EP2593240B1 - Materialausgabesystem - Google Patents

Materialausgabesystem Download PDF

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Publication number
EP2593240B1
EP2593240B1 EP11726955.5A EP11726955A EP2593240B1 EP 2593240 B1 EP2593240 B1 EP 2593240B1 EP 11726955 A EP11726955 A EP 11726955A EP 2593240 B1 EP2593240 B1 EP 2593240B1
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EP
European Patent Office
Prior art keywords
container
housing
stopper
cutting
teeth
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EP11726955.5A
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English (en)
French (fr)
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EP2593240A1 (de
Inventor
Wadeeh Zahr
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Unique Solutions Rai Ltd
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Unique Solutions RAI Ltd
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Priority claimed from PCT/IL2010/000323 external-priority patent/WO2010122558A1/en
Application filed by Unique Solutions RAI Ltd filed Critical Unique Solutions RAI Ltd
Priority to PL11726955T priority Critical patent/PL2593240T3/pl
Publication of EP2593240A1 publication Critical patent/EP2593240A1/de
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Publication of EP2593240B1 publication Critical patent/EP2593240B1/de
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    • 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
    • B05C17/0106Hand 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 with means for longitudinally cutting container walls during relative displacement of the piston and its cooperating container

Definitions

  • the present invention relates to a device for dispensing viscous material out of a container.
  • Viscous substances such as silicon glue are often used in construction for sealing crevasses or adhering surfaces to each other. These substances are typically applied through utensils such as a caulk gun, which enable pushing the substance out of the container in which it is stored in order to apply it onto a surface or to fill in crevasses.
  • Conventional hand-held material dispensing devices rely on the action of a piston to push paste-like materials out of a tube's nozzle.
  • the movement of the piston may be induced by employing mechanical means such as a trigger or a spring.
  • a rod is used to push forward the moveable cap of standard containers. The rod needs to be as long as the longest commercially available container, and positioned behind the container's cap.
  • US 5,887,765 A adds a biasing mechanism to relieve the back pressure inside the caulk tube while maintaining the position of the piston during a given trigger stroke even after the trigger has been released. This mechanism, however, does not contribute to the reduction of size or weight of such a caulk gun.
  • US 4,386,717 A describes a device for measured discharge of viscous substance which appears to be relatively compact. This device, however, requires that the container incorporates an expandable hoselike member configured to couple with a propellant or expanding medium which forces the substance through an outlet, and is not compatible with standard containers.
  • One way to reduce the overall length of caulk guns with containers fitted thereto is to cut the containers' walls behind the piston as the piston advances along the interior of the container.
  • the cutting may be accomplished by urging a blade against the container walls during the employment of the caulk gun.
  • JP S63-185475 A is directed to a caulk gun with a cutting blade, in the rear of a pressing plate, both of which advance from the back to the front along a cartridge.
  • the gun has a mechanism for holding a cartridge vessel, and a feeding mechanism is provided for moving the pressing plate, the vessel cutting blade advancing in cooperation with the pressing plate. Contents in the vessel are discharged by the advancement of the pressing plate.
  • US 6,640,998 A describes a caulking gun having a hand-held trigger operating clamp with a blade mounted on the clamp whereby the clamp and a bar cooperate to cause a cartridge containing caulk to move axially against a fixed plunger mounted on the clamp and the blade servers the cartridge containing caulk to permit the plunger to be advanced the length of the cartridge containing caulk.
  • US 3,606,085 A depicts a dispensing gun with a handle mounting a support at its upper end, a thrust member mounted on the support and rising thereabove for engagement and cooperation with a piston member for expressing the contents of a substance container, guide means in the support, a carriage moveable through the guide means and normally arranged to extend forwardly of the handle, a container holder mounted on the forward part of the carriage and arranged so that an outlet nozzle end part of the container may be held and supported between the forward container holder and the thrust member, a moveable trigger associated with the handle, a carriage moving means associated with the carriage and operable by the trigger to move the carriage in the guide means a desired distance, the construction providing that squeezing the trigger into or towards the handle causes the carriage moving means to move the carriage with the container a prescribed distance relative to the thrust member associated with the piston member for the container in delivering and dispensing a desired amount of substance from the container.
