EP1558397B1 - Drehbefestigung für versorgungsbehälter für applikatoren - Google Patents

Drehbefestigung für versorgungsbehälter für applikatoren Download PDF

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Publication number
EP1558397B1
EP1558397B1 EP03809095A EP03809095A EP1558397B1 EP 1558397 B1 EP1558397 B1 EP 1558397B1 EP 03809095 A EP03809095 A EP 03809095A EP 03809095 A EP03809095 A EP 03809095A EP 1558397 B1 EP1558397 B1 EP 1558397B1
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EP
European Patent Office
Prior art keywords
engagement member
supply vessel
concavity
applicator device
assembly
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.)
Expired - Lifetime
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EP03809095A
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English (en)
French (fr)
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EP1558397A4 (de
EP1558397A1 (de
Inventor
Skye L. Wollenberg
Neil G. Stockman
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Trade Associates Inc
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Trade Associates Inc
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Publication date
Priority claimed from US10/272,230 external-priority patent/US20040069796A1/en
Application filed by Trade Associates Inc filed Critical Trade Associates Inc
Publication of EP1558397A1 publication Critical patent/EP1558397A1/de
Publication of EP1558397A4 publication Critical patent/EP1558397A4/de
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Publication of EP1558397B1 publication Critical patent/EP1558397B1/de
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B7/00Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
    • B05B7/24Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with means, e.g. a container, for supplying liquid or other fluent material to a discharge device
    • B05B7/2402Apparatus to be carried on or by a person, e.g. by hand; Apparatus comprising containers fixed to the discharge device
    • B05B7/2478Gun with a container which, in normal use, is located above the gun
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B7/00Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
    • B05B7/24Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with means, e.g. a container, for supplying liquid or other fluent material to a discharge device
    • B05B7/2402Apparatus to be carried on or by a person, e.g. by hand; Apparatus comprising containers fixed to the discharge device
    • B05B7/2405Apparatus to be carried on or by a person, e.g. by hand; Apparatus comprising containers fixed to the discharge device using an atomising fluid as carrying fluid for feeding, e.g. by suction or pressure, a carried liquid from the container to the nozzle
    • B05B7/2408Apparatus to be carried on or by a person, e.g. by hand; Apparatus comprising containers fixed to the discharge device using an atomising fluid as carrying fluid for feeding, e.g. by suction or pressure, a carried liquid from the container to the nozzle characterised by the container or its attachment means to the spray apparatus
    • B05B7/2413Apparatus to be carried on or by a person, e.g. by hand; Apparatus comprising containers fixed to the discharge device using an atomising fluid as carrying fluid for feeding, e.g. by suction or pressure, a carried liquid from the container to the nozzle characterised by the container or its attachment means to the spray apparatus with means for changing the position or the orientation of the container relative to the spray apparatus

Definitions

  • the present invention relates to equipment for applying liquid coating materials to a surface, and more particularly, to apparatus and methods for swivel attachment of supply vessels to applicator devices, including sprayers, spray guns, pads, porous members, and the like.
  • a wide variety of equipment for applying liquids such as paint, varnish, or other coating materials are known.
  • Some types of hand held applicator devices for applying liquid coating materials to a surface have a supply vessel attached directly to the applicator device that utilize the force of gravity to supply the coating material to the applicator device.
  • the spray assembly 10 includes a spray gun 12 coupled to a supply vessel 14.
  • the spray gun 12 is also coupled to a pressure source 16, such as an air compressor or gas bottle.
  • the spray gun 12 includes a nozzle 18 for applying a spray or stream 20 of a liquid coating material (e.g. paint) onto a workpiece 22, and a trigger 24 for controlling a rate of flow of the liquid coating material from the nozzle 18 in a conventional manner widely known in the art.
  • a liquid coating material e.g. paint
  • the supply vessel 14 includes a threaded aperture 26 that threadedly engages a threaded mounting nipple 28 on the spray gun 12, and a removable cover 34 that allows the supply vessel 14 to be filled.
