EP2864219B1 - Système d'actionnement à basculement, maintenu par un couvercle, pour un distributeur de mousse - Google Patents

Système d'actionnement à basculement, maintenu par un couvercle, pour un distributeur de mousse Download PDF

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Publication number
EP2864219B1
EP2864219B1 EP13732872.0A EP13732872A EP2864219B1 EP 2864219 B1 EP2864219 B1 EP 2864219B1 EP 13732872 A EP13732872 A EP 13732872A EP 2864219 B1 EP2864219 B1 EP 2864219B1
Authority
EP
European Patent Office
Prior art keywords
dispenser
cap
area
opening
valve
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
EP13732872.0A
Other languages
German (de)
English (en)
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EP2864219A1 (fr
Inventor
Goslin Van Herpen
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.)
Tremco Illbruck Productie BV
Original Assignee
Tremco Illbruck Productie BV
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Filing date
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Application filed by Tremco Illbruck Productie BV filed Critical Tremco Illbruck Productie BV
Priority to PL13732872T priority Critical patent/PL2864219T3/pl
Publication of EP2864219A1 publication Critical patent/EP2864219A1/fr
Application granted granted Critical
Publication of EP2864219B1 publication Critical patent/EP2864219B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/14Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant
    • B65D83/16Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means
    • B65D83/20Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means operated by manual action, e.g. button-type actuator or actuator caps
    • B65D83/205Actuator caps, or peripheral actuator skirts, attachable to the aerosol container
    • B65D83/206Actuator caps, or peripheral actuator skirts, attachable to the aerosol container comprising a cantilevered actuator element, e.g. a lever pivoting about a living hinge
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/14Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant
    • B65D83/44Valves specially adapted therefor; Regulating devices
    • B65D83/46Tilt valves
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/14Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant
    • B65D83/28Nozzles, nozzle fittings or accessories specially adapted therefor
    • B65D83/30Nozzles, nozzle fittings or accessories specially adapted therefor for guiding the flow of spray, e.g. funnels, hoods
    • B65D83/306Actuators formed as a rigid elongate spout

