TRI-FOLD MACHINE AND PROCESS
20220119145 ยท 2022-04-21
Inventors
- Joseph F. Van De Hey (Appleton, WI, US)
- Jeffery J. VanHandel (Appleton, WI, US)
- Alex M. Zirbel (Appleton, WI, US)
- Alex N. Kuffel (Appleton, WI, US)
Cpc classification
B65B63/02
PERFORMING OPERATIONS; TRANSPORTING
B65B25/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B63/04
PERFORMING OPERATIONS; TRANSPORTING
B65B25/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A tri-fold machine and process to fold up compressed high expansion force material. The machine includes a left-side horizontal conveyor and a right-side horizontal conveyor with a middle conveyor therebetween. A pair of longitudinal bars are operable between (i) a raised position and (ii) a lowered position. The right-side and left-side conveyors are each movable between a horizontal home position and a folding position. A middle portion of the material is held in longitudinal gaps formed on each side of the middle conveyor. A left side of the material is folded over the middle portion of material. A right side of the material is folded over the left side of the material which is over the middle portion.
Claims
1. A tri-fold machine to fold up compressed high expansion force material comprising: a left-side horizontal conveyor next to a middle conveyor with a left longitudinal gap formed between the left-side horizontal conveyor and the middle conveyor; a right-side horizontal conveyor next to an opposite side of the middle conveyor with a right longitudinal gap formed between the right-side horizontal conveyor and the middle conveyor; an upper surface of each of the left-side horizontal conveyor and the right-side horizontal conveyor defining a horizontal plane; a left longitudinal bar operable between (i) a raised position where a bottom surface is spaced from and above the horizontal plane and (ii) a lowered position where the bottom surface is located closer to the horizontal plane than in the raised position; a right longitudinal bar operable between (i) a raised position where a bottom surface is spaced from and above the horizontal plane and (ii) a lowered position where the bottom surface is located closer to the horizontal plane than in the raised position; the right-side conveyor movable between a horizontal home position and a folding position, the folding position is where the right-side conveyor is located above and extending over the middle conveyor; and, the left-side conveyor movable between a horizontal home position and a folding position, the folding position is where the left-side conveyor is located above and extending over the middle conveyor.
2. The machine of claim 1, wherein the folding position of the right-side conveyor comprises the right-side conveyor located above and extending over the right longitudinal bar.
3. The machine of claim 2, wherein the folding position of the right-side conveyor comprises the right-side conveyor located above and extending over the left longitudinal bar.
4. The machine of claim 1, wherein the folding position of the left-side conveyor comprises the left-side conveyor located above and extending over the left longitudinal bar.
5. The machine of claim 4, wherein the folding position of the left-side conveyor comprises the left-side conveyor located above and extending over the right longitudinal bar.
6. The machine of claim 1, wherein the left longitudinal bar and the right longitudinal bar are coupled together such that each longitudinal bar is movable between the raised position and the lowered position simultaneously.
7. The machine of claim 1, wherein the bottom surface of at least one of the left longitudinal bar and the right longitudinal bar is equal with to below the horizontal plane when in the lowered position.
8. The machine of claim 1 further comprising the compressed high expansion force material positionable on the left-side conveyor and the right-side conveyor with the left longitudinal bar overlying a middle portion of the material and the bottom surface of the left longitudinal bar spaced from a top surface of the material when the left longitudinal bar is in the raised position.
9. The machine of claim 8, wherein the bottom surface of the left longitudinal bar is in contact with the top surface of the material when the left longitudinal bar is in the lowered position.
10. The machine of claim 9, wherein the left longitudinal bar presses the material into the left longitudinal gap when the left longitudinal bar is in the lowered position.
11. The machine of claim 1, further comprising a pusher bar located adjacent a proximal end of the middle conveyor and operable to move longitudinally from the proximal end of the middle conveyor to a distal end of the middle conveyor.
12. The machine of claim 1, wherein the left-side horizontal conveyor and the right-side horizontal conveyor each have a movable surface to locate the material into a material folding position relative to the left longitudinal bar and the right longitudinal bar.
13. The machine of claim 1, wherein the folding position of the right-side conveyor comprises a left edge of the right-side conveyor located above and extending over the middle conveyor.
14. The machine of claim 1, wherein the folding position of the left-side conveyor comprises a right edge of the left-side conveyor located above and extending over the middle conveyor.
