Filling head injector for aerosol can with protective cover
10308420 ยท 2019-06-04
Assignee
Inventors
Cpc classification
B65B31/003
PERFORMING OPERATIONS; TRANSPORTING
B65B39/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B39/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filling head gun assembly has a housing; a handle assembly connected to the housing; a filling head attached to the housing; and a plunger. The plunger extends through an opening of the housing and an activator reservoir attached to the plunger. The reservoir is moved into position to contact the filling head via the plunger to feed pressurized activator through the filling head to an aerosol can. A cover is releasably attached to an end of the filling head which provides a seal around the filling head.
Claims
1. A filling head gun assembly comprising: a housing; a pressurized activator; a reservoir for containing said activator; a handle assembly connected to said housing; a filling head attached to said housing; and a plunger, wherein said plunger extends through an opening of said housing and said activator reservoir attached to said plunger, said reservoir is moved into position to contact said filling head via said plunger to feed pressurized activator through said filling head to an associated aerosol can and a protective cover releasably attached to an end of said filling head which provides a seal around said filling head; and wherein said filling head comprises a stem to seal an associated valve mounting cap of said aerosol can and forms a single releasable non-threaded connection to said aerosol can; wherein said protective cover comprises an upper wall having an opening therethrough for said filling head and a side wall depending downwardly from said upper wall forming an inner cavity which substantially surrounds and covers at least a portion of an end portion of said filling head and said associated aerosol can.
2. The filling head gun assembly of claim 1, wherein said protective cover is made of plastic.
3. The filling head gun assembly of claim 1, wherein said protective cover comprises a raised portion having a central opening therein and wherein said protective cover is releasably attached to an end of said filling head which provides a seal around said filling head.
4. The filling head gun assembly of claim 1, wherein said filling head comprises a ball and spring mechanism used to feed activator into an associated aerosol can.
5. The filling head gun assembly of claim 1, wherein said plunger comprises a piston rod.
6. The filling head gun assembly of claim 1, wherein said activator reservoir comprises an O-ring for engaging said filling head.
7. The filling head gun assembly of claim 1, wherein said handle assembly comprises a trigger which is depressed to move said plunger and said reservoir into contact with said filling head.
8. The filling head gun assembly of claim 1, wherein said activator reservoir contains one of a catalyst, an activator, a hardener and a reducer.
9. The filling head gun assembly of claim 1, wherein said reservoir accommodates two and one-quarter ounces of activator.
10. The filling head gun assembly of claim 1, wherein said reservoir accommodates four ounces of activator.
11. A filling head and aerosol can assembly comprising: an aerosol can having a body having a valve and dip tube, propellant, a coating, and a valve mounting cup; a filling head assembly comprising: a housing; a pressurized activator; a reservoir for containing said activator; a handle connected to said housing; a filling head attached to said housing via a piston rod; a tube containing said pressurized activator which is connected to said piston rod wherein said handle is depressed to move said piston rod to feed said pressurized activator through said tube into said filling head; and wherein said filling head is mounted onto said valve mounting cup, and a stem of said filling head seals on said valve mounting cup of said aerosol can; said filling head assembly comprises a protective cover which mounts to an end of said filling head and provides a seal of said filling head and said aerosol can wherein said protective cover comprises an upper wall having an opening therethrough for said filling head and a side wall depending downwardly from said upper wall forming an inner cavity which substantially surrounds and covers at least a portion of an end portion of said filling head and said aerosol can; and said filling head further comprises an extension member which facilitates retraction of said piston rod from said aerosol can.
12. The filling head gun assembly of claim 11, wherein said protective cover is made of plastic.
13. The filling head gun assembly of claim 11, wherein said protective cover comprises a raised portion having a central opening therein and wherein said cover is releasably attached to an end of said filling head which provides a seal around said filling head.
14. The filling head and aerosol can assembly of claim 11, wherein said filling head injects said pressurized activator into said aerosol can through said stem.
