the at least one cover element can be connected to the at least one displacement device via at least one elastic element.
  • the at least one elastic element can be used to compensate for unevenness of the attached surface.
  • the at least one elastic element may have a predetermined breaking point in the event that the cover element should tilt in contact with the fastened surface.
  • the at least one elastic element breaks or tears at a predetermined force effect in order to avoid damage to the displacement device or to the cylinder arrangements of the displacement device.
  • at least one elastic element can be provided at each end portion of the at least one cover element, which in turn is connected to the at least one displacement device.
  • At least one positioning element may be provided on the at least one covering element, which position the at least one covering element in the covering position on the section or element requiring protection.
  • the at least one Positioning element can be formed by a projection.
  • the at least one positioning element can in particular be formed by a prism-shaped projection.
  • the at least one positioning element may be provided on one of the attached surface or the vulnerable element of the fixed surface facing surface of the at least one cover member.
  • the at least one positioning element may be in contact with the sensitive section or element or the attached surface in the covering position of the cover element.
  • the at least one positioning element may contribute to holding the at least one cover element at the position assumed in the covering position on the sensitive component during the milling process.
  • At least one device for manual and / or automated actuation of the module can be provided.
  • the module can be manually operated by a user, for example.
  • Conceivable here is a foot control or an operation on a control panel by hand.
  • the module may include at least one means for detecting a vulnerable element on a fixed surface.
  • the at least one means for detecting a vulnerable element may be electronic and / or mechanical in nature. It is conceivable for mechanical detection probes or the like, which scan the attached surface for features indicating a sensitive portion or a sensitive element.
  • camera systems can be used to detect a vulnerable section or element. If a vulnerable section is detected, the module can be operated manually or automatically. It is also possible that sections or elements requiring protection on the images provided by a camera system are automatically detected and an actuation of the module takes place automatically.
  • the module may include at least one sensor for detecting the position of the at least one cover member.
  • the positions of the first and second cylinder arrangements of the at least one displacement device can be detected by means of at least one sensor.
  • the position of the at least one cover element can be determined.
  • a sensor may be provided for movement of the cover element along the longitudinal axis of the fastening device, which sensor in each case detects when the first cylinder arrangement is in one of its end positions.
  • a sensor may be sufficient, which detects when the cylinder assembly assumes its upper end position, ie, when the at least one cover element has been displaced away from the fastened surface.
  • the module may have at least one control unit which controls at least the at least one displacement device.
  • the at least one control unit may be coupled to the at least one sensor, which detects the position of the at least one displacement device.
  • the positions of the first and second cylinder arrangements can be detected via sensors.
  • the at least one control unit may be coupled to these sensors for detecting the positions of the first and second cylinder assemblies.
  • the at least one control unit can thus control the cylinder arrangements of the at least one displacement device and thus the position of the at least one cover element.
  • the present invention further relates to a milling device for removing applied on a fixed surfaces order, in particular applied road markings or applied tire wear of aircraft on a runway, with a module of the type described above.
  • the milling device can be moved in a working position relative to the fixed surface.
  • the milling device can have an outer housing and an inner housing enclosed by the latter.
  • a spray bar rotatable about an axis of rotation can be arranged with spray nozzles for passing through a high-pressure blasting agent.
  • the milling device may have a suction nozzle connected to the outer housing, which can be connected to a suction device. Based on the working position of the milling direction, the two housings may be open towards the surface being fastened.
  • the spray bar may be rotatable with the spray nozzles about an axis upright to the paved surface. Blasting media emitted from the spray nozzles during milling and milled application can be sucked through a gap formed between the housings and through the suction nozzle.
  • the milling device may in particular be a special accessory for a motor vehicle, in particular a truck, which is used for road maintenance. If this motor vehicle has a suction device and a pump unit for high-pressure fluid, this motor vehicle provided with the milling device can be used advantageously for removing applied application on fixed surfaces. It is only necessary that Furthermore, to connect the pump unit of the motor vehicle for high-pressure fluid via a hose connection with a liquid supply to the rotatable spray bar, also to connect a drive of the milling device for the spray bar to the motor vehicle, for example, oil connections of the motor vehicle with a hydraulic drive to connect the milling device for the spray bar.
