EP0300248B2 - Spray washer - Google Patents

Spray washer Download PDF

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Publication number
EP0300248B2
EP0300248B2 EP88110529A EP88110529A EP0300248B2 EP 0300248 B2 EP0300248 B2 EP 0300248B2 EP 88110529 A EP88110529 A EP 88110529A EP 88110529 A EP88110529 A EP 88110529A EP 0300248 B2 EP0300248 B2 EP 0300248B2
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EP
European Patent Office
Prior art keywords
fluid
cleaning
air
flow
cabinet
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EP88110529A
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German (de)
French (fr)
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EP0300248B1 (en
EP0300248A1 (en
Inventor
Soichiro Yamamoto
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Uni Ram Corp
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Uni Ram Corp
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/02Cleaning by the force of jets or sprays
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B15/00Details of spraying plant or spraying apparatus not otherwise provided for; Accessories
    • B05B15/50Arrangements for cleaning; Arrangements for preventing deposits, drying-out or blockage; Arrangements for detecting improper discharge caused by the presence of foreign matter
    • B05B15/55Arrangements for cleaning; Arrangements for preventing deposits, drying-out or blockage; Arrangements for detecting improper discharge caused by the presence of foreign matter using cleaning fluids
    • B05B15/555Arrangements for cleaning; Arrangements for preventing deposits, drying-out or blockage; Arrangements for detecting improper discharge caused by the presence of foreign matter using cleaning fluids discharged by cleaning nozzles

