Sheet material transfer system/assembly for a dispenser
10835086 ยท 2020-11-17
Inventors
Cpc classification
A47K10/426
HUMAN NECESSITIES
B65H2511/30
PERFORMING OPERATIONS; TRANSPORTING
A47K2010/3681
HUMAN NECESSITIES
International classification
A47K10/36
HUMAN NECESSITIES
Abstract
A sheet material dispenser can include a sheet material transfer assembly operable to automatically transfer feeding or dispensing of sheet material between a plurality of supplies of sheet material. The sheet material transfer assembly can include a frame that is movable between a plurality of positions including a first position that facilitates feeding of the sheet material from a first supply of sheet material, and a second position that facilitates feeding or dispensing of sheet material from a second supply of sheet material. The frame of the sheet material transfer system can shift or move to the second position for dispensing sheet material from the second supply of sheet material when the first supply of sheet material is fully dispensed.
Claims
1. A dispenser assembly for dispensing a sheet material, comprising: a housing comprising a discharge, and a plurality of supply rolls of sheet material rotatably mounted therealong; a feed roller rotatably mounted along the housing and operable to facilitate dispensing of the sheet material from the plurality of supply rolls of sheet material along a discharge path toward and through the discharge of the housing; and a sheet material transfer assembly adjacent the feed roller in a position for selectively directing sheet materials from the plurality of supply rolls of sheet material into engagement with the feed roller to transfer feeding of sheet material between the plurality of supply rolls of sheet material, the sheet material transfer assembly including a frame that is movable between a plurality of positions including a first position that facilitates feeding or dispensing of the sheet material from a first supply of sheet material, and a second position that facilitates feeding or dispensing of sheet material from a second supply of sheet material; wherein the frame of the sheet material transfer assembly moves to the second position for dispensing sheet material from the second supply of sheet material when the first supply of sheet material is substantially fully dispensed, and includes a plurality of roller assemblies coupled thereto, the plurality of roller assemblies comprising a first roller assembly having at least one roller that at least partially engages sheet material from the first supply roll of sheet material, and a second roller assembly having at least one roller that at least partially engages sheet material from the second supply roll of sheet material.
2. The dispenser assembly of claim 1, further comprising a support arm positioned adjacent the first roller assembly and comprising a plurality of grooves defined therein, wherein the at least one roller of the first roller assembly comprises a series of spaced projections each having an annular surface that at least partially engages the sheet material from the first supply roll of sheet material, and wherein when the first supply roll of sheet material is substantially fully dispensed, the series of spaced projections are received within corresponding grooves of the plurality of grooves of the support arm positioned adjacent the first roller assembly as the frame rotates to the second position for dispensing of the second supply of sheet material.
3. The dispenser assembly of claim 2, wherein the support arm comprises a series of spaced portions therealong that at least partially define the plurality of grooves therealong, wherein the series of spaced portions each comprise a surface that at least partially engages the sheet material from the first supply of sheet material so that at least a portion of the first supply of sheet material is engaged between the series of spaced portions of the support arm and the series of spaced projections of the first roller assembly with the frame in the first position.
4. The dispenser assembly of claim 2, wherein when the first supply of sheet material is fully dispensed, the series of spaced portions of the support arm interlock or intermesh with the series of spaced projections of the first roller assembly as the frame is moved to the second position.
5. The dispenser assembly of claim 2, further comprising one or more biasing members in communication with a support arm to urge the support arm into engagement with the frame to urge the frame towards the first position.
6. The dispenser assembly of claim 2, further comprising one or more mechanical stops in communication with the support arm that prevent a movement of the support arm in at least one direction and allow the frame to move toward the second position when the first supply of sheet material has been substantially fully dispensed.
7. The dispenser assembly of claim 1, wherein the frame further comprises projecting portions arranged along the frame so as to hold the sheet material of the second supply of sheet material about the at least one roller of the second roller assembly with the frame in the first position.
8. The dispenser assembly of claim 7, wherein the one or more projecting portions arranged along the frame comprise at least one sharpened edge.
9. The dispenser assembly of claim 1, further comprising one or more biasing members coupled to the frame to urge the frame toward the second position for dispensing the second supply of sheet material when the first supply is substantially fully dispensed.