  • the spray bars can be set in rotation via the said components, blasting agents are supplied to the spray nozzles and the suction device of the motor vehicle is actuated so that suction air is sucked out through the suction nozzle of the milling device.
  • the module for covering the sensitive portion is actuated.
  • the actuation of the module can be done by the driver of the motor vehicle or automated. After actuation, while milling continues undisturbed, the at least one cover element is displaced from the rest position into the covering position. The at least one displacement device holds the cover member in the covering position on the sensitive portion or element.
  • the milling device with the fastening device of the module attached thereto performs a relative movement relative to the stationary cover element.
  • the covering element shields the sensitive component, ie the transverse or bitumen joints, from the jet of abrasive agent emitted under high pressure from the spray nozzles. If the covering element has been run completely over by the milling device, ie the abrasive jet no longer impinges on the covering element, the covering element is displaced upwards and backwards by the displacement device into the rest position. In other words, the set end position of the cover is achieved, the cover is displaced to the rest position.
  • the milling device Due to the pivotable mounting of the milling device on the motor vehicle, the milling device can assume a position in a non-working position, in which it is folded upwards substantially, whereby can be driven by means of the motor vehicle in a conventional manner. If the milling device is pivoted downwards in its substantially horizontal position, it assumes the working position in which the motor vehicle and thus the milling device can be activated to remove the application applied to the fixed surface.
  • the driving speed of the motor vehicle is relatively slow. The motor vehicle travels at such a speed as to ensure optimum removal of the job applied to the fixed surface.
  • two housings may be provided, which may be formed hood-shaped.
  • the outer, hood-shaped housing may have the function of a suction bell.
  • ambient air is sucked from the area outside the outer housing in the space between the two housings in the space between the inner hood-shaped housing and the outer hood-shaped housing.
  • the blasting agent emitted from the spray nozzles in particular blasting agent dispensed from the spraying nozzles, and the remover removed from the fastened surface by means of the abrasive, are mixed with the ambient air and this mixture is sucked out of the milling device through the suction nozzle.
  • the milling device Due to the suction through the gap, the milling device can generate a strong air velocity at low negative pressure, for example at 20% vacuum, and high air volume. The flow generated thereby absorbs even the smallest abrasive particles. Due to the described suction between the inner housing and the outer housing and the distance of the outer housing to the fixed surface no fluid can accumulate within the outer housing. Since there is a gap between the suction and the attached surface, in a continuous suction process, milled material, blasting media and removed coating / dissolved marking residues are transported away through a (suction) air curtain directly into the extraction system after loosening / spraying.
  • the high-pressure blasting jet such as a jet of fluid, water jet or sandblast, strikes the job to be removed, thus providing very high removal performance of the applied job or, in the case of a pavement marking, a high demarking performance is.
  • This performance is significantly higher than with a conventional high-pressure mill with the same pump capacity. Due to the high air speed, the attached surface after the removal of the applied job is almost dry, and there is at most a minimum Schlemmung, with which then immediately a new order can be applied to the paved surface.
  • the milling device may comprise a chassis with rolling means, in particular rollers or wheels, which contact the fixed surface in the working position of the milling device.
  • rolling means By means of these rolling means ensures that the two housings in the working position of the milling device is a constant distance to retained surface.
  • Rolling means can certainly be designed as circulating chains. When using wheels or rollers may be provided in particular that these are steerable. In principle, it would also be sufficient to use tools such as a motor vehicle in which the milling device is mounted to position the milling device in its working position with a small distance to the fixed surface, without thus bringing about a contact of milling device and fixed surface on said rolling means.
  • the milling device when, in the working position of the milling device, the opening directed towards the fastened surface of the outer housing and / or inner housing forms a flat opening surface.
  • the planar opening surface of the outer housing is arranged at a distance of 10 mm to 60 mm, preferably 20 mm to 30 mm, in particular 25 mm to the fixed surface. It is thus a relatively small sized gap between the outer housing and the fixed surface, through which ambient air into the interior of the outer housing, specifically the space between the inner housing and the outer housing can be sucked.