Definitions

  • the invention relates to a system consisting of a cap for attachment to a foam can, generally on a container in which there is a pressurized or acted upon medium, the container having a tilting valve, which is connectable to a container with the sealing part and a the sealing part cooperating valve nozzle comprises, and the cap on the container in the region of the tilt valve is fastened, and a dispenser, which is fastened with a mounting portion through a central opening of the cap on the valve nozzle, so that by a tilting movement of the dispenser, the tilting valve operable is, wherein the inner portion of the opening of the cap and the outer portion of the mounting portion of the dispenser form-locking cooperating portions which in the tilted position of the dispenser relative to the container a positive connection against removal of the dispenser in the axial direction of the tilted position and releasing the Befest Trentsbere Form the donor of the valve nozzle of the tilt valve.
  • a system of such a cap and dispenser is known in the art.
  • the cap is used to attach a commercial spray gun on the container, such as the spray or spray can.
  • the cap may have an external thread on its outer circumference, onto which the spray gun can be screwed with an internal thread arranged in the region of its upstream end.
  • Spray guns are mainly used professionally, require a stable attachment to the container by means of the cap and allow easy replacement of an empty container with a filled container.
  • cap and dispenser are designed so that the dispenser is fastened with its mounting portion through the central opening of the cap on the valve nozzle of the tilting valve provided on the container and a tilting movement of the dispenser for actuating the tilting valve is possible.
  • the present invention has for its object to provide a system consisting of a cap and a dispenser for a spray or spray can, the dispenser can be plugged with its attachment area in a simple manner on the valve nozzle of the tilt valve and removed from this and at Operation of the tilting valve is ensured by tilting the dispenser a secure hold of the dispenser to the valve nozzle.
  • the object is achieved in a system consisting of cap and dispenser of the type mentioned above in that the edge of the opening of the cap and the mounting portion of the Dispensers are designed so that the dispenser in axial alignment with the opening and the container in which the tilting valve is not actuated, with its mounting portion through the opening feasible and attachable to the valve nozzle and is removable from the valve nozzle through the opening.
  • a simple attachment and detachment of the dispenser to or from the valve nozzle is achieved without removing the cap of the container. Due to the positive locking in the position (tilted position) of the dispenser in which the tilting valve is actuated and the medium to be sprayed or injected through the valve nozzle into the inner channel of the dispenser under pressure, however, a secure hold of the dispenser to the valve nozzle when tilting the Donor allows.
  • the dispenser can not detach from it in this position in the axial direction of the tilted valve nozzle.
  • a tilting valve is characterized in that it is opened solely by the tilting movement, so that the inner channel of the dispenser in axial alignment of the dispenser is not under pressure. There is thus no danger of the dispenser being able to detach from the valve nozzle when the tipping valve is not tipped under pressure.
  • the areas of the cap and the attachment area of the dispenser which form a positive connection during the tilting movement of the dispenser are designed so that the inside of the opening of the cap has a radial undercut in the direction of the tilting movement of the dispenser and the dispenser in its attachment area is provided with a projection which engages in fastening the dispenser on the valve nozzle and actuation of the tilting valve by the tilting movement of the dispenser in the undercut.
  • the attachment area of the dispenser may have a groove into which a projection located on the inside of the opening of the cap engages in the tilting movement of the dispenser.
  • the diameter of the opening of the cap is about equal to or greater than the maximum outer diameter of the attachment area of the dispenser.
  • the opening may be formed circular with a constant diameter.
  • the maximum diameter of the opening of the cap can then be approximately equal to or greater than the maximum outer diameter of the attachment area of the dispenser.
  • the inner region of the opening of the cap and the outer region of the attachment region of the dispenser with the cooperating regions are rotationally symmetrical with respect to the longitudinal axis of the opening of the cap.
  • the undercut provided in the above-mentioned embodiment on the inside of the opening of the cap and the protrusion provided on the attachment area of the dispenser may be formed rotationally symmetrical with respect to the longitudinal axis of the opening of the cap.
  • the projection may be formed as an annular flange around the attachment area. The flange may extend circumferentially about the attachment area throughout. It can alternatively be provided with interruptions.
  • the inner portion of the opening of the cap and the outer portion of the mounting portion of the dispenser may be formed with the cooperating portions. that when the cap is mounted on the container and the dispenser is mounted on the valve nozzle and when the dispenser is tilted to actuate the tilt valve, the cooperating regions form positive locking with little or no play.
  • the inner portion of the opening of the cap and the outer portion of the mounting portion of the dispenser may be configured so that the cooperating portions are slidably engaged in tilting movement of the dispenser to actuate the tilting valve to form the positive engagement.
  • the projection on the attachment portion of the dispenser can slidably engage under the undercut of the inner portion of the opening of the cap.
  • the attachment portion of the dispenser has an upstream projecting tubular portion which is press-fit into a downstream projecting tubular end portion of the standard tip valve valve nozzle.
  • the tubular portion of the attachment portion of the dispenser may be formed so that its outer diameter decreases toward the upstream end.
  • tubular region of the attachment region of the dispenser can be designed such that when the dispenser is fastened by pressing fit on the valve nozzle, the dispenser in its tilted position can not be detached from the valve nozzle even without using the cap.
  • the attachment area of the dispenser may have a conical area widening towards its upstream end, at the end of which the area cooperating with the cap to form the positive connection is arranged.
  • the attachment region of the dispenser may have an annular groove open to its upstream end disposed between the conical portion and the tubular portion and adapted to be press-fitted with a downstream projecting tubular end portion of the valve nozzle of a standard tilt valve.
