METHOD FOR ASSISTING JOINING OF VAMP AND SOLE BY VACUUM POSITIONING
20210127796 · 2021-05-06
Inventors
Cpc classification
A43B9/00
HUMAN NECESSITIES
B29D35/085
PERFORMING OPERATIONS; TRANSPORTING
A43D25/047
HUMAN NECESSITIES
A43D86/00
HUMAN NECESSITIES
International classification
Abstract
The invention provides a method for assisting a joining of a vamp and a sole by vacuum positioning. Initially, the method is that placing a shoe last in a vamp to be joined, coating a liquid medium to a side of the vamp to be joined with a sole or a side of the sole to be joined with the vamp, and combining the vamp with the sole. Afterward, placing the vamp and the sole in a bag, performing a vacuum operation on the bag to press the vamp and the sole, performing a microwave heating operation on the bag to heat the liquid medium to make the vamp join with the sole, and finally taking out the joined vamp and sole from the bag to obtain a finished product.
Claims
1. A method for assisting a joining of a vamp and a sole by vacuum positioning comprising: step A: placing a shoe last in a vamp to be joined; step B: coating a liquid medium to a side of the vamp to be joined with a sole or a side of the sole to be joined with the vamp, wherein the liquid medium includes a transition temperature that the liquid medium is not adhesive if a temperature of the liquid medium is lower than the transition temperature; and the liquid medium becomes adhesive if the liquid medium is heated to cause the temperature higher than the transition temperature; step C: combining the vamp with the sole; step D: placing the vamp and the sole in a bag; step E: performing a vacuum operation on the bag to make the bag press the vamp and the sole and to restrict movements of the vamp and the sole; step F: performing a microwave heating operation to the bag to heat the liquid medium and to make the vamp join with the sole; and step G: taking out the vamp and the sole that have been joined from the bag.
2. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 1, wherein step E includes a sub-step: checking whether a joint position of the vamp and the sole is correct, wherein if the joint position of the vamp and the sole is correct, proceeding to next step F; and if the joint position of the vamp and the sole is not correct, releasing pressing on the vamp and the sole caused by the bag and making a re-adjustment and then repeat step E.
3. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 1, wherein step C further includes a sub-step: disposing an auxiliary positioning sleeve outside the sole and the vamp to restrict a relative position between the sole and the vamp, and wherein the auxiliary positioning sleeve is non-metallic and incapable of fusing and deforming upon the microwave heating operation.
4. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 3, wherein step G further includes a sub-step: removing the auxiliary positioning sleeve.
5. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 3, wherein a material of the sole is selected from the group consisting of a polyester fiber, an ethylene vinyl acetate (EVA) copolymer resin, a thermoplastic polyurethane (TPU), a polyamide elastomer and a nylon.
6. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 1, wherein the bag is transparent to provide direct observation of the vamp and the sole from an appearance of the bag.
7. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 6, wherein the liquid medium is produced by mixing a pre-mixed material with water, and the pre-mixed material is selected from a group consisting of a nylon powder, a polylactic acid (PLA) powder, a rubber powder, a thermoplastic polyurethane (TPU) powder and an ethylene vinyl acetate (EVA) copolymer resin powder.
8. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 7, wherein a material of the sole is selected from the group consisting of a polyester fiber, an ethylene vinyl acetate (EVA) copolymer resin, a thermoplastic polyurethane (TPU), a polyamide elastomer and a nylon.
9. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 1, wherein the liquid medium is produced by mixing a pre-mixed material with water, and the pre-mixed material is selected from a group consisting of a nylon powder, a polylactic acid (PLA) powder, a rubber powder, a thermoplastic polyurethane (TPU) powder and an ethylene vinyl acetate (EVA) copolymer resin powder.
10. The method for assisting the joining of the vamp and the sole by vacuum positioning as claimed in claim 1, wherein a material of the sole is selected from the group consisting of a polyester fiber, an ethylene vinyl acetate (EVA) copolymer resin, a thermoplastic polyurethane (TPU), a polyamide elastomer and a nylon.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0034] The detailed description and technical content of the invention are described below with reference to the drawings.