  • US 2008/0006654 A1 describes a device for dispensing flowable materials such as caulk, including for example a cartridge and a dispenser with: a drive mechanism for advancing a pusher forward, the drive mechanism having at least one fulcrum positioned forward of the pusher during operation of the dispenser; a cutter that cuts a slit in a wall of the cartridge for purposes of dispensing a flowable material, and a winch for driving the dispensing of a flowable material from the cartridge.
  • WO 2007/144434 A1 is directed to a sealant gun or like device that includes a hollow cylindrical barrel containing sealant or other viscous material, a plunger located in the barrel, and a drive mechanism for effecting relative axial movement between the plunger and the barrel to eject the material from a nozzle at the front of the barrel.
  • the drive mechanism includes means for engaging the barrel progressively along its length to draw the barrel rearwardly relative to the drive mechanism and plunger.
  • engaging means described therein are for progressively separating at least one longitudinal strip of the barrel to provide a slot through which a part of the drive mechanism can project and the drive mechanism includes a cutting means for separating the longitudinal strip.
  • the drive mechanism is described to be for example include a support, a grip ring loosely surrounding the barrel at the front of the support, means resiliently biasing the grip ring and support apart in the axial direction of the barrel, and an actuator for repeatedly tilting the grip ring to grip the barrel, moving the grip ring rearwardly against the resilient bias while the barrel is gripped, and releasing the grip ring to allow it to be moved forwardly along the barrel by the resilient bias, thereby to draw the barrel incrementally in a rearward direction.
  • Means for engaging with the barrel is described to preferably include an endcap for locating at the front of the barrel, and a cable connecting the endcap to the drive mechanism.
  • Cutting means is described to preferably include at least one cutting wheel, the cutting wheel acting on the surface of the barrel to cut the surface of the barrel to be received, and preferably, the cutting means include at least one internal cutting wheel and at least one external cutting wheel, the at least one internal cutting wheel mounted within the housing acting on the internal surface of the barrel, the at least one external cutting wheel mounted within the housing acting on the external surface of the barrel.
  • the device described in WO 2007/144434 A1 may be considerably shorter than the length of the uncut barrel, the force employed to engage and pull the strip, together with additional forces employed to perform the additional operations occurring during the strip pulling (such as extrusion of viscous material), require the device to be unwieldy massive.
  • WO 2007/144434 A1 discloses a sealant gun including a hollow cylindrical barrel containing sealant or other viscous material.
  • a plunger is located in the barrel.
  • a drive mechanism is provided for effecting relative axial movement between the plunger and the barrel to eject the material from a nozzle at the front of the barrel.
  • the present invention provides a device for dispensing viscous material out of a container as defined by claim 1.
  • Advantageous embodiments are indicated in further claims.
  • Figure 1 illustrates a standard tubular container 10 which can be mounted onto paste dispensing devices such as glue guns, dispensing guns for sealants or the like.
  • Standard containers typically have a nozzle 11 with an aperture 12 at the front 13 from which the material 16 is dispensed and a rear side 15 having a moveable cap 14.
  • the moveable cap 14 When the container is full, the moveable cap 14 is located at the back end 17 of the container 10. Force exerted upon the container's movable cap 14 causes the cap to move forward within the container 10, compressing and squeezing the material 16 towards the nozzle 11. Material 16 stored within the container 10 is pushed out of the container through the nozzle aperture 12.
  • the rear side of the container emptied of material 16 will be referred to as the empty tail 15 of the container 10.
  • the empty tail 15 can grow in length as more material is dispensed out of the container 10, and can become shorter if cut off.
  • a cutting-pushing element may comprise a push plate and a blade where the blade is positioned behind the push plate and is configured to follow the push-plate as the cutting-pushing element is moved.
  • Means for coupling the push plate and the blade together may vary.
  • FIG. 2A illustrating a perspective view of an embodiment of a toothed cutting-pushing element 40 comprising a push plate 42, a blade 44 positioned behind the push plate, and a connector element 46 assembled on a cutting-pushing base 48.
  • the push plate 42 may be of various shapes and sizes, enabling it to be inserted into containers whose cross sections are of different shapes.
  • Push plate 42 is coupled to the blade 44, through a connector element 46.
  • the blade is positioned to follow the push plate.
  • blade 44 has a sharp edge 45 for cutting container walls and teeth 47 behind the sharp edge 45, and facing away from the push plate (not shown).
  • Figure 2C illustrates a side view of a toothed cutting-pushing element coupled with a trigger 32.
  • FIG. 3A showing a view of a compact viscous material dispensing device 300, in accordance with an embodiment and Figures 3B , 3C showing a rear view and a front view respectively of the embodiment ready for operation, loaded with a standard container 10.