10. A dispenser, comprising: a housing comprising a discharge; a plurality of supplies of sheet material supported along the housing, the plurality of supplies of sheet material comprising a first supply of sheet material and a second supply of sheet material; a feed roller rotatably mounted along the housing and operable to facilitate dispensing of the sheet material from the plurality of supplies of sheet material along a feed path that extends through the discharge; and a sheet material transfer assembly operable to automatically transfer active dispensing between the plurality of supplies of sheet material, the sheet material transfer assembly comprising: a frame that is movable between a plurality of positions including a first position that facilitates dispensing sheet material from the first supply of sheet material, and a second position that facilitates dispensing sheet material from the second supply of sheet material; and a plurality of guide roller assemblies coupled to the frame, including a first guide roller assembly that engages sheet material from the first supply of sheet material, and a second guide roller assembly that engages sheet material from a second supply of sheet material, wherein the sheet material from the second supply of sheet material is received about the second guide roller assembly, and the second guide roller assembly, with the second supply of sheet material received thereabout, is spaced apart from the feed roller when the frame is in the first position, and wherein when the first supply of sheet material is substantially fully dispensed, the frame is moved to its second position, wherein the second guide roller assembly moves the sheet material from the second supply at least partially against the feed roller for dispensing of the sheet material from the second supply of sheet material.
11. The dispenser of claim 10, further comprising at least one support arm having a series of spaced portions positioned therealong that is movably mounted to the housing so as to be arranged substantially adjacent to the second guide roller assembly, wherein the first guide roller assembly comprises a series of spaced projections, and wherein at least a portion of the sheet material from the first supply of sheet material is engaged between series of spaced portions of the least one support arm and the series of spaced projections of the first guide roller assembly with the frame in the first position.
12. The dispenser of claim 11, wherein when the first supply of sheet material is fully dispensed, the series of spaced portions of the at least one member interlock or intermesh with the series of spaced projections of the first guide roller assembly as the frame is moved to the second position.
13. The dispenser of claim 11, wherein the at least one member is biased by one or more biasing members to engage and urge the frame towards the first position with the at least a portion of the first supply of sheet material engaged between the series of spaced portions of the at least one member and the series of spaced projections of the first guide roller assembly, and wherein the at least one member is in communication with one or more mechanical stops that prevent a movement of the member and allow the frame to move toward the second position when the first supply of sheet material has been fully dispensed.
14. A dispenser assembly for dispensing a sheet material, comprising: a housing supporting a plurality of supply rolls of sheet material including a first supply of sheet material and a second supply of sheet material rotatably mounted along the housing, the housing including a discharge for dispensing of sheet material from the first supply or second supply; a feed roller rotatably mounted along the housing and operable to facilitate dispensing of the sheet material from the first supply or the second supply along a discharge path toward and through the discharge of the housing; and a sheet material transfer assembly that is movable between a plurality of configuration including a first configuration that facilitates dispensing of the sheet material from the first supply, and a second configuration that facilitates dispensing of the sheet material from the second supply, the sheet material transfer assembly including: a plurality of rollers including a first roller configured to at least partially engage the sheet material from the first supply, and a second roller configured to at least partially engage the sheet material from the second supply and that is spaced away from the feed roller when the sheet material transfer assembly is in the first configuration; and a support positioned adjacent the first roller such that the sheet material from the first supply is at least partially engaged between the support and the first roller, with the sheet material transfer assembly in the first configuration, and configured to intermesh or interlink with the first roller when the sheet material from the first supply of sheet material is exhausted to facilitate movement of the sheet material transfer assembly to the second configuration and bring the second roller towards the feed roller to engage at least a portion of the sheet material from the second supply against the feed roller for dispensing thereof.
15. The dispenser assembly of claim 14, wherein the sheet material transfer assembly further includes a movable frame connected to the first roller and the second roller.
16. The dispenser assembly of claim 15, wherein the frame includes one or more engagement portions arranged therealong and configured to hold the sheet material from the second supply of sheet material about the second roller with the sheet material transfer assembly in the first configuration.
17. The dispenser assembly of claim 15, wherein the sheet material transfer assembly further includes one or more biasing members in communication with the frame to urge the second roller toward engagement with the feed roller.
18. The dispenser assembly of claim 14, wherein the sheet material transfer assembly further includes one or more biasing members in communication with the support to urge the support toward engagement with the first roller and to help to hold the sheet material transfer assembly in the first configuration.
19. The dispenser assembly of claim 14, wherein the support includes a plurality of spaced portions arranged therealong that at least partially define a plurality of grooves therebetween and each have a surface that at least partially engages the sheet material from the first supply, wherein the first roller has a plurality of spaced projections each having an annular surface that at least partially engages the sheet material from the first supply, and wherein when the first supply roll of sheet material is substantially fully dispensed, the spaced projections of the first roller are received within corresponding grooves of the plurality of grooves of the support.
