This invention relates to apparatus for dispensing paper toweling having a tail from a roll of paper toweling. More particularly, the apparatus incorporates a fixedly mounted tear blade enabling a user to tear a sheet from the paper toweling and structure preventing “milking” of the toweling by a user.
It is well known to employ fixed mounted tear or cutter blades in paper towel dispensers. Typically, these blades are located at or near a toweling exit opening of the dispenser.
A common problem in many conventional prior art dispenser constructions employing fixed tear or cutter blades is that of “milking” of the toweling by the end user. That is, in conventional arrangements a user can pull the toweling down continuously without tearing it on the tear blade (allowing milking) because there is no structure requiring that the toweling push against the tear blade.
The present invention incorporates structural elements which cooperate to prevent milking when a user pulls on the sheet. Furthermore, the structural combination of this invention promotes more positive engagement between the toweling and the cutting blade, thus providing more efficient dispensing as well as preventing waste of toweling.
The apparatus of the present invention is for dispensing paper toweling having a tail from a roll of paper toweling. The apparatus has a toweling exit opening.
The apparatus includes a dispenser housing having a housing front and defining a housing interior in communication with the toweling exit opening.
An elongated toweling support roller is within the housing interior for receiving and supporting toweling extended from a roll of paper toweling in the housing interior.
A tear blade is positioned adjacent to the exit opening. The tear blade is spaced from the toweling support roller and extends lengthwise along the toweling support roller.
Toweling guide structure is operatively associated with the toweling support roller and with the tear blade. The toweling guide structure is movable between a first condition wherein the toweling guide structure maintains toweling transported by the toweling support roller out of engagement with the tear blade and a second condition wherein the toweling guide structure allows engagement of the toweling transported by the toweling support roller with the tear blade.
The toweling guide structure moves from the first condition to the second condition responsive to a manually exerted pulling force on the tail of the toweling extending from the exit opening in a direction moving said toweling and said toweling guide structure away from the toweling support roller and toward the tear blade. The toweling guide structure returns to the first condition responsive to severance of the toweling by the tear blade.
Other features, advantages and objects of the present invention will become apparent with reference to the following description and accompanying drawings.
Referring now to
A rotatable, elongated toweling support roller or drum 18 is disposed within the housing interior for receiving and supporting paper toweling 20 extending from a roll 22 of paper toweling in the housing interior. The structure thus far indicated and as generally described is well known in the prior art.
A tear blade 26 is fixedly positioned adjacent to the exit opening 16. The tear blade 26 is spaced from the toweling support roller 18 and extends lengthwise along the toweling support roller. Tear blades of both fixed and movable character are well known in the towel dispensing art, however the tear blade 26 has a unique structure and cooperative relationship with other structural elements of the present invention.
As is described in greater detail below, toweling guide structure of a unique character is operatively associated with the toweling support roller and with the tear blade. The toweling guide structure is movable between a first condition wherein the toweling guide structure maintains toweling transported by the toweling support roller out of engagement with the tear blade 26 and a second condition wherein the toweling guide structure allows engagement of the toweling transported by the toweling support roller with the tear blade. The toweling guide structure moves from the first condition to the second condition responsive to a manually exerted pulling force on the tail of the toweling extending from the exit opening 16 in a direction moving the toweling and the toweling guide structure away from the toweling support roller and toward the tear blade. The toweling guide structure returns to the first condition responsive to severance of the toweling by the tear blade.
The toweling guide structure is in the form of a plurality of flexible fingers 30 formed of plastic or other suitable material, the fingers being engageable by the toweling 20. The fingers 30 are spaced from one another and include distal end portions 32 alternatively movable toward or away from the tear blade 26. This action is shown in
Roller stripper structure in the form of a plurality of stripper elements 40 is connected to the housing and the stripper elements extend about a portion of the periphery of the roller 18 adjacent to the flexible fingers 30. The flexible finger distal end portions 32 and the stripper elements 40 define restricted toweling passageways receiving the toweling transported by the toweling support roller.
The roller stripper elements 40 are positioned in grooves formed in the roller and include curved stripper element portions 42 engageable with the toweling transported by the toweling support roller to direct the toweling toward the exit opening 16.
A toweling support tray 48 is connected to the dispenser housing. The tray extends below the tear blade 26 and into exit opening 16. In this embodiment of the invention the hand sensor, which may be of any suitable known type commonly employed in paper toweling dispensers, such as an infrared sensor, is located at toweling support tray 48, the sensor being designated by reference numeral 50. A motor (not shown) associated with toweling support roller 18 is actuated by sensing of a user's hand, with suitable conventional electrical circuitry or electronics being utilized to control the amount of rotation of the roller. Such controls generally are widely known and utilized in the paper towel dispensing art, and need not be described here.
Tear blade 26, as indicated above, is fixedly attached to the housing 10. The tear blade has a unique character. The tear blade cutting edge includes a plurality of toweling cutting teeth 52 between spaced blade openings or slots 54 which extend from the cutting edge. These openings 54 receive the flexible finger distal end portions 32 when the toweling guide structure is in the second condition described above.
A clean positive cut of the toweling will thus take place and the user can readily remove the severed end of the toweling or sheet as shown in
The relative positions of the tear blade, the toweling support tray below the tear blade within the exit opening and the toweling coming off the roller 18 requires that the pulling force exerted on the tail of the toweling extending from the exit opening by a user of the apparatus will, in addition to forcing the toweling against the tear blade, act to prevent milking of the toweling by the user. Without the configuration including the extended toweling support tray 48, the toweling, rather than being pulled forward at the location of the tear blade could be pulled downwardly, enabling milking by a user. Without such feature a vandal could quickly dispense and waste paper.
It will be noted that the cutting teeth 52 of tear blade 26 are substantially co-planar.
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