Shoe customization system having interchangeable platens
10343394 ยท 2019-07-09
Assignee
Inventors
Cpc classification
B41F17/005
PERFORMING OPERATIONS; TRANSPORTING
B32B37/10
PERFORMING OPERATIONS; TRANSPORTING
B41F17/006
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/50
PERFORMING OPERATIONS; TRANSPORTING
Y10T156/103
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
A43D95/14
HUMAN NECESSITIES
B29C65/56
PERFORMING OPERATIONS; TRANSPORTING
B30B15/34
PERFORMING OPERATIONS; TRANSPORTING
Y10T156/1089
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B30B15/34
PERFORMING OPERATIONS; TRANSPORTING
B29C65/56
PERFORMING OPERATIONS; TRANSPORTING
A43D95/14
HUMAN NECESSITIES
B32B37/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Heat press platens for a shoe customization/decoration system and a method of using the same are disclosed. The platens may be quickly interchanged to allow the same equipment to be used to dye shoes of different sizes. The platens individually accommodate a pair of assembled shoes and are shaped to: reduce print sizes, maintain symmetry and flatness of the shoe, and accommodate a range of shoe sizes. The size and shape of the platens enable one shoe to be fitted on one side of a platen and another shoe to be fitted on the opposite side. The platens position the shoes so that they are mirror images of each other. This positioning allows a single print, including mirror images of the same design, to be applied to two shoes at the same time.
Claims
1. A heat press device for printing a design on a pair of shoes, comprising: a flat press surface; a first curved edge; a second curved edge opposite the first curved edge; a first connecting edge connecting the first curved edge to the second curved edge; a first shoe receiving portion configured to receive a shoe, wherein the first shoe receiving portion is bounded by part of the first curved edge, part of the second curved edge, and the first connecting edge; a second shoe receiving portion configured to receive a shoe, wherein the second shoe receiving portion is disposed opposite the first shoe receiving portion; and a first piston spring tensioner disposed on the first shoe receiving portion; and a second piston spring tensioner disposed on the second shoe receiving portion.
2. The heat press device according to claim 1, wherein the first piston spring tensioner comprises a first rod and the second piston spring tensioner comprises a second rod.
3. The heat press device according to claim 2, wherein the first piston spring tensioner comprises a first piston head and the second piston spring tensioner comprises a second piston head.
4. The heat press device according to claim 3, wherein the first piston spring tensioner comprises a first spring and the second piston spring tensioner comprises a second spring.
5. The heat press device according to claim 4, wherein the first spring is disposed on the first rod and the second spring is disposed on the second rod.
6. The heat press device according to claim 2, wherein the first rod extends in a direction parallel with the first connecting edge and the second rod extends in a direction parallel to a second connecting edge.
7. The heat press device according to claim 1, wherein the first curved edge and the second curved edge are curved in substantially the same direction.
8. The heat press device according to claim 1, wherein the first curved edge is longer than the second curved edge.
9. A heat press device for printing a design on a pair of shoes, comprising: a flat press surface; a first edge; a second edge opposite the first edge; a third edge connecting the first edge to the second edge; a fourth edge opposite the third edge, wherein a distance between the third edge and the fourth edge tapers from the first edge to the second edge; a first shoe receiving portion configured to receive a shoe, wherein the first shoe receiving portion is bounded by part of the first edge, part of the second edge, and the third edge; a second shoe receiving portion configured to receive a shoe; a first piston spring tensioner disposed on the first shoe receiving portion; and a second piston spring tensioner disposed on the second shoe receiving portion.
10. The heat press device according to claim 9, wherein the first piston spring tensioner comprises a first rod, extending in a direction parallel with the third edge, and wherein the second piston spring tensioner comprises a second rod extending in a direction parallel to the fourth edge.
11. The heat press device according to claim 10, wherein the first piston spring tensioner comprises a first piston head and the second piston spring tensioner comprises a second piston head.
12. The heat press device according to claim 11, wherein the first piston head extends past the second edge.
13. The heat press device according to claim 10, wherein the first piston spring tensioner comprises a first spring disposed on the first rod and the second piston spring tensioner comprises a second spring disposed on the second rod.
14. The heat press device according to claim 11, further comprising: a first protrusion disposed on the first edge; and a quick connect mechanism disposed on the first protrusion and designed to connect the heat press device to a heat press machine.
15. A kit of parts, comprising: a first heat press device, comprising: a first flat press surface; a first curved edge; a second curved edge opposite the first curved edge; a first connecting edge connecting the first curved edge to the second curved edge; a first shoe receiving portion configured to receive a shoe, wherein the first shoe receiving portion is bounded by part of the first curved edge, part of the second curved edge, and the first connecting edge; and a second heat press device, comprising: a second flat press surface; a third curved edge; a fourth curved edge opposite the third curved edge, wherein a distance between the third curved edge and the fourth curved edge is greater than a distance between first curved edge and the second curved edge; a second connecting edge connecting the third curved edge to the fourth curved edge; and a second shoe receiving portion configured to receive a shoe, wherein the second shoe receiving portion is bounded by part of the third curved edge, part of the fourth curved edge, and the second connecting edge.
16. The kit of parts according to claim 15, wherein a length of the second connecting edge is greater than a length of the first connecting edge.
17. The kit of parts according to claim 15, wherein the first heat press device includes a first piston spring tensioner having a first rod and a first piston head, and wherein the second heat press device includes a second piston spring tensioner having a second rod and a second piston head.
18. The kit of parts according to claim 17, wherein the second rod extends beyond the first curved edge further than the first rod extends beyond the third curved edge.