  • the supply vessel 14 is rigidly attached onto the threaded mounting nipple 28 of the spray gun 12 in a tilted position such that a central axis 30 of the supply vessel 14 forms a tilt angle I with respect to a nozzle axis 32 passing through a centerline of the nozzle 18.
  • the tilt angle I of the conventional spray assembly 10 is approximately 45 degrees, allowing gravitational feed of the liquid coating material from the supply vessel 14 into the spray gun 12 throughout a range of positions of the nozzle axis 32, including vertical (as shown in Figure 1 ) to horizontal and slightly beyond.
  • the supply vessel 14 may be filled to a higher level, however, in such a rotated position (not shown) the spray 20 is not uniformly applied to the workpiece 22, resulting in an unacceptable degradation of performance. Also, when the nozzle axis 32 is rotated away from the perpendicular position 36 the transfer efficiency defined as that percentage of the spray 20 that actually adheres to the surface of the workpiece 22 is reduced, resulting in increased waste and possibly adverse conditions within the surrounding atmosphere. For these reasons, the interior volume of the supply vessel 14 is typically not fully utilized, and the supply vessel 14 must be filled more frequently during operation of the spray assembly 10, resulting in decreased efficiencies and higher costs.
  • Figure 2 shows the spray assembly 10 in an upwardly directed position 40.
  • the liquid coating material in the supply vessel 14 flows to a non-operational level 42 so that no coating material is supplied to the spray gun 12. Consequently, the spray gun 12 only emits a spray of gas 44 from the pressure source 16. Furthermore, in the upwardly directed position 40, the coating material exerts pressure on the removable cover 34, and the danger of an accidental spill 46 of the coating material is increased.
  • DE 36 27 336 A1 discloses a supply vessel used in combination with a spray gun to receive sprayable media.
  • the supply vessel can be releasably connected to the spray gun.
  • said supply vessel has an articulated and fixable connection joint.
  • the connection joint comprises a ball-shaped head having an axially passageway and being connected to the supply vessel, and a connector having a cone-shaped passageway receiving the ball-shaped head and being connected to the spray gun.
  • US 4 035 004 A discloses a hollow body which has ball and socket connections at its opposite ends, respectively, for connecting a spray gun to a paint container.
  • Each ball has a bore therethrough with its inner end disposed in the body cavity.
  • a flexible tube is connected at its opposite ends to the balls, respectively, in a manner such that liquids can pass through the body cavity and balls without contact with the interior wall of the body cavity and the outer companion surfaces of the balls and their sockets.
  • the tube is curvilinear endwise and the length thereof exposed in the cavity is greater than the distance between the inner ends of the bore of the balls so that it can self-adjust to different rocked positions of the balls relative to each other without substantial change in the cross section of its passage.
  • the balls can be locked individually in various rocked positions.
  • the present invention provides a swivel assembly for coupling a supply vessel to an applicator device according to claim 1, an apparatus for applying a liquid coating material according to claim 13, and a method of supplying a liquid material to an applicator device according to claim 17.
  • an apparatus includes an applicator device, a supply vessel having an interior volume, and a swivel assembly coupled between the supply vessel and the applicator device.
  • the swivel assembly includes a first engagement member having a protruding portion and a first passageway disposed therethrough, and a second engagement member having a concavity and a second passageway disposed therethrough, the protruding portion being moveably engaged within the concavity such that the interior volume of the supply vessel fluidly communicates with the applicator device through the first and second passageways.
  • the inventive apparatus may provide increased efficiency, reduced labor costs, and reduced risks of spillage compared with prior art devices.
  • FIG 3 is a side elevational view of a spray assembly 100 in accordance with an embodiment of the invention.
  • the spray assembly 100 includes a supply vessel 114 moveably coupled to a spray gun 12 by a swivel assembly 150.
  • the spray gun 12 is of conventional design, and the supply vessel 114 includes a removable cover 134.
  • the swivel assembly 150 includes a first engagement member 152 coupled to the supply vessel 114, and a second engagement member 154 coupled to the spray gun 12.
  • the swivel assembly 150 couples the supply vessel 114 to the spray gun 12 in a pivotable and rotatable manner, providing significant advantages in operational capability and efficiency compared with prior art devices.
