Fastening device installation method and installation hole forming mechanism

Through the installation method of the fastening device for forming installation holes on the shoe parts and the installation hole forming mechanism, the problem that the fastening device in the prior art is difficult to install on the shoe parts of the unpre-configured form is solved, and easy installation and high stability on any shoe parts are achieved.

CN113473879BActive Publication Date: 2025-06-06陈金柱
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Patent Information

Application Number
CN202080008894.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2019-01-30
Filing Date
2020-01-21
Publication Date
2025-06-06
Estimated Expiration
2040-01-21

AI Technical Summary

Technical Problem

The existing fastening devices are fixed to the tongue during the shoe piece rear process, resulting in difficulty in coupling on shoe pieces that are not pre-configured with fastening devices.

Method used

A fastening device installation method and an installation hole forming mechanism are provided, and the installation hole is formed by a guide sleeve and a puncture assembly, and the installation of the fastening device is facilitated.

Benefits of technology

The fastening device is easily coupled to any shoe piece, simplifying the installation process and improving the installation stability of the fastening device.

✦ Generated by Eureka AI based on patent content.

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Abstract

A method for installing a fastening device (R1) and an installation hole forming mechanism (1000). The installation hole forming mechanism (1000) comprises at least one guide sleeve (1100) and a puncture assembly (1200), wherein the at least one guide sleeve (1100) comprises a perforation (1110). The puncture assembly (1200) is detachably coupled to the at least one guide sleeve (1100), and the puncture assembly (1200) comprises at least one nail member (1210), wherein the at least one nail member (1210) is used to couple to the perforation (1110), and the at least one nail member (1210) comprises a tip (1211). When at least one nail (1210) is inserted into the through hole (1110) of at least one guide sleeve (1100), the tip (1211) is exposed, and at least one nail (1210) and at least one guide sleeve (1100) are pressed to pierce a shoe (S1), so that at least one installation hole (H1) is formed on the shoe (S1). In this way, the nail (1210) can pierce the shoe (S1) to form the installation hole (H1), and the guide sleeve (1100) can be located in the installation hole (H1), thereby facilitating the subsequent installation of the fastening device (R1).
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Description

Technical Field

[0001] The invention relates to an installation method and an installation hole forming mechanism, and more particularly to a fastening device installation method and an installation hole forming mechanism for installing a fastening device on a shoe component. Background Art

[0002] Generally speaking, the shoe piece includes a first side, a second side and a tongue, the second side corresponds to the first side, and the tongue is located between the first side and the second side. The shoe piece may also include a plurality of eyelets arranged on the first side and the second side, and conventional shoelaces may be passed through the eyelets and then tied to tighten the shoe piece.

[0003] However, before taking off the shoes, the shoelaces must be loosened first, and when putting on the shoes, the shoelaces must be tied again, which brings a lot of inconvenience. In order to solve the above problems, some industry insiders have developed a fastening device that can be set on the tongue of the shoe and coupled to a tie line. The tie line can be passed through the eyelet of the shoe to replace the shoelaces. By operating the fastening device, the tie line can be quickly retracted and released, and the shoes can be easily put on and taken off.

[0004] Unfortunately, this fastening device is fixed on the tongue in the post-processing of the shoe. In other words, if the shoe itself is not configured to have a fastening device, it is extremely difficult for the user to couple the fastening device to the shoe.

[0005] In view of this, how to make the fastening device easily coupled to any shoe component has become the goal of relevant industry players. Summary of the invention

[0006] To solve the above problems, the present invention provides a method for installing a fastening device and a mounting hole forming mechanism. Through the configuration of the structure, a mounting hole can be formed on a shoe component, and the fastening device can be easily installed.

[0007] According to an embodiment of one aspect of the present invention, a mounting hole forming mechanism is provided, which includes at least one guide sleeve and a puncture assembly, wherein the at least one guide sleeve includes a perforation. The puncture assembly is detachably coupled to the at least one guide sleeve, and the puncture assembly includes at least one nail, wherein the at least one nail is used to couple to the perforation of the at least one guide sleeve, and the at least one nail includes a tip and a necked portion. When the at least one nail is inserted into the perforation of the at least one guide sleeve, the tip of the at least one nail is exposed, an end edge of the at least one guide sleeve rests on the necked portion, and the at least one nail and the at least one guide sleeve are pressed to puncture a shoe component, so that at least one mounting hole is formed on the shoe component, and after the at least one nail leaves the shoe component, the at least one guide sleeve is retained in the at least one mounting hole.