15. The filling head and aerosol can assembly of claim 11, wherein said extension member comprises a substantially u-shaped opening.
16. The filling head and aerosol can assembly of claim 15, wherein said extension member comprises an upper edge and a lower edge which are extended above and below said filling head to facilitating retraction of said piston used.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The disclosure may take form in various parts and arrangements of parts. The drawings are only for purposes of illustrating a preferred embodiment and are not to be construed as limiting the disclosure.
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(17) Referring to
(18) Referring now to
(19) Referring now to
(20) In the usual aerosol can or container, product and propellant are placed in a valved container. Referring still to
(21) Referring now to
(22) With reference now to
(23) The present disclosure relates to a filling gun assembly E, similar in configuration to a caulking gun, which is used to inject an activator into an aerosol can B shown in
(24) The gun is preferably used with a two-component system, wherein the can contains two components; i.e., a clear liquid or coating or paint, as well as a solvent and propellant. The coating can be a clear or color paint, base coat, clear or gel coat, or an adhesive, resin or epoxy. The gun is used as part of a two-part process, where activator is filled into or added to an aerosol can by the gun which is filled with a paint, adhesive coating, aerosol spray, epoxy, etc. in a mixing ratio such as 4:1, 1:1 or 2:1. For example, a 4-ounce product may require 1 ounce of activator; thus, the mixing ratio is 4:1. For 8 ounces of product, 4 ounces of activator may be required, or a 2:1 mixing ratio. Any ratio in the range of 1:1 to 10:1 is contemplated by the disclosure.
(25) The filling gun 75 has an activator, a catalyst, a hardener, or a reducer within a tube or container or reservoir 79 which is injected into the can through a filling head 80. The tube or reservoir is pressurized with activator, much as an aerosol can is pressurized. Existing filling systems have solvents and propellants in the can, and the paint or coating is injected into the can through a filling head. The can then sprays the paint which air dries after application. In contrast, the present invention is used with a can which is already filled with paint, adhesive, resin or solvent and propellant at the aerosol manufacturer.
(26) The gun has a tube housing 82 and a handgrip portion or trigger housing 84. The tube housing 82 is cut away along the side walls 77, 78 to provide easy access for inserting a tube 79 into the tube housing.
(27) Filler head 80 is supported by a groove or semi-circular cutout 86 formed in U-shaped wall 88, which is at an end of side walls 77, 78 of housing 82.
(28) Passing through the housings is a piston rod 94. Although the piston rod 94 is shown as installed in the trigger housing 84, it can be withdrawn out the rearward end of the housing 84 for complete removal. With the piston rod removed, the portions of the gun can be easily disassembled. When the gun is completely assembled, the piston rod 94 passes through central holes 96, 98 in the tube housing wall 89 and the handgrip housing, respectively.
(29) The handle trigger 85 is ergonomically shaped to dismantle in user's hand and is shaped to fit the user's fingers. This configuration provides for a very comfortable, natural gripping tool which, by virtue of its shape, enables the user to hold the handgrip portions 97, 99 in his hand, with less likelihood that the handgrip will slip from its natural position.
(30) The U-shaped opening 86 in the forward wall 88 of the housing 82 is provided to permit the filling head to extend forward from the housing.
(31) The system uses a filling head which has a stem 100 much like the stem of an aerosol can as shown in
(32) The spray head of the aerosol can B is removed to attach the filling head 80 onto the top of the can. The stem 100 of the filling head seals on the valve mounting cup 54, and the filling head pushes down on the valve assembly thereby charging the can through the dip tube 56 to the bottom of the can.
(33) The filling head 80 is described as being used with a female valve, but the filling head can also be used with a male valve as well, and also with any other valve system for an aerosol can without departing from the scope of the present disclosure.