  • the conical portion of the attachment portion of the dispenser may be formed as a tapered tubular portion whose inner diameter increases toward the upstream end.
  • the conical region can thus be adapted to a conical annular flange of the valve nozzle, which bears under prestress on the downstream end side of the sealing part of the tilting valve.
  • the invention further includes the system of a cap and a dispenser according to the embodiments described above, a container in which there is a pressurized or acted upon medium and which has a tilting valve that a container connected to the sealing part and a with the sealing part cooperating valve nozzle, wherein the cap is mounted on the container in the region of the tilting valve and the dispenser is fixed with its mounting portion on the valve nozzle, so that by a tilting movement of the dispenser, the tilting valve is actuated.
  • the invention also extends to a cap for attachment to a container in which a pressurized or acted upon medium is, wherein the container comprises a tilting valve which comprises a sealable part connectable to the container and a valve nozzle cooperating with the sealing part, and the cap on the container in the region of the tilting valve is fastened, wherein a dispenser with a mounting portion through a central opening of the cap on the valve nozzle is fastened, so that by a tilting movement of the dispenser, the tilting valve is actuated, and wherein the inner region of the opening of the Cap has positive engagement means with which in the tilted position of the dispenser relative to the container with the mounting portion of the dispenser, a positive engagement against removal of the dispenser in the axial direction of the tilted position and releasing the attachment region of the dispenser of the valve nozzle is produced, and wherein the inner edge region of the ⁇ ffnun g has a radially inwardly facing portion which extends in the circumferential direction of the opening over an angle smaller than 180 °
  • a cap of the type mentioned above is from the document EP 1 205 403 A1 as well as from the document WO 2011/151295 A1 known.
  • the radially inwardly pointing projections are arranged substantially mirror-symmetrically to the plane in which the tilting movement of a dispenser inserted into the opening and placed on the valve nozzle can take place.
  • the interlocking means is formed in the inner region of the opening of the cap as a radial undercut, in which upon attachment of the dispenser to the valve nozzle and actuation of the valve nozzle by the tilting movement of the dispenser arranged on the attachment portion of the dispenser projection is engageable.
  • the inner region of the opening with the positive locking means is rotationally symmetrical with respect to the longitudinal axis of the opening of the cap.
  • the invention further relates to a dispenser for a container in which there is a pressurized or acted upon medium
  • the container comprises a tilting valve, which comprises a sealable part connectable to the container and a valve nozzle cooperating with the sealing part
  • the dispenser with a Fixing portion is attachable to the valve nozzle, so that by a tilting movement of the dispenser, the tilting valve is actuated, and wherein on the container, a cap in the region of the tilting valve can be fastened, which has a central opening through which the dispenser fastened with its mounting portion on the valve nozzle is
  • the outer region of the mounting portion of the dispenser has positive locking means with which in the tilted position of the dispenser relative to the container a positive connection with the cap against removal of the dispenser in the axial direction of the tilted position and releasing the attachment region of the dispenser from the valve nozzle of the tilting valve can be produced
  • the mounting portion has bayonet locking means, with which it can be passed freely in a first positioning relative to the cap
  • Such a donor is from the document WO 2011/151295 A1 known.
  • the fastening region has a conical region which widens in the upstream direction, at the end of which the annular flange is formed on the outside.
  • the positive locking means may have a radially outward projection which engages in an attachment provided on the valve nozzle and actuation of the tilting valve by the tilting movement of the dispenser in a provided on the inside of the opening of the cap undercut.
  • the interlocking means may be formed on the attachment region of the dispenser rotationally symmetrical with respect to the longitudinal axis of the attachment region.
  • the protrusion may be formed as an annular flange around the attachment area.
  • the flange may extend circumferentially about the attachment area throughout. It can alternatively be provided with interruptions.
  • the attachment portion of the dispenser may include an upstream protruding tubular portion which is press-fit into a downstream projecting tubular end portion of the valve nozzle of a standard tilt valve.
  • the tubular portion of the attachment portion of the dispenser may be formed so that its outer diameter decreases toward the upstream end.
  • tubular region of the attachment region of the dispenser can be designed such that when the dispenser is mounted by press fitting on the valve nozzle, the dispenser can not be detached from the valve nozzle in its tilted position even without the use of the cap.
  • the attachment portion of the dispenser may have a flared conical portion toward its upstream end, at the end of which is disposed the interlocking means cooperating with the cap to form the positive fit.
  • the attachment portion of the dispenser may have an annular groove open to its upstream end disposed between the conical portion and the tubular portion and adapted to be press-fitted with a downstream projecting tubular end portion of the valve nozzle of a standard tilt valve.
  • the conical portion of the attachment portion of the dispenser may be formed as a tapered tubular portion whose inner diameter increases toward the upstream end. This area can be attached to a conical annular flange of the valve nozzle, which is biased to the downstream end face of the sealing part the tilting valve is applied, be adapted.
  • a further development of the invention extends to a system comprising a cap and a dispenser, wherein the cap has at the edge of its opening first bayonet closure means and the attachment region of the dispenser second bayonet closure means, with which it is in one first positioning relative to the cap through the opening freely passable and placed on the valve nozzle and by rotation about its longitudinal axis relative to the cap in a second position from which the tilting movement of the dispenser can take place in its tilted position, cooperates with the first bayonet closing means of the cap ,
  • the maximum diameter of the opening of the cap may be approximately equal to or greater than the maximum outer diameter of the attachment area of the dispenser.
  • the first bayonet locking means may be formed at the edge of the opening of the cap so that the second bayonet locking means of the mounting portion of the dispenser engage under the edge of the opening of the cap when it rotates to its second position.