Definitions

  • This invention relates to a method and apparatus for automatic cleaning of spray gun assemblies and their component parts.
  • Paint workshops employ spray gun assemblies for painting of products, particularly in the automobile industry.
  • Syphon spray guns are usually employed for small jobs requiring a small amount of paint
  • pressure spray guns are usually employed for larger jobs.
  • products can be painted rapidly.
  • the gun assemblies must be thoroughly cleaned of the paint before use with a different colour or type of paint.
  • the cleaning operation represents downtime in the use of the gun assemblies, necessitating that the workshop have a large number of gun assemblies if the skilled paint sprayer is to be kept employed for paint spraying operations with different paints throughout the day.
  • the cleaning operation is an unpleasant and hazardous task requiring use of noxious, volatile, paint solvents, which are generally flammable and nauseous.
  • the cleaning operation will involve a period of immersing the gun assembly in an open vat of the cleaning fluid, allowing the assembly to soak in the fluid and using a metal brush or scraper to loosen paint debris, followed by rinsing with fresh cleaning fluid.
  • a problem with the Herkules gun cleaner is that the cleaning solvent is very abrasive and it wears out the seals in the solvent pumps causing premature pump failure.
  • Another problem is that the gun cleaning machine is often left running longer than is needed to clean the spray guns, with the result that energy is wasted and solvent evaporation is excessive causing an environmental pollution problem.
  • the present invention solves these problems by providing a time control means in the form of a pneumatic time valve coupled to the solvent pump to shut off the pump automatically after a predetermined time just sufficient to clean the spray guns.
  • a cleaning apparatus for the automatic cleaning of paint spray gun assemblies having a cleaning cabinet provided with a bottom opening, means defining a chamber located below the bottom opening for collecting fluid from the cleaning cabinet, a fluid flow line system including a fluid flow distribution system having a plurality of cleaning fluid outlets for ejection of cleaning fluid within the cabinet, a fluid pump having a fluid inlet and a fluid outlet, a fluid delivery line for the flow of cleaning fluid from the fluid outlet to the fluid flow line system, and a fluid return line for flow of cleaning fluid from the chamber to the fluid inlet, characterized in that a sub-plurality of said outlets define means for supporting a spray gun in the cabinet with the paint passages interior of the gun in direct fluid flow communication with one of the outlets, the fluid pump is pneumatically actuated, an air-flow system is provided having an air delivery line, the fluid pump having an air inlet in air flow communication with the air delivery line, the air-flow system and the fluid flow-line system having separate independent flow lines, time control means
  • a method of cleaning at least one paint spray gun assembly comprises: mounting a gun in a cleaning cabinet, providing cleaning fluid under pressure to the gun through a fluid flow system by employing an air flow system, impinging paint contacting surfaces of the gun with the cleaning fluid within the cabinet, characterized in that the cleaning fluid is pumped through the fluid flow system by a fluid pump, which is actuated by air in the air-flow system, wherein the air-flow system is maintained separate from the fluid flow system, and wherein the pump is operated for a predetermined period of time.
  • a cleaning apparatus 10 includes a cleaning cabinet 12, a cleaning fluid flow-line system 14, a bath 16 and a pneumatic circulating system 18.
  • Cleaning cabinet 12 includes a support screen 20 at its lower end and a top opening 22.
  • a lid 24 is hingedly mounted by hinges 26 along one side of top opening 22.
  • Top opening 22 includes an inner shoulder 28 having a ledge 30 to support lid 24 when closed.
  • the cleaning fluid flow-line system 14 includes a cleaning fluid pump 36 having a pump fluid outlet 37 communicating with a fluid delivery line 38.
  • Fluid delivery line 38 is in fluid flow communication with a distribution tube 40 connected via a connection tube 44 with a distribution tube 42.
  • Distribution tube 40 includes a horizontal pipe 46 spanning one side of the area below screen 20, and terminating at its opposed ends in a pair of vertical pipes 48 having closed upper ends 50.
  • distribution tube 42 includes a horizontal pipe 52, spanning the other side of the area below screen 20, and having vertical pipes 54 at its opposed ends, the latter terminating in closed ends 56.
  • Horizontal pipes 46 and 52 have short intermediate pipe portions 47 and 53, respectively, which are generally parallel; connection tube 44 extends between opposed intermediate pipe portions 47 and 53.
  • Outer pipe portions 49 and 51 of horizontal pipe 46 extend from opposed ends of intermediate pipe portion 47 to the vertical pipes 48; similarly outer pipe portions 55 and 57 of horizontal pipe 52 extend from opposed ends of intermediate pipe portion 53 to the vertical pipes 54.
  • An ejection tube 58 and a wide angle nozzle 59 are formed in horizontal pipe portion 46 in the respective outer pipe portions 49 and 51; and an ejection tube 60 and a wide angle nozzle 61 are formed in horizontal pipe portion 52, in the respective outer pipe portions 55 and 57.
  • the wide angle nozzles 59 and 61 project through screen 20.
  • Wide angle nozzles 62 are formed in vertical pipes 48 and wide angle nozzles 64 are formed in vertical pipes 54.
  • a pair of ejection orifices 70 is formed in outer pipe portion 49 on either side of ejection tube 58; and ejection orifices 72 are formed in outer pipe portion 55, one on either side of ejection tube 60.
  • An adapter 73 is provided for fitting on ejection tube 58 or 60.
  • the tapered upper end portions of adapter 73 and ejection tubes 58 and 60 are roughened, such as by knurling, grooving or providing same with opposed flats 180° apart to cause some leakage in use as described further below.
  • a strainer cartridge 66 is connected via a return line 68 to a pump fluid inlet 69 in fluid pump 36.
  • pneumatic circulating system 18 includes an air inlet line 74 an air accumulator 76, a pneumatic timer valve 78 and an air delivery line 80 communicating with fluid pump 36 via an air inlet port 82.
  • Air inlet line 74 communicates via a valve 84 with an accumulator inlet line 86 which communicates with air accumulator 76.
  • a branch line 88 in accumulator inlet line 86 communicates with an air pressure gauge 90.
  • An accumulator outlet line 92 communicates air accumulator 76 with an inlet end 93 of pneumatic timer valve 78.
  • Pneumatic timer valve 78 includes a timer adjuster 94 including an air escape port 95 having an adjustable closure 99 which specifically may comprise a screw closure received in port 95.
  • Branch line 96 from air inlet line 74 communicates with outlet end 97 of pneumatic timer valve 78.
  • a lid safety valve 100 is disposed in air delivery line 80 between pneumatic timer valve 78 and air inlet port 82.
  • a branch line 102 extends between branch line 96 and air delivery line 80.