  • the flat opening surface of the inner housing may also be arranged at a greater distance from the fixed surface than the flat opening surface of the outer housing.
  • the planar opening surface of the outer housing is thus positioned closer to the fixed surface than the planar surface of the inner housing. Due to this greater distance of the inner housing to the fixed surface, the liquid discharged from the spray nozzles and also the remote application can be supplied in a streamlined manner to the air sucked through the outer housing.
  • outside the outer housing may be arranged around the outer housing surrounding skirt.
  • This apron can contact the attached surface in the working position of the milling device.
  • the apron can be flexible or yielding.
  • the apron can also be formed by individual, flexible apron segments.
  • the gap formed between the housings may be formed as an annular space.
  • the space formed between the housings may be divided into clearance areas so that the fluid discharged from the spray nozzles and the milled deposit may flow from the clearance areas into the suction port.
  • the milling device can thus have gap areas for different guidance of suction air, liquid and milled order, so as to achieve optimum suction results. It can be provided in the intermediate space formed between the housings dividing walls, which divide the intermediate space in the intermediate space regions.
  • planar opening area of the inner housing and / or outer housing is circular, wherein an axis of rotation of the spray bar extends through the center of the circle.
  • the milling device may have a frame, which is provided with a receptacle for mounting, in particular pivotable mounting of the milling device in a motor vehicle.
  • FIG. 1 shows a front view of the module 10 for covering a vulnerable element on a fixed surface.
  • the module 10 is arranged on a milling device 12 for removing applied on a fixed surface order.
  • the module 10 is attached via a fastening device 14 to a chassis 16 of the milling device 12.
  • the fastening device 14 is formed by rail-shaped elements 18 which extend along the side surfaces 20 of the chassis 16 of the milling device 12.
  • the elements 18 of the fastening device 14 may be provided with a cover AD.
  • the module 10 further comprises a displacement device 22.
  • the displacement device 22 has cylinder arrangements 24, 26.
  • the cylinder assemblies 24, 26 each include a piston rod 28, 30.
  • the piston rods 28, 30 are connected to elastic bodies 32, 34.
  • the elastic bodies 32 and 34 are in turn connected to the cover member 36.
  • the cover member 36 is thus connected at its two ends via the elastic body 32, 34 with the cylinder assemblies 24, 26.
  • the at least one cover element 36 establishes a connection between the two elastic elements 32, 34 and thus between the cylinder arrangements 24, 26 of the displacement device 22.
  • the milling device 12 is located between the cylinder assemblies 24, 26 or between the rail-shaped elements 18 of the fastening device 14.
  • the length of the cover member 36 and the distance between the cylinder assemblies 24, 26 is designed so that the milling device 12 with its entire cross section between the cylinder assemblies 24, 26 can be moved through the at least one cover member 36 therethrough.
  • the cover element 36 has projections 38, 40.
  • the protrusions 38, 40 are provided at end portions of the cover member 36 on a surface of the cover member 36 facing the fixed surface V.
  • the projections 38, 40 constitute positioning means which secure the cover element 36 in the covering position to a member of a protected need Keep surface such as a bitumen joint or a transverse joint in its predetermined position.
  • FIG. 1 the module 10 is shown in its rest position. This can be seen by the distance A set between the fixed surface V and the cover member 36. In the covering position, the distance A is smaller or almost non-existent, since the covering element 36 bears against the fastened surface V in the covering position.
  • the elastic elements or body 32 and 34 serve on the one hand to compensate for unevenness of the fixed surface V in the covering position of the cover 36 and the other as a predetermined breaking point. Should the cover element 36 tilt during operation of the module 10, for example on the fastened surface V, the elastic elements 32, 34 may break or crack under a predetermined force, whereby damage, in particular to the displacement devices 22, can be prevented.
  • the chassis 16 of the milling device 12 is supported by rollers 42 on the fastened surface V.