  • the attachment region of the dispenser has two diametrically opposed radial projections with respect to the longitudinal axis, which engage under the edge of the opening of the cap in the second position of the dispenser.
  • the projections on the attachment area of the dispenser are disposed at a circumferential angle of 90 ° to an actuator arm disposed on the dispenser for actuating the tilting movement of the dispenser relative to the cap.
  • the two diametrically opposed protrusions may be disposed on the annular flange of the attachment area.
  • the attachment area of the dispenser may be formed as described above.
  • the attachment portion may have a flared conical portion toward its upstream end, followed by a cylinder jacket portion at the upstream end thereof which extends over a downstream end portion of the seal portion upon attachment of the dispenser to the valve nozzle.
  • Ribs may be provided between the annular flange and the cylindrical portion.
  • the projections in the form of radially outer ends of two on the downstream facing side of the annular flange radially extending webs are formed.
  • the radially inwardly facing ends of the webs may be connected to the conical region.
  • webs may extend whose radially outer sides serve as insertion aids in inserting the attachment area of the dispenser into the opening of the cap.
  • the radially outer sides of the webs may extend radially inwardly in the upstream direction.
  • the webs are arranged on the radially outer side of plate-shaped parts, which are integrally formed on the upstream facing side of the annular flange of the fastening part.
  • two webs arranged laterally to the projections can each be located upstream of the projections extend.
  • the first bayonet locking means of the cap cooperating with the above-described second bayonet locking means of the dispenser may be formed as follows.
  • the inner edge region of the opening of the cap preferably has a radially inwardly pointing region which extends in the circumferential direction of the opening over an angle of less than 180 °, the diameter of the opening being narrowed in this region.
  • Said area acts as a bayonet closure means with the bayonet closure means of the dispenser in such a way that they engage in the second position of the dispenser, from which the tilting movement of the dispenser can take place, the said radially inwardly facing portion of the opening edge.
  • said region comprises two diametrically opposite, radially inwardly directed projections in the inner edge region of the opening.
  • the projections may be arranged substantially mirror-symmetrically to the plane in which the tilting movement of the inserted into the opening and placed on the valve nozzle dispenser can be done.
  • the projections each extend in the circumferential direction of the opening preferably over an angular range between 30 ° and 150 °. Particularly useful is an angular range between 90 ° and 130 °.
  • the edge of the opening in its downstream end region on a downstream conical constriction wherein on the downstream facing end side of the cap is provided over the opening extending recess so that the diameter of the opening in the region of the recess larger is the diameter of the opening outside the recess.
  • the depression can be arranged substantially mirror-symmetrically to the plane running axially to the opening and perpendicular to the plane in which the tilting movement of the dispenser takes place.
  • the recess extends in the radial direction beyond said end face of the cap.
  • edges of the depression pointing in the circumferential direction of the opening preferably extend in a substantially parallel direction.
  • the conical constriction region of the edge of the opening is provided at its upstream end with a circumferentially extending undercut.
  • the undercut serves, as described above, for a protrusion disposed on the attachment area of the dispenser to engage the donor on the valve nozzle and tilting movement of the dispenser, as described above, into the undercut, and thus in addition to the above-described bayonet connection between the dispenser and cap provides additional protection against removal of the dispenser from the opening of the cap in the tilted position of the dispenser.
  • FIGS. 1 and 2 1 denotes a container into which a pressurized or pressurizable medium may be present.
  • the container 1 has a tilting valve 2, which comprises a sealing part 3 connected to the container 1 and a valve nozzle 4 cooperating with the sealing part 3.
  • the sealing part 3 is fixed to the container 1 by means of a clamping ring 5, which cooperates with a bead 6 of the container with the insertion of a sealing ring 7.
  • the valve nozzle 4 has at its upstream end a radially extending flange 8 which bears with a bias against the upstream end face of the sealing part 3.
  • a plurality of openings 9 are provided, through which the pressurized medium from the container 1 can flow into the valve nozzle 4 when opening the tilting valve 2.
  • FIG. 2 shows the tilting valve 2 in its tilted position, as will be described in more detail below.
  • the flange 8 of the valve nozzle 4 is lifted in the left region of the sealing part 3, so that through this area, the pressurized medium in the container reach the openings 9 and can flow through them in the valve nozzle 4.
  • valve nozzle 4 As can be seen, the valve nozzle 4, the flange 8 opposite, a conical annular flange 10 which bears under a bias on the downstream end side of the sealing part 3, so that the elastic sealing part 3 is clamped between the flange 8 and the conical annular flange 10.
  • Denoted at 11 is a dispenser having at its upstream end a mounting portion 12 with which it rests on the downstream end of the valve nozzle 4 of the Tilting valve 2 is attached.
  • the dispenser 11 is provided with an inner channel 13 which opens upstream into a tubular portion 14.
  • the outer diameter of the tubular portion 14 decreases toward the upstream end so as to be insertable and press-fit into the downstream tubular end portion of the valve nozzle 4.
  • the attachment portion 12 of the dispenser 11 is provided with a conical portion 15 which widens to its upstream end. Between the conical portion 15 and the tubular portion 14 of the attachment portion 12 of the dispenser 11 there is provided an annular groove 16 open to its upstream end, in which the downstream projecting tubular end portion of the valve nozzle 4 is press-fitted.
  • a cap 17 is designated, which is fixed to the beaded edge 6 of the container 1.
  • the cap 17 has at its outer periphery an external thread 18 on which a commercial spray gun with a arranged in the region of its upstream end internal thread can be screwed.
  • the cap is provided with a central opening 19, the edge of which is arranged around the valve nozzle 4 of the tilting valve 2.
  • the diameter of the here circular opening 19 of the cap is approximately equal to or greater than the maximum outer diameter of the attachment portion 12 of the dispenser 11 dimensioned.
  • the dispenser 11 may in its axially aligned to the opening 19 and the container 1 position, as in FIG. 1 shown without hindrance by the cap 17 with its mounting portion 12 fixed through the opening 19 on the valve nozzle 4 and are removed from this again in the axial direction.