  • Air control valve 104 is disposed in branch line 102.
  • a timer button 106 is operably associated with valve 84.
  • a restrictor 110 in air delivery line 80 limits air flow therein to control the speed of pump 36.
  • Bath 16 includes a chamber 112 having a vertical front wall 114, a pair of inclined side walls 116 and an inclined rear wall 118. Side walls 116 have support flanges 117.
  • the chamber 112 has the form of an inverted, truncated pyramid, askewed so as to have a straight, vertical front wall 114.
  • a drain valve 120 is disposed at the juncture of the lower ends of the walls 114, 116 and 118, and thus at the front side of chamber 112.
  • a skirt 122 surrounds the chamber 112 and stands on legs 124, part of the skirt 122 actually forming front wall 114 of chamber 112.
  • An activator plate 126 is supported on lid 24 and a switch plate 128 is operably associated with lid safety valve 100.
  • a vertically movable switch rod 130 is attached to switch plate 128 and guided by guides 132.
  • Switch plate 128 engages a spring loaded plunger 134 in safety valve 100.
  • Valve 100 is normally closed, so that downward movement of switch plate 100 caused by closure of lid 24 opens safety valve 100 and vice versa.
  • an optional adapter 73 is mounted over ejection tube 60; adapter 73 defining a sleeve configured and dimensioned at an inner end to matingly receive outer end of ejection tube 60; the outer end of adapter 73 being configured and dimensioned to be matingly received within a paint passage inlet of pressure spray gun 138. Pressure spray gun 138 with its trigger closed is thus supported on adapter 73.
  • a syphon type spray gun 140 is supported on ejection tube 58, the outer end of ejection tube 58 being configured and dimensioned to be matingly received within a paint passage inlet of gun 140. It will be understood that adapter 73 could be supported on either ejection tube 58 or 60, and it could be eliminated if not needed depending upon the particular configuration or type of spray gun 138 to be cleaned.
  • a large canister 142 from pressure spray gun 138 is invertedly disposed over wide angle nozzle 59 and small canister 144 from syphon spray gun 140 is invertedly disposed over wide angle nozzle 61.
  • the trigger 150 is maintained in the closed, working position by tightening the trigger chain 148 and securing it by means of a link of the chain 148, in a tightened configuration, to hook 152 supported in wedge 146.
  • the wedge 146 can itself be used to hold the trigger 150 in closed configuration in many guns.
  • the configuration of the body of the gun provides location in which the wedge 146 can be securely seated, with the wedge 146 holding or restraining the trigger 150 in the depressed or closed configuration.
  • the chain 148 and hook 152 are useful for those spray guns, typically of European design, which do not have a body configuration facilitating direct use of wedge 146 to hold trigger 150 closed.
  • lid 24 is opened and water is introduced through top opening 22 to chamber 112. Drain valve 120 should of course, be closed. The upper level of the water should be below strainer cartridge 66. Cleaning fluid is thereafter introduced through top opening 22 to form a layer of fluid above the water in chamber 112. The cartridge 66 should be contained within the layer of cleaning fluid. Suitably the upper surface of the cleaning fluid layer should just reach the base of the distribution tubes 40 and 42 but, in any event, should be below the outlets of wide angle nozzles 59 and 61, and preferably below support screen 20.
  • adapter 73 for the pressure spray gun 138 is mounted on, for example, ejection tube 60 and the outlet end of adapter 73 is inserted into the paint inlet of gun 138.
  • the outer end of ejection tube 58 is inserted in the paint inlet line of gun 140.
  • Canister 142 of pressure spray gun 138 is inverted and placed over, for example, wide angle nozzle 59 and canister 144 of spray gun 140 is inverted and placed over wide angle nozzle 61.
  • the triggers for example, the trigger 150 of syphon spray gun 140, are directly locked in the closed, working position with wedge 146, or as illustrated in Fig. 4, so that the paint flow passages of guns 138 and 140 are completely open for flow of cleaning fluid.
  • the lid 24 is closed and its engagement with ledge 30 prevents splashing of cleaning fluid during operation of apparatus 10.
  • knob 106 is activated to open valve 84 and air is delivered through air inlet line 74 via normally closed valve 84 to the air accumulator 76, suitably at a pressure of 2.8 x 105 N/m2 to 8.4 x 105 N/m2 (40-120 psi), and then to normally closed pneumatic timer valve 78.
  • Accumulator 76 is pressurized almost instantaneously whereupon knob 106 is released to close valve 84.
  • pneumatic timer valve 78 opens, and air pressure then passes directly from air inlet line 74 through branch line 96 to pneumatic timer valve 78 and then to air delivery line 80 to air inlet port 82 of pump 36.
  • the air pressure in pump 36 activates a piston which forces cleaning fluid in the flow-line system 14, as jets under pressure from the ejector tubes 58 and 60 through the paint flow passages of the guns 138 and 140.
  • the cleaning fluid is ejected through wide angle nozzles 59 and 61 as jets impinging on the interior surfaces of canisters 142 and 144, respectively, and through wide angle nozzles 62 and 64 to impinge on the exterior surface of guns 138 and 140 and canisters 142 and 144.
  • the roughened tapered upper end portions of adapter 73 and ejection tubes 58 and 60 are roughened to cause some leakage. This ensures that the part of the paint inlet lines of spray guns 138 and 140 containing these tapered upper end portions is also cleaned.
  • the ejector orifices 70 or 72 direct cleaning fluid under pressure into any cup portion of a spray gun which skirts the paint passage inlet.
  • the pressurized air in air accumulator 76 bleeds from pneumatic timer valve 78 through escape port 95 at a rate determined by closure 99 of timer adjuster 94, and when the pressure drops below a predetermined value pneumatic timer valve 78 closes thereby discontinuing the feed of air under pressure to pump 36.
  • time adjuster 94 is adjusted such that pneumatic timer valve 78 will be open for a period of not more than 60 seconds, typically 30 to 60 seconds and especially about 45 seconds, whereby pump 36 actively circulates cleaning fluid under pressure through flow line system 14 for this relatively short period of time.
  • the jets impinging on paint coated walls displace the paint which is entrained in the fluid and carried away by the fast moving fluid, descending into bath 16.
  • Apparatus 10 can then be used, to clean other guns and components thereof as required.
  • the cleaning fluid is cycled through bath 16 and flow-line system 14.
  • the fluid ejected through ejector tubes 58 and 60 and wide angle nozzles 59, 61, 62 and 64 falls or flows downwardly into bath 16 from where fluid enters return line 68 through strainer cartridge 66 and thence to pump 36.
  • Paint debris is filtered from the fluid by strainer cartridge 66 and generally forms an intermediate paint debris layer in bath 16, floating on the upper surface of the lower water layer.
