DEVICE, METHOD AND SYSTEM FOR FOLDING A MOVING ARTICLE OF CLOTHING
20210079587 ยท 2021-03-18
Assignee
Inventors
- Hasdi Matarasso (Pardess Hanna, IL)
- Gal Rozov (Maabarot, IL)
- Alon Naim (Rosh-HaAyin, IL)
- Isaac Naor (Hod Hasharon, IL)
- Neil Gabai (Herzliya, IL)
Cpc classification
International classification
Abstract
A folding device (14, 14) includes a driven contact device (15, 15) configured for continuously creating a fold in a moving article (12) during an operative folding mode of the folding device. In the operative folding mode, the article moves along a base plane in a motion direction (MD). The folding device includes a support structure (54) connected to, and configured for supporting, the contact device. The contact device includes a peripheral surface (48) which extends at least partially about at least one rotation axis. The peripheral surface includes multiple fingers (44) which protrude outwardly away therefrom. In the operative folding mode, the fingers consecutively and incrementally engage and fold the article starting at an edge (28) defining an outline thereof.
Claims
1. A folding device (14, 14) comprising a driven contact device (15, 15) configured for continuously creating a fold in a moving article (12) during an operative folding mode of the folding device (14 14); the folding device (14, 14) orientation being defined with respect to a three dimensional euclidean space described by first, second and third axes (X, Y, Z); in the operative folding mode, the article (12) moving along a base plane (P) defined by the first and second axes (X, Y), in a motion direction (MD) parallel to the first axis (X); the folding device (14, 14) comprising a support structure (54) connected to, and configured for supporting, the contact device (15, 15), the contact device (15, 15) comprising a peripheral surface (48) extending at least partially about at least one rotation axis (R, R1, R2); the peripheral surface (48) comprising multiple elongated fingers (44) protruding outwardly away therefrom; wherein in the operative folding mode of the folding device (14 14), the fingers (44) consecutively engage, and incrementally fold, the article (12).
2. The folding device (14, 14) according to claim 1, wherein in a top view, the article (12) comprises first and second article surfaces (24, 26) and a peripheral article edge (28) which extends therebetween and defines an outline of the article (12), the first article surface (24) faces towards the contact device (15, 15) and the second article surface (26) faces away from the contact device (15, 15); and wherein in the operative folding mode, the respective fingers (44) which form the fold are configured to engage mainly the article edge (28) and the second article surface (26).
3. The folding device (14, 14) according to claim 1, wherein the folding device (14, 14) has a driving motor (56) which drives the contact device (15, 15), which enables continuous folding.
4. The folding device (14, 14) according to claim 1, wherein the peripheral surface (48) is an outwards facing outer belt surface (50) of a belt (46) which extends about at least one pulley (52), the rotation axis of which coincides respectively with the rotation axis (R).
5. The folding device (14, 14) according to claim 1, wherein the folding device (14) comprises first and second pulleys (52a, 52b), each of which has first and second rotation axes (R1, R2); and wherein the peripheral surface (48) is an outwards facing outer belt surface (50) of a belt (46) stretched about the first and second pulleys (52a, 52b).
6. The folding device (14) according to claim 5, wherein the peripheral surface (48) is an outwards facing outer belt surface (50) of a belt (46) which has a belt velocity (BV); and wherein in a view along the third axis (Z) the belt velocity (BV) is either directed towards the motion direction (MD), and forms an acute velocity angle (aV) therewith, or directed away from the motion direction (MD) and forms an obtuse angle (180aV) therewith.
7. The folding device (14) according to claim 6, wherein the velocity angle (aV) ranges between 30 and 70 degrees and preferably between 40 and 60 degrees.
8-9. (canceled)
10. The folding device (14, 14) according to claim 1, wherein at least one finger (44) is at least partially deformable.
11. (canceled)
12. The folding device (14, 14) according to claim 1, wherein each finger (44) has a finger top surface (66) and a finger peripheral surface (68) which extends therefrom towards the peripheral surface (48); and wherein the finger peripheral surface (68) has multiple ridges (70) which protrude outwardly therefrom.
13. The folding device (14, 14) according to claim 1, wherein the peripheral surface (48) comprises fingers (44) lined up in a row.
14-15. (canceled)
16. The folding device (14, 14) according to claim 1, wherein the contact device (15, 15) has a contact device length (ML) and a contact device width (MW); and wherein a dimension ratio LWR=ML/MW is larger than 0.5.
