SHEET ROLLING DEVICE
20240090567 ยท 2024-03-21
Inventors
Cpc classification
A24C5/465
HUMAN NECESSITIES
International classification
Abstract
A device for rolling a sheet includes a main casing which extends between a front face and a rear face and includes a cap which includes a first receiving slot, a sliding element translationally movably mounted in the main casing, from the front face of the casing and including a shell including a second receiving slot, a rotary element rotatably movably mounted and including a shaft housed inside the main casing, from the rear face of the casing, the shaft including an open third receiving slot, and a stop surface. In the closed position of the rolling device, the first and second slots are aligned along the same vertical plane.
Claims
1. A rolling device for a sheet of paper or cardboard, comprising: a main casing which extends along a longitudinal axis between a front face and a rear face and comprising an external cap which includes a first receiving slot, a sliding element translationally movably mounted along the longitudinal axis in the main casing, from the front face of the main casing, between an open position and a closed position of the main casing, the sliding element comprising: a shell which extends along the longitudinal axis between a front edge and a rear edge and comprising a rounded upper portion including a second receiving slot, and a wall for closing the front face of the main casing, a rotary element rotatably movably mounted along the longitudinal axis and comprising: a cylindrical shaft delimited between a first and a second end and housed inside the main casing, from the rear face of the main casing, the shaft including a third receiving slot open up to its second end, and an adjustment wheel integral with the first end of the shaft, a stop surface; in the closed position of the rolling device: the first and second receiving slots are aligned along a same vertical plane comprising the longitudinal axis, the second receiving slot is arranged between the first receiving slot and the shaft of the rotary element along a vertical axis, and the rounded upper portion of the shell of the sliding element is arranged opposite the shaft of the rotary element.
2. The rolling device according to claim 1, wherein the third receiving slot of the rotary element is a radial through slot.
3. The rolling device according to claim 2, comprising a support including the stop surface facing the first slot.
4. The rolling device according to claim 2, comprising a support in which a holding groove including the stop surface facing the shaft of the rotary element is arranged, and wherein the holding groove is aligned with the first and second receiving slots along the same vertical plane.
5. The rolling device according to claim 1, wherein the third receiving slot of the rotary element extends only along a portion of the diameter of the shaft of the rotary element and includes the stop surface.
6. The rolling device according to claim 1, wherein: the closing wall of the sliding element includes a stud cooperating with a blind hole arranged at the second end of the shaft of the rotary element, and the stud and the hole are aligned along the longitudinal axis.
7. The rolling device according to claim 1, wherein the main casing includes at least one first rail for translational guiding along the longitudinal axis cooperating with at least one second guide rail of the sliding element.
8. The rolling device according to claim 1, wherein at least one of the first and second guide rails includes an abutment for translational blocking.
9. The rolling device according to claim 1, wherein the shell of the sliding element includes at least one elastic blade comprising a free end arranged opposite the shaft of the rotary element.
10. The rolling device according to claim 9, wherein: the second slot of the sliding element is delimited by two longitudinal sides, and the free end of the elastic blade forms one of the two longitudinal sides of the second receiving slot.
11. The rolling device according to claim 10, wherein the free end of the elastic blade is at an angular distance in the]0-45[degrees interval relative to the vertical plane.
12. The rolling device according to claim 1, wherein: the main casing and the rotary element each have a positioning mark, and when the marks are aligned, the third receiving slot of the rotary element is aligned with the first and second receiving slots along the same vertical plane.
13. The rolling device according to claim 1, wherein the rear edge of the shell of the sliding element comprises a shoulder which extends radially towards the longitudinal axis and the inner diameter of which is equal to the diameter of the shaft of the rotary element.
