WO2010119090A1 - A painting apparatus - Google Patents

A painting apparatus Download PDF

Info

Publication number
WO2010119090A1
WO2010119090A1 PCT/EP2010/054943 EP2010054943W WO2010119090A1 WO 2010119090 A1 WO2010119090 A1 WO 2010119090A1 EP 2010054943 W EP2010054943 W EP 2010054943W WO 2010119090 A1 WO2010119090 A1 WO 2010119090A1
Authority
WO
WIPO (PCT)
Prior art keywords
paint container
closure module
outer ring
main housing
paint
Prior art date
Application number
PCT/EP2010/054943
Other languages
French (fr)
Inventor
Christopher John Ord
Original Assignee
Akzo Nobel Coatings International B.V.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Akzo Nobel Coatings International B.V. filed Critical Akzo Nobel Coatings International B.V.
Priority to CN2010800164938A priority Critical patent/CN102395472B/en
Priority to CA2757071A priority patent/CA2757071A1/en
Priority to US13/263,653 priority patent/US20120031906A1/en
Priority to EP10717580.4A priority patent/EP2419281B1/en
Priority to BRPI1006269A priority patent/BRPI1006269A2/en
Publication of WO2010119090A1 publication Critical patent/WO2010119090A1/en
Priority to ZA2011/07337A priority patent/ZA201107337B/en

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44DPAINTING OR ARTISTIC DRAWING, NOT OTHERWISE PROVIDED FOR; PRESERVING PAINTINGS; SURFACE TREATMENT TO OBTAIN SPECIAL ARTISTIC SURFACE EFFECTS OR FINISHES
    • B44D3/00Accessories or implements for use in connection with painting or artistic drawing, not otherwise provided for; Methods or devices for colour determination, selection, or synthesis, e.g. use of colour tables
    • B44D3/12Paint cans; Brush holders; Containers for storing residual paint
    • B44D3/127Covers or lids for paint cans
    • 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
    • B65D41/00Caps, e.g. crown caps or crown seals, i.e. members having parts arranged for engagement with the external periphery of a neck or wall defining a pouring opening or discharge aperture; Protective cap-like covers for closure members, e.g. decorative covers of metal foil or paper
    • B65D41/02Caps or cap-like covers without lines of weakness, tearing strips, tags, or like opening or removal devices
    • B65D41/04Threaded or like caps or cap-like covers secured by rotation
    • B65D41/0435Threaded or like caps or cap-like covers secured by rotation with separate sealing elements
    • B65D41/0442Collars or rings
    • 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
    • B65D45/00Clamping or other pressure-applying devices for securing or retaining closure members
    • B65D45/02Clamping or other pressure-applying devices for securing or retaining closure members for applying axial pressure to engage closure with sealing surface
    • B65D45/30Annular members, e.g. with snap-over action or screw-threaded
    • B65D45/305Screw-threaded or bayonet-type annular members cooperating with an intermediate ring
    • 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
    • B05C17/02Rollers ; Hand tools comprising coating rollers or coating endless belts
    • B05C17/03Rollers ; Hand tools comprising coating rollers or coating endless belts with feed system for supplying material from an external source or with a reservoir or container for liquid or other fluent material located in or on the hand tool outside the coating roller
    • B05C17/0333Rollers ; Hand tools comprising coating rollers or coating endless belts with feed system for supplying material from an external source or with a reservoir or container for liquid or other fluent material located in or on the hand tool outside the coating roller with pump