[0008] Thereby, the nail member can pierce the shoe member to form a mounting hole, and at the same time, the guide sleeve can be located in the mounting hole, which is helpful for the subsequent installation of the fastening device.

[0009] According to the aforementioned multiple embodiments of the mounting hole forming mechanism, a limiting component may be further included, which is detachably coupled to a tongue of the shoe, wherein the piercing component penetrates the limiting component to form the aforementioned at least one mounting hole on the tongue.

[0010] According to the above-mentioned multiple embodiments of the installation hole forming mechanism, the limiting assembly may include a bearing seat and a pressing seat, the bearing seat is located at one of the upper side and the lower side of the shoe tongue, and the bearing seat includes two first engaging parts. The pressing seat is located at the other of the upper side and the lower side of the shoe tongue, and the pressing seat is detachably coupled to the bearing seat and includes two second engaging parts. Each second engaging part is correspondingly engaged with each first engaging part, so that the shoe tongue is limited between the bearing seat and the pressing seat.

[0011] According to the aforementioned multiple embodiments of the mounting hole forming mechanism, each first engaging portion may have a rack structure, and each second engaging portion may have a hole structure.

[0012] According to the multiple embodiments of the aforementioned installation hole forming mechanism, the puncture assembly may further include a cover member, which is connected to the aforementioned at least one nail member and includes two positioning holes, and the two positioning holes are spaced apart from each other; the pressing seat is located between the cover member and the supporting seat and also includes two positioning columns, and the two positioning columns are respectively inserted into the two positioning holes.

[0013] According to the aforementioned multiple embodiments of the installation hole forming mechanism, the supporting seat may further include at least one guiding channel for guiding the aforementioned at least one nail member.

[0014] According to the aforementioned multiple embodiments of the installation hole forming mechanism, the supporting seat further includes an upper arc surface, and the pressing seat further includes a lower arc surface matching the upper arc surface.

[0015] According to the aforementioned multiple embodiments of the installation hole forming mechanism, the tip of the aforementioned at least one nail has a cone-shaped structure, and the tip of the aforementioned at least one nail has a maximum diameter between 1 mm and 5 mm.

[0016] According to the multiple embodiments of the aforementioned installation hole forming mechanism, the tip of the aforementioned at least one nail has a conical surface, and the conical surface of the aforementioned at least one nail and a center line of the aforementioned at least one nail form an angle between 1 degree and 45 degrees.

[0017] According to an embodiment of another aspect of the present invention, a method for installing a fastening device is provided, which is used to install a fastening device on a shoe. The method for installing the fastening device includes a step of forming an installation hole and a step of limiting the position of the fastening device. In the step of forming the installation hole, at least one nail member includes a tip and a necking portion. After the at least one nail member is inserted into a through hole of the at least one guide sleeve, the tip of the at least one nail member is exposed, an end edge of the at least one guide sleeve rests on the necking portion, and the at least one nail member and the at least one guide sleeve are located on one side of the shoe. A force is applied to make the at least one nail member sleeved in the at least one guide sleeve pierce toward the other side of the shoe to form at least one installation hole on the shoe, and after the at least one nail member leaves the shoe, the at least one guide sleeve is retained in the at least one installation hole. In the step of limiting the position of the fastening device, the fastening device is coupled to the at least one installation hole, and the at least one guide sleeve is removed or retained, so that the fastening device is limited to the shoe piece.

[0018] According to the aforementioned multiple embodiments of the fastening device installation method, in the fastening device limiting step, the fastening device may include a chassis and a tape member, the chassis is first coupled to the aforementioned at least one installation hole, and then the tape member is coupled to the chassis.

