The present disclosure relates generally to paper towel dispensing devices, and various methods associated with such devices. More particularly, this disclosure relates to a paper towel dispenser that dispenses a discrete towel sheet, and various methods associated with such a paper towel dispenser.
A variety of paper towel dispensing arrangements currently exist. One common arrangement includes a paper towel dispenser having pre-folded, interleaved paper towels or sheets that are pulled from an opening in the dispenser. The paper towels are interleaved so that a tab of a second following paper towel is delivered when a first paper towel is pulled from the dispenser. This type of paper towel dispenser is typically recessed into a wall structure, such as a restroom wall in the vicinity of a restroom sink.
There are a number of disadvantages to the interleaved paper towel dispensers. One disadvantage is that pre-folded paper towels are relatively expensive, because the towels must be pre-cut to the desired length and interleaved (i.e., interwoven or overlapped), each of which adds to manufacturing costs. Another disadvantage is that these dispensers sometimes dispense more than one sheet of pre-folded paper towel at a time, whether the user intended to take more than one sheet or not. The extra paper towels are often discarded without use, or left on the restroom sink, for example, where the extra towels become wet and possibly contaminated.
Improvements to paper towel dispensers, generally to eliminate waste of paper towels and provide a user with an easy to use device, is needed.
One aspect of the present invention relates to a paper towel dispenser assembly that receives a continuous length of pleated paper toweling. The pleated paper toweling is dispensed to a user upon receiving a paper towel request. Another aspect of the present invention relates to the upgrade of an existing pre-fold, pre-cut, interleaved paper towel dispenser. The method includes providing a paper towel dispenser assembly sized to fit within the existing framework of the towel dispenser, the assembly being configured to deliver a discrete paper towel from a continuous length of pleated paper toweling.
A variety of examples of desirable product features or methods are set forth in part in the description that follows, and in part will be apparent from the description, or may be learned by practicing various aspects of the disclosure. The aspects of the disclosure may relate to individual features as well as combinations of features, including combinations of features disclosed in separate embodiments. It is to be understood that both the foregoing general description and the following detailed description are explanatory only, and are not restrictive of the claimed invention.
Reference will now be made in detail to exemplary aspects of the present disclosure that are illustrated in the accompanying drawings. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or like parts.
The present disclosure relates to a towel dispenser and towel dispenser assembly. In one embodiment, the towel dispenser assembly is sized and constructed for installation within an existing towel dispenser. The existing towel dispenser can be located within a recessed space in a wall or mounted flush to a wall. The existing towel dispenser can include, for example, a cabinet recessed within a wall, such as those dispensers designed for manual dispensing of individual pre-cut and pre-folded paper towels.
As previously described, such pre-cut paper towel dispensers often dispense more individual towels than what is needed by a single user, resulting in towel waste and/or mess. The extra dispensed towels are sometimes left out in the open, for example upon a sink ledge, where the extra towels can become wet and/or contaminated. The present towel dispenser eliminates unintended dispensing of paper towels. The present towel dispenser further fits within existing towel dispenser structure without significant modification to reduce costs associated with upgrading a facility's towel dispensing system. In the alternative, the present towel dispenser assembly can be provided in a new dispenser construction or a different dispenser configuration having a low-profile spatial requirement similar to that of manual pre-cut paper towel dispensers.
Referring now to
A towel dispensing region 32 (
The remainder of description refers to the framework structure 14 of
Referring again to
The dispenser assembly 40 is sized and shaped to fit within the interior space of the upper region 24 of the cabinet of an existing towel dispenser. In particular, the dispenser assembly 40 has a width W2 (
Referring now to
What is meant by “continuous length” of pleated paper toweling is that the paper toweling is in the form of a paper web, as opposed to individual pre-cut sheets of paper towels. What is meant by continuous length of “pleated” paper toweling is that the length includes a plurality of fold lines, in contrast to a roll, for example. In the illustrated embodiment, the fold lines are alternating. The continuous length of pleated paper toweling accordingly has a rectangular stacked shape. Additionally, the continuous length of pleated paper toweling is non-perforated (i.e., the web has no spaced separation lines). Further details of pleated paper toweling that can be used in the present dispenser assembly are provided in U.S. application Ser. No. 12/583,189, which application is incorporated herein by reference.
Referring still to
The illustrated support frame 50 includes a rear panel 54, side panels 56, and front panels 58. The front panels 58 are attached to the side panels 55 by a sliding connection 59. As shown in
Referring to
Referring now to
Referring back to
The spacer roller 82 is located forward of the drive and pinch rollers 62, 74 of the drive assembly 36. The spacer roller 82 positions the web of continuous pleated paper toweling forward of the opening 66 in the base 52 of the dispenser assembly 40. When loaded for operation, the end 64 of the paper toweling is first routed forward around the spacer roller 82 and then routed rearward and between the drive roller 62 and the pinch roller 74.
Referring again to
The drive roller 62 of the drive assembly 36 is supported at one end by engagement with the motor 72 and supported at the other end by a drive hub 86 that attaches to the end 88 of the base 52. The end 88 is attached to the base 52 by base tabs 120 that engage apertures 122 formed in the end 88. The end 88 is attachable and detachable for assembly purposes. In the alternative, the end of the drive roller 62 can attach directly to the end 88 of the base 52. The pinch roller is supported in relation to the drive roller 62 by positioning ends of the pinch roller 74 within apertures 90. One of the apertures 90 is formed in the end 88 of the base 52, the other aperture 90 is formed in the motor bracket 84.