19. The kit of parts according to claim 15, wherein the first heat press device comprises: a first protrusion disposed on the first curved edge; and a first quick connect mechanism disposed on the first protrusion and designed to connect the first heat press device to a heat press machine.
20. The kit of parts according to claim 19, wherein the second heat press device comprises: a second protrusion disposed on the third curved edge; and a second quick connect mechanism disposed on the second protrusion and designed to connect the second heat press device to a heat press machine.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention can be better understood with reference to the following drawings and description. The components in the figures are not necessarily to scale, emphasis instead being placed upon illustrating the principles of the invention. Moreover, in the figures, like reference numerals designate corresponding parts throughout the different views.
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DETAILED DESCRIPTION
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(16) Platen 110 may be made of metal or any other material suitable for heat pressing. A pad 228 may be shaped to cover a flat press surface of platen 110 to provide padding beneath the shoe material being printed on. Pad 228 may be made of silicone or any other material capable of providing padding while withstanding high heat and pressure. Pad may include adhesive backing or adhesive may be applied to pad 228 or platen 110 for attachment. In some embodiments, pad 228 may be omitted.
(17) Platen 110 may include a first shoe receiving portion 230 and a second shoe receiving portion 232. Platen 110 may be symmetrical about longitudinal axis 234 such that first shoe receiving portion 230 and second shoe receiving portion 232 may be mirror images of one another. Thus, when a pair of shoes is loaded on platen 110, the shoes may be mirror images of one another. This positioning allows a single print, including mirror images of the same design, to be applied to two shoes at the same time. First shoe receiving portion 230 may be bounded by part of first edge 216, part of second edge 218, and third edge 220. Second shoe receiving portion may be bounded by part of first edge 216, part of second edge 218, and fourth edge 222.
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(19) As shown in
(20) The shape of platen 110 may allow left and right shoes to be interchangeably received on platen 110 to print on both lateral and medial sides of a pair of shoes. For example, first shoe receiving portion 230 may receive a right shoe and second shoe receiving portion 232 may receive a left shoe, as indicated by first pair of shoe outlines 236, second pair of shoe outlines 238, and third pair of shoe outlines 240, to print on the lateral sides of a pair of shoes. Then, the left shoe may be moved to the first shoe receiving portion 230 and the right shoe may be moved to the second shoe receiving portion 232 to print on the medial sides of the pair of shoes.
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(22) The bottom of platen 110 may include quick connect mechanisms for quickly connecting platen to base. For example, as shown in
(23) The first T-slot may be formed by a first circular hole 466 and a first slot 468. The second T-slot may be formed by a second circular hole 470 and a second slot 472. Shallow hole 464 may be shallower than first and/or second T-slots. In some embodiments, shallow hole 464 may be at the same depth as the first and/or second T-slots. In some embodiments, shallow hole 464 may include a hole having a depth that is deeper than the first and/or second T-Slots.
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(25) To connect platen 110 to quick connect plate 674 as shown in
(26) Quick connect plate 674 may further include a knob 686 for releasing retractable button 686 from shallow hole 464. To disconnect platen 110, knob 686 may be pulled down to withdraw retractable button 686 from within shallow hole 464 as platen 110 may be pushed along longitudinal axis 234 until first circular hole 468 and second circular hole 470 line up with first circular head 676 and second circular head 678, respectively. Then, platen 110 may be lifted and removed from press machine 100.
(27) The quick connect mechanisms on platen 110 may allow platen 110 to be quickly interchanged with another platen. Thus, platen 110 may be replaced with a platen of a different size and/or platen 110 may be replaced with a preloaded platen. For example, while a first pair of shoes loaded on platen 110 may be being printed on, a second platen may be loaded with second pair of shoes. Then, when printing on the first pair of shoes is complete, platen 110 may be quickly replaced with the second platen. And as the second pair of shoes is being printed on the second platen, platen 110 may be loaded with a third pair of shoes.
(28) The quick connect mechanisms shown in
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(34) Small platen 1200, medium platen 1202, and large platen 1204 may have the same components as platen 110 shown in
(35) Medium platen 1202 may have a first protrusion 1222, a second protrusion 1224, a first piston spring tensioner, and a second piston spring tensioner. The first piston spring tensioner may include a first piston head 1226 and a first rod 1228. The first piston spring tensioner may further include a first coil spring 1230 disposed around first rod 1228. The second piston spring tensioner may include a second piston head 1232 and a second rod 1234. The second piston spring tensioner may further include a second coil spring 1236 disposed around second rod 1234.
(36) Large platen 1204 may have a first protrusion 1238, a second protrusion 1240, a first piston spring tensioner, and a second piston spring tensioner. The first piston spring tensioner may include a first piston head 1242 and a first rod 1244. The first piston spring tensioner may further include a first coil spring 1246 disposed around first rod 1244. The second piston spring tensioner may include a second piston head 1248 and a second rod 1250. The second piston spring tensioner may further include a second coil spring 1252 disposed around second rod 1250.
(37) As shown in
(38) The first and second protrusions of small platen 1200, medium platen 1202, and large platen 1204 may be sized to position the shallow hole and the first circular hole in a location corresponding with the first circular head and the retractable button of the quick connect plate, as discussed with reference to
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(40) While various embodiments of the invention have been described, the description is intended to be exemplary, rather than limiting and it will be apparent to those of ordinary skill in the art that many more embodiments and implementations are possible that are within the scope of the invention. Accordingly, the invention is not to be restricted except in light of the attached claims and their equivalents. Also, various modifications and changes may be made within the scope of the attached claims.