  • drain valve 120 is opened and the water flows out, drawing with it the paint debris layer. Fresh water is then introduced through opening 22 and, if necessary, fresh cleaning fluid in order to restore the levels.
  • the debris of certain types of paint for example, water-based paints and some metal containing paints does migrate into the water layer, in which it disperses.
  • the water layer can be replaced by other liquid layers, for example aqueous and other solvents which are immisable with the cleaning fluid, and of greater density such that the cleaning fluid floats thereon as an upper layer.
  • the inclined walls 116 and 118 of chamber 112 facilitate descension of paint debris into the lower region of bath 16 during draining.
  • the vertical front wall 114 enables location of drain valve 120 at a forward, front side of apparatus 10, so that it is readily accessible, without the hazard of crawling or extending the arm beneath bath 16.
  • lid 24 In operation lid 24 is closed and activator plate 126 engages the upper end of switch rod 130 forcing it vertically downwardly within guides 132, whereby switch plate 128 depresses spring-loaded plunger 134 to open lid safety switch 100.
  • activator plate 126 When lid 24 is opened, activator plate 126 is disengaged from the upper end of rod 130 and spring-loaded plunger 134 is free to rise urging switch plate 128 and rod 130 vertically upwardly, the rising of plunger 134 closes safety valve 100 so that, if in a cleaning cycle, delivery of air under pressure to pump 36 ceases, the cleaning cycle is interrupted. In this way the hazard of splashing of cleaning fluid from top opening is avoided or minimized.
  • Restriction 110 in air delivery line 80 is, for example, a small orifice of about .13 cm (0.05 inches)diameter, and limits the air flow to pump 36; this prevents the pump 36 running too fast, while still permitting development of the elevated pressure required to operate pump 36.
  • Chamber 112 is suitably of metal, for example, aluminium or stainless steel.
  • the materials of the component parts of apparatus 10 should, of course, be selected having regard to the noxious fluids which they are to contact.
  • Pump 36 will suitably operate at a pumping rate of about g to 36 litres/min. (2 to 8 gal./min.). Generally a pneumatic pump 36 is preferred, and, in particular electric pumps are to be avoided in view of the use of the noxious, volatile and flammable fluids.
  • the distribution tubes 40 and 42 suitably comprise a discrete unit with connection tube 44, of zinc plated steel or aluminium. As shown in Fig. 1, this discrete unit will sit or stand on support flanges 117 and there is no need for bolts or other connection members which may result in leaks.
  • the wide angle nozzles 59, 61, 62 and 64 suitably provide a full core jet encompassing a spray angle of 72-80°.
  • the nozzles are suitably of brass, aluminum, polypropylene or other inert material.
  • the wedge 146 is suitably of high density polyethylene or of metal.
  • the cleaning fluid may suitably be lacquer thinner, paint thinner or other cleaning fluid, for paint and the like, such as methanol, naphthalene or mineral spirits.
  • bath 16 has a capacity of 22.7 litres to 45.46 litres (5 to 10 gallons).
  • FIG. 5 With further reference to Figs. 5 and 6, there is shown a variation of apparatus 10 of Fig. 1, particularly as to bath 16.
  • the apparatus 110 of Figs. 5 and 6 has a cabinet 160, a disposable container or drum 162 and a flow pipe assembly 164.
  • the fluid flow-line system and pneumatic circulation system (not shown) are in general and same as described for Fig. 1.
  • Cabinet 160 has a shallow dished floor 166 having the shape of an inverted wide angle cone; floor 166 has a flow opening 168 at its central, lowermost part.
  • Drum 162 has an upper neck 170 defining a passage 172 having an outer threaded portion 174.
  • Flow pipe assembly 164 has a short central pipe 176 and an outer pipe assembly 178 is slidably disposed concentrically about central pipe 176.
  • Annular fluid resistant seal 180 is disposed between an upper end of outer pipe assembly 178 and central pipe 176.
  • Outer pipe assembly 178 has an outer pipe 163 and an inner pipe 165, an annular passage 167 extends between outer pipe 163 and inner pipe 165.
  • Outlet port 182 is formed in outer pipe assembly 178 adjacent its upper end; outlet port 182 is in fluid flow communication with annular passage 167.
  • central pipe 176 is in flow communication with flow opening 168, and its lower end extends a short distance into inner pipe 165 of outer pipe assembly, terminating above drum 162.
  • the outer pipe 163 extends only a short distance into drum 162, whereas the inner pipe 165 extends deep into the interior of drum 162.
  • Return line 68 is connected by fitting 184 to outlet port 182 and delivery line 38 communicates with distribution tubes 40 and 42 (not shown) as in Fig. 1.
  • a closure cap 186 having a central opening 188 threadably engages threaded portion 174 of neck 170, with outer pipe assembly 178 slidably received in central opening 188; annular fluid resistant seal 189 is formed between neck 170 and outer pipe 163.
  • the cleaning fluid is housed in drum 162 and, in operation, inner pipe 165 suitably extends into the cleaning fluid.
  • outer pipe 163 extends below the level of fluid in drum 162.
  • outer pipe assembly 178 is inserted through central opening 188 into drum 162; engagement of outlet port 182 with cap 186 prevents outer pipe assembly 178 from falling completely into the drum 162.
  • the drum 162 with outer pipe assembly 178 is positioned below central pipe 176 and aligned therewith so that outer pipe assembly 178 can be slidably withdrawn from central opening 188 and slidably telescoped about central pipe 176 so that the lower end of central pipe 176 is contained within inner pipe 165.
  • Outer pipe assembly 178 is then locked or fixed in position by any suitable means.
  • the cleaning cycle is initiated and proceeds as for apparatus 10 of Fig. 1; cleaning fluid flows upwardly through annular passage 167 around inner pipe 165 and thence through outlet port 182 into return line 66 into pump 36 and then through delivery line 38.
  • the ejected fluid falls or flows downwardly of floor 166 to flow opening 168 into central pipe 176 and thence into inner pipe 165 and into interior of drum 162.
  • used fluid is returned to an interior region of drum 162 and fluid for washing is drawn from an upper region.
  • the paint debris tends to settle so that fluid in the upper region of the drum, from which fluid is drawn for cleaning, remains relatively paint-free.
  • drum 162 containing the used fluid can be dispoed of.
  • the flow pipe assembly is vertically movable into cabinet 166 in order to raise the assembly 164 clear of drum 162 for installation and removal of drum 162.
  • flow pipe assembly 164 might conveniently have a handle at its upper end, within cabinet 166, whereby it might be lifted.
  • Paint spray gun assemblies are used for applying other sprayable compositions, for example, glue, adhesive, and specialty coatings such as lubricants and mold release coatings. It will be understood that the invention is equally applicable to cleaning of guns used for such other sprayable compositions and for the purposes of this disclosure the term "paint" is intended to include all of these compositions.

