WO2009153190A1 - Dispositif distributeur - Google Patents

Dispositif distributeur Download PDF

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Publication number
WO2009153190A1
WO2009153190A1 PCT/EP2009/057091 EP2009057091W WO2009153190A1 WO 2009153190 A1 WO2009153190 A1 WO 2009153190A1 EP 2009057091 W EP2009057091 W EP 2009057091W WO 2009153190 A1 WO2009153190 A1 WO 2009153190A1
Authority
WO
WIPO (PCT)
Prior art keywords
receiving unit
handle
unit
product
connection
Prior art date
Application number
PCT/EP2009/057091
Other languages
German (de)
English (en)
Inventor
Rene Schwarz
Karsten Wolf
Katja Quedenbaum
Gerhard Josef Theumert
Original Assignee
Henkel Ag & Co. Kgaa
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 Henkel Ag & Co. Kgaa filed Critical Henkel Ag & Co. Kgaa
Priority to EP09765770.4A priority Critical patent/EP2303470B1/fr
Publication of WO2009153190A1 publication Critical patent/WO2009153190A1/fr

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C17/00Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces
    • B05C17/005Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces for discharging material from a reservoir or container located in or on the hand tool through an outlet orifice by pressure without using surface contacting members like pads or brushes
    • B05C17/015Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces for discharging material from a reservoir or container located in or on the hand tool through an outlet orifice by pressure without using surface contacting members like pads or brushes with pneumatically or hydraulically actuated piston or the like
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C17/00Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces
    • B05C17/005Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces for discharging material from a reservoir or container located in or on the hand tool through an outlet orifice by pressure without using surface contacting members like pads or brushes
    • B05C17/01Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces for discharging material from a reservoir or container located in or on the hand tool through an outlet orifice by pressure without using surface contacting members like pads or brushes with manually mechanically or electrically actuated piston or the like