[0019] According to multiple embodiments of the aforementioned fastening device installation method, in the fastening device limiting step, at least one embedding pin is inserted into the aforementioned at least one guide sleeve, and after the aforementioned at least one embedding pin is pushed to push the aforementioned at least one guide sleeve out of the aforementioned at least one installation hole, the aforementioned at least one embedding pin is accommodated in the aforementioned at least one installation hole, and the chassis is coupled to the aforementioned at least one embedding pin.

[0020] According to multiple embodiments of the aforementioned fastening device installation method, a tongue positioning step is also included, providing a limiting component, coupling the limiting component to a tongue of the shoe component to position the tongue, wherein the tongue positioning step is performed before the installation hole forming step.

[0021] According to multiple embodiments of the aforementioned fastening device installation method, in the tongue positioning step, a supporting seat of the limiting component is placed on one of the upper side and the lower side of the tongue, and a pressing seat of the limiting component is placed on the other of the upper side and the lower side of the tongue and coupled to the supporting seat, so that the tongue is limited between the supporting seat and the pressing seat. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 A three-dimensional schematic diagram of a mounting hole forming mechanism according to a first embodiment of the present invention is shown;

[0023] Figure 2 An exploded schematic diagram showing the mounting hole forming mechanism of the first embodiment;

[0024] Figure 3 A schematic side cross-sectional view showing the installation hole forming mechanism of the first embodiment used on a shoe;

[0025] Figure 4 A front cross-sectional schematic diagram showing the installation hole forming mechanism of the first embodiment being placed on a tongue of a shoe piece;

[0026] Figure 5 Another front cross-sectional view showing the installation hole forming mechanism of the first embodiment placed on the shoe tongue;

[0027] Figure 6 A schematic diagram showing the operation of installing a fastening device using the installation hole formed by the installation hole forming mechanism of the first embodiment;

[0028] Figure 7 A three-dimensional schematic diagram of a mounting hole forming mechanism and a chassis according to a second embodiment of the present invention is shown;

[0029] Figure 8 An exploded schematic diagram showing the mounting hole forming mechanism and the chassis of the second embodiment;

[0030] Fig. 9 A schematic side cross-sectional view showing the installation hole forming mechanism and the chassis of the second embodiment used on a shoe tongue;

[0031] Fig.10 A schematic diagram showing a fastening device being installed using a mounting hole formed by the mounting hole forming mechanism of the second embodiment;

[0032] Fig.11 An exploded schematic diagram of a mounting hole forming mechanism and a chassis according to a third embodiment of the present invention is shown;

[0033] Fig.12 Another exploded schematic diagram showing the mounting hole forming mechanism and the chassis of the third embodiment;

[0034] Fig.13 A front cross-sectional schematic diagram showing the installation hole forming mechanism and the chassis of the third embodiment used on a shoe tongue;

[0035] Fig.14 Another front cross-sectional view showing the mounting hole forming mechanism and the chassis of the third embodiment used on a shoe tongue;

[0036] Fig.15 A schematic diagram showing a fastening device being installed using a mounting hole formed by the mounting hole forming mechanism of the third embodiment;

[0037] Fig.16An exploded schematic diagram of a mounting hole forming mechanism and a chassis according to a fourth embodiment of the present invention is shown;

[0038] Fig.17 Another exploded schematic diagram showing the mounting hole forming mechanism and the chassis of the fourth embodiment;

[0039] Fig.18 A schematic top view of a limiting component of the mounting hole forming mechanism of the fourth embodiment is shown;

[0040] Fig.19 A schematic diagram showing the positioning of the limiting component of the mounting hole forming mechanism of the fourth embodiment on a shoe tongue;

[0041] Fig. 20 A schematic diagram showing the mounting hole forming mechanism and the bottom plate piercing the shoe tongue according to the fourth embodiment;

[0042] Fig.21 A block flow chart illustrating a method for installing a fastening device according to a fifth embodiment of the present invention; and

[0043] Fig. 22 A fastening system completed by using the fastening device installation method of the fifth embodiment is shown.

