This invention relates generally to a method and apparatus for dispensing individual sheets from a continuous web of material, and more particularly for a dispenser housing with a motorized roller transport mechanism for loading and dispensing the material.
Known electrically powered dispensers for paper towels and the like typically include a drive roller and an associated pinch roller formed on conductive metal shafts which are supported by a molded plastic chassis, with the pinch roller being spring biased into the drive roller. Other known dispensers support the shaft ends on separate metal plates that are attached to a common housing, and typically include a separate low friction bearing material between the metal plates and the metal shafts. The known electrically powered dispensers may also be provided with a separate special purpose grounding connection between the pinch roller shaft and an external ground terminal and with motorized roller transport mechanisms utilizing a proximity detector for dispensing single sheets from a continuous web. See for example commonly assigned Moody et al U.S. Pat. No. 6,871,815 entitled Static Build Up Control in Electronic Dispensing Systems and Denen et al U.S. Pat. No. 6,838,887 entitled Proximity detection circuit and method of detecting small capacitance changes, which are both incorporated by reference in their entirety.
The present invention represents an improvement over known electrically powered dispensers for paper towels or the like.
According to one aspect of the invention, a special roller bracket provides not only proper positioning of the drive and pinch roller shafts, but also tension and grounding between the drive and pinch rollers, thereby producing a dispenser that is potentially both reliable to operate and simple to assemble. the roller bracket includes a first side plate for supporting a first respective end of each of the two shafts, a second side plate for supporting a second respective end of each of the two shafts. and a mounting bar attached between the two side plates, and is integrally formed from a single sheet of conductive material. Preferably the mounting bar includes an integrally formed tear bar portion for cutting the material after it has been transported past the rollers.
In one embodiment, each side plate portion of the roller bracket includes a stationary bearing portion supporting the drive roller shaft and a moveable bearing portion supporting the pinch roller shaft, with a flexible bridge (or arm) portion connecting the stationary bearing portion to the moveable bearing portion and having a major surface parallel to the two longitudinal axes such that the pinch roller shaft is free to move laterally with respect to the drive roller shaft. Since the stationary and moveable bearing portions are integrally formed from the same sheet of conductive material, a conductive path exists from the mounting bar to each of the bearing portions. Moreover, since the flexible bridge portion is in tension when the two shafts are supported by the two side plates with the drive roller in contact with the pinch roller, each of the two conductive shafts is biased against a respective conductive bearing portion to thereby complete a static discharge path from the rollers to the mounting bar without requiring any separate springs, contacts or wires. The mounting bracket may function as a grounding terminal, or may be connected to a separate grounding terminal. In either case, a simple and reliable static electricity discharge path is provided from each of the rollers to the grounding terminal through the respective shafts and bearing surfaces.
According to another aspect of the invention, a mounting bracket including a pair of side plates separated by a connecting tear bar is formed from a single sheet of conductive material and includes a pair of fixed bearing surfaces for supporting a drive roller shaft and a pair of flexible spring arms each terminated by a moveable bearing surface for supporting a pinch roller shaft, the spring arms being formed and positioned to provide a tension force for urging the pinch roller into contact with the drive roller. The tear bar is attached to a housing and the drive roller assembly is installed into a separate chassis with the drive roller shaft inserted into a pair of chassis end plates and with a gear train coupling the drive roller shaft to a motor mounted on the chassis. The chassis assembly is then inserted into the housing between the side plates of the mounting bracket such that the drive roller shaft is free to make ohmic contact with the fixed bearing surfaces and the chassis assembly is securely attached to the housing and to the mounting bracket. The spring arms are then temporarily displaced away from the chassis assembly and the pinch roller assembly is inserted into the end plates, with moveable bearing surfaces aligned with the respective ends of the pinch roller shaft such that the tension force is applied between the pinch roller and the drive roller.
In a preferred embodiment, a respective slot in each chassis end plate constrains the drive roller shaft of the assembled transport mechanism in one lateral direction and the adjacent fixed bearing surface cooperates with the tension force from the spring arms to constrain the drive roller shaft in a second lateral direction.
Other novel aspects of the invention, including but not limited to those set forth in the appended claims, will be apparent to those skilled in the art from the referenced Drawings and from the various described Embodiment(s). In particular, the housing of a described Preferred Embodiment of a paper towel dispenser includes not only a roller-based transport mechanism, but also a door mounted projection blade for assisting paper loading, a removable top cover that also functions as a universal mounting bracket, and flexible paper protection fingers that discourage unwanted contact between the paper and the tear bar.
Reference should now be made to
In particular, it should be noted that the paper material 40 is advanced from supply roll 10 to discharge opening 6 by virtue of being kept in intimate contact with the outer periphery 44 of drive roller 42 by means of a pinch roller 46, at a speed corresponding to the surface velocity of drive roller 42. Exemplary performance specifications for paper towel stock weighing 18 to 60 pounds per ream and supplied in a roll form with a nominal diameter of 3 to 6 inches would be 25 to 30 feet per minute. Also visible in
Each side plate portion 56A,56B of the mounting bracket 54 includes a stationary bearing portion 64 for supporting the drive roller shaft about a longitudinal drive roller axis 66 (see also
Since the stationary and moveable bearing portions 64,68 are integrally formed from the same sheet of conductive material, a conductive path exists from the mounting bar 62 to each of the bearing portions 64,68. Moreover, as best seen in
A preferred method of assembly will now be described with specific reference to
First, as shown in
Next, as best seen in
As shown in
To complete the assembly of chassis 80, a worm gear 86A is attached to one end of drive roller shaft 74 to thereby couple shaft 74 to a previously mounted motor and pinion assembly 88,86B, and the chassis 80 may be more rigidly secured in its operative position relative to bracket 54 by means of self tapping screws (not shown) through appropriately positioned clearance holes 90 in the side plates 56A,56B into corresponding pilot holes (not shown) in the chassis 80.
Loading of paper will now be described with reference to
As the paper 40 is transported from nip 108 to discharge opening 6, it is guided by a plurality of springy semicircular guide fingers 106 which are normally oriented towards drive roller 42 such that the exiting end of paper 110 is protected from any contact with teeth 112 of tear bar 14. However, as best seen in
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