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  • Details Or Accessories Of Spraying Plant Or Apparatus (AREA)

Description

  • This invention relates to a method and apparatus for automatic cleaning of spray gun assemblies and their component parts.
  • Paint workshops employ spray gun assemblies for painting of products, particularly in the automobile industry. Syphon spray guns are usually employed for small jobs requiring a small amount of paint, whereas pressure spray guns are usually employed for larger jobs. By means of such spray guns, products can be painted rapidly. After a particular job using a particular paint, the gun assemblies must be thoroughly cleaned of the paint before use with a different colour or type of paint. The cleaning operation represents downtime in the use of the gun assemblies, necessitating that the workshop have a large number of gun assemblies if the skilled paint sprayer is to be kept employed for paint spraying operations with different paints throughout the day.
  • In addition, the cleaning operation is an unpleasant and hazardous task requiring use of noxious, volatile, paint solvents, which are generally flammable and nauseous. Typically, the cleaning operation will involve a period of immersing the gun assembly in an open vat of the cleaning fluid, allowing the assembly to soak in the fluid and using a metal brush or scraper to loosen paint debris, followed by rinsing with fresh cleaning fluid.
  • In an attempt to overcome these difficulties a paint spray gun cleaner has been produced by Herkules Hebetechnik GmbH. This spray gun cleaner washes the spray guns automatically, meaning that it is not necessary to manually scrub the spray gun parts using brushes or scrapers to loosen the paint debris. The Herkules gun cleaner is described in a leaflet entitled "hercules-lift, Pistolen-Waschautomat" and also in European Patent No. 0 261 469 B1. In the Herkules gun cleaner, cleaning solvent is pumped through the spray gun passages and also on the exterior of the spray guns, thus cleaning them without manual scrubbing.
  • A problem with the Herkules gun cleaner, however, is that the cleaning solvent is very abrasive and it wears out the seals in the solvent pumps causing premature pump failure. Another problem is that the gun cleaning machine is often left running longer than is needed to clean the spray guns, with the result that energy is wasted and solvent evaporation is excessive causing an environmental pollution problem.
  • The present invention solves these problems by providing a time control means in the form of a pneumatic time valve coupled to the solvent pump to shut off the pump automatically after a predetermined time just sufficient to clean the spray guns.
  • In accordance with one aspect of the invention, a cleaning apparatus is provided for the automatic cleaning of paint spray gun assemblies having a cleaning cabinet provided with a bottom opening, means defining a chamber located below the bottom opening for collecting fluid from the cleaning cabinet, a fluid flow line system including a fluid flow distribution system having a plurality of cleaning fluid outlets for ejection of cleaning fluid within the cabinet, a fluid pump having a fluid inlet and a fluid outlet, a fluid delivery line for the flow of cleaning fluid from the fluid outlet to the fluid flow line system, and a fluid return line for flow of cleaning fluid from the chamber to the fluid inlet,
       characterized in that
       a sub-plurality of said outlets define means for supporting a spray gun in the cabinet with the paint passages interior of the gun in direct fluid flow communication with one of the outlets,
       the fluid pump is pneumatically actuated,
       an air-flow system is provided having an air delivery line, the fluid pump having an air inlet in air flow communication with the air delivery line, the air-flow system and the fluid flow-line system having separate independent flow lines, time control means in the air-flow system adapted to interrupt the action of the pump within a predetermined time, a member adapted to hold a trigger of the spray gun in a closed, working position, and the time control means being a pneumatic time valve coupled between an air inlet line and an air delivery line communicating with the fluid pump.
  • In another aspect of the invention, a method of cleaning at least one paint spray gun assembly comprises: mounting a gun in a cleaning cabinet, providing cleaning fluid under pressure to the gun through a fluid flow system by employing an air flow system, impinging paint contacting surfaces of the gun with the cleaning fluid within the cabinet,
       characterized in that
       the cleaning fluid is pumped through the fluid flow system by a fluid pump, which is actuated by air in the air-flow system, wherein the air-flow system is maintained separate from the fluid flow system, and wherein the pump is operated for a predetermined period of time.
  • The invention is illustrated in particular and preferred embodiments by reference to the accompanying drawings in which:
    • FIG. 1 is a perspective view of the cleaning apparatus in accordance with the invention, part cut away to show the interior;
    • FIG. 2 is a front elevation of the apparatus of Fig. 1 as a partial cross section to show the interior;
    • FIG. 3 is a schematic representation of the cleaning fluid flow-line system and pneumatic circulating system of the apparatus of Fig. 1;
    • FIG. 4 shows a detail illustrating a device for holding the trigger of a spray gun closed, in the apparatus of Fig. 1;
    • FIG. 5 is a schematic representation of part of a cleaning apparatus in a different embodiment of the invention, and
    • FIG. 6 shows a detail of the apparatus of Fig. 5.
  • With particular reference to Fig. 1, a cleaning apparatus 10 includes a cleaning cabinet 12, a cleaning fluid flow-line system 14, a bath 16 and a pneumatic circulating system 18.
  • Cleaning cabinet 12 includes a support screen 20 at its lower end and a top opening 22. A lid 24 is hingedly mounted by hinges 26 along one side of top opening 22. Top opening 22 includes an inner shoulder 28 having a ledge 30 to support lid 24 when closed.
  • The cleaning fluid flow-line system 14 includes a cleaning fluid pump 36 having a pump fluid outlet 37 communicating with a fluid delivery line 38.
  • Fluid delivery line 38 is in fluid flow communication with a distribution tube 40 connected via a connection tube 44 with a distribution tube 42.
  • Distribution tube 40 includes a horizontal pipe 46 spanning one side of the area below screen 20, and terminating at its opposed ends in a pair of vertical pipes 48 having closed upper ends 50.
  • Similarly distribution tube 42 includes a horizontal pipe 52, spanning the other side of the area below screen 20, and having vertical pipes 54 at its opposed ends, the latter terminating in closed ends 56.
  • Horizontal pipes 46 and 52 have short intermediate pipe portions 47 and 53, respectively, which are generally parallel; connection tube 44 extends between opposed intermediate pipe portions 47 and 53.
  • Outer pipe portions 49 and 51 of horizontal pipe 46 extend from opposed ends of intermediate pipe portion 47 to the vertical pipes 48; similarly outer pipe portions 55 and 57 of horizontal pipe 52 extend from opposed ends of intermediate pipe portion 53 to the vertical pipes 54.
  • An ejection tube 58 and a wide angle nozzle 59 are formed in horizontal pipe portion 46 in the respective outer pipe portions 49 and 51; and an ejection tube 60 and a wide angle nozzle 61 are formed in horizontal pipe portion 52, in the respective outer pipe portions 55 and 57. The wide angle nozzles 59 and 61 project through screen 20. Wide angle nozzles 62 are formed in vertical pipes 48 and wide angle nozzles 64 are formed in vertical pipes 54.
  • A pair of ejection orifices 70 is formed in outer pipe portion 49 on either side of ejection tube 58; and ejection orifices 72 are formed in outer pipe portion 55, one on either side of ejection tube 60.
  • An adapter 73 is provided for fitting on ejection tube 58 or 60. The tapered upper end portions of adapter 73 and ejection tubes 58 and 60 are roughened, such as by knurling, grooving or providing same with opposed flats 180° apart to cause some leakage in use as described further below.
  • A strainer cartridge 66 is connected via a return line 68 to a pump fluid inlet 69 in fluid pump 36.
  • Referring in particular to Figure 3, pneumatic circulating system 18 includes an air inlet line 74 an air accumulator 76, a pneumatic timer valve 78 and an air delivery line 80 communicating with fluid pump 36 via an air inlet port 82.