14. The rolling device according to claim 1, wherein the shell of the sliding element includes an open lower portion.
15. A method for rolling a sheet of paper or cardboard with the use of a rolling device according to claim 1, the rolling method comprising: aligning the first, second and third receiving slots of the rolling device along the same vertical plane, introducing the sheet into the main casing, through the first, second and third receiving slots of the rolling device up to the stop surface, rotating the adjustment wheel of the rotary element in a predetermined direction until the sheet is fully inserted into the rolling device, and translating the sliding element up to the open position of the main casing of the rolling device, and expelling the rolled sheet from the rolling device.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0042] Further advantages and characteristics of the invention will become apparent upon reading the following description, illustrated by the figures in which:
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DETAILED DESCRIPTION
[0053] An exemplary embodiment of a rolling device according to the invention is described in detail below, with reference to the appended drawings. This example illustrates the characteristics and advantages of the invention.
[0054] Unless otherwise specified, a same element appearing in different figures has a single reference.
[0055] For the purposes of understanding the invention, the vertical, longitudinal and transverse orientations will be adopted according to the reference frame V, L, T indicated in the figures, the longitudinal L and transverse T axes of which extend in a horizontal plane. The rear of the device towards the front of the rolling device is oriented along the longitudinal axis L of the reference frame VLT.
[0056]
[0060] Advantageously, the sliding element 48 and the rotary element 86 are removable relative to the main casing 12 of the rolling device 10, in a translational movement along the longitudinal axis X.
[0061]
[0062] The main casing 12 as represented in isolation in
[0069] According to the first embodiment of the invention, the support 30 comprises a holding groove 32 including a stop surface 104. The holding groove 32 divides the support 30 into a first and a second part 34, 36 symmetrical relative to a vertical plane P comprising the longitudinal axis X.
[0070] The first receiving slot 24 is rectangular and defined by its longitudinal length and transverse width.
[0071] Each first guide rail 38 is arranged opposite a lateral edge 29 of the base 28 and is raised relative to the base 28 so as to leave a free space for receiving part of the sliding element 48 inside the main casing 12. According to one alternative not represented of this exemplary embodiment, the main casing 12 comprises a single first guide rail 38.
[0072] The main casing 12 comprises a notch 44 arranged in the cap 18 forming an opening from the front face 14 of the main casing 12 for receiving part of the sliding element 48 inside the main casing 12.
[0073] As illustrated in
[0074] The sliding element 48 as represented in isolation in
[0080] The shell 50 includes two elastic blades 64 arranged on either side of the second receiving slot 60 and each comprising a free end 66 arranged opposite the second receiving slot 60. The shell 50 may comprise a single elastic blade 64 arranged on one side of the second receiving slot 60.
[0081] According to one alternative, not represented, of the shell 50, the free end 66 of each elastic blade 64 forms one of the two longitudinal sides 62 of the second receiving slot 60. The shell 50 may comprise a single elastic blade 64 arranged on one side of the second receiving slot 60, the free end 66 of which forms one longitudinal side 62 of the second receiving slot 60. The other longitudinal side 62 is formed directly by the shell 50.
[0082] As illustrated in
[0083] The rear edge 54 of the shell 50 is in the shape of an arc of a circle and comprises: [0084] a shoulder 83 which extends radially towards the longitudinal axis X up to an inner peripheral wall 84 so as to reduce the diameter of the rear edge 54, and [0085] two projections 85 arranged on the peripheral wall 84 of the shoulder 83, on each lateral side 57 of the lower portion 56 of the shell 50.
[0086] Each second guide rail 76 of the sliding element 48 is configured to cooperate with a first guide rail 38 of the main casing 12 between an open position and a closed position of the main casing 12. Each blocking abutment 80 of the second guide rails 76 is configured to cooperate with a blocking abutment 42 of the first guide rails 38 to stop translation of the sliding element 48 in the main casing 12 in an open position of the main casing 12.
[0087] Each second guide rail 76 is arranged from a lateral side 57 of the lower portion 56 of the shell 50. According to one alternative not represented of this exemplary embodiment, the sliding element 48 comprises a single second guide rail 76.
[0088] The sliding element 48 comprises two gripping zones 82 arranged on either side of the shell 50 and adjacent to the closing wall 72. Each gripping zone 82 of the sliding element 48 is intended to be received into a notch 44 of the cap 18 of the main casing 12.