(34) When the activator is pressure filled into the can, the activator or catalyst causes a chemical reaction with the product. The shelf life of the product begins once the product is activated. The shelf life can range from two hours to several days or more. Therefore, the activator should not be added until the time of filling and use of the product, since the product becomes cured quickly and is ready to use. For example, the catalyst should not be added to a paint spray can until the user is ready to spray the automobile or whatever will be sprayed. At the time of application, the hardened or catalyzed paint, adhesive, or resin has a chemical reaction on the application surface and dries on the surface.
(35) For example, a gallon of clear or colored paint would have added to it a quart of activator, resulting in a catalyzed product. A catalyzed product is preferable to use than a non-catalyzed product, since the catalyzed product has better performance characteristics. The paint alone would never dry or cure until the catalyst is added. The same applies to an adhesive, such as a structural urethane adhesive used to glue metal to metal or plastic to metal on cars or trucks. Another application would be SMC resins which would be catalyzed to be used for boat repairs.
(36) Referring again to
(37) Referring now more particularly to
(38) Referring now to
(39) As soon as the valve of the can is open, activator under pressure will be fed into the chamber of the can. At the same time, the plunger or piston 94 is pushed by the handle 84 to feed activator from the reservoir 79 into the chamber of the can through the filling head. The pressure of the filling head and reservoir exceeds that of the pressurized aerosol can, thus preventing activator from traveling from the can back into the filling head.
(40) The activator is then fed into the aerosol can, thus creating a mixture within the can such as colored paint, coating, adhesives, fiberglass resins, epoxy, etc. The can is immediately available for spraying a customized paint, adhesive, resin or coating by the user while in the field.
(41) The handle is depressed to move the plunger or piston to push the plunger into the reservoir, thus forcing liquid activator into the filling head. The activator then travels through the stem and into the valve assembly of the aerosol can. Referring to
(42) Typically, the aerosol can is placed vertically on a support surface and the filling head is manually pressed downwardly onto the valve assembly which seals the stem 100 onto the valve. However, the filling head can also be used in a horizontal orientation wherein the can is horizontally secured or held and the filling head is laterally pressed into the valve.
(43) Since the gun is transportable, the gun can be easily used in the field, such as body shops, factories, oil rigs, etc. The gun is inexpensive (around $150) in comparison to a pneumatic filling machine (around $3,500). A manual filling machine costs around $500.
(44) Thus, the user can activate the coating in the field at the time of use. For example, the gun can be given to the user with an activator which is injected into the can and results in a specific paint, adhesive, resin or coating within the can for immediate use.
(45) The problem with a previously activated product, such as is made with a filling machine, is that the activator can set up and cure in the can if not used within several hours. Thus, it is preferable to inject the activator just prior to use. Once activated, the coating cures due to the chemical reaction between the activator and paint. After use, the can should be discarded.
(46) Advantages of the filling gun are its low cost, portability, ease in using in the field, such as in body shops, oil rigs, factories, plants, etc.; and ability to be used with an aerosol can having a female or male valve, or any valve system. The filling gun can be used with any product that needs to be catalyzed or activated, such as paints, adhesives, resins, fiberglass or SMC resins, epoxy, etc.
(47) Referring now to
(48) Thus, the cover 120 is provided to protect the user from any spray leaving the filling head or aerosol can and also to minimize any spray of liquid as it leaves the filling head and enters the aerosol can.
(49) Referring now to
(50) Specifically, the platform extension 140 is used to facilitate holding the front end portion 101 of the tube in place within the filling gun. The platform extension 140 has a planar wall 141 in which a substantially U-shaped cut-out or opening 142 is formed. The opening 142 accommodates the tube portion of filling head 80 including end portion 101 of the filling head. The platform extension may preferably be made of metal or rigid plastic.
(51) Preferably, referring to
(52) The exemplary embodiment has been described with reference to the preferred embodiments. Obviously, modifications and alterations will occur to others upon reading and understanding the preceding detailed description. It is intended that the exemplary embodiment and appended claims be construed as including all such modifications and alterations insofar as they come within the scope thereof.