  • Figure 4 is side elevational view of the swivel assembly 150 of Figure 3 .
  • Figures 5 and 6 are side cross sectional views of the first and second engagement members 152, 154 of the swivel assembly 150 of Figure 4 .
  • the first engagement member 152 includes a protruding portion 156 that engages with the second engagement member 154, and a threaded base portion 158 that threadedly engages the supply vessel 114 ( Figure 3 ).
  • An O-ring seal 160 is disposed in the protruding portion 156.
  • a first passageway 162 is disposed through the first engagement member 152, the first passageway 162 having a flared or conical segment 163 at an end thereof proximate to the second engagement member 154.
  • the second engagement member 154 has a concavity 164 formed therein that is sized to receive the protruding portion 156 of the first engagement member 152, and an internally-threaded mounting portion 166 that threadedly engages the mounting nipple 28 on the spray gun 12.
  • a second passageway 168 is disposed through the second engagement member 154. In the assembled position ( Figure 4 ), the first and second passageways 162, 168 are in fluid communication so that a liquid coating material may flow from the supply vessel 114 through the first and second passageways 162, 168 and into the spray gun 12.
  • first and second engagement members 152, 154 are formed from different materials, one being more flexible than the other to allow an expandable, press fitting between these components.
  • the protruding portion 156 is formed from a plastic material
  • the second engagement member 154 surrounding the concavity 164 is formed from aluminum.
  • FIG 7 is an isometric, schematic view of the swivel assembly 150 of Figure 4 .
  • a first longitudinal axis 170 extends through the first passageway 162 of the first engagement member 152
  • a second longitudinal axis 172 extends through the second passageway 168 of the second engagement member 154.
  • the second longitudinal axis 172 corresponds to the central axis 30 of the supply vessel 14 of the prior art spray assembly 10 described above and shown in Figure 1 .
  • the swivel assembly 150 enables the first engagement member 152, and thus the supply vessel 114, to be pivoted through a pivot angle A in any direction with respect to the second longitudinal axis 172 (shown by arrows P). Similarly, in this embodiment, the swivel assembly 150 also permits the first engagement member 152 and the attached supply vessel 114 to be rotated in either direction (designated by arrow R) about the second longitudinal axis 172.
  • the tolerances between the first and second engagement members 152, 154 are selected to provide a desired degree of frictional engagement between the protruding portion 156 and the concavity 164 so that the pivot angle A may be adjusted and controlled by an operator during operation of the spray assembly 100 simply by grasping the supply vessel 114 and moving it into a desired position. Once in the desired position, the frictional engagement between the protruding portion 156 and the concavity 164 maintains the supply vessel 114 in the desired position during operation of the spray assembly 100.
  • the swivel assembly 150 advantageously allows adjustment of the position of the supply vessel 114 with respect to the spray gun 12 without locking devices, locking nuts, threaded sections, screws, or other cumbersome devices. Because the frictional engagement between the first and second engagement members 152, 154 allows the position of the supply vessel 114 to be controllably positioned by hand during operation of the spray assembly 100, there is no need for the operator to stop the spraying operation to may adjustments. Also, in some operating conditions, the spray assembly 100 enables the operator to adjust the position of the supply vessel 114 to improve the operator's view of the workpiece 22.
  • the swivel assembly 150 may be modified from the particular embodiment shown in Figures 3-7 without departing from the scope of the invention defined by the appended claims.
  • the swivel assembly 150 may be inverted from that configuration shown in the accompanying figures so that the first engagement member 152 is coupled to the spray gun 12 and the second engagement member 154 is coupled to the supply vessel 114.
  • the first and second engagement members 152, 154 may be either male or female threaded to accommodate a variety of supply vessels or spray guns offered by various manufacturers.
  • the O-ring seal 160 may be disposed within the concavity 164 rather than in the protruding portion 156.
  • first and second engagement members 152, 154 need not be threadedly engaged with the spray gun 12 and supply vessel 114, but may be coupled using any suitable attachment mechanism, including snap-on or quick-disconnect fittings, press fittings, welding, or any other attachment mechanism. Alternately, one or both of the first and second engagement members 152, 154 may be integrally formed with the respective spray gun and supply vessel components.