[0089] The rotary element 86 as represented in isolation in
[0094] The second end 92 of the shaft 88 comprises a blind hole 98 which extends along the longitudinal axis X and configured to cooperate with the stud 74 of the closing wall 72 of the sliding element 48.
[0095] According to the first embodiment of the invention illustrated in
[0096] As illustrated in
[0097] Preferably, the distance between the two projections 85 of the shoulder of the rear edge 54 of the shell 50 of the sliding element 48 is equal to the diameter of the shaft 88 of the rotary element 86. The projections 85 make it possible to pull the rolled sheet 106 during translation of the sliding element 48 towards the open position of the main casing 12 until the sheet 106 is expelled from the rolling device 10.
[0098] According to one alternative not represented, the diameter of the shoulder 83 of the rear edge 54 of the shell 50 of the sliding element 48 is equal to the diameter of the shaft 88 of the rotary element 86. In this case, the rolled sheet 106 is pulled directly by the shoulder 83 during translation of the sliding element 48. In addition, the peripheral wall 84 of the shoulder is smooth and has no projections 85.
[0099] As illustrated in
[0100] In a mounted and open position of the rolling device 10 as represented in
[0103] The arrangement of the different elements in the closed position of the rolling device 10, as represented in
[0106] The arrangement of the receiving slots 24, 60 and 94 in the closed position of the rolling device is as follows: [0107] the first and second receiving slots 24, 60 are aligned along the same vertical plane P, [0108] the second receiving slot 60 is arranged between the first receiving slot 24 and the shaft 88 of the rotary element 86 along the vertical axis V, and [0109] the first and second receiving slots 24, 60 are aligned with the holding groove 32 along the same vertical plane P.
[0110] When the mark 26 of the main casing 12 and the mark 102 of the rotary element 86 are aligned with each other, the third receiving slot 94 of the rotary element 86 is aligned with the first and second receiving slots 24, 60 along the same vertical plane P. The alignment of the three receiving slots 24, 60 and 94 is required to introduce the sheet 106 inside the rolling device 10.
[0111] In addition, when the marks 26, 102 are aligned with each other, the free end 66 of the elastic blade 64 of the shell 50 of the sliding element 48 is aligned with the chamfer 96 of the third receiving slot 94 of the rotary element 86 by the same angular distance D, D1 relative to the vertical plane P. This angle formed by the free end 66 and the chamfer 96 facilitates folding of the sheet 106 during rolling.
[0112] The unrolled sheet 106 represented in
[0113]
[0117] The internal partition 112 is configured to reinforce the rolled sheet 106 so as to limit crushing thereof and also to improve filtering capacity of the rolled sheet 106. The folded zone 114 bears against an inner segment 116 of the rolled sheet 106.
[0118] According to one alternative embodiment of the sheet 106, the folded zone 114 is first size-coated so that the folded zone 114 is attached by sizing against the inner segment 116 to hold the sheet 106 in the rolled position. The so-called pre-size-coated folded zone 114 of the sheet 106 includes a layer of size deposited before the sheet 106 is rolled.