  • the device 300 comprises a housing 360, a housing base 320 comprising a groove 322, a force transmitting mechanism 330 with a retracting trigger 332 and a handle 334, and a toothed cutting-pushing element 340.
  • the cutting-pushing element configured for the device 300 also includes a cutting-pushing base, not shown in the figure but shown in Figure 2A as base 48, that can move along the groove 322.
  • the retracting trigger 332 is configured to push cutting-pushing element 340, causing the push plate base to move forward along the groove 322 of the housing base 320.
  • a spring (not shown) in the force transmitting mechanism 330 is compressed when the trigger 332 is squeezed, the squeezing extent determining the extent to which the cutting-pushing element 340 with a push plate 342 can travel within the groove 322 of the housing base 320.
  • the push plate 342 pushes the moveable cap of the container towards the container nozzle 11, and the blade 344 cuts a slit 19 in the empty tail 15 of the container 10 where material has been squeezed out.
  • the slit 19 created in the container 10 enables further forward insertion of the push plate 342 into the container 10, thus extruding material out of the container 10.
  • Stopper 362 is configured to clasp the tube and secure it within the container housing 360 during at least some of the time the trigger 332 is squeezed: for example, the bottom part of the stopper 362 may not be bound to the housing base 320 but rather be connected to the housing 360 such that it is free to move backwards and forwards.
  • the stopper shape and dimensions, together with a lower aperture edge 363 profile, allow to bind the container 10 by the stopper 362 being urged backwards, for example by a spring (not shown) in the groove 332, coupled to the housing base 320 in front of the stopper 362 and to the front (nozzle) side of stopper 362, such that the container is not appreciably moved forwards during the trigger squeezing.
  • the teeth engage the container 10 and the spring coupled to the trigger 332 urges the container 10 backwards, the container not being bound by the stopper 362 from moving backwards.
  • release of the container 10 from the device 300 may be performed by simply forcing the stopper 362 forwards (toward the nozzle 11).
  • the housing for holding the container does not include a nozzle support and may be shorter than the original length of the container 10.
  • containers of various diameters may be used by the device 300.
  • Figure 4A showing a side view of a very short manual embodiment of a viscous material dispensing device 400.
  • the embodiment includes a toothed cutting-pushing element ( Figure 4B ), housing 460, a neck 464, a release ring 466 and a force transmitting mechanism 430.
  • the housing 460 is configured to accommodate tubular viscous material container of various sizes, as will be explained below.
  • the internal part of the neck 464 comprises a thread for screwing the release ring 466 onto the housing 460.
  • the force transmitting mechanism 430 may be used to manually apply force on the cutting-pushing element 440 within the housing 460.
  • the mechanism 430 may be coupled to the cutting-pushing element 440 similar to the coupling shown in Figure 2C .
  • the mechanism 430 comprises a static part 432 and a moving part 434 coupled together via a coupling pin 453.
  • a powerful v-shaped spring (not shown) has one arm in the static part 432 and one arm in the moving part, and a coil held by the pin 453.
  • the spring in the mechanism serves to urge the container backwards when the trigger 432 is released.
  • FIG. 4B showing a rear view of the very short manual embodiment of the viscous material dispensing device 400.
  • the rear view shows the static part 432 and the coupling pin 453 of the mechanism 430.
  • the rear view further shows the back of the cutting-pushing element 440 assembled within the housing 460, comprising a push plate 442, a blade 444, a connector element 446 assembled on a cutting-pushing base 448 and at least one tooth (not shown) pointed towards the rear.
  • FIG. 4C showing a front view of the very short manual embodiment of a viscous material dispensing device 400.
  • the front view shows the front side of the push plate 442 (black) and an embodiment of a stopper element 462 (black) connected to the container housing 460.
  • 470 is a space between the push plate 442 and the stopper element 462, where a tubular container (such as10 in Figure 1 ) can be inserted into the device 400.
  • Figure 4D illustrates the embodiment of the stopper element 462 shown in Figure 4C .
  • This embodiment comprises a plurality of teeth 461 (461a and 461b are marked).
  • the teeth are flexible, such that they can bend more or less towards the inside in the container housing (460 in Figure 4A , 4B and 4C ).
  • the teeth 461 are urged by the release ring inwards.
  • the container 10 is inserted into the container housing 460 from the front of the device 400, and then the release ring 466 is screwed outwards from the housing 460, such that the stopper element 462 straightens outward until teeth 461 entrench in the container 10.
  • the extraction of a tubular container (10 in Figure 1 ) from this embodiment involves screwing in the release ring (466 in Figure 4A ) into the housing 460.
  • the release ring 466 pushes the teeth 461 of the stopper element 462 towards the inside of the housing 460, thus creating sufficient space (470 in Figure 4C ) to allow the container to be extracted.
  • the device is both very powerful and very lightweight and compact. Its length may be as little as 8cm and its weight as little as 150 grams. Use of strong plastics such as polycarbonate for most of the parts (aside from the teeth and blade) allows to make a very strong and light device.