  • the protruding portion 156 is a partially-spherically shaped portion
  • the concavity 164 is a correspondingly partially-spherically shaped concavity.
  • Figure 8 is a schematic view of the spray assembly 100 of Figure 3 in an optimal operating condition 136 with the nozzle axis 32 positioned perpendicular to the horizontal surface of the workpiece 22 so that the spray 20 of coating material is applied uniformly to the workpiece 22.
  • the supply vessel 114 may be tilted into a more upright position through the tilt angle A, the liquid coating material in the supply vessel 114 may be filled to a maximum safe-operating level 138 that is higher than that level 38 available using the prior art assembly 10. Therefore, the interior volume of the supply vessel 114 may be more fully utilized, resulting in more area of the workpiece 22 being covered be loading of the supply vessel 114, and greater overall efficiency of the device and reduced labor costs compared with the prior art assembly 10.
  • Figure 9 is a schematic view of the spray assembly 100 in an upwardly directed position 140.
  • the supply vessel 114 is pivoted using the swivel assembly 150 (or an alternate embodiment thereof) so that the liquid coating material in the supply vessel 114 remains at an operational level 142 for gravitational feeding into the spray gun 12. Consequently, the spray gun 12 is able to emit a spray 20 of coating material onto the downwardly-facing surface of the workpiece 22.
  • the inventive swivel assembly 150 facilitates the preferred vertical position of the spray gun 12 for even application of the liquid material onto the workpiece 22.
  • the coating material within the supply vessel 114 does not exert pressure on the removable cover 134, and therefore, the danger of an accidental spill of the coating material is greatly reduced or eliminated.
  • the swivel assembly 150 may advantageously improve the flow of liquid material, resulting in increased operational efficiency over prior art spray devices. Because the swivel assembly 150 may be used to improve or optimize the relative positional relationship between the supply vessel 114 and the spray gun 12, the weight of the liquid material may be used to advantage to force the liquid material into the spray gun 12 over a broader range of operating conditions. The spray assembly 100 may therefore exhibit improved transfer efficiency over prior art spray assemblies throughout a variety of operating conditions.
  • FIG 10 is side elevational view of a swivel assembly 250 in accordance with an alternate embodiment of the invention.
  • the swivel assembly 250 includes a first engagement member 252 having a partially-spherical protruding portion 256 that engages with a concavity 264 of a second engagement member 254.
  • An elongated connector portion 257 extends between the protruding portion 256 and a threaded base portion 258.
  • the elongated connector portion 257 includes a "necked-down" or cut-back portion 259 proximate the protruding portion 256.
  • the first engagement member 252 has a first passageway 162 disposed therethrough including a flared or conical segment 163 proximate to the second engagement member 254.
  • the second engagement member 254 has an outer wall 265 that surrounds and forms the concavity 264 and that includes a tapered end portion 267.
  • the second engagement member 254 also includes a mounting portion 266 that threadedly engages the mounting nipple 28 on the spray gun 14 in the manner described above.
  • a second passageway 168 is disposed through the second engagement member 254.
  • the swivel assembly 250 may provide additional operational advantages by enabling the relative positional relationship between the supply vessel 114 and the spray gun 12 to be further improved or optimized over a greater range of operating conditions.
  • FIG 11 is a cross sectional exploded side view of a swivel assembly 350 in accordance with another alternate embodiment of the invention.
  • the swivel assembly 350 includes a first engagement member 352 having a partially-spherical protruding portion 356 that is received by a concavity 364 of a second engagement member 354.
  • a connector portion 357 extends between the partially-spherical protruding portion 356 and a threaded base portion 358.
  • the first engagement member 352 has a first passageway 162 disposed therethrough including a flared or conical segment 163 extending into the first engagement member 352.
  • the second engagement member 354 has external threads 365 formed thereon to receive a mounting collar 370 that includes internal threads 372.
  • the mounting collar 370 further includes an opening 374 disposed in the collar 370 that permits the threaded base portion 358 to be received through the opening 374.