  • the conical portion 15 of the mounting portion 12 is provided on its radially outer side with a circumferential projection in the form of an annular flange 20 which in the tilted position of the dispenser, as in FIG. 2 is shown in an undercut on the inside of the opening 19 of the cap 17 engages.
  • the undercut is formed in the embodiment considered by a cylindrical extension of the opening 19.
  • the opening 19 thus comprises a cylindrical region arranged at its downstream end, which merges via a shoulder-shaped region 22 into the widened cylindrical region 21.
  • the shoulder-shaped portion 22 is shaped so that during the tilting movement of the dispenser 11 from the in FIG. 1 shown axial alignment with respect to the cap 17 and the container 1 in the in FIG. 2 shown tilting position of the flange 20 with a very small clearance under the undercut, ie in the shoulder-shaped portion 22 engages.
  • the shoulder-shaped region 22 is thus convex in the longitudinal section of the cap 17, in particular approximately circular arc-shaped relative to the center of the tilting movement of the dispenser 11 with the tilting valve 2.
  • Fig. 1 and 2 shows the dispenser 11 in the downstream connection to the inner channel 13, a tubular connecting part 23 for a hose or pipe, not shown in the drawing, whereby the medium to be sprayed or sprayed can be guided to its application.
  • a T-shaped actuating arm 24 is provided on the dispenser 11, via which the tilting movement of the dispenser 11 can be effected manually.
  • FIGS. 3 to 12 shown embodiment is as additional support of the dispenser 11 to that described above and in the FIGS. 1 and 2 a measure bayonet between the dispenser 11 and the cap 17 is provided.
  • the bayonet lock is designed such that the dispenser 11 can be inserted in its mounting position with respect to the container 1 with cap 17 mounted thereon unhindered through the central opening 19 of the cap 17 and placed on the valve nozzle 4.
  • the bayonet closure means of the dispenser 11 and the cap 17 cooperate, so that the dispenser against a Removing in the axial direction of the tilted position and releasing the fastening region 12 is additionally secured by the valve nozzle 4.
  • the dispenser 11 and the cap 17 are basically as in the above-described and in the FIGS. 1 and 2 formed illustrated first embodiment.
  • the attachment area 12 of the dispenser 11 has a conical area 15 that widens toward its upstream end on, which extends over the conical annular flange 10 of the valve nozzle.
  • a radially outwardly projecting annular flange 20 is provided, which also in particular the FIGS. 6 and 7 can be removed.
  • On the downstream facing side of the annular flange 20 are formed radially extending webs 26, the radially outer ends of which extend beyond the annular flange 20 as projections 27 and which form the bayonet locking means of the dispenser 11, as will be further explained below.
  • the two webs 26 with the projections 27 are arranged on the annular flange 20 diametrically with respect to the axis of the annular flange 20, at a circumferential angle of 90 ° to the arranged on the dispenser 11 actuating arm 24.
  • the radially inwardly facing ends of the webs 26 are connected to the conical portion 15 of the attachment portion 12 of the dispenser 11.
  • the projections 27 of the webs 26 act as a bayonet closure means of the dispenser 11 together with bayonet locking means of the cap 17 as follows.
  • FIGS. 7 and 9 points the edge of the central opening 19 of the cap 17 at its downstream end portion on a downstream conical constriction 28.
  • On the downstream end face 29 of the cap 17 is formed over the central opening 19 extending recess 30 which causes the diameter of the opening 19 in the region of the recess 30 is greater than the diameter of the opening 19 outside the recess 30.
  • Die Deepening is for example the FIGS. 5 and 6 refer to.
  • the extension of the diameter of the opening 19 of the cap 17 is also given for example by comparing the FIGS. 6 and 7 ,
  • the outer diameter of the fastening part 12 of the dispenser 11 in the region of the projections 27 of the webs 26 is smaller than the smallest diameter of the central opening 19 of the cap 17 in the region of the recess 30 with a small clearance.
  • the maximum outer diameter of the attachment part 12 of the dispenser 11 is approximately equal to or smaller than the maximum diameter of the central opening 19 of the cap 17.
  • the dispenser 11 In the in the FIGS. 3 to 7 illustrated mounting position of the dispenser 11 is inserted with its mounting portion 12 so in the central opening 19 of the cap 17 and placed on the valve nozzle 4 that the projections 27 of the webs 26 are directed to the recess 30 having edge portion of the opening 19. In this position, therefore, the dispenser can be passed unhindered through its opening 19 with its mounting area and placed on the valve nozzle 4.
  • two webs 31 are arranged on the upstream side of the projections 27 of the webs 26 of the mounting portion 12 of the dispenser 11, which extend upstream of the projections 27 and whose radially outer sides are inclined radially inwardly in the upstream direction.
  • the webs 31 serve as insertion aids during insertion of the attachment region 12 of the dispenser 11 into the opening 19 of the cap 17.
  • the webs 31 are disposed on the radially outer side of plate-shaped parts 32 which are integrally formed on the upstream side of the annular flange 20 of the mounting portion 12.
  • the projections 27 on the webs 26 upstream ribs 33 are arranged, which also serve as insertion aids during insertion of the mounting portion 12 in the region of the smaller diameter of the opening 19 outside the recess 30, since their radially outer edges are inclined in the upstream direction radially inwardly ,
  • the ribs 33 also serve to reinforce the seating of the annular flange 12 on the attachment portion 12 of the dispenser 11.
  • the recess 30 is substantially mirror-symmetrical to the axial to the opening 19 and perpendicular to the plane in which the tilting movement of the dispenser 11 takes place, extending plane.
  • the recess 30 is also formed substantially mirror-symmetrically to the plane in which the tilting movement of the dispenser 11 takes place.
  • the recess 30 extends in the radial direction over the downstream facing end face 29 of the cap 17 away.
  • the edges of the recess 30 pointing in the circumferential direction of the opening 19 extend essentially in the parallel direction.
  • the conical constriction 28 having region of the edge of the opening 19 of the cap 17 is provided at its upstream end with a circumferentially extending undercut 34.
  • the undercut 34 serves that, as in FIG. 12 shown, the radially outer edge region of the annular flange 20 of the attachment portion 12 in the tilted position of the dispenser 11 engages under the conical constriction 28 having edge portion of the opening 19 and thus with the inner portion of the opening 19 positively against removal of the dispenser 11 in the axial Direction of tilting cooperates.

