The present invention relates to a motorized viscous material dispenser, especially a caulking gun, comprising a drive unit with a cylindrical pinion gear, a holder attachable to a front side of the drive unit for receiving at least one container containing viscous material, at least one piston, and at least one rack meshing with the cylindrical pinion gear to drive said piston.
U.S. Pat. No. 6,889,872 discloses a dispenser of the above art wherein two racks are meshing with a single elongated cylindrical pinion gear for dispensing a two-component viscous material, each component being provided in a separate container, such as a sausage packaging. A housing of the drive unit of this dispenser comprises two channels for receiving either of the two racks. This has the disadvantage from a manufacturing point of view that when different types of dispensers are produced having different distance between the racks or having different numbers of racks a dedicated drive unit must be produced for each type of dispenser.
It is an object of the invention to overcome this problem.
The object is achieved by a motorized viscous material dispenser of the above art, wherein a rear piece is attachable to a rear side of the drive unit opposite the front side, and a guide piece is attachable to the front side of the drive unit, said guide piece and said rear piece comprising guiding apertures through which the rack is extending, and said guiding apertures determining the position of the rack relative to the cylindrical pinion gear, when the motorized viscous material dispenser is assembled. Hereby is obtained that a single type or construction of drive unit may be used for manufacturing a variety of dispensers having different numbers of pistons and racks and different spacing between the pistons and racks when more thereof are present. Thus the number of different parts needed to be produced and stocked for manufacturing different types of dispenser is reduced providing generally for more economical manufacture.
In an embodiment the guide piece is a part of the holder.
In an embodiment the drive unit comprises a through channel accommodating the at least one rack, said through channel having a width providing for lateral displacement of the rack in a direction of an axis of the cylindrical pinion gear. This provides for step-less selecting a distance between the racks within a minimum distance and a maximum distance by means of dedicated guide and rear pieces.
In an embodiment the guide piece and the rear piece are fastened to the drive unit by mechanical fasteners such as screws. This provides for simple assembly of the dispenser.
In an embodiment the dispenser comprises more pistons and more racks each rack being guided by apertures of the guide piece and the rear piece. The guide piece and the rear piece may comprise separate apertures for each rack or a single aperture may be provided with recesses to securely guide the racks.
In an embodiment at least one guide rod is extending parallel to the at least one rack. Such guide rod may assists guiding and driving the piston or a part of the piston.
In an embodiment the dispenser comprises an electric motor for driving the pinion gear, and in a further embodiment a battery is provided for energizing the electric motor.
In an embodiment the pinion gear has straight teeth. Hereby a lateral force on the rack in a direction parallel to an axis of the pinion gear is avoided.
In the following the invention will be explained in further detail by way of examples of embodiments having reference to the accompanying drawings in which
For simplicity of the present description terms “up”, “down”, “front”, and “rear” are used to describe mutual relationships of various parts and components of the embodiments of the dispenser according to the present invention. The skilled person will realize that in use the dispenser will normally be turned up, down and around in accordance with any practical task to be performed by means of the dispenser.
At a front end of the housing 3 and the drive unit 11 a holder 15 for two containers of viscous material to be dispensed is mounted. Thus the holder 15 defines the front end of the dispenser 1.