  • the opening 374 further includes a partially spherical inner face 376 to engage a portion of the protruding portion 356.
  • the second engagement member 354 also includes a mounting portion 266 that threadedly engages the mounting nipple 28 on the spray gun 12, as shown in Figure 3 .
  • a second passageway 168 is also disposed through the second engagement member 354 that is aligned with the first passageway 162 to allow the first engagement member 352 and the second engagement member 354 to fluidly communicate.
  • the internal threads 372 of the mounting collar 370 engage the external threads 365 on the second engagement member 354 to retain the protruding portion 356 within the concavity 364.
  • the opening 374 has a diameter that is sufficiently large to permit the connector portion 357 to be moved within the opening 374 so that the first engagement member 352 may be pivoted through the pivot angle A in any direction with respect to the longitudinal axis 172 so that the supply vessel 114 (as shown in Figure 3 ) may be readily positioned in a desired orientation.
  • the swivel assembly 350 similarly permits the first engagement member 352 to be rotated in either direction, as shown by the arrow R.
  • the swivel assembly 350 provides still other operational advantages by allowing a desired amount of friction to be developed between the first engagement member 352 and the second engagement member 354 by applying a corresponding torque to the collar 370. Consequently, the relative positions of the supply vessel 114 and the spray gun 12 (as shown in Figure 3 ) may be readily adjusted and then retained in the selected position.
  • the various disclosed embodiments of the inventive swivel assembly may provide significant operational advantages over the prior art spray assembly 10, including increased efficiency, reduced labor costs, and reduced risks of spillage.
  • swivel assemblies in accordance with the invention may alternately be used on a wide variety of applicator devices, including paint pads, squeegees, sprayers, porous members, or other types of applicator devices that may be used to apply paint, varnish, clear coat, wax, stain, cleaners, solvents, or any other type of liquid material to a surface of a workpiece.

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Claims (28)

  1. Schwenkanordnung zum Koppeln eines Versorgungsbehälters (114) mit einer Applikatorvorrichtung (12) zum Aufbringen eines flüssigen Beschichtungsmaterials, aufweisend ein erstes Eingriffsglied (152; 252; 352) mit einem vorstehenden Teil (156; 256; 356) und einem ersten dadurch hindurchgehend angeordneten Durchgang (162) und ein zweites Eingriffsglied (154; 254; 354) mit einer Höhlung (164; 264; 364) und einem zweiten dadurch hindurchgehend angeordneten Durchgang (168), wobei der vorstehende Teil (156; 256; 356) in beweglichem Eingriff innerhalb der Höhlung (164; 264; 364) ist, wobei der erste Durchgang (162) in Fluidverbindung mit dem zweiten Durchgang (168) steht, so dass der Versorgungsbehälter (114), wenn er mit der Applikatorvorrichtung (12) gekoppelt ist, durch den ersten und den zweiten Durchgang (162, 168) hindurch mit der Applikatorvorrichtung (12) in Fluiderbindung steht, dadurch gekennzeichnet, dass die Höhlung (164; 264; 364) des zweiten Eingriffsglieds (154; 254; 354) teilweise kugelförmig ist und der erste Durchgang (162) an seinem einen Ende in der Nähe des zweiten Eingriffsglieds (154; 254; 354) ein trichterförmiges Segment (163) hat.
  2. Anordnung nach Anspruch 1, wobei der vorstehende Teil (156; 256; 356) innerhalb der Höhlung (164; 264; 364) drehbar und schwenkbar beweglich ist.
  3. Anordnung nach Anspruch 1, ferner aufweisend einen Kragen (370), der das erste Eingriffsglied (352) mit dem zweiten Eingriffsglied (354) koppelt.
  4. Anordnung nach Anspruch 3, wobei der Kragen (370) dafür konfiguriert ist, den vorstehenden Teil (356) des ersten Eingriffsglieds (352) innerhalb der Höhlung (364) des zweiten Eingriffsglieds (354) festzuhalten.