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  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
  • Closures For Containers (AREA)
  • Nozzles (AREA)

Claims (14)

  1. Système constitué par un capuchon (17) destiné à être fixé sur un conteneur (1) dans lequel se trouve un milieu soumis à une pression ou susceptible d'être soumis à une pression, dans ce système ledit conteneur (1) comporte une soupape basculante (2) qui présente un élément d'étanchéité (3) connectable audit conteneur (1) et une buse de soupape (4) coopérant avec ledit élément d'étanchéité, ledit capuchon (17) étant fixable sur ledit conteneur (1) dans la zone de la soupape basculante (2), et par un distributeur (11) fixable sur la buse de soupape (4) par une partie de fixation (12) à travers d'une ouverture centrale (19) du capuchon (17) de sorte que la soupape basculante (2) peut être actionné par un mouvement de basculement du distributeur (11), la partie intérieure de l'ouverture (19) du capuchon (17) et la partie extérieure de la partie de fixation (12) du distributeur (11) présentant des parties coopérant par liaison de forme, lesdites parties en position basculée du distributeur (11) formant, par rapport au conteneur (1), une liaison de forme empêchant le distributeur d'être enlevé dans la direction axiale de la position basculée et la partie de fixation (12) du distributeur (11) d'être détachée de la buse de soupape (4) de la soupape basculante (2), caractérisé en ce que le bord de l'ouverture (19) du capuchon (17) et la partie de fixation (12) du distributeur (11) sont réalisés de telle sorte qu'en alignement axial par rapport à l'ouverture (19) et au conteneur (1), en lequel la soupape basculante (2) n'est pas actionnée, le distributeur (11) peut traverser ladite l'ouverture (19) avec sa partie de fixation (12) et peut être fixé sur la buse de soupape (4) et enlevé de la buse de soupape (4) à travers l'ouverture (19).
  2. Système selon la revendication 1, caractérisé en ce que la face intérieure de l'ouverture (19) du capuchon (17) présente une contre-dépouille radiale en direction de mouvement de basculement du distributeur (11) et ledit distributeur (11), dans sa partie de fixation (12), est muni d'une saillie qui s'engage dans la contre-dépouille lors de la fixation du distributeur (11) sur la buse de soupape (4) et lors de l'actionnement de la soupape basculante (2), par le mouvement de basculement du distributeur (11).
  3. Système selon la revendication 2, caractérisé en ce que lors de la fixation du capuchon (17) sur le conteneur (1) et lors de la fixation du distributeur (11) sur la buse de soupape (4) et lors du mouvement de basculement du distributeur (11), ladite saillie, pour actionner la soupape basculante (2), peut être guidée sous la contre-dépouille de la partie intérieure de l'ouverture (19) du capuchon (17) en coulissant sur la partie de fixation.
  4. Système selon l'une des revendications 1 à 3, caractérisé en ce que la partie de fixation (12) du distributeur (11) comporte une partie tubulaire (14) saillant dans la direction amont et pouvant être fixée par engagement positif dans une partie tubulaire de la buse de soupape (4) de la soupape basculante (2) saillant dans la direction aval.
  5. Système selon la revendication 4, caractérisé en ce que la partie tubulaire (14) du distributeur (11) est conçue de sorte que son diamètre extérieur diminue vers l'extrémité amont.
  6. Système selon les revendications 4 ou 5, caractérisé en ce que la partie tubulaire (14) de la partie de fixation (12) du distributeur (11) est conçue de sorte que lors de la fixation du distributeur (11) par engagement positif sur la buse de soupape (4) ledit distributeur (11) dans sa position basculée ne peut être détaché de la buse de soupape (4) sans qu'il soit fait usage du capuchon (17).
  7. Système selon l'une des revendications 1 à 6, caractérisé en ce que la partie de fixation (12) du distributeur (11) présente une partie conique (15) qui s'élargit vers son extrémité amont et à l'extrémité de laquelle est disposée la partie coopérant avec le capuchon (17), pour établir l'engagement positif.
  8. Système selon la revendication 7 et selon l'une des revendications 4 à 6, caractérisé en ce que la partie de fixation (12) du distributeur (11) comporte une rainure annulaire (16) ouverte vers son extrémité amont qui est disposée entre la partie conique et la partie tubulaire (14) et est conçue de sorte que dans cette rainure annulaire peut être enfichée à serrage une extrémité tubulaire de la buse de soupape (4) d'une soupape basculante (2) standard.