  • the milling device 42 has a housing 44 in which inter alia, a not shown rotatable spray bar with spray nozzles and also not shown suction nozzle is located. From the housing 44 exits from the spray nozzles, not shown, discharged under high pressure blasting agent.
  • the jet stream discharged from the spray nozzles is in FIG. 1 schematically indicated by the arrows 46.
  • the blasting agent beam 46 is used for demarcation or for removal of application to the paved surface V. Since fixed surfaces V often have bitumen joints or transverse joints, it may be due to the necessary for the demarcation or removal of the job high pressure of the blasting medium to damage the Joints come.
  • the cover member 36 via the displacement device 22 from the in FIG. 1 shown rest position in vertical direction down in abutment with the joint or the vulnerable element of the fastened surface V brought.
  • the cover member 36 is thus transferred to its covering position.
  • the cover member 36 is held on the cylinder assemblies 24, 26 and the positioning projections 38, 40 at the joint in its predetermined position.
  • the cylinder arrangements 24, 26 press the cover element 36 downwards.
  • the milling device 12 moves with its chassis 16 further relative to the stationary in the covering cover member 36 at the joint.
  • the covering element 36 shields the joint from the hard blasting agent jet emerging from the spray nozzles of the milling device 12, ie the high-pressure blasting agent jet 46 impinges on the covering element 16, but not on the joint.
  • the blasting agent beam 46 strikes the surface of the cover element facing the milling device 12. If the chassis 16 of the milling device 12 has been moved further relative to the cover element 36 so far that the displacement device 22 has arrived at one of its end positions, the piston rods 28, 30 are retracted and the cover element 36 is thereby moved upward in the vertical direction. In the above-described masking process, the process speed with which the milled surface milling device 12 operates is not reduced or the like. The module 10 thus does not interfere with the milling operation of the milling device 12.
  • FIG. 2 shows a side view of the module 10 in a attached to a milling device 12 state.
  • the displacement device 22 comprises, in addition to the cylinder assembly 26, a further cylinder arrangement which is located under the cover AD and thus in FIG. 2 not shown. This further cylinder arrangement serves to displace the cover element 36 along the longitudinal axis L.
  • the displacement device 22 is coupled via a connecting element 48 to the further cylinder arrangement (not shown).
  • the displacement device 22 may comprise rail arrangements 50 for guiding the cylinder arrangement 26 or the not shown further cylinder arrangement. Among other things, the rail arrangements 50 can also be used to connect the displacement device 22 to the fastening device 14.
  • the cylinder assembly 26 may be coupled to the cylinder assembly (not shown) for displacement of a longitudinal axis via the connector 48 such that the cylinder assembly 26 may be displaced from the cylinder assembly, not shown, along the longitudinal axis L.
  • the cover element 36 can be displaced via the displacement device 22, in particular between two end positions PS1 and PS2.
  • a displacement between these two end positions is necessary, in particular, when the cover element 36 has been in the covering position during a milling operation and the milling device 12 has been moved relative to the cover element 36 which is stationary in the covering position.
  • a movement between the two end positions PS1 and PS2 is necessary if after the milling process should be transferred back to the default position. If the cover element 36 is in the cover position and the milling device 12 moves relative to the cover element 36 held stationary, then when the cover element 36 arrives at the end position PS2, the cover element will move upward in the vertical direction and in the direction of the longitudinal axis L. Moves forward to the end position PS1 to start immediately on the next fugue with the next covering.
  • FIG. 3 shows a schematic representation in which the module 10 is at the beginning of a masking operation.
  • both the milling device 12 and the covering module 10 are shown schematically.
  • FIG. 3 a fastened surface V is recognizable, at which a job 52, such as a median marker, is located.
  • the job 52 is removed with the milling device 12.
  • Plotted and hatched area 54 is an area in which the job 52 has already been removed from the milling device 12.
  • the cover member 36 shown schematically, after a joint 56 has been recognized on the fixed surface V, from the in the FIGS. 1 and 2 shown rest position shifted in the covering position.
