Separation unit and a dispenser comprising a separation unit
09999325 ยท 2018-06-19
Assignee
Inventors
- Bjorn Larsson (Billdal, SE)
- Per MOLLER (Borlange, SE)
- Lars THOREN (Borlange, SE)
- Jari Haukirauma (Borlange, SE)
- Stig Pommer (Borlange, SE)
- Joonas JOKITALO (US)
Cpc classification
A47K10/44
HUMAN NECESSITIES
B65H35/10
PERFORMING OPERATIONS; TRANSPORTING
A47K10/426
HUMAN NECESSITIES
International classification
B65H20/20
PERFORMING OPERATIONS; TRANSPORTING
A47K10/36
HUMAN NECESSITIES
B65H51/04
PERFORMING OPERATIONS; TRANSPORTING
B65H35/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A separation unit for separating a web material along preformed lines of weakness. The separation unit has a width direction and includes a first roller having a rotational axis extending in the width direction and a web width extending in the width direction, and a second roller having a rotational axis extending parallel with the rotational axis of the first roller and a web width extending in the width direction. The second roller is positioned at a distance from the first roller. Each of the first and the second rollers is provided with a plurality of protrusion elements being spaced along the rotational axes and protruding perpendicular from the axes. Each of the protrusion elements has a maximum width in the width direction, a maximum radial extension from the rotational axes, an inner portion adjacent to the rotational axes, and an outer portion remote from the rotational axes.
Claims
1. A separation unit for separating a web material along preformed lines of weakness, said separation unit having a width direction and comprising: a first roller having a rotational axis extending in said width direction and a web width extending in said width direction, and a second roller having a rotational axis extending parallel with said rotational axis of said first roller and a web width extending in said width direction, said second roller being positioned at a distance from said first roller, said distance extending in a direction perpendicular to said width direction, wherein each of said first and said second rollers is provided with a plurality of protrusion elements being spaced along said rotational axes and protruding perpendicularly from said axes, wherein each of said protrusion elements has a maximum width in said width direction, a maximum radial extension from said rotational axes, an inner portion adjacent to said rotational axes, and an outer portion remote from said rotational axes, wherein said outer portions of said protrusion elements on said first roller are arranged in a staggered relationship with said outer portions of said protrusion elements on said second roller, and wherein said outer portions of said protrusion elements on said first roller are partially overlapping with said outer portions of said protrusion elements on said second roller with a radial overlap length, thus forming an undulating passage for a web material between said rollers, wherein each protrusion element has a maximum width along the width direction within the overlap length, and the sum of said maximum widths within the overlap length of all protrusion elements on one of said rollers is between 5-30% of said web width of that roller, wherein the separation unit is configured to create a pinch force on the web material, wherein the pinch force separates the web material along preformed line of weakness via passage through the separation unit.
2. The separation unit according to claim 1, wherein said outer portions of said protrusion elements have ribbed surfaces.
3. The separation unit according to claim 1, wherein said protrusion elements have same maximum radial extensions and same maximum widths.
4. The separation unit according to claim 1, wherein said spacing between each two protrusion elements is equal to or greater than said maximum width of each protrusion element.
5. The separation unit according to claim 1, wherein said maximum radial extensions of said protrusion elements are equal to or greater than said maximum widths of said protrusion elements.
6. The separation unit according to claim 1, wherein said maximum radial extensions of said protrusion elements are between 5-50 mm.
7. The separation unit according to claim 1, wherein the maximum widths of said protrusion elements are between 4-20 mm.
8. The separation unit according to claim 1, wherein said protrusion elements are arranged with same spacing in different parts of said first and/or said second roller.
9. The separation unit according to claim 1, wherein at least one of said first and said second rollers comprises at least a first, a second and a third protrusion element, wherein the spacing between said first and said second protrusion elements along the width direction of said first and/or said second roller differs from the spacing between said second and said third protrusion elements along the width direction of said first and/or said second roller.