Definitions

  • the invention relates to a device for dispensing a product from a container.
  • Such devices are particularly useful for squeezing viscous masses, e.g. Jointing compounds used from containers such as cartridges or tubular bags.
  • Known devices consist of a receiving unit for the container containing the material to be dispensed, a dosing unit and a permanently connected to receiving unit handle.
  • Various applications are known for dispensing the material in the container.
  • a dosing unit is used, which has a displaceably mounted piston rod with a piston which presses against the inserted container, so that the contents of the container can be dispensed dosed.
  • a pneumatically acting metering unit wherein by means of a pressure medium, a piston for dispensing the material can be moved within the container.
  • the disclosed apparatus for strand-like discharge of pasty masses contained in deformable tubular bags has a cylinder which serves to receive the tubular bag.
  • the cylinder has a central opening which is aligned with a Tüllenan gleich the tubular bag.
  • an axially displaceable against the tubular bag, substantially piston-shaped pressure piece and means for axial displacement of the pressure piece are provided in the cylinder.
  • the displacement of the pressure piece is pneumatic.
  • a compressed air connection is provided on the handle of the device.
  • the pressure acting on the pressure piece air pressure and thus the axial propulsion of the pressure element within the cylinder can be adjusted via a lever-actuated pressure valve.
  • a major disadvantage of this device is the fixed volume of the cylinder for receiving the tubular bag. This is fixed, so that the size of the tubular bag is not arbitrary.
  • tubular bag guns are also known in the prior art. These tubular bag guns usually have a cylindrical receiving unit made of aluminum or similar materials for the tubular bag.
  • the receiving unit includes a discharge end for dispensing the material contained in the tubular bag and on the opposite side a connection area with which the device with the handle and the dosing unit can be screwed in the rule.
  • this type of tubular bag guns although it is provided to use receiving units of different lengths, whereby tubular bags of different lengths can be pressed, but this leads to further disadvantages.
  • tubular bags with a large content are advantageous, since the time required for replacing an empty tubular bag can be reduced due to the small replacement intervals. Since the diameter of the cylindrical receiving unit is fixed by the screw, Henkel AG & Co KGaA H 07837 PCT
  • the receiving unit for a tubular bag would have the receiving unit for a tubular bag to be longer, the larger the volume of the container, or the greater the amount of material to be dispensed.
  • particularly long recording units can not be used throughout the construction sector. Especially in confined spaces, under stairs or in the grouting of corner areas, the work is significantly hampered by a long recording unit.
  • Another disadvantage is the resulting torque, which acts on the handle of the device and thus on the user. The longer the receiving unit, the greater the torque acting on the handle. Ergonomic working with such a device is no longer possible.
  • the object of the present invention is therefore to provide an improved device for dispensing a material contained in a container, which ensures ergonomic working with containers of different sizes.
  • the basic idea of the invention is to provide a device for dispensing a product from a container, comprising an assembly comprising a cavity-containing receiving unit for the container and a propelling element for dispensing the product within the receiving unit, with a handle connected to the receiving unit a dosing unit, wherein the connection between the handle and receiving unit is releasable to ensure interchangeability of the assembly and wherein a coupling part of the handle and a coupling part of the receiving unit in the mounted state of the receiving unit on the handle provide a coupling to an operative connection between the dosing unit of the To allow handle and the propelling element in the receiving unit.
  • Such a construction of a device for dispensing a product from a container brings many advantages.
  • the interchangeability of the assembly ie the receiving unit with the propulsion device and the use of a coupling part on the handle and a corresponding coupling part on the recording
  • a use of recording units with different dimensions conceivable.
  • substantially cylindrical receiving units with different diameters are used.
  • the clutch used can be both a pneumatic and a mechanical clutch. Pneumatic couplings Henkel AG & Co KGaA H 07837 PCT
  • Another advantage is the use of a bearing on the handle, which fixes the receiving unit relative to the handle at least counter to the direction of displacement of the output of the product within the receiving unit slidably disposed driving element.
  • This bearing serves in particular as an abutment for the propulsion of the displaceably arranged driving element used for coming force.
  • the receiving unit preferably has a dispensing opening for dispensing the product in the container. To output the product, the propulsion element is displaced within the receiving unit in the direction of the opening of the receiving unit and thus presses out the product located in the container through the dispensing opening of the receiving unit.
  • the force required for propulsion of the propulsion element depends, in particular, on the friction of the propulsion element on the receiving unit, on the density of the product to be dispensed, on the friction of the container on the receiving unit and on the size of the dispensing opening of the receiving unit.