[0044]

Explanation of symbols

[0045] 1000…Installation hole forming mechanism

[0046] 1100…Introducing cannula

[0047] 1110…Piercing

[0048] 1200...Piercing assembly

[0049] 1210…Nail

[0050] 1211…Tip

[0051] 1211a…conical surface

[0052] 1220…cover

[0053] 1221…Positioning hole

[0054] 1222…Boss

[0055] 1300...Limiting assembly

[0056] 1310…Seat

[0057] 1311…First Chimera Part

[0058] 1312…Guide Channel

[0059] 1313…Upper arc surface

[0060] 1314…Place the groove

[0061] 1315…Middle convex part

[0062] 1320…Pressure seat

[0063] 1321…Second Chimera Part

[0064] 1322…Positioning column

[0065] 1323…Insertion hole

[0066] 1324…lower arc

[0067] 2000…Installation of hole forming mechanism

[0068] 2100…Introducer Cannula

[0069] 2210…Nail

[0070] 2220…cover

[0071] 2300...Limiting assembly

[0072] 2310…Seat

[0073] 2320…Pressure Seat

[0074] 2324…Accommodation hole

[0075] 3000…Installation hole forming mechanism

[0076] 3100…Introducer Sheath

[0077] 3210…Nail

[0078] 3310…Seat

[0079] 3315…accommodation hole

[0080] 3320…Pressure Seat

[0081] 4000…Installation hole forming mechanism

[0082] 4100…Introducer Cannula

[0083] 4200…Piercing assembly

[0084] 4210…Nail

[0085] 4220…cover

[0086] 4221…cover indicator

[0087] 4300...Limiting assembly

[0088] 4310…Main frame

[0089] 4311…Open

[0090] 4312…Slot

[0091] 4320…Gripper

[0092] 4321…Clamp arm

[0093] 4322…Inside indicator

[0094] 4323…Outer indicator

[0095] 4324…Center Line Indicator

[0096] 5000…Fastening device installation method

[0097] 5100…Tongue positioning steps

[0098] 5200…Mounting hole formation steps

[0099] 5300…Fastening device limit steps

[0100] 6000…Fastening system

[0101] C1…Clamping space

[0102] C2…Insert space

[0103] D1…Maximum diameter

[0104] H1…Mounting holes

[0105] I1…Center Line

[0106] R1…Fastening device

[0107] R11…Embedded pin

[0108] R12…Chassis

[0109] R121…Through hole

[0110] R122…Lug

[0111] R13...Tape and Reel

[0112] S1…Shoes

[0113] S11…Tongue

[0114] W1…Line Tie

[0115] θ…angle DETAILED DESCRIPTION

[0116] Embodiments of the present invention will be described below with reference to the accompanying drawings. For the sake of clarity, many practical details will be described together in the following description. However, the reader should understand that these practical details should not be used to limit the present invention. That is, in some embodiments of the present invention, these practical details are not necessary. In addition, in order to simplify the drawings, some conventional structures and elements will be depicted in a simple schematic manner in the drawings; and repeated elements may be represented by the same number or similar number.

[0117] In addition, in this article, when a certain element (or mechanism or module, etc.) is "connected", "set" or "coupled" to another element, it may refer to that the element is directly connected, directly set or directly coupled to another element, and it may also refer to that a certain element is indirectly connected, indirectly set or indirectly coupled to another element, that is, there are other elements between the element and the other element. When it is clearly stated that a certain element is "directly connected", "directly set" or "directly coupled" to another element, it means that there are no other elements between the element and the other element. The terms first, second, third, etc. are only used to describe different elements or components, and there is no restriction on the elements / components themselves. Therefore, the first element / component can also be renamed as the second element / component. Moreover, the combination of elements / components / mechanisms / modules in this article is not a generally known, conventional or conventional combination in this field. Whether the elements / components / mechanisms / modules themselves are conventional cannot be used to determine whether their combination relationship is easy to be easily completed by ordinary knowledge in the technical field.