10. The separation unit according to claim 1, wherein each of said first and said second rollers has a central portion and outer portions in said width direction, and wherein said spacing between said protrusion elements is greater in said central portion than in said peripheral portions.
11. The separation unit according to claim 1, wherein said radial overlap length is between 2-40 mm.
12. The separation unit according to claim 1, wherein said distance between said rotational axes of said first and said second rollers is between 8-100 mm.
13. The separation unit according to claim 1, wherein said protrusion elements are formed integral with said first and/or second roller.
14. The separation unit according to claim 1, wherein said protrusion elements are separate units attached to said first and/or second roller.
15. The separation unit according to claim 1, wherein said distance between said rotational axes of said first and said second rollers is adjustable.
16. The separation unit according to claim 1, wherein said protrusion elements are disc elements.
17. A dispenser for a web material, comprising a housing defining a web material reservoir; a dispensing opening; a control unit; a separation unit according to claim 1.
18. The dispenser according to claim 17, wherein the dispenser is adapted for containing a web material comprising preformed lines of weakness, said web material being Z-folded to form a stack.
19. The dispenser according to claim 17, wherein the dispenser is adapted for containing a web material comprising preformed lines of weakness, said web material being in the form of a roll.
20. The dispenser according to claim 17, wherein the dispenser further comprises a feeding mechanism.
21. The dispenser according to claim 17, wherein said web material is contained in said reservoir, and wherein a leading portion of said web material is supported in a dispensing path from said reservoir to said dispensing opening.
22. The dispenser according to claim 21, wherein said leading portion extends upwardly from the top of the said stack of said web material.
23. The dispenser according to claim 17, wherein said separation unit is configured to separate a web material having preformed lines of weakness having the perforation strength between 20-80 N/m.
24. The dispenser according to claim 17, wherein said separation unit is configured to separate web material that comprises: at least a first layer divided into sheet products defined between longitudinally separated lines of weakness extending across the first layer; and at least a second elongate web divided into sheet products defined between longitudinally separated lines of weakness extending across the second layer; wherein the webs are interfolded so that the lines of weakness of the first web are offset from the lines of weakness of the second web in a longitudinal direction of the first web.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments of the invention will now be described by way of example with reference to the accompanying drawings, of which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(6)
(7) In the embodiment shown in
(8) As may be seen in
(9) Another advantageous feature of the separation unit according to the present invention is that the maximum radial extensions r of the protrusion elements are equal to or greater than the maximum widths W.sub.pe of the protrusion elements. As may be seen in
(10)
(11) As previously mentioned, the protrusion elements 4 may have different maximum widths W.sub.pe and maximum radial extension r. In
(12) As mentioned above, the shape of the outer portions 5 of the protrusion elements 4 may vary. In
(13)
(14) The unit subsequent to the guiding element 14 is separation unit 1 described above. The separation unit 1 provides an optimal pinch force acting on the web material 16, and allows the web material 16 to be separated at the desired position. The separation unit 1 depicted in
(15) The dispenser 7 illustrated in
(16) In
(17) It should be noted that the dispenser 7 according to the present invention may be any type of automatic or non-automatic dispenser for dispensing at least one web, i.e. a plurality of webs may be dispensed simultaneously, or a plurality of different webs may be dispensed by the dispenser 7 one at a time.
(18) The dispenser 7 is a free-standing, but the dispenser may also be mounted on any suitable object in any suitable manner. Furthermore, a dispenser housing 10 of a dispenser according to the present invention need not necessarily contain an entire web 16 that is to be dispensed by the dispenser 7. At least one web 16 may for example be stored outside the housing 10 and merely be fed through the housing 10 when the dispenser 7 is in use.
(19) Although the present invention has been described with reference to various embodiments, those skilled in the art will recognise that changes may be made without departing from the scope of the invention. It is intended that the detailed description be regarded as illustrative and that the appended claims including all the equivalents are intended to define the scope of the invention.