  5. Anordnung nach Anspruch 4, wobei der Kragen (370) einen ersten Gewindeteil (372) aufweist und das zweite Eingriffsglied (354) einen zweiten Gewindeteil (365) aufweist, der an dem ersten Gewindeteil (372) angreifen kann, wobei der Kragen (370) selektiv anpassbar ist, um eine erwünschte positionelle Ausrichtung zwischen dem ersten Eingriffsglied (352) und dem zweiten Eingriffsglied (354) zu erreichen.
  6. Anordnung nach Anspruch 1, wobei der vorstehende Teil (156; 256; 356) einen teilweise kugelförmigen vorstehenden Teil aufweist und wobei die Höhlung (164; 264; 364) eine teilweise kugelförmige Höhlung aufweist.
  7. Anordnung nach Anspruch 1, wobei das erste Eingriffsglied (152; 252; 352) dafür ausgebildet ist, in Eingriff mit dem Versorgungsbehälter (114) zu sein, und das zweite Eingriffsglied (154; 254; 354) dafür ausgebildet ist, in Eingriff mit der Applikatorvorrichtung (12) zu sein.
  8. Anordnung nach Anspruch 1, wobei das erste Eingriffsglied (252) einen vertieften Teil (259) in der Nähe des vorstehenden Teils (256) aufweist, wobei der vertiefte Teil (259) dafür bemessen ist, einen Teil des zweiten Eingriffsglieds (254) zu empfangen, wenn das zweite Eingriffsglied (254) in Beziehung zu dem ersten Eingriffsglied (252) geschwenkt wird.
  9. Anordnung nach Anspruch 1, wobei das zweite Eingriffsglied (254) eine äußere Wand (265) aufweist, die die Höhlung (264) umgibt, wobei die äußere Wand (265) einen sich verjüngenden Endteil (256) aufweist.
  10. Anordnung nach Anspruch 1, wobei das zweite Eingriffsglied (254) eine äußere Wand (265) aufweist, die die Höhlung (264) umgibt, wobei die äußere Wand (265) einen sich verjüngenden Endteil (256) aufweist und wobei das erste Eingriffsglied (252) einen vertieften Teil (259) in der Nähe des vorstehenden Teils (256) aufweist, wobei der vertiefte Teil (259) dafür bemessen ist, den sich verjüngenden Endteil (267) mindestens teilweise aufzunehmen, wenn das zweite Eingriffsglied (254) in Beziehung zu dem ersten Eingriffsglied (252) geschwenkt wird.
  11. Anordnung nach Anspruch 1, wobei das erste und das zweite Eingriffsglied (152; 252; 352,154; 254; 354) aus unterschiedlichen Materialien gebildet sind, von denen eines flexibler ist als das andere.
  12. Anordnung nach Anspruch 11, wobei der vorstehende Teil (156; 256; 356) aus einem Kunststoffmaterial gebildet ist und das zweite Eingriffsglied (154; 254; 354), das die Höhlung (164; 264; 364) umgibt, aus Aluminium gebildet ist.
  13. Gerät zum Aufbringen eines flüssigen Beschichtungsmaterials, aufweisend:
    eine Applikatorvorrichtung (12);
    einen Versorgungsbehälter (114) mit einem inneren Volumen; und
    eine Schwenkanordnung (150; 250; 350) nach einem der Ansprüche 1 bis 12, die zwischen den Versorgungsbehälter (114) und die Applikatorvorrichtung (12) gekoppelt ist.
  14. Gerät nach Anspruch 13, wobei das erste Eingriffsglied (152; 252; 352) mit dem Versorgungsbehälter (114) gekoppelt ist und das zweite Eingriffsglied (154; 254; 354) mit der Applikatorvorrichtung (12) gekoppelt ist.
  15. Gerät nach Anspruch 13, wobei das erste Eingriffsglied (152; 252; 352) gewindemäßig an dem Versorgungsbehälter (114) befestigt ist und das zweite Eingriffsglied (154; 254; 354) gewindemäßig an der Applikatorvorrichtung (12) befestigt ist.