15. The machine of claim 1, wherein the left longitudinal bar is sized to fit in the left longitudinal gap.
16. The machine of claim 1, wherein the right longitudinal bar is sized to fit in the right longitudinal gap.
17. The machine of claim 1, wherein at least one of the left longitudinal bar and the right longitudinal bar is adjustable relative to each other.
18. The machine of claim 17, wherein adjustable comprises in a horizontal direction relative to each other.
19. The machine of claim 17, wherein adjustable comprises in a vertical direction relative to each other.
20. The machine of claim 1, wherein at least one of the left-side horizontal conveyor, the right-side horizontal conveyor and the middle conveyor is adjustable relative to at least one other conveyor.
21. The machine of claim 20, wherein adjustable comprises in a horizontal direction.
22. The machine of claim 1, further comprising a restriction force that acts on each distal end of the left horizontal bar and the right horizontal bar to hold each distal end at a spaced apart location.
23. A process for tri-folding a compressed high expansion force material comprising: positioning the material on a left-side horizontal conveyor and a right-side horizontal conveyor, with a middle conveyor located between the left-side horizontal conveyor and the right-side horizontal conveyor and a longitudinal gap formed on each side of the middle conveyor; pressing a middle portion of the material into at least one longitudinal gap formed on each side of the middle conveyor; folding a left side of the material over the middle portion of material; and, folding a right side of the material over the left side of the material which is located over the middle portion of the material.
24. The process of claim 23, further comprising releasing the middle portion of the material from being in the longitudinal gap formed on each side of the middle conveyor.
25. The process of claim 24, further comprising holding the right side of the material over the left side of the material.
26. The process of claim 24, further comprising pushing the material from a proximal end of the middle conveyor toward a distal end of the middle conveyor.
27. The process of claim 26, wherein holding and pushing occur simultaneously.
28. The process of claim 23, wherein folding the right side of the material comprises moving the right-side conveyor from a horizontal home position to a folding position where the folding position comprises locating the right-side conveyor above and extending over the middle conveyor.
29. The process of claim 23, wherein folding the left side of the material comprises moving the left-side conveyor from a horizontal home position to a folding position where the folding position comprises locating the left-side conveyor above and extending over the middle conveyor.
30. The process of claim 23, further comprising operating a pair of spaced apart longitudinal bars between (i) a raised position where a bottom surface is spaced from and above a horizontal plane defined by an upper surface of each of the left-side horizontal conveyor and the right-side horizontal conveyor and (ii) a lowered position where the bottom surface is located closer to the horizontal plane than in the raised position.
31. The process of claim 30, wherein pressing the middle portion comprises moving the pair of spaced apart longitudinal bars into the lowered position and the bottom surface presses the material into the longitudinal gap.
32. The process of claim 30, further comprising simultaneously positioning the pair of longitudinal bars together.
33. The process of claim 23, wherein positioning comprises operating a surface of each of the left-side horizontal conveyor and the right-side horizontal conveyor to locate the material into a material folding position.
34. The process of claim 28, wherein folding of the right side of the material further comprises positioning a left edge of the right-side conveyor above and extending over the middle conveyor.
35. The process of claim 29, wherein the folding of the left side of the material further comprises positioning a right edge of the left-side conveyor above and extending over the middle conveyor.
36. The process of claim 23, further comprising adjusting at least one of the left longitudinal bar and the right longitudinal bar relative to each other.
37. The process of claim 36, wherein adjusting comprises moving in a horizontal direction relative to each other.
38. The process of claim 36, wherein adjusting comprises moving in a vertical direction relative to each other.
39. The process of claim 36, wherein adjusting comprises moving the at least one of the left longitudinal bar and the right longitudinal bar before both folding steps begin.
40. The process of claim 23, further comprising adjusting at least one of the left-side horizontal conveyor, the right-side horizontal conveyor and the middle conveyor relative to at least one other conveyor.
41. The process of claim 40, wherein adjustable comprises in a horizontal direction.
42. The process of claim 23, further comprising restricting each distal end of the left horizontal bar and the right horizontal bar at a spaced apart location relative to each other during the folding steps.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The invention may be more completely understood in consideration of the following detailed description of various embodiments in connection with the accompanying drawings, in which:
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[0029] The drawings show some but not all embodiments. The elements depicted in the drawings are illustrative and not necessarily to scale, and the same (or similar) reference numbers denote the same (or similar) features throughout the drawings.