  • the bearing is provided to intercept the forces acting on the receiving unit and, for example, on the handle or to transfer other components of the device. In this way, it is ensured that a secure hold of the receiving unit on the handle and thus a reliable function of the device are ensured even with a large force.
  • Another advantage is the use of a locking option to fix the receiving unit in the mounted state on the handle and to prevent loosening of the connection between the receiving unit and handle.
  • a locking option is particularly advantageous when working, in which the device is guided in different positions and angular positions.
  • Another advantage is the use of a means for linear storage between the handle and receiving unit, which allows a translational relative movement between the receiving unit and handle to provide the detachable connection between the receiving unit and handle.
  • Such storage has proved to be particularly advantageous.
  • the receiving unit can be moved for replacement via the means for linear storage relative to the handle and assembled or disassembled in this way.
  • a means for linear storage are particularly suitable flat or prismatic guides between the receiving unit and Henkel AG & Co KGaA H 07837 PCT
  • Another advantage is the use of a coupling part of the handle, which is fixedly fixed to the handle.
  • a coupling part With such a coupling part, a particularly simple operative connection between the dosing unit and the driving element is provided.
  • the user only has to make the connection between the receiving unit and the handle, for example via an o.g. Produce means for linear storage, which leads to a production of the active connection between the dosing unit and the driving element.
  • a maloperation and a resulting faulty operative connection between the dosing unit and the drive element is precluded by such a fixedly fixed to the handle coupling part.
  • it is prevented by the stationary fixation that the coupling between handle and receiving unit can be solved automatically while working with the device and so the operative connection is unintentionally separated.
  • Another advantage is the use of a handle having an elongated guide groove, the receiving unit having a guide slide which can be engaged with the guide groove of the handle to provide a means for positioning the receiving unit on the handle.
  • a handle and the receiving unit a particularly simple assembly and disassembly of both components can be ensured.
  • the user only has to insert the guide carriage of the receiving unit into the guide groove of the handle and can thus displace both components against one another in order to achieve assembly or disassembly. A malfunction is almost impossible with such a design.
  • the receiving unit may be advantageous to provide the receiving unit with an elongated guide groove, wherein the handle has a guide carriage, which can be brought into engagement with the guide groove of the receiving unit to provide a means for positioning the receiving unit on the handle.
  • a particularly simple assembly and disassembly of both components is possible.
  • the guide carriage of the handle must be inserted into the elongated guide groove of the receiving unit to allow assembly or disassembly.
  • connection via an elongated guide groove or a guide carriage is the design of the guide carriage with guide or Umgriffs, which prevent lifting of the standing in engagement with the guide slot carriage. Due to this dovetail-like guidance, a special secure connection can be made. Henkel AG & Co KGaA H 07837 PCT
  • a handle wherein a connection for a pressure medium is provided which is in communication with the dosing unit and the operative connection between the dosing unit and the drive element is provided via a sealed plug-in coupling between receiving unit and handle.
  • Devices of this type are particularly suitable in construction sites, since here are usually suitable print media available.
  • the dosing unit can have a valve which can be actuated by a lever, as well as a pressure gauge and an additional pressure regulator.
  • Another advantage of using a pressure medium is equipment of the handle with a protruding coupling part, wherein a corresponding opening is provided on the receiving unit and wherein the protruding coupling part and the corresponding opening form the plug-in coupling in the mounted state of the receiving unit on the handle.
  • This design of the coupling has proven to be particularly advantageous because with such a design, the components used for the receiving unit, which provide the coupling part are reduced to a minimum.
  • an exchanged receiving unit safely in a tool box, stored in a building container or between building materials without the coupling part is damaged, since this is only an opening into which engages the protruding coupling part of the handle during assembly.
  • Another advantage of equipping the receiving unit with an opening is the use of a circumferential sealing ring to provide a seal of the plug-in coupling in the assembled state of the receiving unit on the handle.
  • a sealing ring can in particular compensate for manufacturing tolerances or take over a seal when areas of the protruding coupling part of the handle or the corresponding opening are provided with dust, dirt or moisture.
  • the propulsion element for dispensing the product via a mechanical propulsion means, which is in operative connection with the metering unit and which can be coupled to the propulsion element for receiving unit for dispensing the product.