17. A folding system (10) configured for continuously creating at least one fold along a respective fold line (20) in an article (12) during motion thereof, the folding system (10) comprising: the folding device (14, 14) according to claim 1; a conveyor (18) configured for conveying the article (12) in a motion direction (MD); before being folded, the article (12) comprising a first article surface (24) facing away from the conveyor (18) and a second article surface (26) facing and contacting the conveyor (18); and a holding member (16) comprising a holding member edge (30), only the holding member (16) configured for holding at least a portion of the article (12) in a direction perpendicular to the motion direction (MD) during folding, and configured for defining a fold line (20) in the article (20) along the holding member edge (30).
18. The folding system (10) according to claim 17, wherein the holding member (16) does not rotate.
19. (canceled)
20. The folding system (10) according to claim 17, wherein in the operative folding mode of the folding system (10), the fold is created in the article (12) only during relative motion in the motion direction (MD) between the article (12) and the folding device (14, 14).
21. The folding system (10) according to claim 17, wherein the at least one rotation axis (R) of the contact device (15, 15) is not perpendicular to the motion direction (MD).
22. The folding system (10) according to claim 17, wherein at least one finger (44) is configured to contact the conveyor (18) if no article is located therebetween.
23. The folding system (10) according to claim 17, wherein the contact device (15) comprises first and second parallel pulleys (52a, 52b) and at least one belt (46) which is stretched thereabout.
24. (canceled)
25. The folding system (10) according to claim 17, wherein the folding system (10) comprises two elongated folding devices (14), and wherein in a top view of the folding system (10) parallel the third axis (Z), the respective rotation axes (R) diverge along the motion direction (MD).
26-27. (canceled)
28. A continuous article folding method comprising: (a) providing the at least one folding system (10) according to claim 17; (b) enabling continuous relative motion in the motion direction (MD) between the article (12) and the at least one folding device (14, 14); (c) holding the article (12) using the holding member (16); (d) using a holding member edge (30) and establishing a fold line (20) location and orientation in the article (12); and (e) continuously engaging the second article surface (26) using the fingers (44) and collecting and folding the article (12) over the fold line (20) at least in a direction perpendicular to the motion direction (MD).
29. An article folding method for folding an article (12) using the folding device (14, 14) of claim 1, and comprising a first article surface (24) facing in a first direction, a second article surface (26) facing in a second direction opposite to the first direction, opposing first and second article lateral edges (28a, 28b), and an article center line (CL) passing between the article lateral edges (28a, 28b), the method comprising: (a) conveying the article (12) in a motion direction (MD) which coincides with an article central axis (CL); and (b) while the article moves in the motion direction (MD), successively collecting and folding incremental portions of the article's first lateral edge (28a) towards the center line (CL), until at least an entire section of the first lateral edge (28a) is folded over the second article surface (26).
30-36. (canceled)
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0059] For a better understanding of the subject matter of the present application and to show how the same may be carried out in practice, reference will now be made to the accompanying drawings, in which:
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[0079] Where considered appropriate, reference numerals may be repeated among the figures to indicate corresponding or analogous elements.
DETAILED DESCRIPTION OF THE INVENTION
[0080] In the following description, various aspects of the subject matter of the present application will be described. For purposes of explanation, specific configurations and details are set forth in sufficient detail to provide a thorough understanding of the subject matter of the present application. However, it will also be apparent to one skilled in the art that the subject matter of the present application can be practiced without some specific configurations and details presented herein.
[0081] Reference is made to
[0082] The folding system 10 includes a holding member 16, the folding device 14 and a relative motion mechanism 18. The holding member 16 does not rotate, as, for example a roller would about an axis of rotation. The holding member can, however, pivot about an axis to a certain degree, without rotating about it. The main goal is to allow easy passage for articles, and only create enough counter-force to form the fold in the article. The folding device 14 has a contact device 15 which engages the article 12. The relative motion mechanism 18 in the current embodiments is a clothing conveyor 18, which can include multiple mini conveyors 18a which together form a conveyor top surface 22. The conveyor 18 rotates such that the conveyor top surface 22 conveys the article 12 with respect to the stationary folding device 14 that continuously performs a folding operation on the article 12 across the holding member 16 to thereby define a fold line 20. During folding the article passes between the holding member 16 and the conveyor 18. The holding member 16 is configured to hold down the article 12 against the conveyor top surface 22, and the contact device 15 incrementally and continuously urges, or collects, an edge and a portion of the article 12 across the holding member's edge 30, to thereby create a fold in the article 12.