Definitions

  • the present invention relates to a painting apparatus.
  • Paint apparatus exists whereby paint is automatically fed from the paint container to the roller sleeve without the need to decant the paint into a roller tray, and load the roller sleeve.
  • the applicants co-pending patent application GB2448578 describes a painting apparatus including a roller assembly and a closure module, the closure module fitting onto a paint container.
  • the closure module includes a pump which supplies paint to the roller assembly via a dip-tube assembly.
  • a paint container assembly comprising a paint container and a closure module, the paint container having a screw threaded rim, the closure module having a main housing and an outer ring, the outer ring having a screw thread, in which the outer ring is rotatable relative to the main housing such that the screw thread cooperates with the threaded rim of the paint container to secure the closure module onto the paint container without having to rotate the main housing relative to the paint container.
  • this enables the closure module to utilise the screw thread on the paint container to secure the closure module to the paint container without having to rotate the main housing. Avoiding rotation of the main housing reduces the risk of any components connected to the main housing, for example, a conduit connected to a roller assembly, from becoming tangled as they rotate with the main housing.
  • Figure 1 is a perspective view of a prior art painting apparatus
  • Figure 2 is a perspective view of a painting apparatus according to the present invention.
  • FIGS 3 to 5 are perspective views of part of the painting apparatus of Figure 2,
  • Figure 6 is a sectional front view of part of the painting apparatus of Figure 2
  • FIGS 7 to 1 1 are perspective views of part of the painting apparatus of Figure 2,
  • FIGS 12 and 13 are simplified sectional views of part of the painting apparatus of Figure 2,
  • FIGS 13A to 18 are perspective views of part of the painting apparatus of Figure 2,
  • FIGS 19 to 21 are simplified sectional views of part of the painting apparatus of Figure 2.
  • Figure 22 is a perspective view of part of the painting apparatus of Figure 2,
  • Figure 1 shows a prior art painting apparatus 400 comprising a paint container 412 , a closure module 415, a dip-tube assembly 490, and a roller assembly 480.
  • the dip-tube assembly is fluidly connected to the roller assembly 480 via conduit 430.
  • Such an apparatus is described in GB2448578.
  • a painting apparatus 10 of the present invention comprising a paint container 12, a closure module 15, a dip-tube assembly 190, and a roller assembly 195.
  • the dip-tube assembly 190 is fluidly connected to the roller assembly 210 via conduit 130.
  • the roller assembly 210 comprises a roller cage 212 which houses a roller sleeve 214, and a switch 216.
  • the paint container 12 includes a main body 14, a collar 16, a handle 18, and a removable closure 20.
  • the main body 14 has an inwardly tapering neck portion 22 and an upstanding rim portion 24.
  • the upstanding rim portion 24 has a rim 25 which defines a container aperture 26 ( Figures 4 and 4A).
  • the collar 16 has an upstanding rim 27 with an internal web 28 projecting radially inwardly therefrom.
  • the web 28 includes a dip-tube aperture 29 which is dimensioned such that it can receive a dip-tube assembly (see below).
  • Aperture 31 is defined between the internal web 28 and the rim 27 ( Figure 5).
  • the collar 16 snap-fits onto the upstanding rim 24 of the paint container by engagement of a main body projection 32 with a collar projection 30 ( Figure 6).
  • the collar 16 also includes a screw thread 34 onto which a screw thread 36 of the closure 20 is screwed so as to close and seal the paint container 12 ( Figure 6).
  • the screw thread 24 of the collar 16 also engages with the closure module 15 (see below) when the closure 20 has been removed.
  • the closure module 15 includes a main housing 36 and a circular outer ring 38.
  • the main housing comprises an upper casing 40, and a lower casing 42.
  • the closure module components are made of plastic, for example, ABS.
  • the closure module 15 is shown with the outer ring 38 present.
  • the upper case 40 includes a handle 71 to enable the control module 15 to be carried.
  • the upper casing 40 has an upper surface 41 upon which is located a dip-tube aperture 44.
  • the upper casing 40 further includes two identical apertures 46 arranged such that when assembled between the upper and lower casing, the outer ring 38 can be manipulated through the apertures 34 (see below).