  • the stopper 462 may easily be replaced with a stopper with more blunt or smaller teeth 461, to better suit some containers; for example, containers comprising thin metallic walls are typically more easily accidentally punctured than thermoplastic containers and may require blunt teeth 461.
  • a flexible friction element 565 fits inside a flexible stopper 562.
  • the front part 564 of the housing 560 slopes in an angle similar to the angle of the friction element 565, which is placed in the front of the housing 560.
  • a big spring 568 is placed behind the stopper 562 and acts against the stopper 562 to push it forward, toward the nozzle (when a container is properly mounted on the housing 560).
  • a container (not shown) is mounted in the housing 560, with the nozzle of the container extending out of the housing 560, and is held firmly in place by the stopper 562 - the big spring 568 urges the stopper 562 forwards, thus closing the stopper 562 (the stopper 562 and the friction element 565 have each a slit at the bottom) until the stopper 562 can no longer move forwards (the inner diameter of friction element 565 assuming the outer diameter of the container).
  • the friction element 565 is for example a strip of rubber coated with coarse sandpaper coating, to prevent the container from moving during operation of the device 500.
  • the trigger 532 has cogs 533 that engage matching cogs 549 on the cutting-pushing element 540.
  • the element 540 has a push plate 542 at the front that can push the cap of the glue container forward.
  • the element 540 also has a blade 544 behind the push plate 542, that cuts lengthwise the container's wall, in the direction of the nozzle, while the element is pushed forward. The container is held in place during the pushing by the stopper 562 and friction element 565.
  • the blade 544 on the inner body has sharp teeth 547 facing backwards - these teeth 547 engage the walls of the container, helping to pull the container back with the element 540.
  • the part of the container extending out of the front of the housing 560 becomes shorter during operation, by the container being pulled back after each release of the trigger 532.
  • the device can work without the big spring 568 (device not shown), albeit less effectively.
  • the stopper may move forward and assume a position along the front part, such that it both holds the container firmly in place during the squeezing of the trigger, and is essentially held in place during the release of the trigger.
  • Figure 6 shows a similar embodiment 600 with a container 10 mounted thereon.
  • the stopper has at least one pin 669 extending out from it, that is inserted each into a slot 669 in the front part 664 of the housing 660, the slot 669 allowing movement of the stopper back and forth along the slot 669, but preventing excessive backward movement of the stopper, beyond the front part 664, such that the stopper is not held by the housing 660.
  • the embodiment 600 further has a handle 680 similar in role to the release ring 466 in embodiment 400, except that in this embodiment 600 the clasping of the container walls is automatic.
  • the handle 680 has a handle 682, a hole 683 accommodating the stopper pin 669, another hole (not visible) accommodating a pin 686 extending out of the housing front 664, and arms 684 capable of clasping a ridge 688 on the housing 660. Pushing the handle 682 away from the nozzle 11 allows the cartridge 10 to be released from the grasp of the stopper.
  • a viscous material dispensing device can be used in a variety of fields, not limited to construction.
  • a small embodiment of the viscous material dispensing device may be used in dental procedures when material needs to be dispensed into a patient's mouth.
  • the mouth is a confined space, and reduction of the size of the utensil used to apply viscous material into a patient's mouth may be very useful.
  • the size of the container may be very small.
  • Embodiments of the compact viscous material dispensing device for medical and dental use may be used to replace other viscous material application utensils requiring a push piston such as syringes.
  • the hand-operated trigger may be small and designed to be operable with a finger.
  • the force transmission mechanism could be powered and the trigger may be operable by a push of a button.
  • Medical and dental applications could also be for home use, for example and without limitation dispensing teeth-bleaching material out of a teeth-bleaching material container and into a teeth mold to be applied upon a subject's teeth overnight.
  • Other applications may be used during medical surgery or cosmetic procedures, such as insertion of silicon or Botulinum toxin A to body cavities.
  • compact viscous material dispensing device may be used in cooking and baking, for example for insertion of material such as melted chocolate into dessert cups.
  • Assembling a cutting pushing element on a viscous material dispensing device relieves the need for using a rod to push the cap of a tubular container towards the container's nozzle, enabling a compact design of the dispensing device.
  • the reduction in the dispensing device's size assists in making it lighter in weight and easier to operate in small, confined spaces.
  • Embodiments may be used in various fields, such as but not limited to construction, manufacturing, cooking, baking, cosmetics, dental procedures and other medical uses.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Coating Apparatus (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)