[0035] Please refer to
[0036] step A 71: placing a shoe last 30 in a vamp 10 to be joined;
[0037] step B 72: coating a liquid medium 40 to a side 11 of the vamp 10 to be joined with a sole 20 or a side 21 of the sole 20 to be joined with the vamp 10, wherein the liquid medium 40 includes a transition temperature that the liquid medium 40 is not adhesive if a temperature of the liquid medium 40 is lower than the transition temperature; and the liquid medium 40 becomes adhesive if the liquid medium 40 is heated to cause the temperature higher than the transition temperature;
[0038] step C 73: combining the vamp 10 with the sole 20;
[0039] step D 74: placing the vamp 10 and the sole 20 in a bag 50;
[0040] step E 75: performing a vacuum operation on the bag 50 to make the bag 50 press the vamp 10 and the sole 20 and to restrict movements of the vamp 10 and the sole 20;
[0041] step F 76: performing a microwave heating operation to the bag 50 to heat the liquid medium 40 and to make the vamp 10 join with the sole 20; and
[0042] step G 77: taking out the vamp 10 and the sole 20 that have been joined from the bag 50.
[0043] On the one hand, before describing the detailed implementation steps of the method 70, the vamp 10, the sole 20, the shoe last 30, the liquid medium 40 and the bag 50 are described first. The vamp 10 of the invention is made by using the current vamp knitting method for a person having ordinary skill in the art. That is, the vamp 10 can be formed by splicing a plurality of cloth materials, or in an integral cloth. Besides, a material of the sole 20 is selected from the group consisting of a polyester fiber, an ethylene vinyl acetate (EVA) copolymer resin, a thermoplastic polyurethane (TPU), a polyamide elastomer and a nylon (Nylon), and the sole 20 can be made by using the current sole manufacturing method for a person having ordinary skill in the art. In addition, since the knitting method of the vamp 10 and the manufacturing method of the sole 20 are not the focus of application in the invention, the detailed description is omitted here.
[0044] On the other hand, the shoe last 30 is used to define a shape and a form of the vamp 10. In actual implementation, the method 70 can cause a shape of a shoe made by the vamp 10 different by using the different shoe lasts 30. Further, the liquid medium 40 is used to bond the vamp 10 with the sole 20. In one embodiment, the liquid medium 40 is produced by mixing a pre-mixed material with water. The pre-mixed material can be a nylon powder, a polylactic acid (PLA) powder, a rubber powder, a thermoplastic polyurethane (TPU) powder, or an ethylene vinyl acetate (EVA) copolymer resin powder. Further, the liquid medium 40 includes a transition temperature higher than room temperature. Namely, if a temperature of the liquid medium 40 is lower than the transition temperature, the liquid medium 40 is not adhesive; on the contrary, the liquid medium 40 undergoes a chemical reaction and becomes adhesive. In addition, a material of the bag 50 is a polypropylene (PP), the bag 50 is transparent or translucent, and a tensile strength of the bag 50 is high, so that the bag 50 does not break during the vacuum operation. Further, in an example, a tensile strength of the bag 50 is greater than 54 Kgf/m.sup.2. In addition, the bag 50, the vamp 10, and the sole 20 of the invention do not fuse together due to heat during implementation of the method 70; for example, a glass transition temperature of the bag 50, a glass transition temperature of the vamp 10, and a glass transition temperature of the sole 20 are greater than 180° C. and higher than the transition temperature of the liquid medium 40, so that when the liquid medium 40 is heated to become adhesive, the bag 50 does not deform as the liquid medium 40 fuses.