[0118] See also Figure 1 and Figure 2 ,in Figure 1 FIG. 1 is a three-dimensional schematic diagram of a mounting hole forming mechanism 1000 according to a first embodiment of the present invention. Figure 2 An exploded schematic diagram of the installation hole forming mechanism 1000 of the first embodiment is shown. The installation hole forming mechanism 1000 includes at least one guide sleeve 1100 and a puncture assembly 1200, and the at least one guide sleeve 1100 includes a through hole 1110. The puncture assembly 1200 is detachably coupled to the at least one guide sleeve 1100, and the puncture assembly 1200 includes at least one nail member 1210, and the at least one nail member 1210 is used to couple to the through hole 1110 of the at least one guide sleeve 1100, and the at least one nail member 1210 includes a tip 1211. When the at least one nail member 1210 is inserted into the through hole 1110 of the at least one guide sleeve 1100, the tip 1211 is exposed, and the at least one nail member 1210 and the at least one guide sleeve 1100 are compressed to puncture a shoe member S1 (shown in FIG. 1 ). Figure 3 ), so that at least one mounting hole H1 is formed on the shoe member S1 (shown in Figure 5 ).

[0119] Thus, the installation hole H1 can be formed in the shoe member S1 through the nail member 1210, and the guide sleeve 1100 can be located in the installation hole H1 under the guidance of the nail member 1210, which is helpful for the subsequent fastening device R1 (shown in FIG. Figure 6 ) to install and use.

[0120] In use, the hole forming mechanism 1000 can be installed at any position on the shoe member S1, such as the tongue S11 (shown in FIG. Figure 3 ) to form a mounting hole H1, and then the fastening device R1 coupled with the tie line is positioned on the shoe component S1 through the mounting hole H1, so that a tightening system can be formed to tighten the shoe component S1.

[0121] In the first embodiment, the number of at least one nail member 1210 can be two, and the number of the guide sleeve 1100 is also two to match the nail member 1210, so as to form two installation holes H1 spaced apart from each other on the shoe member S1, which can increase the stability of the installation of the fastening device R1, but the present invention is not limited to this.

[0122] See also Figure 3 and Figure 4 , and refer to Figure 2 ,in Figure 3 A schematic side cross-sectional view of the mounting hole forming mechanism 1000 of the first embodiment used in a shoe member S1 is shown. Figure 4 A front cross-sectional view of the mounting hole forming mechanism 1000 of the first embodiment is shown, in which the mounting hole forming mechanism 1000 is placed on a tongue S11 of the shoe member S1. The mounting hole forming mechanism 1000 may further include a stopper assembly 1300, which is detachably coupled to the tongue S11 of the shoe member S1, wherein the piercing assembly 1200 penetrates the stopper assembly 1300 to form the mounting hole H1 on the tongue S11. Thus, the tongue S11 can be positioned first, so as to facilitate the piercing assembly 1200 to pierce.

[0123] Specifically, the limiting assembly 1300 may include a bearing seat 1310 and a pressing seat 1320, wherein the bearing seat 1310 is located at one of an upper side and a lower side of the shoe tongue S11, and the bearing seat 1310 includes two first engaging portions 1311. The pressing seat 1320 is located at the other of the upper side and the lower side of the shoe tongue S11, and the pressing seat 1320 is detachably coupled to the bearing seat 1310 and includes two second engaging portions 1321. Each second engaging portion 1321 is correspondingly engaged with each first engaging portion 1311, so that the shoe tongue S11 is limited between the bearing seat 1310 and the pressing seat 1320. Each first engaging portion 1311 may have a rack structure, and each second engaging portion 1321 may have a hole structure.

[0124] The supporting seat 1310 may include a middle protrusion 1315 and two placement grooves 1314, and the two placement grooves 1314 are respectively located on the two sides of the middle protrusion 1315, and each first engaging portion 1311 may be located on the outer side of each placement groove 1314. Therefore, when the tongue S11 is placed on the supporting seat 1310, if the width of the tongue S11 is greater than the middle protrusion 1315, the excess part of the tongue S11 can be accommodated in the two placement grooves 1314, and can be suitable for tongues S11 of different widths.