  • the cover member 36 is located in FIG. 3 still at the front end position PS1 according to FIG. 2 , In the covering position, the covering element 36 conceals the joint 56, so that the jet of abrasive agent emitted by the milling device 12 (FIG. FIG. 1 ) can not hit the sensitive gap 56.
  • FIGS. 3 to 6 not shown in detail.
  • the cover element 36 in the covering position remains stationary on the joint 56, while the milling device 12 is moved further in the direction of the arrow P relative to the cover element 36 on the joint 56.
  • the milling device 12 passes over the cover element 36 at the joint 56.
  • FIG. 5 is the cover 36 at the rear end position PS2 ( Figure 2), ie the cover 36 was completely run over by the milling device 12.
  • the cover 36 was moved back to the rest position after the joint 56 has been completely overrun by the milling device 12 and the job 52 was milled in the region of the joint 56 with the milling device 12.
  • the covering of the joint 56 with the cover 36 is completed accordingly.
  • the cover 36 in FIG. 5 at the rear end position PS2 ( FIG. 2 )
  • it is returned to the rest position at the front end position PS1 (FIG. FIG. 2 ) and is ready for the next milling process.
  • the milling device 12 is displaced further in the direction of the arrow P during the entire covering process.

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  • Structural Engineering (AREA)
  • Road Repair (AREA)

Claims (14)

  1. Module (10) pour le recouvrement de sections et d'éléments à protéger sur des surfaces à revêtement (V), comprenant
    - au moins un dispositif de fixation (14) pour fixer le module (10) à un dispositif de fraisage (12) pour supprimer un dépôt appliqué à des surfaces à revêtement (V),
    - au moins un élément de recouvrement (36) déplaçable pour recouvrir une section ou un élément à protéger, et
    - au moins un dispositif de déplacement (22) pour déplacer ledit au moins un élément de recouvrement (36) par rapport audit au moins un dispositif de fixation (14),
    dans lequel ledit au moins un dispositif de déplacement (22) est réalisé de telle sorte qu'entre ledit au moins un élément de recouvrement (36) et ledit au moins un dispositif de fixation (14) au moins un mouvement relatif peut être effectué pour une opération de recouvrement d'une section ou d'un élément à protéger.
  2. Module (10) selon la revendication 1, dans lequel ledit au moins un élément de recouvrement (36) peut être déplacé entre une position de repos et une position de recouvrement au moyen dudit au moins un dispositif de déplacement (22).
  3. Module (10) selon la revendication 1 ou 2, dans lequel ledit au moins un dispositif de déplacement (22) retient dans la position de recouvrement ledit au moins élément de recouvrement (36) lors d'une opération de recouvrement pour une section ou un élément à protéger.
  4. Module (10) selon l'une quelconque des revendications 1 à 3, dans lequel ledit au moins un dispositif de déplacement (22) est réalisé de telle sorte que ledit au moins un dispositif de fixation (14) effectue lors d'une opération de recouvrement pour une section à protéger ou un élément à protéger un mouvement relatif par rapport audit au moins un élément de recouvrement (36).
  5. Module (10) selon l'une quelconque des revendications 1 à 4, dans lequel ledit au moins un dispositif de déplacement (22) présente au moins un premier ensemble de cylindre pour déplacer ledit au moins un élément de recouvrement (36) suivant l'axe longitudinal du dispositif de fixation (14).
  6. Module (10) selon l'une quelconque des revendications 1 à 5, dans lequel ledit au moins un dispositif de déplacement (22) présente au moins un deuxième ensemble de cylindre (26) pour déplacer ledit au moins un élément de recouvrement (36) dans la direction verticale.
  7. Module (10) selon l'une quelconque des revendications 1 à 6, dans lequel ledit au moins un élément de recouvrement (36) est relié audit au moins un dispositif de déplacement (22) par l'intermédiaire d'au moins un élément élastique (32, 34).
  8. Module (10) selon l'une quelconque des revendications 1 à 7, dans lequel sur ledit au moins un élément de recouvrement (36) est prévu au moins un élément de positionnement (38, 40) positionnant ledit au moins un élément de recouvrement (36) dans la position de recouvrement au niveau de la section ou de l'élément à protéger.