[0119] According to a second embodiment of the invention represented in
[0120] According to a third embodiment of the invention represented in
[0121] The method for rolling a sheet 106 of paper or cardboard with the use of a rolling device 12 according to the invention by a user includes the following successive steps of: [0122] 1 Mounting the sliding element 48 with the main casing 12 by the user by inserting the shell 50 of the sliding element 48 from the front face 14 of the main casing 12; [0123] 2 Mounting the rotary element 86 with the main casing 12 by the user by inserting the shaft 88 of the rotary element 86 from the rear face 16 of the main casing 12; [0124] 3 Aligning the mark 102 of the rotary element 86 with the mark 26 of the main casing 12 by rotating the adjustment wheel 100 of the rotary element 86;
If the selected sheet 106 includes a pre-size-coated zone: [0125] 5 Locating the face including the pre-size-coated zone of the sheet 106, and orienting the sheet 106 so that the face including the pre-size-coated zone faces the arrow 27 of the main casing 12 and engaged first in the receiving slots 24, 60, 94;
If the selected sheet 106 does not include a pre-size-coated zone: switching from step 4 to step 6 without performing step 5. [0126] 6 Introducing the first pre-size-coated end 108 of the sheet 106 into the main casing 10, through the first, second and third receiving slots 24, 60, 94 until the sheet 106 abuts against the stop surface 104;
If the sheet 106 has a pre-size-coated zone: [0127] 7A Rotating the adjustment wheel 100 of the rotary element 86 by the user in a direction indicated by the arrow 103 of the adjustment wheel 100 of the rotary element 86;
If the selected sheet 106 does not include a pre-size-coated zone: [0128] 7B Rotating the adjustment wheel 100 of the rotary element 86 by the user in a direction randomly determined by the user; and [0129] 8 Translating the sliding element 48 to the open position of the main casing 12 of the rolling device 10 and contact of the blocking abutments 42 and 80 corresponding to the complete opening of the main casing.
[0130] After performing steps 1 and 2, the main casing 12 is in a closed position and the first and second receiving slots 24, 60 are aligned along the vertical plane P. Following step 3, the third receiving slot 94 is aligned with the first and second receiving slots 24, 60 of the rolling device 10.
[0131] For steps 7A and 7B, the adjustment wheel 100 is rotated until the second end 110 of the sheet 106 is inserted into the rolling device 10, and then the adjustment wheel 100 is rotated by at least one additional revolution to ensure that the sheet 106 is completely rolled about the shaft 88 of the rotary element 86.
[0132] During step 7A or 7B of rotating the adjustment wheel 100 of the rotary element 86, the third receiving slot 94 of the rotary element 86 drives the sheet 106 guided by the convex shape of the support 30 of the main casing 12 and held bearing against the shaft 88 of the rotary element 86 by the free end 66 of the elastic blade 64 of the shell 50 of the sliding element 48.
[0133] Preferably, step 8 of translating the sliding element is carried out by the user by applying pressure to each of the two gripping zones 82 of the sliding element 48 while holding the main casing 12.
[0134] During step 8 of translating the sliding element 48, the shoulder 83 of the rear edge 54 of the shell 50 of the sliding element 48 pulls the rolled sheet 106 until it is expelled from the rolling device 10 through the open lower portion 56 of the shell 50 of the sliding element 48.
[0135] According to the first embodiment of the rolling device 10, step 6 of introducing the first end 108 of the sheet 106 is carried out up to the holding groove 32 including the stop surface 104. As a result, at start of step 7A or 7B of rotating the wheel 100 of the rotary element 86, the first end 108 of the sheet 106 is held in the holding groove 32 to form the folded zone 114 of the rolled sheet 106.
[0136] According to the second embodiment of the invention, step 6 of introducing the first end 108 of the sheet 106 is carried out up to the support 30 including the stop surface 104. The sheet 106 rolled according to this embodiment does not include a folded zone 114.
[0137] According to the third embodiment of the invention, step 6 of introducing the first end 108 of the sheet 106 is performed up to the third receiving slot 94 including the stop surface 104. The sheet 106 rolled according to this embodiment does not include a folded zone 114 and the inner partition 112 extends only along a portion of the diameter of the cylinder of the rolled sheet 106.
[0138] The use of a rolling device 10 according to the invention in the form of a handheld device with a small overall size offers one alternative to manually rolling the sheet 106. Such a device is configured to individually form filters and for obtaining filters for roll-your-own cigarettes all having a similar geometry and more particularly a substantially identical diameter determined by the size of the diameter of the shaft 88 of the rotary element. In addition, the presence of a third slot 94 for receiving the rotary element 86 first enables the sheet 106 to be driven during rotation of the adjustment wheel 100 of the rotary element 86, but also the inner partition 112 to be formed, which rigidifies structure of the rolled sheet 106 and improves filtering capacity of the rolled sheet 106 when used in a roll-your-own cigarette.