  • a mechanical propulsion means which is in operative connection with the metering unit and which can be coupled to the propulsion element for receiving unit for dispensing the product.
  • the Henkel AG & Co KGaA H 07837 PCT is in operative connection with the metering unit and which can be coupled to the propulsion element for receiving unit for dispensing the product.
  • tubular bags or film cartridges called are particularly suitable for viscous or pasty masses, however, in contrast to known cartridges or similar solid-walled containers very little material is required for the shell of the tubular bag.
  • Tubular bags are usually made from a film tube. After the filling process, the ends of the tube are closed like a lint. Usually clamps, clips or adhesive or welding seams are used.
  • FIG. 1 shows a side view of a device according to the invention with a handle and a mounted receiving unit
  • FIG. 2 shows a partially cutaway side view of the device according to the invention from FIG. 1 with a handle and an exchanged receiving unit
  • FIG. 3 shows a perspective sectional view of the device from FIG. 1 along the section line A-A
  • FIG. 4 shows a partially cut-away rear perspective view of the device of FIG. 1,
  • FIG. 5 shows a sectional view of the device from FIG. 1 along the section line B-B
  • FIG. 6 shows a partially sectioned side view of an alternative embodiment of a device according to the invention with a handle and a mounted receiving unit
  • FIG. 7 shows a partially sectioned side view of a further alternative embodiment with a handle and a mounted receiving unit, Henkel AG & Co KGaA H 07837 PCT
  • FIG. 8 shows the device from FIG. 8 with pivoted receiving unit relative to the handle
  • FIG. 9 shows the device from FIG. 8 with the receiving unit removed
  • FIG. 10 shows the receiving unit from FIG. 8 with the handle and an exchanged receiving unit.
  • the device shown in the figures for dispensing a product from a container is used as a tubular bag gun and is particularly suitable in the construction and sanitary area for the output of plastic jointing and sealing compounds.
  • Containers filled with the product to be dispensed are, in particular, tubular or bag-like containers, so-called film cartridges or tubular pouches for the preparation of viscose or pasty masses.
  • film cartridges or tubular pouches for the preparation of viscose or pasty masses.
  • the use of such containers is particularly advantageous because very little material is needed for the envelope of the container, in contrast to other known forms such as solid cartridges.
  • the device shown in Figure 1 has a handle 100, which provides an operating and management possibility of the device for the user.
  • the handle 100 includes a handle portion 1 13, which may be provided with anti-slip means or may have an ergonomic shape to provide the user with a secure grip when working with the device.
  • the handle 100 is provided with a support portion 114 on which an assembly consisting of a cavity-containing receiving unit 200 for the container and a propelling element not shown for discharging the product within the receiving unit 200.
  • the receiving unit 200 is releasably connected to the handle 100.
  • the receiving unit 200 has a hollow cylindrical shape and serves to receive a container, not shown, filled with the product to be dispensed. The product is dispensed at a delivery end 204 of the receiving unit 200.
  • a metering device 101 is provided on the handle 100, by means of which the user can regulate the output of the product contained in the container.
  • it is a pneumatically acting device, wherein the output of the product is made possible by the use of compressed air.
  • a compressed air connection 105 is provided on the handle 100.
  • the user can connect a pressure medium, for example a compressor, to this compressed air connection 105.
  • a pressure regulator 104 is attached to the handle 100.
  • a manometer 103 provided on the handle 100, the user can Henkel AG & Co KGaA H 07837 PCT
  • the metering unit 101 can be operated via an actuating lever 102, which is attached to the handle 100 and can be pivoted in the direction of the handle 100.
  • the output of the product in the container can be regulated.
  • the propellant element not shown, is provided for dispensing the product, which can be displaced within the receiving unit 200.
  • the receiving unit 200 has at the discharge end 204 on a cap 205.
  • This cap 205 is connected in the present embodiment via a screw thread with the cylindrical receiving unit 200 and has a concentric with the hollow cylindrical shape of the receiving unit 200 opening.
  • the product can be dispensed from the container located in the receiving unit 200 via this opening.
  • a nozzle not shown, may be mounted between the cap 205 and the receiving unit 200 to facilitate product dispensing and dispensing fine beads or beads to product.
  • the same At the end of the receiving unit 200 opposite the delivery end 204 of the receiving unit 200, the same has an abutment side 206. With the stop side 206, the receiving unit 200 bears against a stop region 123 of the handle 100.
  • the stop region 123 is provided on the connection region 122 of the handle 100, with which an operative connection between the dosing unit 101 of the handle 100 and the receiving unit 200 for dispensing the product can be produced.
  • a locking means 115 is provided on the handle 100.
  • FIG. 2 shows a partially cutaway side view of the device according to the invention from FIG. 1 with a handle 100 and an exchanged assembly with a receiving unit 200, which has a larger diameter than the receiving unit 200 shown in FIG. Due to the larger size of the receiving unit 200 larger container can be used with a larger product content, so that you can work longer with the device without a deflated container must be replaced with a new one.