  • Air inlet line 74 communicates via a valve 84 with an accumulator inlet line 86 which communicates with air accumulator 76.
  • A branch line 88 in accumulator inlet line 86 communicates with an air pressure gauge 90.
  • An accumulator outlet line 92 communicates air accumulator 76 with an inlet end 93 of pneumatic timer valve 78. Pneumatic timer valve 78 includes a timer adjuster 94 including an air escape port 95 having an adjustable closure 99 which specifically may comprise a screw closure received in port 95.
  • Branch line 96 from air inlet line 74 communicates with outlet end 97 of pneumatic timer valve 78.
  • A lid safety valve 100, the operation of which is described later, is disposed in air delivery line 80 between pneumatic timer valve 78 and air inlet port 82.
  • A branch line 102 extends between branch line 96 and air delivery line 80. Air control valve 104 is disposed in branch line 102.
  • A timer button 106 is operably associated with valve 84.
  • A restrictor 110 in air delivery line 80 limits air flow therein to control the speed of pump 36.
  • Bath 16 includes a chamber 112 having a vertical front wall 114, a pair of inclined side walls 116 and an inclined rear wall 118. Side walls 116 have support flanges 117. The chamber 112 has the form of an inverted, truncated pyramid, askewed so as to have a straight, vertical front wall 114. A drain valve 120 is disposed at the juncture of the lower ends of the walls 114, 116 and 118, and thus at the front side of chamber 112. A skirt 122 surrounds the chamber 112 and stands on legs 124, part of the skirt 122 actually forming front wall 114 of chamber 112.
  • An activator plate 126 is supported on lid 24 and a switch plate 128 is operably associated with lid safety valve 100. A vertically movable switch rod 130 is attached to switch plate 128 and guided by guides 132. Switch plate 128 engages a spring loaded plunger 134 in safety valve 100. Valve 100 is normally closed, so that downward movement of switch plate 100 caused by closure of lid 24 opens safety valve 100 and vice versa.
  • With particular reference to Fig. 2, an optional adapter 73 is mounted over ejection tube 60; adapter 73 defining a sleeve configured and dimensioned at an inner end to matingly receive outer end of ejection tube 60; the outer end of adapter 73 being configured and dimensioned to be matingly received within a paint passage inlet of pressure spray gun 138. Pressure spray gun 138 with its trigger closed is thus supported on adapter 73. A syphon type spray gun 140 is supported on ejection tube 58, the outer end of ejection tube 58 being configured and dimensioned to be matingly received within a paint passage inlet of gun 140. It will be understood that adapter 73 could be supported on either ejection tube 58 or 60, and it could be eliminated if not needed depending upon the particular configuration or type of spray gun 138 to be cleaned.
  • A large canister 142 from pressure spray gun 138 is invertedly disposed over wide angle nozzle 59 and small canister 144 from syphon spray gun 140 is invertedly disposed over wide angle nozzle 61.
  • With particular reference to Fig. 4, there is shown a portion of a typical spray gun 138, or 140 having a trigger 150 shown in solid lines in the open position and in phantom lines in the closed, working postion. In the cleaning operation of apparatus 10, the trigger 150 is maintained in the closed, working position by tightening the trigger chain 148 and securing it by means of a link of the chain 148, in a tightened configuration, to hook 152 supported in wedge 146. In this way the paint flow-line through the spray gun 138, 140 is maintained fully open for passage of the cleaning fluid during the cleaning operation. The wedge 146 can itself be used to hold the trigger 150 in closed configuration in many guns.
  • In most paint spray guns of North American design the configuration of the body of the gun provides location in which the wedge 146 can be securely seated, with the wedge 146 holding or restraining the trigger 150 in the depressed or closed configuration. The chain 148 and hook 152 are useful for those spray guns, typically of European design, which do not have a body configuration facilitating direct use of wedge 146 to hold trigger 150 closed.
  • In operation lid 24 is opened and water is introduced through top opening 22 to chamber 112. Drain valve 120 should of course, be closed. The upper level of the water should be below strainer cartridge 66. Cleaning fluid is thereafter introduced through top opening 22 to form a layer of fluid above the water in chamber 112. The cartridge 66 should be contained within the layer of cleaning fluid. Suitably the upper surface of the cleaning fluid layer should just reach the base of the distribution tubes 40 and 42 but, in any event, should be below the outlets of wide angle nozzles 59 and 61, and preferably below support screen 20.
  • For the case in which a pressure spray gun 138 and a syphon spray gun 140 are to be cleaned, adapter 73 for the pressure spray gun 138 is mounted on, for example, ejection tube 60 and the outlet end of adapter 73 is inserted into the paint inlet of gun 138. The outer end of ejection tube 58 is inserted in the paint inlet line of gun 140. Canister 142 of pressure spray gun 138 is inverted and placed over, for example, wide angle nozzle 59 and canister 144 of spray gun 140 is inverted and placed over wide angle nozzle 61.
  • The triggers, for example, the trigger 150 of syphon spray gun 140, are directly locked in the closed, working position with wedge 146, or as illustrated in Fig. 4, so that the paint flow passages of guns 138 and 140 are completely open for flow of cleaning fluid.
  • The lid 24 is closed and its engagement with ledge 30 prevents splashing of cleaning fluid during operation of apparatus 10.
  • In operation knob 106 is activated to open valve 84 and air is delivered through air inlet line 74 via normally closed valve 84 to the air accumulator 76, suitably at a pressure of 2.8 x 10⁵ N/m² to 8.4 x 10⁵ N/m² (40-120 psi), and then to normally closed pneumatic timer valve 78. Accumulator 76 is pressurized almost instantaneously whereupon knob 106 is released to close valve 84. When a sufficient predetermined pressure is generated in air accumulator 76, pneumatic timer valve 78 opens, and air pressure then passes directly from air inlet line 74 through branch line 96 to pneumatic timer valve 78 and then to air delivery line 80 to air inlet port 82 of pump 36. The air pressure in pump 36 activates a piston which forces cleaning fluid in the flow-line system 14, as jets under pressure from the ejector tubes 58 and 60 through the paint flow passages of the guns 138 and 140. At the same time the cleaning fluid is ejected through wide angle nozzles 59 and 61 as jets impinging on the interior surfaces of canisters 142 and 144, respectively, and through wide angle nozzles 62 and 64 to impinge on the exterior surface of guns 138 and 140 and canisters 142 and 144. As mentioned above, the roughened tapered upper end portions of adapter 73 and ejection tubes 58 and 60 are roughened to cause some leakage. This ensures that the part of the paint inlet lines of spray guns 138 and 140 containing these tapered upper end portions is also cleaned.
  • The ejector orifices 70 or 72, typically .16cm (0.0625 inches) in diameter, direct cleaning fluid under pressure into any cup portion of a spray gun which skirts the paint passage inlet. The pressurized air in air accumulator 76 bleeds from pneumatic timer valve 78 through escape port 95 at a rate determined by closure 99 of timer adjuster 94, and when the pressure drops below a predetermined value pneumatic timer valve 78 closes thereby discontinuing the feed of air under pressure to pump 36.
  • In practice, time adjuster 94 is adjusted such that pneumatic timer valve 78 will be open for a period of not more than 60 seconds, typically 30 to 60 seconds and especially about 45 seconds, whereby pump 36 actively circulates cleaning fluid under pressure through flow line system 14 for this relatively short period of time.
  • The jets impinging on paint coated walls displace the paint which is entrained in the fluid and carried away by the fast moving fluid, descending into bath 16.
  • At completion of the short cleaning operation spray guns 138 and 140 and canisters 142 and 144 are removed. Support screen 20 acts as a safety net so that, for example, gun 138 cannot inadvertently fall into bath 16.