  • the lower casing 42 has an upper surface 48 and a lower surface 50.
  • the upper surface 48 includes a dip-tube aperture 52 on its upper surface 48.
  • the lower casing 42 includes two identical apertures 54 arranged such that when assembled with the upper casing 40, both the apertures 46 on the upper casing 40 coincide with the apertures 54 on the lower casing such that the outer ring 38 can be manipulated (see below).
  • the lower surface 50 includes a recess 56 into which handle 18 locates when the closure module 15 is secured onto the paint container 12.
  • the lower casing 42 include three horizontal inwardly extending ledges 66 ( Figure 15).
  • the lower casing 42 also includes a downwardly extending projection 70 which is dimensioned such that it locates inside and through aperture 31 of collar 15.
  • the outer ring 38 has an outer radial surface 58 and an inner radial surface 60.
  • the outer surface 58 includes a plurality of indents 62 to enable the outer ring 38 to be manipulated and rotated.
  • the closure module 15 is assembled by positioning the outer ring 38 inside the lower casing 42 such that the outer ring 38 sits upon the ledges 66.
  • a spring 80 is positioned between an upper surface 82 of the outer ring 38 and a lower inside surface 84 of the power casing 42 such that the outer ring 38 is biased downwards towards the ledges 66 ( Figure 13). The spring force is selected such that the outer ring 38 can be rotated by a normal user.
  • the closure module 15 can then be positioned onto the paint container 12 such that the downwardly extending projection 70 locates inside aperture 31 of the collar 16.
  • the tolerance level between the projection 70 and aperture 31 ensures that the dip-tube apertures 52,44 on the closure module 15 are vertically aligned with the dip-tube aperture 29 on collar 16.
  • downward projection 70 prevents the closure module 15 from rotating relative to the paint container 12 which is advantageous when rotating the outer ring 38 as only one hand is required.
  • the dip-tube assembly 190 comprises a sealed cylindrical housing 185 having a gear pump 186 located at its lower free end.
  • the cylindrical housing 185 includes a lower casing 192 to retain the gear pump 186.
  • the lower casing 192 includes a plurality of holes (not shown) which are sized so as to prevent particles of greater than 2mm passing into the gear pump.
  • the closure module 15 includes a motor 160 and a drive gear 181 which connects the motor 160 to a drive gear 130 of the dip-tube assembly 190 when the dip- tube assembly 195 is inserted through apertures 44,52,29 into the paint container allowing the gears 181,130 to engage with each other.
  • the gear pump 186 comprises two meshed gears 140,142.
  • Gear 140 is connected via drive shaft 189 to gear 130 such that rotation of gear 181 which is connected to the motor 60 causes the two meshed gears 140,142 to rotate.
  • Rotation of the gears 140,142 by activation of switch 216 causes paint 150 to be sucked up through the holes in the casing 192, and into the tube 188 via a hole 193 and channel arrangement 195.
  • Tube 188 is fluidly connected via a connector 197 (shown as a broken continuation lines in Figure 21) to tube 120, and therefore paint is driven from the paint container to the roller assembly 180.
  • the tube 120 has an internal diameter of 6mm.
  • the downward projection 70 prevents relative rotation between the paint container and the closure module and therefore vertical misalignment of apertures 52,44 on the control module and aperture 29 on the collar 16. Maintaining alignment of the apertures therefore prevents the dip-tube assembly 180 from being damaged ( Figure 22).
  • a seal is formed therebetween such that paint can only leave the paint container via the dip-tube assembly, i.e. there is a seal (not shown) between the dip-tube assembly and the closure module, and between the closure module and the paint container.
  • the collar of the paint container can include a dip-tube aperture located at the centre-point of the paint container opening as opposed to being offset from the centre-point.
  • the collar can simply include an opening without the provision of a dip-tube aperture. In both cases, it is not necessary to prevent rotation of the closure module relative to the paint container, and therefore there is no requirement for a downward projection as in the embodiment of Figures 2 to 22.
  • the paint container can be provided as a one-piece moulding including the collar and main body as opposed to separate arrangement of the above embodiments.