DETAILED DESCRIPTION
[0030] In accordance with the practice of at least one embodiment, as seen in the Figures for example, there is a tri-fold machine 10 to fold up compressed high expansion force material 20, such as a mattress product. In order to see certain structures, vantage point A is employed in
[0031] The left longitudinal bar 90 is operable between (i) a raised position 92 where a bottom surface 94 is spaced from and above the horizontal plane 34 (
[0032] In other aspects concerning the longitudinal bars 90, 100, they can be adjustable, in a horizontal direction 98 (
[0033] Further in regards to the longitudinal bars 90, 100, and their adjustability in horizontal direction 98 (
[0034] Still further in regards to the longitudinal bars 90, 100, as seen in
[0035] The tri-fold machine 10 also includes the right-side conveyor 70 that is movable between a horizontal home position 78 and a folding position 80, as seen in progression of
[0036] In a similar regard, the tri-fold machine 10 also includes the left-side conveyor 30 that is movable between a horizontal home position 38 and a folding position 40, as seen in progression of
[0037] Referring to
[0038] Also disclosed here is a process for tri-folding, preferably compressed material 12, and more preferably high expansion force compressed material, like a mattress. Such process can be employed by machine 10, for example, and as discussed below for reference. The process comprises a variety of steps and while some steps can be performed in any order, some steps have an order dictated by their nature and the results desired, but when this is not the case the order can be varied. In reference to
[0039] Other aspects of the process are directed to the orientation and operation of the conveyors. For example, the process can include folding the left side 28 of the material by moving the left-side conveyor 30 from the horizontal home position 38 to the folding position 40. The folding position can be achieved by locating the left-side conveyor above and extending over the middle conveyor, for example, by the travel path in
[0040] In a similar regard as the left conveyor 30, the process can then include folding the right side 26 of the material by moving the right-side conveyor 70 from the horizontal home position 78 to the folding position 80. The folding position can be achieved by locating the right-side conveyor above and extending over the middle conveyor, for example, by the travel path in
[0041] In still other aspects of the process, it can include operating the pair of spaced apart longitudinal bars 90, 100 between (i) the raised position 92, 102 where the bottom surface 94, 104 is spaced from and above horizontal plane 34 defined by upper surface 32, 72 of each of the left-side horizontal conveyor and the right-side horizontal conveyor. Additionally, preferably the process as related to bars 90, 100, also includes (ii) a lowered position where the bottom surface is located closer to the horizontal plane than in the raised position. For example, even more preferably, the lowered position can be pressing the middle portion 22 by moving the pair of spaced apart longitudinal bars 90, 100 into the fully lowered position and the bottom surfaces 94, 104 are engaging the top surface 24 of the material adjacent to surfaces 94, 104 and bars 90, 100 thereby press the material into the longitudinal gaps 52, 58 respectively. Still more preferably, movement of bars, 90, 100 can be by simultaneously positioning the pair of longitudinal bars together, and particularly so relative to the middle conveyor 50.
[0042] Related to and building upon one or more of these points, other aspects are directed to certain capabilities of parts of the machine and/or the process. For example, and as seen in
[0043] In yet other aspects, the process can include adjusting longitudinal bars 90, 100 in the horizontal direction 98 (
[0044] In still other aspects, the process can include adjusting one or more of horizontal conveyors 30, 50 and 70 in the horizontal direction 44 and/or horizontal direction 64 (
[0045] Additional discussion of embodiments in various scopes now follows: [0046] A. A tri-fold machine to fold up compressed high expansion force material. The machine includes a left-side horizontal conveyor next to a middle conveyor with a left longitudinal gap formed between the left-side horizontal conveyor and the middle conveyor. The machine also includes a right-side horizontal conveyor next to an opposite side of the middle conveyor with a right longitudinal gap formed between the right-side horizontal conveyor and the middle conveyor. An upper surface of each of the left-side horizontal conveyor and the right-side horizontal conveyor is defining a horizontal plane. The machine also includes a left longitudinal bar operable between (i) a raised position where a bottom surface is spaced from and above the horizontal plane and (ii) a lowered position where the bottom surface is located closer to the horizontal plane than in the raised position. Further, the machine includes a right longitudinal bar operable between (i) a raised position where a bottom surface is spaced from and above the horizontal plane and (ii) a lowered position where the bottom surface is located closer to the horizontal plane than in the raised position. The right-side conveyor is movable between a horizontal home position and a folding position. The folding position is where the right-side conveyor is located above and extending over the middle conveyor. The left-side conveyor is movable between a horizontal home position