The present invention relates to dispensing devices. More particularly, the present invention relates to a dispensing device that enables a user to dispense flowable material to low locations, such as where a floor meets a wall, without requiring the user to bend over, kneel down or squat during dispensing, thus reducing the risk of strain or other back injury. The present invention also reduces the need for the user to contort the arm, wrist, hand, and other body parts, where the low location to which flowable material is to be dispensed is difficult to access.
Commercially available devices for dispensing flowable compositions such as caulking materials, grease, automotive windshield sealant, reactive resins, and the like, generally consist of a rearward driving section and a forward section in the form of a carriage assembly for housing a composition to be dispensed. The rearward drive section includes a cylinder having a front end wall, a rear end wall, and a cylindrically-shaped sidewall. A piston disposed within the cylinder divides the cylinder into a front portion and a rear portion. At least one driven rod is connected to the piston and extends through the front end wall of the cylinder. The driven rod terminates in an ejector ram. The piston, its driven rod and ejector ram, are driven in an ejecting direction in response to pressure provided within the rear portion of the cylinder to dispense flowable material stored in the forward section of the dispensing device. The flowable material may be stored in bulk or in cartridge form, e.g., hard cartridges or sausage-type cartridges. As the driven rod and ejector ram are driven in the ejecting direction, material from one or more cartridges is ejected from the dispenser to the area of application.
Introduction of pressure behind the piston is controlled by actuation of a trigger mechanism on the dispensing device. On commercially available dispensing devices, the trigger mechanism is located beneath the cylinder during dispensing. The trigger mechanism includes a handle and an actuable trigger, both of which extend downwardly in a direction generally perpendicular to the length of the hollow cylinder. Such commercially available dispensing devices have several drawbacks, especially when applying flowable material to low locations, such as along the perimeter of a room or a shower stall where the wall meets the floor. The main drawback is that due to the location and orientation of the trigger mechanism on such dispensing devices, it is usually necessary for the user to bend over, kneel down, or squat towards the floor to accurately apply the flowable materials to such low locations. Another drawback associated with the location and orientation of the trigger mechanism on commercially available dispensing devices is that the user may need to twist or contort his or her arm, wrist, hand, and other body part when using such a commercially available dispensing device to apply flowable material to low locations that are difficult to access. This can be an uncomfortable operation for many users, and may result in back strain or other injury. Because it is physically difficult for some users to dispense flowable materials to such low locations using a conventional dispensing device, the material may not be properly applied.
Therefore, what is needed is a dispenser that is arranged to facilitate the application of flowable materials to these low areas. The present invention fulfills these needs and provides other related advantages.
These and other objects of this invention are achieved by providing a device for dispensing flowable materials to low locations without the user being required to bend over or kneel down during dispensing which provides relief from back strain or other injuries. The device includes a cylinder having a piston mounted therein which reciprocates between forward ejecting and return directions. A driven rod, connected to the piston, extends through a front wall of the cylinder. Upon actuation, a trigger mechanism supplies a pressure medium within the cylinder for displacing the piston in the forward ejecting direction to dispense flowable material from the dispensing device. The trigger mechanism is oriented to enable the user to hold the dispensing device like a suitcase and is spaced a sufficient distance from where the flowable material is dispensed to enable a user to remain standing erect while dispensing to low areas such as where a floor and wall meet. Moreover, the trigger mechanism is positioned and oriented to allow a more comfortable dispensing position when such low locations are in areas which are difficult to access.
The objects and many attendant features of this invention will become readily appreciated as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawings wherein:
Referring now to the drawings, a device for dispensing materials in accordance with the present invention is shown generally at 10 in
Referring now to
The hard cartridges that are used in conjunction with such dispensing devices are of a standard size and configuration and comprise a tubular cylindrical body portion containing material to be dispensed, a cup-shaped movable plunger at the rearward end of the body portion, and dispensing nozzles located at the forward end of the cartridges. The moveable plunger provides means for the dispensing device to apply dispensing pressure to the material within the cartridges. When the cartridges are appropriately registered within the carriage assembly 18, each moveable plunger is arranged to be moved in a forward ejecting direction towards the nozzles to expel material from the body portion of the cartridges.
Referring again to
Referring now to
As best shown in
Referring now to
The extension piece 142 is secured in proximity to the front bulkhead 62 by appropriate fastening hardware, e.g., a plurality of retaining screws 143, and extends upwardly from the air cylinder assembly 22. In this manner, during use, the extension piece 142 of the dispensing device 10 enables a user to dispense flowable material to low locations, such as where a floor meets a wall, without requiring the user to bend over, kneel down or squat during dispensing, thus reducing the risk of strain or other back injury. Due to the extension piece and orientation of the trigger 98 and carrying handle 102, the dispensing device 10 may be held like a suitcase.
By removal of the retaining screws 143, the extension piece 142 may be disconnected from the cylinder assembly 22; and, by removal of the retaining screws 103, the carrying handle 102 may be separated from the extension piece 142. In this manner, the extension piece 142 may be easily eliminated and the carrying handle 102 may be connected directly to the air cylinder assembly 22 in proximity to the front bulk head 62, to enable quick and easy conversion to a dispensing device similar to those that are currently commercially available.
Trigger 98 is pivotally mounted to the carrying handle 102 by any suitable means, e.g., a pivot pin 104 passing through the carrying handle 102. It should be understood that the pivot pin 104 could be replaced with any other desired pivot support. The trigger 98 is in contact with a bearing 100 which biases the trigger 98 away from the carrying handle 102 by means of a conventional compression spring 106. The bearing 100 includes a through opening 100a. Disposed within the carrying handle 102 is an internal air passageway 110 which allows the passage of pressurized air from an external air pressure supply (not shown) into the dispensing gun 10. As best shown in
As best shown in
It should be understood that although the dispensing device described herein utilizes a pneumatic source, i.e., pressurized air, for dispensing flowable material therefrom, the dispensing device could be of any desired construction, and such use of pressurized air or another pneumatic source does not constitute a limitation on the present invention. For example, the dispensing device of the present invention could be a battery-powered cordless dispensing device or, alternatively, a manually-actuated dispensing device.
The device of the present invention has been described in respect to the particular embodiment thereof set forth in the specification and as illustrated in the drawings. As a result of such disclosure, other variations and modifications may become apparent to those skilled in the art and therefore, no limitation as to the scope of the invention is intended by the specific embodiments disclosed but the scope of the invention is to be interpreted in view of the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
3980209 | Collar | Sep 1976 | A |
4067479 | Moline | Jan 1978 | A |
4676410 | von Flue | Jun 1987 | A |
4765509 | Eisenhut et al. | Aug 1988 | A |
5020693 | Ernst et al. | Jun 1991 | A |
5104005 | Schneider | Apr 1992 | A |
5184758 | Keller | Feb 1993 | A |
5224629 | Hsich | Jul 1993 | A |
5390831 | Schneider | Feb 1995 | A |
5441175 | Jacobsen et al. | Aug 1995 | A |
5816445 | Gardos et al. | Oct 1998 | A |
5823403 | Schneider | Oct 1998 | A |
6016937 | Clay | Jan 2000 | A |
6039223 | Damask | Mar 2000 | A |
6135328 | Schneider et al. | Oct 2000 | A |
6382466 | Schneider | May 2002 | B1 |
20040134937 | Beckwith | Jul 2004 | A1 |
20040226969 | Shew | Nov 2004 | A1 |
Number | Date | Country |
---|---|---|
842256 | Jun 1952 | GE |
Number | Date | Country | |
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20100025436 A1 | Feb 2010 | US |