[0083] Attention is drawn to
[0084] The article 12 can be a clothing article which may lay flat on the conveyor top surface 22. Generally speaking, only portions of the article 12 which are being folded move in the third axis Z direction during folding. According to some embodiments, the fold line 20 is oriented generally parallel to the first axis X or the motion direction MD in a view along the third axis Z.
[0085] Attention is drawn to
[0086] In the current description, for the sake of explanation simplicity, it is assumed that the article 12 is neatly laid out on the conveyor top surface 22. And since gravity usually plays a part in the shape and/or behavior of the article 12, the article 12 is regarded as having a generally consistent planar, slender, or thin shape as shown at least partially in
[0087] A proper, or desired fold is formed along a fold line 20 of the article 12 in the first article surface 24, the fold line's location can be defined by a holding member edge 30 of the holding member 16. The result of creating such a fold is that a first portion of the second article surface 26 faces upwards, with a so-called borderline, or fold line 20 dividing the upward facing and now-folded first portion of the second article surface 26 from the remaining portion of the second article surface 26. This transition between the unfolded and folded positions of the first portion is facilitated by the endlessly, or continuously revolving, or rotating, contact device 15 while the article 12 is conveyed in the motion direction MD. The contact device 15 performs the fold by progressively collecting and urging, or ushering the article 12 in the second axis Y direction. Attention is drawn to
[0088] Attention is drawn to
[0089] Each holding member 16 is preferably permanently connected to the folding machine via a holding member support 40. Each holding member bottom surface 34 is preferably supported by the holding member support 40 such that it is almost weightless in the third axis Z direction, especially with respect to the conveyor top surface 22. In other words, if the holding member bottom surface 34 contacts the conveyor top surface 22, it does so with applying a minimal, or almost no force. The holding member support 40 preferably allows the holding member 16 one or two degrees of freedom of movement. One degree of freedom can be linear in the vertical direction, and a second degree of freedom can be partially rotational, with respect to a pivot mechanism, or hinges, preferably located between the holding member support 40 and the holding member 16. Nonetheless, the holding member 16 is non-rotating, in a sense that it cannot complete a full rotation about itself, or any other axis. In the present embodiments, each holding member support 40 includes a parallel movement mechanism that allows the holding member 16 to remain parallel to the conveyor top surface during movement in both the third axis Z direction and in the motion direction MD. The holding members 16 are designed with a minimum interference for the article 12, i.e., they can include a relief, or guiding portion 42 bent with respect to the rest of the holding member 16 that enables smooth entrance, or conveyance of the article 12 between the holding member 16 and the conveyor 18. Each holding member 16 is appropriately weighted and supported by the holding member support 40 to apply a counter force sufficient to hold the article 12 at least in the lateral, or width direction (second axis Y), to ensure that a proper fold line 20 is formed in the article 12. Stated differently, the fold line 20 is created in the article 12 generally parallel to the first axis X, because the holding member 16 prevents at least a portion of the article from moving in the second axis Y direction while the rest of the article 12 is incrementally and continuously ushered across the holding member edge 30. The holding member 16 therefore counters, at least at the fold line 20, forces applied on the article 12. In a top view of the conveyor 18, the holding member 16 and the folding device 14 preferably at least partially overlap.
[0090] The conveyor 18 is configured to enable relative motion between the article 12 and the folding device 14. According to the present embodiments, the conveyor 18 is a motorized conveyor, which uses friction to carry the article 12 and move it with respect to, or past, the folding device 14. In the embodiments seen in the figures, during a folding operation, the position of the folding device 14 is fixed relative to the conveyor 18, such as by being rigidly attached to a structural member of the folding system 10 or the folding machine itself. Although the position of the folding device 14 is fixed during a folding operation, at least the contact device 15 of the folding device 14, must be in motion, as will be further explained below.