Claims (15)

  1. Vorrichtung (300; 400; 500; 600) zum Abgeben von viskosem Material aus einem Behälter (10), wobei der Behälter eine Düse (11) und eine bewegliche Kappe (14) aufweist, wobei das viskose Material dazwischen angeordnet ist, wobei die Vorrichtung umfasst:
    ein Gehäuse (360; 460; 560; 660), das eine genutete Basis (320) umfasst und zur Aufnahme des Behälters (10) ausgebildet ist;
    ein Schneid-Schiebe-Element (340; 440), umfassend:
    eine Schneid-Schiebe-Basis (48; 448), die verschiebbar in der Nut (322) gehalten ist
    eine Druckplatte (42; 342; 442; 542);
    mindestens eine Klinge (44; 344; 444; 544), die eine scharfe Kante (45) aufweist, und
    mindestens ein Zahn (47; 547),
    wobei die Klingen (44; 344; 544), die Druckplatte (42; 342; 542) und die Zähne (47; 547) an der Basis (48) montiert sind und die Zähne (47; 547) hinter der scharfen Kante (45), von der Druckplatte (42; 342; 442; 542) weg weisend, angeordnet sind,
    ein Kraftübertragungselement (330; 430), das mit der Schneid-Schiebe-Basis (48; 448) gekoppelt ist,
    wobei, wenn der Behälter (10) in dem Gehäuse (360; 460; 560; 660) untergebracht ist:
    ein Bewegen des Schneid-Schiebe-Elements (340; 440) nach vorne in Richtung auf die Düse (11) unter Verwendung des Kraftübertragungselements (330; 430) führt die Druckplatte (42; 342; 442; 542) in den Behälter (10) ein, drückt das viskose Material aus der Düse und schneidet den Behälter in Längsrichtung, und
    ein Bewegen des Schneid-Schiebe-Elements (340; 440) nach hinten, weg von der Düse (11), durch Lösen des Kraftübertragungselements (330; 430), ermöglicht, dass mindestens ein Zahn (47; 547) in den Behälter (10) eingreift und diesen rückwärts in das Gehäuse (15) zieht.
  2. Vorrichtung nach Anspruch 1, wobei das Gehäuse (360; 460; 560; 660) eine Stütze umfasst, die derart konfiguriert ist, um den Behälter (10) während der Bewegung des Schneid-Schiebe-Elements (340; 440) nach vorne innerhalb des Gehäuses (360; 460; 560; 660) im Wesentlichen festzulegen.
  3. Vorrichtung nach Anspruch 1 oder 2, wobei das Kraftübertragungselement (330; 430) einen handbetätigten Auslöser (332; 432; 532) aufweist, der mit dem Schneid-Schiebe-Element (340; 440) und dem Gehäuse (360; 460; 560; 660) gekoppelt ist, und eine erste Beaufschlagungseinrichtung, wobei ein Drücken des Auslösers das Bewegen des Elements nach vorne veranlasst und ein Lösen des Auslösers ermöglicht, dass erste Mittel ein Bewegen des Behälters nach hinten erzwingen.
  4. Vorrichtung nach Anspruch 1, 2 oder 3, die derart konfiguriert ist, dass sie mit einer Hand bedienbar ist.
  5. Vorrichtung nach Anspruch 1, 2, 3 oder 4, wobei die Vorrichtung wesentlich kürzer ist als der Behälter (10).
  6. Vorrichtung nach Anspruch 1, 2, 3, 4 oder 5, wobei die Klingenkante (45) und die Zähne (47; 547) aus Metall bestehen.
  7. Vorrichtung nach Anspruch 3, wobei die Klingenkante (45), die Zähne (47; 547) und erste Feder aus Metall sind.
  8. Vorrichtung nach Anspruch 3, wobei das Gehäuse (360; 460; 560; 660) und der Auslöser aus einem Thermoplast bestehen (332; 432; 532).
  9. Vorrichtung nach Anspruch 3, wobei die Vorrichtung ferner einen Anschlag (462; 562) umfasst, der mit dem Gehäuse (360; 460; 560; 660) verbunden ist und dazu konfiguriert ist, den Behälter zumindest teilweise in dem Gehäuse zu halten während der Auslöser gedrückt wird.