Abstract

A painting apparatus comprising a paint container and a closure module, the paint container having a screw threaded rim, the closure module having a main housing and an outer ring, the outer ring having a screw thread, in which the outer ring is rotatable relative to the main housing such that the screw thread cooperates with the threaded rim of the paint container to secure the closure module onto the paint container without having to rotate the main housing relative to the paint container.

Description

A Painting Apparatus
The present invention relates to a painting apparatus.
It is known for users to decant paint from a paint container into a roller tray, load a roller sleeve with paint using the roller tray, and then apply paint to a surface such as a wall or ceiling with the roifer sleeve. Users find this known process both time consuming, in that it is necessary to continually load the roller sleeve with paint from the roller tray and decant paint from the paint container to the roller tray. The risk of spilling paint is also high due to the need to decant paint into the roller tray, and then load the roller sleeve before applying the paint to the surface.
Painting apparatus exists whereby paint is automatically fed from the paint container to the roller sleeve without the need to decant the paint into a roller tray, and load the roller sleeve. The applicants co-pending patent application GB2448578 describes a painting apparatus including a roller assembly and a closure module, the closure module fitting onto a paint container. The closure module includes a pump which supplies paint to the roller assembly via a dip-tube assembly.
It would be desirable to improve the means by which the closure module is secured to the paint container.
Thus, according to the present invention, there is provided a paint container assembly comprising a paint container and a closure module, the paint container having a screw threaded rim, the closure module having a main housing and an outer ring, the outer ring having a screw thread, in which the outer ring is rotatable relative to the main housing such that the screw thread cooperates with the threaded rim of the paint container to secure the closure module onto the paint container without having to rotate the main housing relative to the paint container. Advantageously, this enables the closure module to utilise the screw thread on the paint container to secure the closure module to the paint container without having to rotate the main housing. Avoiding rotation of the main housing reduces the risk of any components connected to the main housing, for example, a conduit connected to a roller assembly, from becoming tangled as they rotate with the main housing.
The invention will now be described by way of example only with reference to the accompanying drawings in which:
Figure 1 is a perspective view of a prior art painting apparatus,
Figure 2 is a perspective view of a painting apparatus according to the present invention.
Figures 3 to 5 are perspective views of part of the painting apparatus of Figure 2,
Figure 6 is a sectional front view of part of the painting apparatus of Figure 2
Figures 7 to 1 1 are perspective views of part of the painting apparatus of Figure 2,
Figures 12 and 13 are simplified sectional views of part of the painting apparatus of Figure 2,
Figures 13A to 18 are perspective views of part of the painting apparatus of Figure 2,
Figures 19 to 21 are simplified sectional views of part of the painting apparatus of Figure 2, and
Figure 22 is a perspective view of part of the painting apparatus of Figure 2,
Figure 1 shows a prior art painting apparatus 400 comprising a paint container 412 , a closure module 415, a dip-tube assembly 490, and a roller assembly 480. The dip-tube assembly is fluidly connected to the roller assembly 480 via conduit 430. Such an apparatus is described in GB2448578.
With reference to Figures 2 to 22 there is shown a painting apparatus 10 of the present invention comprising a paint container 12, a closure module 15, a dip-tube assembly 190, and a roller assembly 195. The dip-tube assembly 190 is fluidly connected to the roller assembly 210 via conduit 130.
The roller assembly 210 comprises a roller cage 212 which houses a roller sleeve 214, and a switch 216.
The paint container 12 includes a main body 14, a collar 16, a handle 18, and a removable closure 20. The main body 14 has an inwardly tapering neck portion 22 and an upstanding rim portion 24. The upstanding rim portion 24 has a rim 25 which defines a container aperture 26 (Figures 4 and 4A).
The collar 16 has an upstanding rim 27 with an internal web 28 projecting radially inwardly therefrom. The web 28 includes a dip-tube aperture 29 which is dimensioned such that it can receive a dip-tube assembly (see below). Aperture 31 is defined between the internal web 28 and the rim 27 (Figure 5).
The collar 16 snap-fits onto the upstanding rim 24 of the paint container by engagement of a main body projection 32 with a collar projection 30 (Figure 6).
The collar 16 also includes a screw thread 34 onto which a screw thread 36 of the closure 20 is screwed so as to close and seal the paint container 12 (Figure 6). The screw thread 24 of the collar 16 also engages with the closure module 15 (see below) when the closure 20 has been removed.
The handle 18 is secured to the collar 16 in a known way. In Figure 7, the closure module 15 includes a main housing 36 and a circular outer ring 38. The main housing comprises an upper casing 40, and a lower casing 42. Typically the closure module components are made of plastic, for example, ABS. In Figure 14, the closure module 15 is shown with the outer ring 38 present.
The upper case 40 includes a handle 71 to enable the control module 15 to be carried.