  • the receiving unit 200 has a cavity 201 which serves to receive the product-filled container.
  • a drive element 209 is arranged in the cavity, which can be moved to output the product within the cavity 201.
  • the propulsion element 209 is substantially cylindrical. In this case, the diameter is dimensioned such that the drive elements 209 with the inner wall of the cavity 201 seals tightly.
  • mechanical sealing means can additionally be provided on the drive element 209 and / or fats or oils are used as sealant between the drive element 209 and the cavity wall Henkel AG & Co KGaA H 07837 PCT
  • a container is inserted into the space between discharge end 204 and drive element 209 and fixed by means of the closure cap 205 and / or a nozzle, not shown.
  • the receiving unit 200 has a guide carriage 202 with guide rails 203.
  • the handle 100 in turn has a corresponding guide groove 121 into which the guide carriage 202 can be inserted with the guide rails 203.
  • For mounting the receiving unit 200 on the handle 100 of the guide carriage 202 is brought into engagement with the guide rails 203 with the guide groove 121 and the receiving unit 200 is moved relative to the handle 100 in the direction of connection portion 122 of the handle 100 that the abutment side 206 of the receiving unit 200 at abuts the stopper portion 123 of the handle 100.
  • a means for linear storage is provided, which allow a translational relative movement between the receiving unit 200 and the handle 100 for mounting or dismounting of both components.
  • the guide rails 203 prevent loosening of the connection between the handle 100 and receiving unit 200 by avoiding lifting of the receiving unit 200 of the handle 100.
  • the locking means is used 1 15 as a locking means to fix the receiving unit 200 in the mounted state on the handle 100 and to prevent loosening of the connection between the receiving unit 200 and handle 100.
  • the locking means 115 assumes the function of a bearing which fixes the receiving unit 200 counter to the direction of displacement 210 of the driving element 209 displaceably mounted within the receiving unit 200 in order to dispense the product.
  • the handle 100 has substantially parallel to the guide groove 121 extending end edges 119 with chamfers 120, which are aligned in the mounted state of the receiving unit 200 on the handle 100 with the lateral surface of the receiving unit 200. In this way, the means for linear storage between the handle 100 and receiving unit 200, the guide groove 121, the guide carriage 202 and the guide rails 203 can be protected from contamination.
  • the receiving unit 200 may be equipped with a guide groove, not shown, and the handle 100 with a corresponding, in the guide groove of the receiving unit 200 can be introduced, not shown guide carriage.
  • This guide carriage of the handle 100 can also be equipped with guide rails, not shown.
  • Figure 4 shows a partially cutaway rear perspective view of the device of Figure 1, which discloses the coupling between the handle 100 and the receiving unit 200, which provides an operative connection between the metering unit 101 of the handle 100 and the driving element 209 of the receiving unit.
  • the dosing unit 101 includes one within the handle 100 Henkel AG & Co KGaA H 07837 PCT
  • the manifold neck 107 is designed T-shaped and is attached to fix the position in the connection area 122 on a projecting from this fixing member 124. Further, the manifold neck 107 has a coupling member 108, which faces towards receiving unit 200 and tapers in this direction.
  • the receiving unit 200 has an opening 207, into which when mounting the receiving unit 200 on the handle 100, the tapered coupling member 108 can be introduced. Thus, the opening 207 of the receiving unit 200 provides the corresponding coupling counterpart to the coupling member 108 of the handle.
  • the opening 207 and the coupling member 108 form a coupling to provide an operative connection between the metering unit 101 of the handle 100 and the driving element 209 of the receiving unit 200.
  • a circumferential sealing ring 208 is provided at the opening 207.
  • the coupling member 108 or the opening 207 can be compensated.
  • the released via the actuating lever 102 pressure medium passes via the pressure line 106 and the manifold neck 107 via the covered by the opening 207 and the coupling member 108 clutch in the receiving unit 200 and acts on the driving element 209 that this is moved within the receiving unit 200.
  • FIG. 5 shows a sectional view of the device from FIG. 1 along the section line BB through the locking means 115.
  • the locking means 115 has a bore with which the same is displaceably mounted in the interior of the handle 100 on a pin-shaped extension 117 of the handle 100 arranged transversely to the handle 100 is. Between the inner wall of the handle 100 and the locking means 115, a prestressed spring 118 is provided on the pin-shaped extension 117, which presses the locking means 115 in the direction of the opposite wall side of the handle 100.
  • the locking means 115 has on its side facing the receiving unit 200 side projections 1 16, which engage in the assembled state of the receiving unit 200 in the guide groove of the handle 100 and in a not shown interruption of the guide rails 203 of.
  • the projections 116 are arranged such that they engage in the resting state of the locking means 115 in the guide groove.