  9. Module (10) selon l'une quelconque des revendications 1 à 8, dans lequel ledit au moins un dispositif est prévu pour l'actionnement manuel et/ou automatisé du module.
  10. Module (10) selon l'une quelconque des revendications 1 à 9, dans lequel le module (10) présente au moins un dispositif pour détecter une section ou un élément à protéger sur une surface à revêtement (V).
  11. Module (10) selon l'une quelconque des revendications 1 à 10, dans lequel le module (10) présente au moins un capteur pour détecter les positions dudit au moins un élément de recouvrement (36).
  12. Module (10) selon l'une quelconque des revendications 1 à 11, dans lequel le module (10) présente au moins une unité de commande commandant au moins ledit au moins un dispositif de déplacement (22).
  13. Dispositif de fraisage (12) pour supprimer un dépôt appliqué à des surfaces à revêtement (V), en particulier des marquages au sol appliqués ou des débris de pneu appliqués provenant d'avions sur une piste de décollage/d'atterrissage, comprenant un module (10) pour le recouvrement de sections et d'éléments à protéger sur des surfaces à revêtement (V) selon l'une quelconque des revendications 1 à 12.
  14. Dispositif de fraisage (12) selon la revendication 13, dans lequel le dispositif de fraisage (12), dans une position de travail, peut être déplacé par rapport à la surface (V), avec un boîtier extérieur (44) et un boîtier intérieur entouré par celui-ci, une rampe de pulvérisation disposée à l'intérieur du boîtier intérieur et pouvant tourner autour d'un axe de rotation, avec des buses de pulvérisation pour faire passer un produit de sablage sous haute pression, ainsi qu'avec un manchon d'aspiration relié au boîtier extérieur (44) pouvant être relié à un dispositif d'aspiration, dans lequel, par rapport à la position opérationnelle du dispositif de fraisage (12), les deux boîtiers (44) sont ouverts en direction de la surface (V), dans lequel la rampe de pulvérisation avec les buses de pulvérisation peut être amenée à tourner autour d'un axe vertical par rapport à la surface (V), et dans lequel le produit de sablage délivré par les buses de pulvérisation lors du fraisage et un dépôt fraisé peuvent être aspirés à travers un espace formé entre les boîtiers et à travers le manchon d'aspiration.
EP17000098.8A 2016-01-21 2017-01-20 Module de recouvrement des sections ou des éléments à protéger sur des surfaces fixes Active EP3195938B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102016000594.7A DE102016000594A1 (de) 2016-01-21 2016-01-21 Modul zum Abdecken von schutzbedürftigen Abschnitten oder Elementen auf befestigen Oberflächen

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EP3195938A1 EP3195938A1 (fr) 2017-07-26
EP3195938B1 true EP3195938B1 (fr) 2018-09-12

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DE102022101453A1 (de) 2022-01-21 2023-07-27 Volkmann Strassen- und Verkehrstechnik GmbH Strahlschablone für eine Einrichtung zum Entfernen von auf befestigten Oberflächen aufgebrachtem Auftrag

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Publication number Priority date Publication date Assignee Title
US5991968A (en) * 1997-07-11 1999-11-30 Moll; Frank J. High pressure cleaning and removal system
US20030066158A1 (en) * 2001-10-05 2003-04-10 Porter Lanny L. Cleaning apparatus for concrete and tile
DE102006062129B4 (de) * 2006-12-22 2010-08-05 Wirtgen Gmbh Straßenbaumaschine sowie Verfahren zur Messung der Frästiefe
EP2354315B1 (fr) * 2010-02-08 2015-09-02 Skanska Sverige AB Système de nettoyage et d'élimination de matériau, utilisation dudit système et procédé pour le nettoyage et d'élimination de matériau d'une route asphaltée
DE102012015346A1 (de) * 2012-08-06 2014-02-20 Wirtgen Gmbh Selbstfahrende Baumaschine

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EP3195938A1 (fr) 2017-07-26

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