20. The dispenser assembly of claim 14, wherein the sheet material transfer assembly further includes one or more mechanical stops configured to prevent a movement of the support in at least one direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings, which are included to provide a further understanding of the embodiments of the present disclosure, are incorporated in and constitute a part of this specification, illustrate embodiments of the present disclosure, and together with the detailed description, serve to explain the principles of the embodiments discussed herein. No attempt is made to show structural details of this disclosure in more detail than may be necessary for a fundamental understanding of the exemplary embodiments discussed herein and the various ways in which they may be practiced. According to common practice, the various features of the drawings discussed below are not necessarily drawn to scale. Dimensions of various features and elements in the drawings may be expanded or reduced to more clearly illustrate the embodiments of the disclosure.
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DETAILED DESCRIPTION
(14) The following description is provided as an enabling teaching of embodiments of this disclosure. Those skilled in the relevant art will recognize that many changes can be made to the embodiments described, while still obtaining the beneficial results. It will also be apparent that some of the desired benefits of the embodiments described can be obtained by selecting some of the features of the embodiments without utilizing other features. Accordingly, those who work in the art will recognize that many modifications and adaptations to the embodiments described are possible and may even be desirable in certain circumstances. Thus, the following description is provided as illustrative of the principles of the embodiments of the present disclosure and not in limitation thereof.
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(16) The supply rolls 28 and 26 generally will be rotatably coupled to the dispenser housing 14, for example, using one or more supports 30 and 32. As shown in
(17) Additionally, as shown in
(18) In one embodiment, the feed roller 40 can be manually driven, for example, an operator can actuate a knob or lever other suitable portion to drive movement/rotation of the feed roller 40 (not shown). Additionally, or in the alternative, the feed roller 40 can be automatically driven by a drive mechanism 48 (e.g., as shown in
(19) The drive mechanism 48 of the feed roller 40 generally can comprise a motor 56, such as a DC motor (e.g., a brush or brushless DC motor), an AC motor, stepper motor, servo motor or other similar motor or actuator. The motor 56 can be powered by a battery pack or other power source arranged at least partially within or along the dispenser housing 14. As shown in
(20) U.S. patent application Ser. Nos. 15/173,970, 15/185,776, and 15/185,937, which are incorporated by reference herein in their entireties, show example arrangements of integrated and other drive mechanisms for driving the feed roller 40. However, any suitable driving mechanism, arrangement, or configuration can be employed to drive the feed roller for feeding or dispensing sheet material, without departing from the scope of the present disclosure.
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(22) The dispenser 10 further can include one or more cutting mechanisms configured to cut, perforate, tear or otherwise enable the sheet material to be severed or separated from the supply of sheet material. In one example, a cutting mechanism can be disposed along or within the feed roller 40 and can be movable therewith to cut or perforate the sheet material 12 as it is dispensed. Additionally, or in the alternative, the cutting mechanism can include a tear bar 54, with a jagged or serrated edge, that is arranged along or adjacent the discharge chute 44 to allow a user to tear off a desired amount or length of sheet material 12 after it is dispensed. U.S. patent applications Ser. Nos. 15/185,776, 15/185,937, and 15/173,970, which are incorporated by reference herein in their entireties, provide example cutting mechanisms that can be used in the present disclosure; though any suitable cutting mechanism can be used without departing from the scope of the present disclosure.
(23) Additionally, the dispenser 10 can include one or more monitoring systems (not shown) in communication with the first 26 and/or second 28 supply rolls, which monitoring systems can be operable to detect a remaining amount of sheet material for one or both of the supply rolls, for example, such as a monitoring system shown and described in U.S. patent application Ser. No. 15/922,157, which is incorporated by reference herein as if set for in its entirety.