  • the user To mount a receiving unit 200, the user must therefore press the outside of the handle 100 projecting portion of the locking means 115 in the direction of the handle 10 against the tension of the spring 118, so that the projections 116 release the guide groove for the guide rails 203. Subsequently, the receiving unit 200 can be pushed onto the handle 100.
  • the interruption of the guide rails 203 is provided such that the locking means 115 engages automatically by the tension of the spring 117 upon reaching the final assembly position of the receiving unit 200 on the handle 100 in the guide groove and the interruption and thus fixes the receiving unit 200 on the handle 100.
  • the user Before disassembly, the user must again the protruding outside of the handle 100 portion of the locking means Henkel AG & Co KGaA H 07837 PCT
  • FIG. 6 shows a partially cutaway side view of an alternative embodiment of a device according to the invention with a handle 100 and a mounted receiving unit 200.
  • the displacement of the driving element 209 within the receiving unit 200 takes place by means of a mechanical advancing means, a displaceable cylindrical piston rod 109 it is both rigid and flexible.
  • propulsion systems are suitable, which are also used in commercial cartridge or Schlauchlessnesspistolen used.
  • An appropriate such propulsion system through the metering unit 101 is described for example in DE 102006037623.
  • the mounting of the receiving unit 200 on the handle 100 is synchronous to the device described in Figure 1 via a guide and a guide carriage with guide rails.
  • a locking means 115 is provided for a fixation of the receiving unit 200 on the handle 100.
  • the receiving unit has an opening 207, in which during assembly of the receiving unit 200 on the handle 100, the piston rod 109 is inserted.
  • the drive element 209 arranged in the receiving unit is subsequently connected via a coupling to the piston rod 109 in order to provide an operative connection between the dosing unit 101 and the drive element 209.
  • the drive element 109 has a sleeve pointing in the direction of the piston rod 109 into which the piston rod 109 is inserted.
  • the piston rod 109 has in a recess a shape of a ball 111 formed coupling member which is biased by a spring element 1 10 such that it is radially pressed with respect to the piston rod 109 to the outside, so that it partially from the surface of the piston rod 109th protrudes.
  • the ball 111 passes into a circumferential coupling groove 112 of the drive element 209 so that a positive connection between the piston rod 109 and the drive element 209 and an operative connection between the metering unit 101 and the drive element 209 is formed.
  • the piston rod 109 is moved by means of the dosing unit 101 in the direction of the dispensing opening of the receiving unit 200 and thus shifts the drive element 209 within the receiving unit 200.
  • the locking means 115 serves not only as a locking means to the receiving unit 200 in the mounted state on the handle 100 fixes but also takes over the task of a bearing, which fixes the receiving unit 200 against the displacement direction of the output of the product within the receiving unit 200 slidably mounted driving element 209.
  • FIG. 7 shows a partially cutaway side view of a further alternative embodiment with the handle 100 with a dosing unit 101 and the mounted receiving unit 200 with the drive element 209.
  • the device has a joint which consists of a first joint Henkel AG & Co KGaA H 07837 PCT
  • the receiving unit 200 can be pivoted relative to the handle 100.
  • the hinge is configured to allow separation of the receiving unit 200 and handle 100 via the hinge.
  • the receiving unit 200 has an opening 207 into which a coupling member 108 of the handle can be introduced.
  • a displaceable locking means 1 15 is provided, which prevents unintentional pivoting of the receiving unit 200 relative to the handle 100.
  • the bearing which fixes the receiving unit 200 relative to the handle 100 against the direction of displacement 210 of the drive element 209 is realized by the joint.
  • FIG. 8 shows the device from FIG. 8 with pivoted receiving unit 200 relative to the handle 100 around the joint.
  • the locking means 115 has been solved.
  • the coupling member 108 of the handle 100 no longer engages in the opening 207 of the receiving unit 200, so that the operative connection between the receiving unit 200 and the handle 100 is separated.
  • the driving element 209 is provided within the receiving unit 200. Receiving unit 200 and driving element 209 form the interchangeable module.
  • FIG. 9 shows the device from FIG. 8 with the receiving unit 200 with the drive element 209 removed.
  • the snap connection between the second hinge area 211 and the first hinge area 125 has been released.
  • the receiving unit 200 with driving element 209 can now be exchanged for a further, for example. With a larger diameter.
  • FIG. 10 shows the receiving unit from FIG. 8 with the handle 100 and an exchanged assembly consisting of receiving unit 200 and driving element 209.
  • a receiving unit 200 with a larger diameter and a driving element 209 adapted to the larger diameter is used in comparison to FIG , With such a receiving unit 200 larger containers contained in the product to be dispensed can be processed.
  • the second hinge portion 211 of the receiving unit 200 has been connected to the first hinge portion 125 of the handle 100, and the receiving unit 200 has been pivoted about the resulting joint relative to the handle 100.
  • the locking means 115 is in engagement with a groove of the receiving unit 200.
  • the coupling member 108 of the handle 100 with the opening 207 of the receiving unit 200 is an operative connection between the dosing unit 101 and driving element 209th