  16. Gerät nach Anspruch 13, ferner aufweisend eine mit der Applikatorvorrichtung (12) gekoppelte Druckquelle (16).
  17. Verfahren zum Zuführen eines flüssigen Materials zu einer Applikatorvorrichtung (12), aufweisend:
    Koppeln eines Versorgungsbehälters (114) mit der Applikatorvorrichtung (12) unter Verwendung einer Schwenkanordnung (150; 250; 350), wobei die Schwenkanordnung (150; 250; 350) ein erstes Eingriffsglied (152; 252; 352) mit einem vorstehenden Teil (156; 256; 356) und mit einem ersten dadurch hindurchgehend angeordneten Durchgang (162) und ein zweites Eingriffsglied (154; 254; 354) mit einer teilweise kugelförmigen Höhlung (164; 264; 364) darin und mit einem zweiten dadurch hindurchgehend angeordneten Durchgang (168) aufweist, wobei der erste Durchgang (162) an seinem in der Nähe des zweiten Eingriffsglieds (154; 254; 354) befindlichen einen Ende ein trichterförmiges Segment (163) hat;
    wobei der vorstehende Teil (156; 256; 356) in beweglichem Eingriff innerhalb der Höhlung (164; 264; 364) ist und der erste Durchgang (162) in Fluidverbindung mit dem zweiten Durchgang (168) steht;
    Zuführen des flüssigen Materials in den Versorgungsbehälter (114); und Strömen Lassen des flüssigen Materials aus dem Versorgungsbehälter (114) durch den ersten und den zweiten Durchgang (162, 168) hindurch zu der Applikatorvorrichtung (12).
  18. Verfahren nach Anspruch 17, wobei das Koppeln eines Versorgungsbehälters (114) mit der Applikatorvorrichtung (12) unter Verwendung einer Schwenkanordnung (150; 250; 350) das Koppeln eines Versorgungsbehälters (114) mit der Applikatorvorrichtung (12) unter Verwendung einer Schwenkanordnung (150; 250; 350) aufweist, bei der die Höhlung (164; 264; 364) eine teilweise kugelförmige Höhlung aufweist und der vorstehende Teil (156; 256; 356) einen teilweise kugelförmigen vorstehenden Teil aufweist.
  19. Verfahren nach Anspruch 17, wobei das Koppeln eines Versorgungsbehälters (114) mit der Applikatorvorrichtung (12) unter Verwendung einer Schwenkanordnung (350) ferner das Koppeln des ersten Eingriffsglieds (352) mit dem zweiten Eingriffsglied (354) mittels eines Kragens (370) aufweist.
  20. Verfahren nach Anspruch 19, wobei das Koppeln des ersten Eingriffsglieds (352) mit dem zweiten Eingriffsglied (354) mittels eines Kragens (370) ferner das Festhalten mindestens eines Teils des vorstehenden Teils (356) des ersten Eingriffsglieds (352) innerhalb der Höhlung (364) des zweiten Eingriffsglieds (354) aufweist.
  21. Verfahren nach Anspruch 20, wobei der Kragen (370) mit einem ersten Gewindeteil (372) versehen ist und das zweite Eingriffsglied (354) mit einem zweiten Gewindeteil (365) versehen ist, der an dem ersten Gewindeteil (372) angreifen kann, wobei das Verfahren ferner das Festhalten von mindesten einem Teil des vorstehenden Teils (356) des ersten Eingriffsglieds (352) innerhalb der Höhlung (364) des zweiten Eingriffsglieds (354) aufweist und ferner das Angreifen des ersten Gewindeteils (372) und des zweiten Gewindeteils (365) und das Aufbringen eines erwünschten Drehmoments auf den Kragen (370) aufweist, um eine erwünschte positionelle Ausrichtung zwischen dem ersten Eingriffsglied (352) und dem zweiten Eingriffsglied (354) zu halten.
  22. Verfahren nach Anspruch 17, wobei das Koppeln eines Versorgungsbehälters (114) mit der Applikatorvorrichtung (12) unter Verwendung einer Schwenkanordnung (150; 250; 350) das Koppeln eines Versorgungsbehälters (114) mit der Applikatorvorrichtung (12) unter Verwendung einer Schwenkanordnung (150; 250; 350) aufweist, bei der der vorstehende Teil (156; 256; 356) innerhalb der Höhlung (164; 264; 364) drehbar und schwenkbar beweglich ist.