The present dispenser assembly 40 further includes a controller 38. In the illustrated embodiment, the controller 38 is a printed circuit board 39 having control circuitry. Referring back to
Referring still to
The controller 38 monitors and controls operation of the motor 72, and thereby controls the predetermined length of the toweling dispensed. In one embodiment, the controller 38 includes a programmable processor, which based upon a selected input entered into the processor, sets the predetermined length of toweling dispensed. The selected input is one of a plurality of inputs that can be selected; each input of the plurality being associated with a different predetermined length of dispense.
During installation or maintenance, the length of toweling dispensed can be set to a desired dispense length. As previously described, the continuous length of pleated paper toweling is non-perforated so that the length of toweling provided to a user can be different in different applications, as needed. In contrast, perforated towel webs have set towel sheet lengths that cannot be varied. In one application, the predetermined length dispensed to a user is between about 8 to 9 inches. In one embodiment, the predetermined length is associated with a time of dispense; accordingly the motor is turned off after a particular time associated with the dispense of a predetermined length. In another embodiment, a sensor can be used to detect the rotational position of the drive roller, for example, to determine what length of toweling has been dispensed.
As previously noted, the controller 38 can also control a delay between toweling dispenses. For example, the controller can be set to prevent the start of a new dispense until a predetermined time after the motor 72 has turned off from a prior dispense. In one application, the predetermined time is about 2 seconds. The controller 38 can also be configured to sense a jam in the dispenser housing 42 by sensing an amperage increase caused by an overload on the motor 72, for example.
Referring again to
Dispensing operation is activated automatically by the sensor 46 when a user initiates a towel request. The towel request can be initiated by, for example, positioning an object, such as a hand, in sensing proximity of the sensor without contacting the dispenser. In this manner, a user can avoid contact with viruses or bacteria left on the dispenser by prior users. The sensor can include, for example, a photo sensor that senses or detects changes in light intensity. In the illustrated embodiment, the sensor is an infra-red sensor including a source of infra-red light. The infra-red sensor senses or detects infra-red light reflected by an object. Other types of sensors can be used in accordance with the principles disclosed.
The sensor 46 is mounted at or adjacent to the bottom of the base 52. Referring to
Referring back to
The blade 70 can be a separate component secured to the base 52 or formed as an integral part of the base. The blade 70 cuts or separates the discrete towel 34 from the end of the pleated paper toweling 44 when the user pulls the end 64 of the toweling 44 against the blade 70 of the cutter 48. As can be understood, the discrete towel 34 has a length that corresponds to the predetermined length established by the input to the controller. In some applications, the length of the discrete towel 34 is such that the discrete towel 34 has at least one fold line defined by the pleated paper toweling 44.
In one method of use, the paper towel dispenser assembly 40 is utilized to upgrade an existing towel dispenser that stores individual, interleaved sheets inside the existing towel dispenser. The interleaved sheets have ends that are interwoven or overlapped such that when one exposed end of a first single sheet is withdrawn from the existing dispenser, the end of a another single sheet is exposed for use.
The installer establishes electrical connection between a power source and the controller 38 to supply power to the electrical components (e.g., the sensor 46 and the motor 72) of the assembly 40. In the illustrated embodiment, batteries are installed within the power pack 98 of the assembly 40 to power operation of the sensor and the motor.
The continuous length of pleated paper toweling 44 is then loaded into the support frame 50. In particular, the continuous length of pleated paper toweling is placed upon the bottom platform 68 of the support frame 50 in the form of a vertical stack. The end 64 of the toweling 44 from which the discrete towel 34 is cut is located at the bottom of the vertical stack. The installer routes the bottom end 64 of the continuous length of pleated paper toweling 44 around the spacer roller 82 and then between the drive roller 62 and the pinch roller 74. The drive roller 62 is rotated to advance the bottom end 64 to a position adjacent to the opening 66 in the base 52 of the dispenser assembly 40. The drive roller can be rotated manually or automatically rotated by the controller.
In use, the user initiates a towel request by positioning an object, such as the user's hand, in sensing proximity to the sensor. Preferably the sensor does not require the user to contract the sensor or any other portion of the assembly 40. The sensor 46 activates the dispensing of the end 64 of the continuous length of pleated paper toweling 44 through the opening 66 in the base 52 of the assembly. Referring to
Pulling the dispensed end 64 of the toweling forward or toward the user (as represented by arrow A in
When not in use, the end 64 of the continuous pleated paper toweling 44 is located generally within the towel dispenser assembly 40. That is, a lead portion of end 64 does not extend out from the opening 66 of the base 52. The next dispensed towel has therefore not been openly exposed, which can aid in maintaining towel quality. Because the end 64 of the toweling 44 is not openly or visually exposed, indicia 124 (
The above specification provides a complete description of the present invention. Since many embodiments of the invention can be made without departing from the spirit and scope of the invention, certain aspects of the invention reside in the claims hereinafter appended.
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Entry |
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20110036855 A1 | Feb 2011 | US |