Being adapted for two containers of viscous material to be dispensed simultaneously the dispenser 1 (
Being adapted for only one container of viscous material the dispenser 1a comprise only one rack 17a carrying at its front end a coaxial piston 19a. At its rear end opposite the front end the rack 17a is like in the dispenser 1 carrying a second handle 21a. Guide rods 23 are extending parallel to the rack 17a between the piston 19a and the second handle 21a. The piston 19a comprises a first central piston part 19a′ constituted by the end of the rack 17a and a second annular piston part 19a″, which is supported by the guide rods 23. Being connected through the second handle 21a the rack 17a and the guide rods 23, and thus the first and the second piston parts 19a′ and 19a″, move in unison. The dispenser of the embodiment shown in
Referring especially to
The drive unit has at its front end eight holes such as screw holes 41 of receiving mechanical fasteners such as screws 43 for mounting the holder 15, 15a and a guide piece 45, 45a. In the embodiments disclosed herein the guide piece 45, 45a is a part of the holder 15, 15a. At its rear end the drive unit has two holes such as screw holes 47 of receiving mechanical fasteners such as screws 49 for mounting a rear piece 51, 51a. In the present embodiment the screw holes 47 are provided in bridging pieces 53 bridging a rear opening of the through channel 35 thereby dividing, from a practical point of view, the through channel 35 into three sub-channels, namely a left sub-channel 35a, a central sub-channel 35b and a right sub-channel 35c. Especially the left and right sub-channel 35a, 35c each has a width larger than the width of the racks 17 thus allowing the racks to be shifted laterally in a direction of the axis of rotation 39 inside the left and right sub-channel 35a, 35c. Being intended for accommodating only a single central rack 17a the central sub-channel 35b need not be wider than necessary to accommodate a rack. The left and right sub-channels 35a, 35c has widths allowing to racks 17 to be displaced between the minimum and maximum mutual distance intended for racks 17 of a dispenser for dispensing simultaneously two components of viscous material. Thus
Alternatively the screw holes 47 could like the screw holes 41 be placed beside the through channel and the bridging pieces 53 could be omitted providing a single wide through channel.
The guide pieces 45, 45a and the rear pieces 51, 51a has apertures 55 through which the respective racks 17, 17a extend and which position the racks 17, 17a laterally in the direction of the axis of rotation 39. The apertures 55 may as shown in
Viscous materials to be dispensed are usually delivered in a container or a set of containers (two-component material) in accordance with the nature of the viscous material and its intended manner of dispensing. The dispenser for dispensing the viscous material should match the container or set of containers and thus different dispensers are produced to match different containers or sets of containers.
To produce a dispenser according to the invention adapted for a given container or set of containers a housing 3 with a drive unit 11 is provided, a holder 15, 15a adapted to the container or set of containers in question is provided, a guide piece 45, 45a is provided as part of the holder 15, 15a, or in the alternative if the guide piece is not part of the holder an individual guide piece is provides, a rear piece 51, 51a is provided, one or more racks 17, 17a and pistons 19, 19a and possibly guide rods 23 are provided as the need may be, and a second handle 21, 21a is provided, and the parts are assembled.
It is under stood that a number of the parts may need to be dedicated to the dispenser to be produced. Especially the guide piece 45, 45a and the rear piece 51, 51a must comprise one or more apertures 55 providing for positioning the rack 17a or racks 17 at intended lateral positions. However, at least the drive unit 11, and in the present embodiments the entire housing 3 including the drive unit 11 is a standard component usable for a range of different dispensers adapted for different containers or sets of containers of material to be dispensed. Thus according to the represent invention a need for producing a variety of drive units is avoided, which is a major advantage since the drive unit is the single most complicated component of the dispenser.
Number | Date | Country | Kind |
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PA 2012 70019 | Jan 2012 | DK | national |
Filing Document | Filing Date | Country | Kind |
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PCT/DK2012/050509 | 12/27/2012 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2013/104363 | 7/18/2013 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
6889872 | Herman et al. | May 2005 | B2 |
20020130141 | Gardos | Sep 2002 | A1 |
20040045982 | Herman | Mar 2004 | A1 |
20090039113 | Hsu | Feb 2009 | A1 |
20090264831 | Thompson et al. | Oct 2009 | A1 |
20120118913 | Naughton | May 2012 | A1 |
20120118917 | Naughton | May 2012 | A1 |
Number | Date | Country |
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4107479 | Sep 1994 | DE |
02060600 | Aug 2002 | WO |
Entry |
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Danish Search Report for Danish Application No. PA 2012 70019 mailed Sep. 17, 2012. |
Number | Date | Country | |
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20150034675 A1 | Feb 2015 | US |