  9. Distributeur (11) pour un conteneur (1) dans lequel se trouve un milieu soumis à une pression ou susceptible d'être soumis à une pression, ledit conteneur (1) étant muni d'une soupape basculante (2) comportant un élément d'étanchéité (3) connectable audit conteneur (1) et une buse de soupape (4) coopérant avec ledit élément d'étanchéité (3), ledit distributeur (11) étant fixable sur la buse de soupape (4) par une partie de fixation (12) de sorte que par un mouvement de basculement du distributeur (11) ladite soupape basculante (2) peut être actionnée, et un capuchon (17) étant fixable sur ledit conteneur (1) dans la zone de ladite soupape basculante (2), ledit capuchon présentant une ouverture centrale (19) à travers de laquelle ledit distributeur (11) peut être fixé sur la buse de soupape (4) avec sa partie de fixation (12), la partie extérieure de la partie de fixation (12) du contributeur (11) comportant des moyens à engagement positif par lesquels peut être établi, en position basculée du distributeur (11) par rapport au conteneur (1), un engagement positif avec le capuchon (17) contre l'enlèvement du distributeur (11) en direction axiale de la position basculée et contre le détachement de la zone der fixation (12) du distributeur (11) de la buse de soupape (4) de la soupape basculante (2), ladite partie de fixation (12) comportant des moyens de fermeture à baïonnette au moyen desquels la partie de fixation (12), dans une première position par rapport au capuchon (17), peut librement traverser l'ouverture de ceux-ci et peut être placée sur la buse de soupape (4) et s'engager au-dessous du bord de l'ouverture (19) par rotation du distributeur (11) autour de son axe longitudinal par rapport au capuchon (17) vers une deuxième position à partir de laquelle le mouvement de basculement (11) vers sa position basculée peut avoir lieu, la zone de fixation (12) comportant au moins une saillie radiale (27) comme le moyen de fermeture à baïonnette, laquelle saillie pouvant s'engager au-dessous du bord de l'ouverture (19) du capuchon (17) dans la deuxième position du distributeur (11), et deux saillies (27) diamétralement opposées étant disposées comme des moyens de fermeture à baïonnette sur une flasque annulaire (20) de la partie de fixation (12), caractérisé en ce que la partie de fixation (12) présente une partie conique (15) qui s'élargit dans une direction amont et à l'extrémité et extérieurement de laquelle est formée ladite flasque annulaire (20).
  10. Capuchon (17) pour la fixation sur un conteneur (1), dans lequel se trouve un milieu soumis à une pression ou susceptible d'être soumis à une pression, ledit conteneur (1) étant muni d'une soupape basculante (2) comportant un élément d'étanchéité (3) connectable audit conteneur (1) et une buse de soupape (4) coopérant avec ledit élément d'étanchéité (3), ledit capuchon (17) étant fixable sur ledit conteneur (1) dans la zone de la soupape basculante (2), un distributeur (11) étant fixable sur la buse de soupape (4) à travers d'une ouverture centrale (19) du capuchon (17), par une partie de fixation (12) de sorte que la soupape basculante (4) peut être actionnée par un mouvement de basculement du distributeur (11), la partie intérieure de l'ouverture (19) du capuchon étant munie des moyens à engagement positif par lesquels peut être établi, dans la position basculée du distributeur (11) par rapport au conteneur (1), un engagement positif avec la partie de fixation (12) du distributeur (11) contre l'enlèvement du distributeur (11) dans la direction axiale de la position basculée et contre le détachement de la zone de fixation (12) du distributeur (11) de la buse de soupape (4), et le bord intérieur de l'ouverture (19) comportant une partie orientée vers l'intérieur qui s'étend en direction circonférentielle de l'ouverture (19) sur an angle inférieur à 180 degrés, le diamètre de l'ouverture (19) étant rétréci dans cette zone et la partie orientée radialement vers l'intérieur comportant dans la zone de bord intérieure de l'ouverture (19) deux saillies diamétralement opposées et orientées vers l'intérieur, caractérisé en ce que lesdites saillies sont disposées sensiblement symétriquement par rapport au plan dans lequel peut avoir lieu le mouvement de basculement d'un distributeur (11) enfiché dans l'ouverture (19) et placé sur la buse de soupape (4).
  11. Capuchon selon la revendication 10, caractérisé en ce que le moyen à engagement positif à l'intérieur de l'ouverture (19) capuchon (17) est réalisé comme contre-dépouille radiale dans laquelle peut s'engager une saillie disposée sur la partie de fixation (12) du distributeur lors de la fixation du distributeur (11) sur la buse de soupape (4) et lors de l'actionnement de la buse de soupape (4) par le mouvement de basculement du distributeur (11).
  12. Capuchon selon la revendication 10 ou 11, caractérisé en ce que la partie intérieure de l'ouverture (19) est munie du moyen à engagement positif de manière symétrique en rotation par rapport à l'axe longitudinal de l'ouverture (19) du capuchon (17).
  13. Capuchon selon l'une des revendications 10 à 12, caractérisé ce que les saillies respectives s'étendent en direction circonférentielle de l'ouverture (19) sur une plage angulaire entre 30° et 150°.
  14. Système, constitué par un conteneur (1) dans lequel se trouve un milieu soumis à une pression ou susceptible d'être soumis à une pression, ledit système comprenant une soupape basculante (2) comportant un élément d'étanchéité (3) qui peut être relié audit conteneur (1), et une buse de soupape (4) coopérant avec ledit élément d'étanchéité (3), et ledit système comprenant un capuchon (17) et un distributeur (11) selon l'une quelconque des revendications 1 à 8.
EP13732872.0A 2012-06-26 2013-06-21 Système d'actionnement à basculement, maintenu par un couvercle, pour un distributeur de mousse Active EP2864219B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13732872T PL2864219T3 (pl) 2012-06-26 2013-06-21 Utrzymywany przez kołpak element przechylny do uruchamiania dozownika piany