[0091] According to the present embodiments, the conveyor 18 refers to multiple, side-by-side smaller conveyors 18a, which form, or define the conveyor top surface 22 on which the article 12 is placed. In a plan view of the conveyor 18 in the third axis Z direction (see
[0092] Attention is drawn to
[0093] According to the present example, the contact device 15 is connected to a stationary, or rigid, support structure, or arm 54 which, in turn, is connected to the folding machine. The support structure 54, as its name suggests, supports the contact device 15 in a specific orientation with respect to the three dimensional Euclidean space, while at least a portion of the contact device 15 is continuously moving during folding as will be explained below.
[0094] The contact device 15 has a peripheral surface 48 which extends at least partially about, or around, at least one rotation axis R which defines a movement, or rotation, direction RD as shown in
[0095] Attention is drawn to
[0096] Each contact device 15 can be driven by the electric motor 56. The motor 56 can be directly attached to, and drive, a respective pulley 52 in the rotation direction RD, however, any other direct or indirect driving method can be employed.
[0097] The belt 46 has an inner belt surface 49, an opposite, outer belt surface 50 and a total belt length BL. The inner belt surface can have torque transfer ridges 49a which enable torque transfer between the belt 46 and the roller, or pulley 52. In the current embodiment, where there are two folding devices 14 covering almost the entire conveyor width CW, and BL/2 is preferably at least 50% of the conveyor width CW. In the top view of the folding system 10 parallel the third axis Z, the respective rotation axes R of the two folding devices 14 diverge along the motion direction MD. This orientation was found to give the best results in terms or repeatability, reliability and article variability.
[0098] At any given instant during a folding operation, the belt 46 has operative and inoperative belt portions 58, 60, each having a slightly shorter length than BL/2. The operative belt portion 58 extends between the pulleys 52 and faces at least partially downwards, towards the conveyor 18, and the article 12. The inoperative belt portion 60 is located farther away from the article 12 than the respective rotation axis R.
[0099] The belt 46 revolves, or moves in the rotation direction RD. The rotation direction RD is always directed such that the operative belt portion 58 has a velocity vector VV which is at least partially directed in the motion direction MD. In other words, as shown in
[0100] The belt 46 has a belt velocity BV which can range between 200 mm/s and 1000 mm/s, depending on the velocity angle Av. According to the present embodiment, the belt velocity equals 540 mm/s. According to the current embodiment, the belt 46 can include multiple elongated fingers 44 which are aligned consecutively in a single row. According to some embodiments the belt 46 has two rows of elongated fingers 44, e.g. as shown in
[0101] For each folding system 10 with the second embodiment of the contact device 15, it was found that mathematical links can be defined between, e.g., the linear belt velocity BV and a conveyor velocity CV. For example, BV=(CV*SC)/Cos(aV). A speed ratio constant SC was empirically discovered, and can range between 0.8 and 1.4, and preferably between 1 and 1.2. If the belt velocity BV is too high with respect to the conveyor velocity CV, the contact device (15) could, e.g., cause the article 12 to displace with respect to the conveyor 18. On the other hand, if the belt velocity BV is too slow, the contact device could, e.g., stretch the fabric. In both cases, article jams can occur. In a view along the third axis Z, the belt velocity BV is either directed towards the motion direction MD, and forms an acute velocity angle aV therewith, or directed away from the motion direction MD and forms an obtuse angle 180aV therewith.
[0102] Attention is drawn to
[0103] According to the present embodiments, each elongated finger 44 has opposite base and main finger portions 62, 64. The base finger portion 62 is preferably permanently connected (i.e., non-removable without damage) to the peripheral surface 48, or outer belt surface 50. On the inoperative belt portion 60, i.e., in a non-engaged position of the elongated finger 44, the elongated finger 44 has a finger length EL which is measured between the peripheral surface 48, or outer belt surface 50, and an extremity of the elongated finger 44 on the main finger portion 64. The finger length EL can range between and 10 mm and 130 mm and preferably between 30 mm and 100 mm. In the current embodiments, the finger length equals 50 mm. According to the present embodiments, on the operative belt portion 58, the fingers 44 closest to the conveyor 18 can touch the conveyor 18. Preferably, in a non-operative mode, at least one finger 44 is either in contact with the conveyor 18, or located not more than 1 mm away from the conveyor 18. The advantage being that even very thin fabric will be caught by the fingers and 44 will be eventually folded. In the operative folding mode, the respective fingers 44 which form the fold (engage the article 12) are configured to engage mainly the article edge 28 and the second article surface 28.