  10. Vorrichtung nach Anspruch 9, wobei der Anschlag (362) eine Öffnung mit einer Kante aufweist, wobei die Kante ein Profil aufweist, der Anschlag (362) mit dem Gehäuse (360) verbunden ist, jedoch frei ist, sich nach hinten und nach vorne zu bewegen, Form und Abmessungen des Anschlags zusammen mit einem Profil der Öffnungskante (363) des Anschlags (362) ein Fassen des Behälters (10) durch den Anschlag (362) ermöglicht, wobei dieser durch zweite Druckmittel in der Nut (322) nach hinten gedrückt wird, zweite Mittel mit der Gehäusebasis (320) gekoppelt sind, so dass der Behälter (10) nicht merklich nach vorne bewegt wird, wenn der Auslöser gedrückt wird.
  11. Vorrichtung nach Anspruch 9, wobei das Gehäuse ferner einen Hals (462) an einem vorderen Teil des Gehäuses (460) aufweist, wobei der Anschlag innerhalb des Halses gehalten ist, sowie einen Freigabering (466), wobei ein innerer Teil des Halses (462) ein Gewinde zum Aufschrauben des Freigaberings (466) auf das Gehäuse (460) aufweist, wobei der Anschlag (462) eine Vielzahl von Zähnen (461) aufweist, die flexibel sind, so dass die Anschlagzähne (461) durch den Freigabering (466) beaufschlagbar sind, wobei zur Befestigung des Behälters (10) in der Vorrichtung (400) der Behälter in das Gehäuse eingeführt wird und dann der Freigabering (466) aus dem Gehäuse herausgeschraubt wird, so dass der Anschlag (462) sich aufrichtet, bis sich die Anschlagzähne (461) in den Behälter (10) eingraben, wodurch eine Bewegung des Behälters (10) nach vorne während der Verwendung des Kraftübertragungselements (430) verhindert wird, wobei sich der Behälter (10) jedoch beim Loslassen des Elementes nach rückwärts bewegen kann, Entnehmen des Behälters (10) aus dem Gerät ein Einschrauben des Freigaberings (466) in das Gehäuse (460) beinhaltet.
  12. Vorrichtung nach Anspruch 11, wobei der Anschlag (462) stumpfe Zähne (461) aufweist, wodurch Behälter (10), die dünne metallische Wände umfassen, nicht von den Anschlagzähnen (461) durchstochen werden.
  13. Vorrichtung nach Anspruch 9, ferner umfassend ein geschlitztes flexibles Reibelement (565), das in einen geschlitzten flexiblen Anschlag (562) in einem vorderen Teil des Gehäuses (560) passt, derart konfiguriert, um zu ermöglichen, dass wenn ein Behälter (10) in das Gehäuse (560) montiert ist und der Anschlag (562) dann in Richtung der Düse (11) des Behälters (10) gebracht wird, der Behälter (10) während der Verwendung des Kraftübertragungselements an Ort und Stelle gehalten wird.
  14. Vorrichtung nach Anspruch 13, wobei das Reibungselement (562) einen Streifen aus elsastomerem Material umfasst, der mit einer Sandpapierbeschichtung beschichtet ist.
  15. Vorrichtung nach Anspruch 13 oder 14, ferner umfassend eine zweite Druckeinrichtung (568), die hinter dem Anschlag (562) angeordnet ist und gegen den Anschlag (562) wirkt, um diesen nach vorne in Richtung der Düse (11) zu drücken.
EP11726955.5A 2010-04-22 2011-04-26 Materialausgabesystem Active EP2593240B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL11726955T PL2593240T3 (pl) 2010-04-22 2011-04-26 Układ dozujący materiał