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE202012102354U DE202012102354U1 (de) 2012-06-26 2012-06-26 System aus einer Kappe zur Befestigung auf einer Schaumdose und aus einem Spender
DE202013100408U DE202013100408U1 (de) 2012-06-26 2013-01-29 System aus einer Kappe zur Befestigung auf einer Schaumdose und aus einem Spender
PCT/EP2013/063014 WO2014001218A1 (fr) 2012-06-26 2013-06-21 Système d'actionnement à basculement, maintenu par un couvercle, pour un distributeur de mousse

Publications (2)

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EP2864219A1 EP2864219A1 (fr) 2015-04-29
EP2864219B1 true EP2864219B1 (fr) 2017-08-09

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US (1) US10065790B2 (fr)
EP (1) EP2864219B1 (fr)
JP (1) JP6055091B2 (fr)
AU (1) AU2013283514B2 (fr)
CA (1) CA2877531C (fr)
DE (2) DE202012102354U1 (fr)
DK (1) DK2864219T3 (fr)
ES (1) ES2647141T3 (fr)
MX (1) MX354690B (fr)
PL (1) PL2864219T3 (fr)
PT (1) PT2864219T (fr)
WO (1) WO2014001218A1 (fr)

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DE202012102354U1 (de) * 2012-06-26 2012-07-18 Tremco Illbruck Productie B.V. System aus einer Kappe zur Befestigung auf einer Schaumdose und aus einem Spender

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Also Published As

Publication number Publication date
MX354690B (es) 2018-03-02
WO2014001218A1 (fr) 2014-01-03
AU2013283514A1 (en) 2015-02-05
DE202013100408U1 (de) 2013-02-04
EP2864219A1 (fr) 2015-04-29
PT2864219T (pt) 2017-11-15
JP2015522488A (ja) 2015-08-06
DK2864219T3 (da) 2017-11-20
MX2014015246A (es) 2015-05-11
US10065790B2 (en) 2018-09-04
CA2877531A1 (fr) 2014-01-03
PL2864219T3 (pl) 2018-04-30
AU2013283514B2 (en) 2016-05-19
ES2647141T3 (es) 2017-12-19
US20150284176A1 (en) 2015-10-08
CA2877531C (fr) 2018-01-30
JP6055091B2 (ja) 2016-12-27
DE202012102354U1 (de) 2012-07-18

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