[0104] Each elongated finger 44 can have a finger top surface 66 and a finger peripheral surface 68 which extends towards the outer belt surface 50. In some embodiments, at least one finger 44 has a smooth finger peripheral surface 68. In other words, the finger peripheral surface 68 can be without ridges, or protrusions. According to some embodiments, each finger peripheral surface 68 can include ridges 70 which protrude therefrom, as seen in
[0105] As seen the rear view of
[0106] According to the present embodiments, in an operative folding mode of the folding system 10, the article 12 is moving, or conveyed through the folding system 10. The article 12 rests on the conveyor top surface 22, which rotates, and conveys the article 12 under the holding member 16. In the operative folding mode, the article 12 is located between the conveyor 18 and the holding member 16, and the rotation axis R, R1, R2 of the contact device 15, 15 is located above the article 12 and above the holding member 16.
[0107] Attention is drawn to
[0108] Attention is drawn to
[0109] The contact device 15 has a contact device elongation axis L which is defined to extend along a direction corresponding to the direction where the shortest distance is measured between the first and second rotation axes R1, R2. The contact device elongation axis L is located midway between, the operative and inoperative belt portions 58, 60. The contact device elongation axis L can be perpendicular to the first and second rotation axes R1, R2. The contact device elongation axis L is parallel to the belt longitudinal direction BL.
[0110] A contact device length ML is defined perpendicular to any of the rotation axes R, R1, R2, between the farthest extremities of the peripheral surface 48. According to the second embodiment of the contact device, the contact device length ML can range between 20 and 70 percent of the conveyor width CW and preferably between 30 and 50 percent of the conveyor width CW. According to the present embodiments, the contact device length ML equals 40 percent of the conveyor width CW. The contact device length ML can range between 190 mm and 320 mm. According to the present embodiments, the contact device length ML equals 270 mm.
[0111] In the current embodiments, the contact device 15, 15 has a contact device width MW is defined in a direction parallel to any of the rotation axes R, R1 or R2 between farthest extremities of the peripheral surface 48. The contact device width MW can range between 4 mm and 50 mm. According to the present embodiments, the contact device width MW equals 15 mm. A length to width ratio, or a dimension ratio LWR=MW/ML is defined between the contact device length ML and the contact device width MW. According to the present embodiment, the dimension ratio LWR ranges between 0.5 and 25, and preferably between 10 and 20. In the present embodiments, the dimension ratio LWR equals 20.
[0112] In a view along the first axis X (
[0113] In a plan view of the conveyor top surface 22 along the third axis Z (
[0114] All of the above mentioned angles ratios and measurements are direct results of a rigorous and constant optimization and research and development process, which led to these numbers. The goal of this effort has been to find a balance between cost-effectiveness and versatility of the folding system 10.
[0115] Attention is drawn to
[0121] Attention is drawn to
[0127] There is further provided a folding method which includes the following steps: [0128] a) Conveying an article 12 in the motion direction MD which coincides with the article central axis CL; [0129] b) Collecting and folding the second article surface 26 of the article 12 with a scooping motion towards the central axis CL; and [0130] c) Repeating the previous step until the article 12 sides/lateral extremities have been folded. [0131] d)
[0132] There is further provided a folding method which includes the following steps: [0133] a) Using the conveyor 18 to continuously convey the article 12 across the holding member 16 in the motion direction MD; [0134] b) In a top view of the article 12, continuously and intermittently applying forces on the article 12 in the motion direction MD and in the second axis Y direction towards the first axis X; and [0135] c) In a view along the second axis Y, continuously and intermittently applying forces on the article 12 in a direction between the motion direction MD and the vertical direction, or the third axis Z
[0136] There is further provided a an article folding method for folding the article (12) which includes opposing first and second article lateral edges 28a, 28b, and an article center line CL passing between the article lateral edges 28a, 28b, the method comprising: [0137] (a) conveying the article 12 in a motion direction MD which coincides with an article central axis CL; and [0138] (b) while the article moves in the motion direction MD, successively collecting and folding incremental portions of the article's first lateral edge 28a towards the center line CL, until at least an entire section of the first lateral edge 28a is folded over the second article surface 26; and, preferably, [0139] (c) while the article moves in the motion direction MD, successively collecting and folding incremental portions of the article's opposite second lateral edge 28b towards the center line CL, until at least an entire section of the second lateral edge 28h is folded over the second article surface 28.
In a preferable embodiment, steps (b) and (c) of this folding method occur simultaneously.