and a folding position. The folding position is where the left-side conveyor is located above and extending over the middle conveyor. [0047] B. The machine of any of the prior embodiments, wherein the folding position of the right-side conveyor comprises the right-side conveyor located above and extending over the right longitudinal bar. [0048] C. The machine of any of the prior embodiments, wherein the folding position of the right-side conveyor comprises the right-side conveyor located above and extending over the left longitudinal bar. [0049] D. The machine of any of the prior embodiments, wherein the folding position of the left-side conveyor comprises the left-side conveyor located above and extending over the left longitudinal bar. [0050] E. The machine of any of the prior embodiments, wherein the folding position of the left-side conveyor comprises the left-side conveyor located above and extending over the right longitudinal bar. [0051] F. The machine of any of the prior embodiments, wherein the left longitudinal bar and the right longitudinal bar are coupled together such that each longitudinal bar is movable between the raised position and the lowered position simultaneously. [0052] G. The machine of any of the prior embodiments, wherein the bottom surface of at least one of the left longitudinal bar and the right longitudinal bar is equal with to below the horizontal plane when in the lowered position. [0053] H. The machine of any of the prior embodiments, further including the compressed high expansion force material positionable on the left-side conveyor and the right-side conveyor with the left longitudinal bar overlying a middle portion of the material and the bottom surface of the left longitudinal bar spaced from a top surface of the material when the left longitudinal bar is in the raised position. [0054] I. The machine of any of the prior embodiments, wherein the bottom surface of the left longitudinal bar is in contact with the top surface of the material when the left longitudinal bar is in the lowered position. [0055] J. The machine of any of the prior embodiments, wherein the left longitudinal bar presses the material into the left longitudinal gap when the left longitudinal bar is in the lowered position. [0056] K. The machine of any of the prior embodiments, further including a pusher bar located adjacent a proximal end of the middle conveyor and operable to move longitudinally from the proximal end of the middle conveyor to a distal end of the middle conveyor. [0057] L. The machine of any of the prior embodiments, wherein the left-side horizontal conveyor and the right-side horizontal conveyor each have a movable surface to locate the material into a material folding position relative to the left longitudinal bar and the right longitudinal bar. [0058] M. The machine of any of the prior embodiments, wherein the folding position of the right-side conveyor comprises a left edge of the right-side conveyor located above and extending over the middle conveyor. [0059] N. The machine of any of the prior embodiments, wherein the folding position of the left-side conveyor comprises a right edge of the left-side conveyor located above and extending over the middle conveyor. [0060] O. The machine of any of the prior embodiments, wherein the left longitudinal bar is sized to fit in the left longitudinal gap. [0061] P. The machine of any of the prior embodiments, wherein the right longitudinal bar is sized to fit in the right longitudinal gap. [0062] Q. The machine of any of the prior embodiments, wherein at least one of the left longitudinal bar and the right longitudinal bar is adjustable relative to each other. [0063] R. The machine of any of the prior embodiments, wherein adjustable comprises in a horizontal direction relative to each other. [0064] S. The machine of any of the prior embodiments, wherein adjustable comprises in a vertical direction relative to each other. [0065] T. The machine of any of the prior embodiments, wherein at least one of the left-side horizontal conveyor, the right-side horizontal conveyor and the middle conveyor is adjustable relative to at least one other conveyor. [0066] U. The machine of any of the prior embodiments, wherein the conveyor(s) being adjustable comprises in a horizontal direction. [0067] V. The machine of any of the prior embodiments, further comprising a restriction force that acts on each distal end of the left horizontal bar and the right horizontal bar to hold each distal end at a spaced apart location. [0068] W. A process for tri-folding a compressed high expansion force material. The process including positioning the material on a left-side horizontal conveyor and a right-side horizontal conveyor, with a middle conveyor located between the left-side horizontal conveyor and the right-side horizontal conveyor and a longitudinal gap formed on each side of the middle conveyor. And, pressing a middle portion of the material into the longitudinal gap formed on each side of the middle conveyor. The process also including folding a left side of the material over the middle portion of material. And, folding a right side of the material over the left side of the material which is located over the middle portion of the material. These steps can, preferably, occur in this order. [0069] X. The process of any of the prior process embodiments, further including releasing the middle portion of the material from being in the longitudinal gap formed on each side of the middle conveyor. [0070] Y. The process of any of the prior process embodiments, further including holding the