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Devices For Dispensing Beverages (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)

Abstract

L’invention concerne un dispositif pour dispenser un produit provenant d’un contenant, qui permet d'assurer un travail ergonomique avec des contenants de différentes dimensions. Le dispositif comporte à cet effet une unité de réception (200) présentant une cavité (201) pour le contenant, un élément d'avancement (209) pour faire sortir le produit se trouvant dans l’unité de réception (200) et une poignée (100) reliée à l’unité de réception (200) et munie d'une unité de dosage (101), la jonction entre la poignée (100) et l’unité de réception (200) étant amovible pour garantir une possibilité d’échange de l’unité de réception (200). Une pièce d’accouplement (108) de la poignée (100) et une pièce d’accouplement (207) de l’unité de réception (200) assurent un accouplement au niveau de la poignée (100) à l’état monté de l’unité de réception (200) pour permettre une coopération entre l’unité de dosage (101) de la poignée (100) et l’élément d'avancement (209) dans l’unité de réception (200).
PCT/EP2009/057091 2008-06-16 2009-06-09 Dispositif distributeur WO2009153190A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP09765770.4A EP2303470B1 (fr) 2008-06-16 2009-06-09 Dispositif distributeur

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102008028246.4 2008-06-16
DE102008028246.4A DE102008028246B4 (de) 2008-06-16 2008-06-16 Ausgabevorrichtung

Publications (1)

Publication Number Publication Date
WO2009153190A1 true WO2009153190A1 (fr) 2009-12-23

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PCT/EP2009/057091 WO2009153190A1 (fr) 2008-06-16 2009-06-09 Dispositif distributeur

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EP (1) EP2303470B1 (fr)
DE (1) DE102008028246B4 (fr)
WO (1) WO2009153190A1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102013207021A1 (de) 2013-04-18 2014-10-23 Henkel Ag & Co. Kgaa Adapter für eine Ausgabevorrichtung