  • Apparatus 10 can then be used, to clean other guns and components thereof as required.
  • In use the cleaning fluid is cycled through bath 16 and flow-line system 14. The fluid ejected through ejector tubes 58 and 60 and wide angle nozzles 59, 61, 62 and 64 falls or flows downwardly into bath 16 from where fluid enters return line 68 through strainer cartridge 66 and thence to pump 36. Paint debris is filtered from the fluid by strainer cartridge 66 and generally forms an intermediate paint debris layer in bath 16, floating on the upper surface of the lower water layer. Periodically, after repeated uses of the cleaning cycle, drain valve 120 is opened and the water flows out, drawing with it the paint debris layer. Fresh water is then introduced through opening 22 and, if necessary, fresh cleaning fluid in order to restore the levels.
  • The formation of the paint debris layer floating on the water avoids or minimizes coating or accumulation of paint debris on the walls of chamber 112 which would present a removal problem after several cleaning operations.
  • The debris of certain types of paint, for example, water-based paints and some metal containing paints does migrate into the water layer, in which it disperses. The water layer can be replaced by other liquid layers, for example aqueous and other solvents which are immisable with the cleaning fluid, and of greater density such that the cleaning fluid floats thereon as an upper layer.
  • It is also possible to omit the water or other lower layer and use solely cleaning fluid.
  • The inclined walls 116 and 118 of chamber 112 facilitate descension of paint debris into the lower region of bath 16 during draining. The vertical front wall 114 enables location of drain valve 120 at a forward, front side of apparatus 10, so that it is readily accessible, without the hazard of crawling or extending the arm beneath bath 16.
  • In operation lid 24 is closed and activator plate 126 engages the upper end of switch rod 130 forcing it vertically downwardly within guides 132, whereby switch plate 128 depresses spring-loaded plunger 134 to open lid safety switch 100. When lid 24 is opened, activator plate 126 is disengaged from the upper end of rod 130 and spring-loaded plunger 134 is free to rise urging switch plate 128 and rod 130 vertically upwardly, the rising of plunger 134 closes safety valve 100 so that, if in a cleaning cycle, delivery of air under pressure to pump 36 ceases, the cleaning cycle is interrupted. In this way the hazard of splashing of cleaning fluid from top opening is avoided or minimized.
  • Restriction 110 in air delivery line 80 is, for example, a small orifice of about .13 cm (0.05 inches)diameter, and limits the air flow to pump 36; this prevents the pump 36 running too fast, while still permitting development of the elevated pressure required to operate pump 36.
  • Chamber 112 is suitably of metal, for example, aluminium or stainless steel. The materials of the component parts of apparatus 10 should, of course, be selected having regard to the noxious fluids which they are to contact.
  • Pump 36 will suitably operate at a pumping rate of about g to 36 litres/min. (2 to 8 gal./min.). Generally a pneumatic pump 36 is preferred, and, in particular electric pumps are to be avoided in view of the use of the noxious, volatile and flammable fluids.
  • The distribution tubes 40 and 42, suitably comprise a discrete unit with connection tube 44, of zinc plated steel or aluminium. As shown in Fig. 1, this discrete unit will sit or stand on support flanges 117 and there is no need for bolts or other connection members which may result in leaks.
  • The wide angle nozzles 59, 61, 62 and 64 suitably provide a full core jet encompassing a spray angle of 72-80°. The nozzles are suitably of brass, aluminum, polypropylene or other inert material.
  • The wedge 146 is suitably of high density polyethylene or of metal.
  • The cleaning fluid may suitably be lacquer thinner, paint thinner or other cleaning fluid, for paint and the like, such as methanol, naphthalene or mineral spirits.
  • Optionally water may be omitted from bath 16, and a bath 16 of cleaning fluid employed. Suitably bath 16 has a capacity of 22.7 litres to 45.46 litres (5 to 10 gallons).
  • With further reference to Figs. 5 and 6, there is shown a variation of apparatus 10 of Fig. 1, particularly as to bath 16.
  • The apparatus 110 of Figs. 5 and 6 has a cabinet 160, a disposable container or drum 162 and a flow pipe assembly 164. The fluid flow-line system and pneumatic circulation system (not shown) are in general and same as described for Fig. 1.
  • Cabinet 160 has a shallow dished floor 166 having the shape of an inverted wide angle cone; floor 166 has a flow opening 168 at its central, lowermost part.
  • Drum 162 has an upper neck 170 defining a passage 172 having an outer threaded portion 174.
  • Flow pipe assembly 164 has a short central pipe 176 and an outer pipe assembly 178 is slidably disposed concentrically about central pipe 176. Annular fluid resistant seal 180 is disposed between an upper end of outer pipe assembly 178 and central pipe 176.
  • Outer pipe assembly 178 has an outer pipe 163 and an inner pipe 165, an annular passage 167 extends between outer pipe 163 and inner pipe 165.
  • Outlet port 182 is formed in outer pipe assembly 178 adjacent its upper end; outlet port 182 is in fluid flow communication with annular passage 167.
  • The upper end of central pipe 176 is in flow communication with flow opening 168, and its lower end extends a short distance into inner pipe 165 of outer pipe assembly, terminating above drum 162. The outer pipe 163 extends only a short distance into drum 162, whereas the inner pipe 165 extends deep into the interior of drum 162.
  • Return line 68 is connected by fitting 184 to outlet port 182 and delivery line 38 communicates with distribution tubes 40 and 42 (not shown) as in Fig. 1.
  • A closure cap 186 having a central opening 188 threadably engages threaded portion 174 of neck 170, with outer pipe assembly 178 slidably received in central opening 188; annular fluid resistant seal 189 is formed between neck 170 and outer pipe 163.
  • The cleaning fluid is housed in drum 162 and, in operation, inner pipe 165 suitably extends into the cleaning fluid.
  • The lower end of outer pipe 163 extends below the level of fluid in drum 162.
  • In operation, outer pipe assembly 178 is inserted through central opening 188 into drum 162; engagement of outlet port 182 with cap 186 prevents outer pipe assembly 178 from falling completely into the drum 162. The drum 162 with outer pipe assembly 178 is positioned below central pipe 176 and aligned therewith so that outer pipe assembly 178 can be slidably withdrawn from central opening 188 and slidably telescoped about central pipe 176 so that the lower end of central pipe 176 is contained within inner pipe 165. Outer pipe assembly 178 is then locked or fixed in position by any suitable means.
  • The cleaning cycle is initiated and proceeds as for apparatus 10 of Fig. 1; cleaning fluid flows upwardly through annular passage 167 around inner pipe 165 and thence through outlet port 182 into return line 66 into pump 36 and then through delivery line 38. The ejected fluid falls or flows downwardly of floor 166 to flow opening 168 into central pipe 176 and thence into inner pipe 165 and into interior of drum 162. Thus used fluid is returned to an interior region of drum 162 and fluid for washing is drawn from an upper region. The paint debris tends to settle so that fluid in the upper region of the drum, from which fluid is drawn for cleaning, remains relatively paint-free.
  • After repeated use of the cleaning fluid, drum 162 containing the used fluid can be dispoed of.
  • In an alternative arrangement to that described by reference to Figs. 5 and 6, the flow pipe assembly is vertically movable into cabinet 166 in order to raise the assembly 164 clear of drum 162 for installation and removal of drum 162. In such case, flow pipe assembly 164 might conveniently have a handle at its upper end, within cabinet 166, whereby it might be lifted.
  • Paint spray gun assemblies are used for applying other sprayable compositions, for example, glue, adhesive, and specialty coatings such as lubricants and mold release coatings. It will be understood that the invention is equally applicable to cleaning of guns used for such other sprayable compositions and for the purposes of this disclosure the term "paint" is intended to include all of these compositions.