right side of the material over the left side of the material. [0071] Z. The process of any of the prior process embodiments, further including pushing the material from a proximal end of the middle conveyor toward a distal end of the middle conveyor. [0072] AA. The process of any of the prior process embodiments, wherein holding and pushing occur simultaneously. [0073] BB. The process of any of the prior process embodiments, wherein folding the right side of the material comprises moving the right-side conveyor from a horizontal home position to a folding position where the folding position comprises locating the right-side conveyor above and extending over the middle conveyor. [0074] CC. The process of any of the prior process embodiments, wherein folding the left side of the material comprises moving the left-side conveyor from a horizontal home position to a folding position where the folding position comprises locating the left-side conveyor above and extending over the middle conveyor. [0075] DD. The process of any of the prior process embodiments, further including operating a pair of spaced apart longitudinal bars between (i) a raised position where a bottom surface is spaced from and above a horizontal plane defined by an upper surface of each of the left-side horizontal conveyor and the right-side horizontal conveyor and (ii) a lowered position where the bottom surface is located closer to the horizontal plane than in the raised position. [0076] EE. The process of any of the prior process embodiments, wherein pressing the middle portion comprises moving the pair of spaced apart longitudinal bars into the lowered position and the bottom surface presses the material into the longitudinal gap. [0077] FF. The process of any of the prior process embodiments, further including simultaneously positioning the pair of longitudinal bars together. [0078] GG. The process of any of the prior process embodiments, wherein positioning comprises operating a surface of each of the left-side horizontal conveyor and the right-side horizontal conveyor to locate the material into a material folding position. [0079] HH. The process of any of the prior process embodiments, wherein folding of the right side of the material further comprises positioning a left edge of the right-side conveyor above and extending over the middle conveyor. [0080] II. The process of any of the prior process embodiments, wherein the folding of the left side of the material further comprises positioning a right edge of the left-side conveyor above and extending over the middle conveyor. [0081] JJ. The process of any of the prior process embodiments, further including adjusting at least one of the left longitudinal bar and the right longitudinal bar relative to each other. [0082] KK. The process of any of the prior process embodiments, wherein adjusting comprises moving in a horizontal direction relative to each other. [0083] LL. The process of any of the prior process embodiments, wherein adjusting comprises moving in a vertical direction relative to each other. [0084] MM. The process of any of the prior process embodiments, wherein adjusting comprises moving the at least one of the left longitudinal bar and the right longitudinal bar before both folding steps begin. [0085] NN. The process of any of the prior process embodiments, further comprising adjusting at least one of the left-side horizontal conveyor, the right-side horizontal conveyor and the middle conveyor relative to at least one other conveyor. [0086] OO. The process of any of the prior process embodiments, wherein adjusting the conveyor(s) comprises in a horizontal direction. [0087] PP. The process of any of the prior process embodiments, further comprising restricting each distal end of the left horizontal bar and the right horizontal bar at a spaced apart location relative to each other during the folding steps.
[0088] Each and every document cited in this present application, including any cross referenced or related patent or application, is incorporated in this present application in its entirety by this reference, unless expressly excluded or otherwise limited. The citation of any document is not an admission that it is prior art with respect to any embodiment disclosed in this present application or that it alone, or in any combination with any other reference or references, teaches, suggests, or discloses any such embodiment. Further, to the extent that any meaning or definition of a term in this present application conflicts with any meaning or definition of the same term in a document incorporated by reference, the meaning or definition assigned to that term in this present application governs.
[0089] The invention includes the description, examples, embodiments, and drawings disclosed; but it is not limited to such description, examples, embodiments, or drawings. As briefly described above, the reader should assume that features of one disclosed embodiment can also be applied to all other disclosed embodiments, unless expressly indicated to the contrary. Unless expressly indicated to the contrary, the numerical parameters set forth in the present application are approximations that can vary depending on the desired properties sought to be obtained by a person of ordinary skill in the art without undue experimentation using the teachings disclosed in the present application. Modifications and other embodiments will be apparent to a person of ordinary skill in the packaging arts, and all such modifications and other embodiments are intended and deemed to be within the scope of the invention.