  23. Verfahren nach Anspruch 17, wobei das Koppeln eines Versorgungsbehälters (114) mit der Applikatorvorrichtung (12) unter Verwendung einer Schwenkanordnung (150; 250; 350) das Koppeln eines Versorgungsbehälters (114) mit der Applikatorvorrichtung (12) unter Verwendung einer Schwenkanordnung (150; 250; 350) aufweist, bei der der vorstehende Teil (156; 256; 356) innerhalb der Höhlung (164; 264; 364) schwenkbar beweglich ist.
  24. Verfahren nach Anspruch 17, wobei das Strömen Lassen des flüssigen Materials aus dem Versorgungsbehälter (114) durch den ersten und den zweiten Durchgang (162, 168) hindurch zu der Applikatorvorrichtung (12) das Strömen Lassen von komprimiertem Gas durch die Applikatorvorrichtung (12) aufweist.
  25. Verfahren nach Anspruch 17, wobei das Strömen Lassen des flüssigen Materials aus dem Versorgungsbehälter (114) durch den ersten und den zweiten Durchgang (162, 168) zu der Applikatorvorrichtung (12) ein schwerkraftmäßiges Strömen Lassen des flüssigen Materials aus dem Versorgungsbehälter (114) aufweist.
  26. Verfahren nach Anspruch 17, ferner aufweisend das Schwenken des vorstehenden Teils (156; 256; 356) innerhalb der Höhlung (164; 264; 364), derart, dass eine erste Längsachse des ersten Durchgangs (162) nicht mit einer zweiten Längsachse des zweiten Durchgangs (168) in Ausrichtung ist.
  27. Verfahren nach Anspruch 17, wobei das erste und das zweite Eingriffsglied (152; 252; 352,154; 254; 354) aus unterschiedlichen Materialien gebildet sind, von denen eines flexibler ist als das andere.
  28. Verfahren nach Anspruch 27, wobei der vorstehende Teil aus einem Kunststoffmaterial gebildet ist und das zweite Eingriffsglied (154; 254; 354), das die Höhlung (164; 264; 364) umgibt, aus Aluminium gebildet ist.
EP03809095A 2002-10-15 2003-10-15 Drehbefestigung für versorgungsbehälter für applikatoren Expired - Lifetime EP1558397B1 (de)

Applications Claiming Priority (5)

Application Number Priority Date Filing Date Title
US272230 2002-10-15
US10/272,230 US20040069796A1 (en) 2002-10-15 2002-10-15 Apparatus and methods for swivel attachment of supply vessels to applicator devices
US10/608,058 US6863227B2 (en) 2002-10-15 2003-06-27 Apparatus and methods for swivel attachment of supply vessels to applicator devices
US608058 2003-06-27
PCT/US2003/032904 WO2004035226A1 (en) 2002-10-15 2003-10-15 Swivel attachment of supply vessels to applicators

Publications (3)

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EP1558397A1 EP1558397A1 (de) 2005-08-03
EP1558397A4 EP1558397A4 (de) 2006-09-13
EP1558397B1 true EP1558397B1 (de) 2009-03-04

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AU (1) AU2003301254A1 (de)
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4035004A (en) 1976-03-18 1977-07-12 Hengesbach Robert W Ball and socket connector and combination thereof with spray gun
US4273289A (en) * 1977-12-20 1981-06-16 Emile Jette Showerhead spray texture control
DE3627336A1 (de) * 1986-08-12 1988-02-18 Erhard Birenheide Vorratsbehaelter fuer eine spritzpistole
US5655848A (en) * 1995-05-15 1997-08-12 Chrysler Corporation Suspension ball joint
US6409103B1 (en) * 2000-10-24 2002-06-25 360 Enterprises 360° rotational directional nozzle for trigger sprayers

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CA2502487A1 (en) 2004-04-29
WO2004035226A1 (en) 2004-04-29
EP1558397A4 (de) 2006-09-13
EP1558397A1 (de) 2005-08-03
AU2003301254A1 (en) 2004-05-04

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