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US2692706A (en) 1950-07-27 1954-10-26 Wiksten Carl Jay Air pressure caulking gun
US3319839A (en) 1964-07-15 1967-05-16 Cox Patrick Clement Dispensing device for liquid and semi-liquid substances
DE2216598A1 (de) * 1972-04-06 1973-10-11 Sika Ag Pistole zum auspressen einer pastoesen masse
GB1589381A (en) 1977-07-18 1981-05-13 Cox Newbury Ltd Pneumatic dispensers for viscous materials
US4273270A (en) 1979-08-21 1981-06-16 Kray George C Trigger actuated air pressure dispensing gun
US4594073A (en) * 1984-10-31 1986-06-10 Stine Charles R Aspiration syringe holder
DE8620379U1 (de) 1986-07-30 1986-09-18 Ara-Werk Krämer GmbH + Co, 7441 Unterensingen Vorrichtung zum strangförmigen Austragen von pastösen Massen
EP0543776A1 (fr) * 1991-11-18 1993-05-26 Wilhelm A. Keller Crochet de sécurité pour le verrouillage d'une cartouche sur un applicateur à main
WO1997048498A2 (fr) * 1996-06-14 1997-12-24 Cossette Andre Pistolet applicateur a produit scellant
DE29919066U1 (de) * 1999-10-29 1999-12-30 Lee, Arnold, Taipeh/T'ai-pei Klemm- und Auftragsvorrichtung
US20050023301A1 (en) 2003-07-31 2005-02-03 Danny Rumrill Caulking gun
US6938799B1 (en) * 2003-08-11 2005-09-06 Kenneth R. Berntsen Sealant/adhesive gun
EP1762507A2 (fr) 2001-06-14 2007-03-14 Hosokawa Yoko Co., Ltd. Cartouche pour produits fluides et appareil de distribution pour une telle cartouche

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DE19916887A1 (de) * 1999-04-14 2000-10-19 Arthur Zwingenberger Handgerät zum Mischen und Ausbringen einer viskosen Flüssigkeit
ATE407637T1 (de) * 2005-12-06 2008-09-15 3M Innovative Properties Co Austragkartusche mit griff
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US3319839A (en) 1964-07-15 1967-05-16 Cox Patrick Clement Dispensing device for liquid and semi-liquid substances
DE2216598A1 (de) * 1972-04-06 1973-10-11 Sika Ag Pistole zum auspressen einer pastoesen masse
GB1589381A (en) 1977-07-18 1981-05-13 Cox Newbury Ltd Pneumatic dispensers for viscous materials
US4273270A (en) 1979-08-21 1981-06-16 Kray George C Trigger actuated air pressure dispensing gun
US4594073A (en) * 1984-10-31 1986-06-10 Stine Charles R Aspiration syringe holder
DE8620379U1 (de) 1986-07-30 1986-09-18 Ara-Werk Krämer GmbH + Co, 7441 Unterensingen Vorrichtung zum strangförmigen Austragen von pastösen Massen
EP0543776A1 (fr) * 1991-11-18 1993-05-26 Wilhelm A. Keller Crochet de sécurité pour le verrouillage d'une cartouche sur un applicateur à main
WO1997048498A2 (fr) * 1996-06-14 1997-12-24 Cossette Andre Pistolet applicateur a produit scellant
DE29919066U1 (de) * 1999-10-29 1999-12-30 Lee, Arnold, Taipeh/T'ai-pei Klemm- und Auftragsvorrichtung
EP1762507A2 (fr) 2001-06-14 2007-03-14 Hosokawa Yoko Co., Ltd. Cartouche pour produits fluides et appareil de distribution pour une telle cartouche
US20050023301A1 (en) 2003-07-31 2005-02-03 Danny Rumrill Caulking gun
US6938799B1 (en) * 2003-08-11 2005-09-06 Kenneth R. Berntsen Sealant/adhesive gun

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DE102008028246B4 (de) 2015-10-29
EP2303470A1 (fr) 2011-04-06
DE102008028246A1 (de) 2009-12-24
EP2303470B1 (fr) 2016-03-23

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