Claims (9)

  1. An apparatus for cleaning of a spray gun assembly having
       a cleaning cabinet (12) provided with a bottom opening,
       means defining a chamber (112) located below said bottom opening for collecting fluid from said cleaning cabinet (12),
       a fluid flow line system (14) including a fluid flow distribution system having a plurality of cleaning fluid outlets (58, 59, 60, 61, 62, 64, 70, 73) for ejection of cleaning fluid within said cabinet (12),
       a fluid pump (36) having a fluid inlet (69) and a fluid outlet (37), a fluid delivery line (38) for the flow of cleaning fluid from said fluid outlet (37) to said fluid flow line system (14), and a fluid return line (68) for flow of cleaning fluid from said chamber (112) to said fluid inlet (69),
       characterized in that
       a sub-plurality of said outlets (58, 60, 73) define means for supporting a spray gun in said cabinet (12) with a paint passage interior of the gun in direct fluid flow communication with a said outlet,
       said fluid pump (36) is pneumatically actuated.
       an air-flow system (18) is provided having an air delivery line (80), said fluid pump (36) having an air inlet (82) in air flow communication with said air delivery line (80),
       said air-flow system (18) and said fluid flow-line system (14) having separate independent flow lines,
       time control means (78) in said air-flow system (18) adapted to interrupt the action of the pump (36) within a predetermined time, and
       a member (146) adapted to hold a trigger of a spray gun in a closed, working position,
       said time control means being a pneumatic time valve (78) coupled between an air inlet line (74, 96) and an air delivery line (80) communicating with said fluid pump (36).
  2. A cleaning apparatus according to claim 1 wherein said chamber (112) is enclosed by a substantially vertical front wall (114), a pair of inclined side walls (116) and an inclined rear wall (118), and wherein a drain valve (120) is located adjacent to a lower end of said front wall (114).
  3. A cleaning apparatus according to claim 1 wherein said fluid distribution system includes a first distribution tube (40) and a second distribution tube (42), said tubes (40,42) being in opposed spaced apart relationship, and a connecting tube (44) providing fluid flow communication between said distribution tubes (40,42).
  4. A cleaning apparatus according to claim 3 wherein said first tube (40) has a substantially horizontal portion (46) spanning one side of said cabinet (12), said portion (46) terminating at its opposed ends in substantially vertical portions (48), at least one ejector tube (58) extending upwardly from said horizontal portion (46), at least one upwardly directed wide angle nozzle (59) in said portion (46), and at least one inwardly directed wide angle nozzle (62) in said vertical portions (48), and wherein said second tube (42) has a substantially horizontal portion (52) spanning the other side of said cabinet (12), said portion (52) terminating at its opposed ends in substantially vertical portions (54), at least one ejector tube (60) extending upwardly from said horizontal portion (52), at least one upwardly directed wide angle nozzle (61) in said horizontal portion (52), and at least one inwardly directed wide angle nozzle (64) in said vertical portions (54).
  5. A cleaning apparatus according to claim 1 including a pair of ejection orifices (70) located in a horizontal portion (40) and being associated with an ejector tube (58), and including a pair of ejection orifices (72) located in a horizontal portion (52) and being associated with an ejector tube (60).
  6. A cleaning apparatus according to claim 1 wherein said chamber (112) is enclosed by a removable drum (162), said drum (162) being adapted to communicate with said bottom opening in cabinet (12).
  7. A cleaning apparatus according to claim 1 wherein said cabinet (12) has a lid (24) and a safety valve (100) located in the air-flow system and operably connected to said lid (24) to cease the air flow when the lid (24) is opened.
  8. A cleaning apparatus according to claim 1 wherein said member (146) has a hook (152) on a chain (148) having a plurality of links affixed thereto, said hook (152) being adapted to engage a link of said chain (148) such that said chain (148) is held tightly about the spray gun and said trigger being restrained in said working position.
  9. A method of cleaning a spray gun, comprising,
       mounting a gun in a cleaning cabinet (12),
       providing cleaning fluid under pressure to the gun through a fluid flow system (14) by employing an air flow system (18),
       impinging paint contacting surfaces of the gun with said cleaning fluid within said cabinet (12),
       characterized in that
       said cleaning fluid is pumped through said fluid flow system (14) by a fluid pump (36), which is actuated by air in the air-flow system (18), wherein the air-flow system (18) is maintained separate from the fluid flow system (14), and wherein the pump (36) is operated for a predetermined period of time.
EP88110529A 1987-07-16 1988-07-01 Spray washer Expired - Lifetime EP0300248B2 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CA542321 1987-07-16
CA000542321A CA1293909C (en) 1987-07-16 1987-07-16 Apparatus for automatic cleaning of paint spray gun assemblies and their component parts

Publications (3)

Publication Number Publication Date
EP0300248A1 EP0300248A1 (en) 1989-01-25
EP0300248B1 EP0300248B1 (en) 1992-10-21
EP0300248B2 true EP0300248B2 (en) 1996-06-12

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ID=4136095

Family Applications (1)

Application Number Title Priority Date Filing Date
EP88110529A Expired - Lifetime EP0300248B2 (en) 1987-07-16 1988-07-01 Spray washer

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EP (1) EP0300248B2 (en)
CA (1) CA1293909C (en)
DE (1) DE3875412T3 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT202100007592A1 (en) 2021-03-29 2022-09-29 Cefla Soc Cooperativa SPRAY GUNS CLEANING STATION IN A PAINT BOOTH, AND METHOD OF USE

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Publication number Priority date Publication date Assignee Title
GB2301299B (en) * 1995-04-18 1998-09-16 Tetrosyl Ltd Spray cleaning apparatus
GB9606528D0 (en) * 1996-03-28 1996-06-05 Trisk Edwin Systems Ltd Equipment for cleaning spray guns
SE9702566L (en) * 1997-07-03 1998-06-29 Drester Ab Method and apparatus for washing spray guns
CN2538433Y (en) * 2002-02-21 2003-03-05 洽昌工业股份有限公司 Automatic washing device for paint spray pistol
WO2004110656A1 (en) * 2003-06-13 2004-12-23 Etienne Le Roux Spray gun cleaner
US7785420B2 (en) 2006-08-01 2010-08-31 Hedson Technologies Ab Method for cleaning a spray gun
JP2012061505A (en) * 2010-09-16 2012-03-29 Showa Kogyo:Kk Cleaning device for releasing agent spray cassette, and method for cleaning releasing agent spray cassette using the same
DE102010052698A1 (en) * 2010-11-26 2012-05-31 Dürr Systems GmbH Cleaning device and cleaning brush for a nebulizer and corresponding cleaning method

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Publication number Priority date Publication date Assignee Title
US2745418A (en) * 1953-08-10 1956-05-15 John A Balcom Apparatus for cleaning paint spray guns and containers utilized in conjunction therewith
US3422826A (en) * 1967-01-03 1969-01-21 Thomas B Ballard Cleaning machine
US4025363A (en) * 1976-01-12 1977-05-24 Benito De Santis Spray equipment cleaner
IT1147445B (en) * 1981-05-12 1986-11-19 Gianfilippo Abrescia EQUIPMENT SUITABLE FOR CLEANING SPRAY GUNS IN PARTICULAR FOR PAINTING

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT202100007592A1 (en) 2021-03-29 2022-09-29 Cefla Soc Cooperativa SPRAY GUNS CLEANING STATION IN A PAINT BOOTH, AND METHOD OF USE
EP4066947A1 (en) 2021-03-29 2022-10-05 Cefla Societa' Cooperativa Cleaning station for cleaning the spraying guns in a spray booth, and method

Also Published As

Publication number Publication date
DE3875412T2 (en) 1993-04-15
DE3875412T3 (en) 1997-07-24
CA1293909C (en) 1992-01-07
DE3875412D1 (en) 1992-11-26
EP0300248B1 (en) 1992-10-21
EP0300248A1 (en) 1989-01-25

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