(24) As further shown in
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(26) The frame 106 generally is rotatably or pivotably mounted along the housing 14 so as to move the sheet material transfer assembly 100 between the first and second positions as needed to facilitate transfer of the feeding and/or dispensing of the sheet material between the first and second 26/28 supply rolls. In addition, the frame 106 can be pivotably or rotatably biased, by one or more biasing members 112, such as a torsion spring(s) or other suitable biasing member(s) or mechanism(s), in a desired or selected direction, e.g., the biasing member(s) 112 can bias or urge the frame 106 toward its second position 104, as indicated in
(27) The frame 106 further generally comprises a series of supports, arms, or other members 114, 116, 118. These frame supports can include a pair of opposing side supports/arms 114, 116 that are rotatably/pivotably coupled to the side portions 20/22 of the housing 14. The series of frame supports further can include one or more additional supports, for example, one or more cross-wise members 118, extending between the side supports 114 and 116. The side supports 114 and 116 each can have a body 120, 122 with a generally rectangular cross-section, however, the side supports 114 and 116 can have any suitable shape or configuration, such as a circular, square, triangular cross-section, etc., without departing from the scope of the present disclosure. The bodies 120/122 of the side supports can be angled and/or can have one or more sloped/angled portions 121/123 (
(28) The biasing member(s) 112, e.g., torsion spring(s), may contact, engage, or otherwise be in communication with the bodies 120/122 of the supports 114/116. Each side support 114, 116 further can be coupled to the first guide roller assembly 108 at a first end 114A/116A, and to the second guide roller assembly 110 at a second end 114B/116B of the side supports 114/116, such that the first and second guide roller assemblies 108/110 extend at least partially between, and are rotatable with respect to, the side supports 114, 116, as generally indicated in
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(30) Additionally, as shown in
(31) The guide roller body 132 further can have a series of spaced projections or sections 134 provided therealong and which at least partially define a series of notches or grooves 136. The projections or sections 134 can include a series of disk-like or substantially cylindrical portions spaced along the body 132, and can have an annular or circumferential surface 138 configured for at least partially contacting or otherwise engaging the sheet material 27. The ends 132A/132B roller body 132 also can be rotatably coupled to the first ends 114A/116A of the side supports 114/116.
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(33) The side supports 144 of the support arm 146 further can be coupled to one or more biasing members 149, e.g., tension springs or other suitable biasing members (e.g., torsion springs, etc.) to urge the surfaces/faces 153 into engagement with the sheet material 27, e.g., engaging the sheet material 27 between the portions 134/150 of the roller 130 and the support arm 146. The support arm 146 further can be rotatable or otherwise moveable between a series of positions 145, e.g., a raised/disengaged position, to facilitate loading of the first supply of sheet material 26, e.g., to load the stub roll for dispensing thereof (
(34) With the sheet material received between the guide roller 130 and the support arm 146, the biasing member 149 may cause the support arm 146 to engage the guide roller 130 through the sheet material 27 received therebetween so as to urge the frame 106 (to which the guide roller 130 is attached) towards its first position 102. Accordingly, the stiffness, spring constant, etc., of the biasing member(s) 149 can be selected to allow the support arm 146 to overcome the biasing of the frame 106 due to the biasing member(s) 112. The support arm 146 further has one or more mechanical stops 155 in communication therewith that stop movement of the support arm 146 (e.g., due to urging by the biasing member 149) such that when the first supply of sheet material has been fully dispensed and the portions 134/150 interlink/intermesh, the frame 106 is allowed to move towards the second position 104. For example, the mechanical stops 155 can include one or more surfaces or portions that engage (e.g., a portion 155A of the member or its arms can engage a portion 155B of the dispenser housing, such as a portion of side wall 20/22, etc.) to stop movement of the support arm and allow the frame 106 to rotate to its second position 104 when the first supply of sheet material 26 is exhausted.
(35) In an alternative embodiment shown in
(36) According to embodiments of the present disclosure, the body 152 (or bodies 156) of the guide roller(s) can be formed from plastic materials, such as acrylonitrile buedione styrene (ABS) plastic or other suitable plastics or polymeric materials, though the body 152 (or bodies 156) of the guide rollers can be formed from any suitable material, such as a metallic material, e.g., aluminum, stainless steel, etc., with a rubber and/or an anti-static plastic disposed thereabout, though any suitable materials, e.g., wood or other composite or synthetic materials, or combinations thereof can be employed without departing from the scope of the present disclosure.
(37) Additionally, as shown in
(38) The frame 106, which is generally biased by the biasing member 112 toward the second position 104, further presses or otherwise engages the sheet material 27 between the guide roller 130 and the member 146 as the sheet material 27 is fed in the first position 102; however, when sheet material 27 runs out or is substantially fully dispensed and is absent from between the guide roller 130 and the support arm 146, the biased frame 106 will pivot, rotate or otherwise move, such that the projecting portions 134/150 of the roller 130 and support arm 146 are at least partially received within the corresponding notches 142/136 of the support arm 146 and roller 130 in an intermeshing or interlinking arrangement.
(39) The mechanical stop features 155 further can stop rotation or movement of the support arm 146 past a prescribed position, such that when the projections 134/150 are intermeshed or interlinked, the frame 106 is allowed to rotate a sufficient amount to move to its second position 104, i.e., such that second roller assembly can engage the second supply 29 of the sheet material against the feed roller 40. In one embodiment, the surfaces/portions 155B that are positioned along the dispenser housing will engage at least a portion (155A) of the member 146 or a portion attached thereto to stop or prevent the member 146 from further engaging the frame 106 to its first position 102, when the second supply of sheet material 27 is exhausted and no longer between the member 146 and guide roller 130, so as to allow the frame 106 to rotate towards and to the second position 104, e.g., under force of the biasing member(s) 112.