[0045] Then, the method 70 is described as follows. At the beginning of implementation, the shoe last 30 is placed in the vamp 10 in step A 71; and in step B 72, the liquid medium 40 is coated to the side 11 of the vamp 10 to be joined with the sole 20 or the side 21 of the sole 20 to be joined with the vamp 10. Accordingly, since an ambient temperature of the liquid medium 40 is lower than the transition temperature and the liquid medium 40 is not heated, the liquid medium 40 is not adhesive. Then, proceeding to step C 73 and step D 74, the vamp 10 is combined with the sole 20 where the vamp 10 is located above the sole 20, and then the vamp 10 and the sole 20 are inserted into the bag 50 through an opening 51 of the bag 50 to be ready for performing the vacuum operation and the microwave heating operation. In one embodiment, the bag 50 is transparent to provide direct observation of the vamp 10 and the sole 20 from the appearance of the bag 50 to confirm whether the vamp 10 and the sole 20 have been accurately aligned without any misalignment before the vacuum operation or after the vacuum operation is complete. If a joint position of the vamp 10 and the sole 20 is misaligned, since the liquid medium 40 does not become adhesive if not heated, the vamp 10 can be separated from the sole 20 directly and re-aligning and re-combining the vamp 10 with the sole 20.
[0046] Proceeding to step E 75 and step F 76, the vacuum operation is performed on the bag 50 to make the bag 50 press the vamp 10 and the sole 20 therein. Also, since the tensile strength of the bag 50 is high, the bag 50 does not break. After the bag 50 completes the vacuum operation, the bag 50 enables the vamp 10 and the sole 20 to be completely positioned and tightly attached with each other, and then the microwave heating operation is performed on the bag 50. Specifically, a work time of the microwave heating operation is 30 seconds, and a working temperature of the microwave heating is greater than the transition temperature of the liquid medium 40. Thus, after the microwave heating operation is performed on the bag 50, the liquid medium 40 is heated to become adhesive to join the vamp 10 with the sole 20. In one embodiment, the heating principle of a microwave oven is that the electromagnetic field of an electromagnetic wave causes water molecules to vibrate repeatedly and then collide with other water molecules to generate heat energy, and the liquid medium 40 of the invention is produced by mixing the pre-mixed material with water. Namely, the microwave heating operation only generates a heating reaction at a joint 12 coated with the liquid medium 40 between the vamp 10 and the sole 20. That is, except at the joint 12, there are no water molecules at other positions. Thus, the microwave heating operation can be described as a target microwave operation. Finally, in step G 77, after the microwave heating operation is complete and the joint 12 between the vamp 10 and the sole 20 is cooled, the vamp 10 and the sole 20, that have been accurately aligned and tightly joined together, are taken out from the bag 50 to obtain a finished product 100.
[0047] Besides, the method 70 of the invention directly places the vamp 10 and the sole 20 into the bag 50 and vacuums the bag 50, so that the bag 50 provides direct observation of the vamp 10 and the sole 20 from the appearance of the bag 50. Thereby, the staff can check in all directions whether a joint position of the vamp 10 and the sole 20 has been accurately aligned without any misalignment. Furthermore, through the vacuum operation performing on the bag 50, the bag 50 is tightly attached to the vamp 10 and the sole 20 to press the vamp 10 and the sole 20 in all directions, and the vamp 10 and the sole 20 are pressurized and positioned in all directions before performing the microwave heating operation. Therefore, the vamp 10 and the sole 20 to be joined will not have misalignment, and the side 11 of the vamp 10 and the side 21 of the sole 20 to be bonded to each other can obtain a more uniform pressure to produce a complete contact, so that after the vamp 10 and the sole 20 are joined by microwave heating operation, there will be no local peeling problem. Compared with the conventional technique, the method 70 of the invention directly pressurizes and positions the vamp 10 and the sole 20 in all directions through the vacuum operation performed on the bag 50, which is reusable, thereby reducing the use of jigs and fixtures.
[0048] Furthermore, please refer to
[0049] Please refer to
[0050] Furthermore, after placing the vamp 10, the sole 20 and the auxiliary positioning sleeve 60 in the bag 50 and performing the vacuum operation, if a joint position of the vamp 10 and the sole 20 is misaligned, a vacuum state of the bag 50 is released. Since the liquid medium 40 does not becomes adhesive, the vamp 10 can be separated from the sole 20 directly and a joint position between the vamp 10 and the sole 20 can be re-adjusted. If necessary, re-adjusting the auxiliary positioning sleeve 60 to make a joint position of the vamp 10 and the sole 20 more accurate.