In Figures 10, 1 1, and 16, the upper casing 40 has an upper surface 41 upon which is located a dip-tube aperture 44. The upper casing 40 further includes two identical apertures 46 arranged such that when assembled between the upper and lower casing, the outer ring 38 can be manipulated through the apertures 34 (see below).
In Figures 9, 12, and 15, the lower casing 42 has an upper surface 48 and a lower surface 50. The upper surface 48 includes a dip-tube aperture 52 on its upper surface 48. The lower casing 42 includes two identical apertures 54 arranged such that when assembled with the upper casing 40, both the apertures 46 on the upper casing 40 coincide with the apertures 54 on the lower casing such that the outer ring 38 can be manipulated (see below). The lower surface 50 includes a recess 56 into which handle 18 locates when the closure module 15 is secured onto the paint container 12.
The lower casing 42 include three horizontal inwardly extending ledges 66 (Figure 15).
The lower casing 42 also includes a downwardly extending projection 70 which is dimensioned such that it locates inside and through aperture 31 of collar 15.
In Figure 8, the outer ring 38 has an outer radial surface 58 and an inner radial surface 60. The outer surface 58 includes a plurality of indents 62 to enable the outer ring 38 to be manipulated and rotated.
The closure module 15 is assembled by positioning the outer ring 38 inside the lower casing 42 such that the outer ring 38 sits upon the ledges 66. A spring 80 is positioned between an upper surface 82 of the outer ring 38 and a lower inside surface 84 of the power casing 42 such that the outer ring 38 is biased downwards towards the ledges 66 (Figure 13). The spring force is selected such that the outer ring 38 can be rotated by a normal user.
The upper and lower casings are secured together using screws (not shown). Once assembled together, the outer ring 38 is visible through apertures 46,44, and the dip-tube apertures 44,52 are vertically aligned (Figures 8 and 12).
In Figures 3, 16, and 17, the closure module 15 can then be positioned onto the paint container 12 such that the downwardly extending projection 70 locates inside aperture 31 of the collar 16. The tolerance level between the projection 70 and aperture 31 ensures that the dip-tube apertures 52,44 on the closure module 15 are vertically aligned with the dip-tube aperture 29 on collar 16.
The outer ring 38 is then rotated such that screw thread 64 engages with the screw thread 34 of the collar to secure the closure module 15 onto the paint container 12 (Figure 13). In Figure 13A the outer ring 38 is shown screwed onto collar 16 without showing the other components of the control module 15.
It will be appreciated that the provision of downward projection 70 prevents the closure module 15 from rotating relative to the paint container 12 which is advantageous when rotating the outer ring 38 as only one hand is required. In an alternative embodiment without the downward projection, it may be necessary to hold the main casing with one hand whilst rotating the outer ring with the other to prevent rotation of the main casing.
In Figure 18 there is shown a dip-tube assembly 180. The dip-tube assembly 190 comprises a sealed cylindrical housing 185 having a gear pump 186 located at its lower free end. The cylindrical housing 185 includes a lower casing 192 to retain the gear pump 186. The lower casing 192 includes a plurality of holes (not shown) which are sized so as to prevent particles of greater than 2mm passing into the gear pump. In Figure 20 the closure module 15 includes a motor 160 and a drive gear 181 which connects the motor 160 to a drive gear 130 of the dip-tube assembly 190 when the dip- tube assembly 195 is inserted through apertures 44,52,29 into the paint container allowing the gears 181,130 to engage with each other.
In Figure 21, the gear pump 186 comprises two meshed gears 140,142. Gear 140 is connected via drive shaft 189 to gear 130 such that rotation of gear 181 which is connected to the motor 60 causes the two meshed gears 140,142 to rotate. Rotation of the gears 140,142 by activation of switch 216 causes paint 150 to be sucked up through the holes in the casing 192, and into the tube 188 via a hole 193 and channel arrangement 195. Tube 188 is fluidly connected via a connector 197 (shown as a broken continuation lines in Figure 21) to tube 120, and therefore paint is driven from the paint container to the roller assembly 180. The tube 120 has an internal diameter of 6mm.
The downward projection 70 prevents relative rotation between the paint container and the closure module and therefore vertical misalignment of apertures 52,44 on the control module and aperture 29 on the collar 16. Maintaining alignment of the apertures therefore prevents the dip-tube assembly 180 from being damaged (Figure 22).
When the closure module is secured on the paint container, a seal is formed therebetween such that paint can only leave the paint container via the dip-tube assembly, i.e. there is a seal (not shown) between the dip-tube assembly and the closure module, and between the closure module and the paint container.
In an alternative embodiment the collar of the paint container can include a dip-tube aperture located at the centre-point of the paint container opening as opposed to being offset from the centre-point. Similarly, the collar can simply include an opening without the provision of a dip-tube aperture. In both cases, it is not necessary to prevent rotation of the closure module relative to the paint container, and therefore there is no requirement for a downward projection as in the embodiment of Figures 2 to 22. In an alternative embodiment the paint container can be provided as a one-piece moulding including the collar and main body as opposed to separate arrangement of the above embodiments.