(40) As generally illustrated in
(41) The body 172 of the guide roller 170 can be formed from a plastic material, e.g., ABS plastic or other suitable plastic or polymeric material; or a metallic material (e.g., aluminum, stainless steel, etc.) with a rubber or anti-static plastic disposed therealong though the body 172. The guide roller 170 can be formed from any suitable materials, such as wood, synthetics, composites, etc., however, without departing from the scope of the present disclosure. The guide rollers 130 and 170 can generally be formed from the same materials, though the rollers can be formed from different materials without departing from the scope of the present disclosure.
(42) With the sheet material transfer system 100 in its first position/configuration 102, at least a portion of the sheet material 29 from the second supply roll 28 of sheet material can be at least partially received about the guide roller 170 of the second roller assembly 110. For example, the sheet material 29 can be substantially wrapped around and held in place about the circumferential surface 173 of the guide roller 170. Further, in one embodiment, at least a portion of the sheet material 29 can be engaged by one or more projecting portions 180 arranged along the support 118. For example, the one or more projecting portions 180 can have a portion or edge 182 that at least partially penetrates or otherwise engages the sheet material 29 to hold the sheet material 29 along the guide roller 170.
(43) As shown in
(44) Accordingly, with the transfer assembly 100 in the first position 102, sheet material 27 can be fed from the first supply roll 26 through the presses arrangement of the guide roller 130 and support 146 into engagement with the feed roller 40 such that activation and/or rotation thereof draws the sheet material from its supply roll 26 and dispenses the sheet material 27 along a dispensing path through and out of the opening 46 of the discharge chute 44 (
(45) When the sheet material 27 of the first supply roll 26 has been substantially fully dispensed, the projecting sections 134 of the first roller assembly 108 will be enabled to at least partially received within the notches 142 of the member 146, allowing the frame 106 to rotate, pivot, or otherwise move under force or tension of the biasing member 112 toward its second position 104 (
(46) As generally shown in
(47) In addition, movement of the frame 106 from the first portion 102 to the second position 104 can activate a notification mechanism (e.g., an LED, light bulb or other indicator displayed along the housing of the dispenser) or otherwise trigger an alarm to indicate that the first supply roll 26 (e.g., the stub roll) has been fully dispensed.
(48) Accordingly, with embodiments of the present disclosure, an operator can load the first and second supply rolls 26/28 into the dispenser assembly onto support arms 35 and 33, respectively. For example, the first supply 26 can include a stub roll that includes a supply roll that has been at least partially dispensed and the second supply 28 can include a new or full roll of sheet material. Upon loading of the supply rolls 26/28, the sheet material 27 from the first supply 26 can be fed through the projecting portions 134/150 of the roller 130 and member 146 into engagement with the feed roller 40, such that the frame 106 is in its first position 102 and the first supply (stub roll) is ready for active dispensing. With the sheet material received between the portions 134/150, the biased member 146 further may engage the biased frame 106 towards the first position 102.
(49) After the first supply 26 of sheet material is completely exhausted, the absence of sheet material between portions 134/150 will allow portions 134/150 to interlink/intermesh, thereby allowing the frame 106 to move towards its second position 104 (e.g., under force or tension of biasing member 112), wherein the roller 170 engages the sheet material from the second supply of sheet material against the feed roller 40 to allow for dispensing thereof. The mechanical stop features 155 can prevent/stop movement of the biased support arm 146 to allow the frame 106 to be moved to the second position 104 by the biasing member 112. As a result, the transfer assembly 100 can provide a generally automatic transfer of active dispensing of the sheet material to the second supply 28 of sheet material once the first supply 26 is fully exhausted without necessarily requiring manual sheet material or sheet material path manipulation.
(50) The foregoing description generally illustrates and describes various embodiments of this disclosure. It will, however, be understood by those skilled in the art that various changes and modifications can be made to the above-discussed constructions and systems without departing from the spirit and scope of this disclosure as disclosed herein, and that it is intended that all matter contained in the above description or shown in the accompanying drawings shall be interpreted as being illustrative, and not to be taken in a limiting sense. Furthermore, the scope of the present disclosure shall be construed to cover various modifications, combinations, additions, alterations, etc., above and to the above-described embodiments, which shall be considered to be within the scope of this disclosure. Accordingly, various features and characteristics as discussed herein may be selectively interchanged and applied to other illustrated and non-illustrated embodiment, and numerous variations, modifications, and additions further can be made thereto without departing from the spirit and scope of the present invention as set forth in the appended claims.