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
PCT/IL2010/000323 WO2010122558A1 (en) 2009-04-22 2010-04-22 Material dispensing system
PCT/IL2011/000331 WO2011132193A1 (en) 2010-04-22 2011-04-26 Material dispensing system

Publications (2)

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EP2593240A1 EP2593240A1 (de) 2013-05-22
EP2593240B1 true EP2593240B1 (de) 2018-11-28

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EP (1) EP2593240B1 (de)
CN (1) CN103079713B (de)
DK (1) DK2593240T3 (de)
PL (1) PL2593240T3 (de)
WO (1) WO2011132193A1 (de)

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US3606085A (en) 1968-08-26 1971-09-20 Ian Butler Spilman Dispensing gun for pastes and like substances
DE2949368A1 (de) 1979-12-07 1981-06-11 Hilti AG, 9494 Schaan Geraet zum abgeben von ein- oder mehrkomponentenmassen
JPS63185475A (ja) 1987-01-28 1988-08-01 Wakai Sangyo Kk カ−トリツジガン
US5503307A (en) * 1995-03-08 1996-04-02 Wilson; Steven J. Quick release automatic electric caulking gun
US5887765A (en) 1996-08-16 1999-03-30 Dripless, Inc. Caulk gun
WO2000071463A1 (en) 1999-05-25 2000-11-30 Kern Thomas D Caulking gun
US20020108971A1 (en) * 2001-02-12 2002-08-15 Luc Lafond Motor operated caulking gun
WO2007144434A1 (en) 2006-06-16 2007-12-21 Seamus Devlin Disposable dispensing device
US20080006654A1 (en) 2006-07-07 2008-01-10 Lampe John K Caulk gun with cutter

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Also Published As

Publication number Publication date
CN103079713A (zh) 2013-05-01
CN103079713B (zh) 2015-12-16
DK2593240T3 (en) 2019-03-18
EP2593240A1 (de) 2013-05-22
WO2011132193A1 (en) 2011-10-27
PL2593240T3 (pl) 2019-07-31

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