Claims

Claims
1. A painting apparatus comprising a paint container and a closure module, the paint container having a screw threaded rim, the closure module having a main housing and an outer ring, the outer ring having a screw thread, in which the outer ring is rotatable relative to the main housing such that the screw thread cooperates with the threaded rim of the paint container to secure the closure module onto the paint container without having to rotate the main housing relative to the paint container.
2. A painting apparatus according to claim 1, the paint container having an aperture through which an associated dip-tube can be passed through and inserted into the paint container, the screw threaded rim defining an opening of the paint container, in which the aperture is offset from a centre point of the paint container opening when the closure module is secured on the paint container.
3. A painting apparatus assembly according to claim 1 or 2, the closure module including a first feature, and the paint container including a second feature, in which the first and second features cooperate to prevent rotation of the main housing relative to the paint container when the closure module is secured on the paint container.
4. A painting apparatus assembly according to claim 4 in which the first feature is a downward projection, and the second feature is an aperture, the downward projection being dimensioned such that it locates inside the aperture thereby preventing relative rotation between the main housing and the paint container.
5. A painting apparatus assembly according to any preceding claim, the control module having a lower casing with a lower surface and a recess positioned on the lower surface, in which the recess houses a handle of the paint container when the closure module is secured on the paint container. A closure module having a main housing and an outer ring, the outer ring having a screw thread, in which the outer ring is rotatable relative to the main housing such that the screw thread cooperates with a threaded rim of an associated paint container to secure the closure module onto the paint container without having to rotate the a main housing relative to the paint container.
PCT/EP2010/054943 2009-04-15 2010-04-15 A painting apparatus WO2010119090A1 (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
CN2010800164938A CN102395472B (en) 2009-04-15 2010-04-15 Painting apparatus
CA2757071A CA2757071A1 (en) 2009-04-15 2010-04-15 A painting apparatus
US13/263,653 US20120031906A1 (en) 2009-04-15 2010-04-15 painting apparatus
EP10717580.4A EP2419281B1 (en) 2009-04-15 2010-04-15 A painting apparatus
BRPI1006269A BRPI1006269A2 (en) 2009-04-15 2010-04-15 sprayer, sprayer assembly and closing module
ZA2011/07337A ZA201107337B (en) 2009-04-15 2011-10-06 A painting apparatus

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB0906453.6 2009-04-15
GB0906453.6A GB2469479B (en) 2009-04-15 2009-04-15 A painting apparatus

Publications (1)

Publication Number Publication Date
WO2010119090A1 true WO2010119090A1 (en) 2010-10-21

Family

ID=40750609

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/EP2010/054943 WO2010119090A1 (en) 2009-04-15 2010-04-15 A painting apparatus

Country Status (8)

Country Link
US (1) US20120031906A1 (en)
EP (1) EP2419281B1 (en)
CN (1) CN102395472B (en)
BR (1) BRPI1006269A2 (en)
CA (1) CA2757071A1 (en)
GB (1) GB2469479B (en)
WO (1) WO2010119090A1 (en)
ZA (1) ZA201107337B (en)

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US9486063B2 (en) 2015-02-27 2016-11-08 Jose Roman Paint application assembly

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Also Published As

Publication number Publication date
EP2419281B1 (en) 2013-12-25
CN102395472A (en) 2012-03-28
EP2419281A1 (en) 2012-02-22
GB0906453D0 (en) 2009-05-20
CN102395472B (en) 2013-10-09
GB2469479B (en) 2013-04-10
BRPI1006269A2 (en) 2017-05-30
CA2757071A1 (en) 2010-10-21
ZA201107337B (en) 2012-07-25
GB2469479A (en) 2010-10-20
US20120031906A1 (en) 2012-02-09

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