[0125] The pressing seat 1320 has a plate-like body (not shown), and the second engaging portion 1321 has a hole structure penetrating the plate-like body, so that the first engaging portion 1311 can be inserted, and the spacing between the pressing seat 1320 and the supporting seat 1310 can be adjusted by the rack structure of the first engaging portion 1311 to press and fix the shoe tongue S11, and has the advantage of being suitable for shoe tongues S11 of different thicknesses. The supporting seat 1310 also includes an upper curved surface 1313, and the pressing seat 1320 also includes a lower curved surface 1324 that cooperates with the upper curved surface 1313, which can help to firmly position the shoe tongue S11, but the present invention is not limited to this.

[0126] In order to facilitate the user to apply force, the puncture assembly 1200 may further include a cover 1220, which is connected to the nail 1210 and includes two positioning holes 1221, and the two positioning holes 1221 are spaced apart from each other; the pressing seat 1320 is located between the cover 1220 and the supporting seat 1310 and further includes two positioning columns 1322, and the two positioning columns 1322 are respectively inserted into the two positioning holes 1221, and the supporting seat 1310 may further include two guide channels 1312, which guide the nail 1210. Therefore, when the cover 1220 drives the nail 1210 to move toward the pressing seat 1320, the two positioning columns 1322 can be respectively inserted into the two positioning holes 1221, and the cover 1220 can be guided to avoid skewing, and at the same time, it can help the alignment of the nail 1210. After the nail 1210 passes through the shoe tongue S11 , it can be inserted into the guide channel 1312 . Therefore, the guide channel 1312 not only helps with alignment, but also prevents the nail 1210 from stabbing the user.

[0127] The cover 1220 may include two protruding columns 1222 , each protruding toward the pressing seat 1320 and for the two nail members 1210 to be inserted. The pressing seat 1320 may further include two inserting holes 1323 for the two protruding columns 1222 to be inserted, and each inserting hole 1323 may be aligned with the guiding channel 1312 .

[0128] See also Figure 5 , and please also refer to Figures 2 to 4 ,in Figure 5 Another front cross-sectional view of the mounting hole forming mechanism 1000 of the first embodiment is shown placed on the shoe tongue S11. Figure 3As shown, the user can first place the support seat 1310 on the shoe member S1, and then turn out the shoe tongue S11 and place it on the support seat 1310. Figure 4 As shown, the user can press the pressing seat 1320 against the shoe tongue S11, that is, the shoe tongue S11 is located between the pressing seat 1320 and the supporting seat 1310. Before puncturing, the nail 1210 can be assembled or fixed on the cover 1220, and the nail 1210 is sleeved with a guide sleeve 1100. When the cover 1220 is moved downward by a force, the cover 1220 is guided by the positioning column 1322, so that the nail 1210 enters the insertion hole 1323 and the tip 1211 pierces the shoe tongue S11. Since the force has not been removed, the nail 1210 drives the guide sleeve 1100 to continue to move downward and enter the guide channel 1312 until the two protruding columns 1222 are fully inserted into the two insertion holes 1323 and stop, thereby forming the installation hole H1.

[0129] Another example Figure 3 As shown, the tip 1211 may have a conical structure, and the tip 1211 has a maximum diameter D1, and the maximum diameter D1 is between 1 mm and 5 mm. In addition, the tip 1211 may have a conical surface 1211a, and the conical surface 1211a and a center line I1 of the nail 1210 form an angle θ, and the angle θ may be between 1 degree and 45 degrees. When this condition is met, it is helpful for the nail 1210 to pierce the tongue S11 smoothly. Further, the nail 1210 may include a necking portion (not shown), and the minimum diameter of the necking portion is smaller than the maximum diameter D1 of the tip 1211, and the guide sleeve 1100 may be in a truncated cone shape and shorter than the nail 1210. Therefore, after the nail 1210 passes through the guide sleeve 1100, one end edge of the guide sleeve 1100 may rest on the necking portion, and the tip 1211 may be exposed from the guide sleeve 1100.

[0130] See also Figure 6 ,in Figure 6 The schematic diagram of the operation of installing a fastening device R1 using the installation hole H1 formed by the installation hole forming mechanism 1000 of the first embodiment is shown. After the installation hole H1 is formed, only the guide sleeve 1100 is retained on the installation hole H1. Figure 6 As shown, the tongue S11 can be turned back to face the front side upward. At this time, an inserting pin R11 of the fastening device R1 can be inserted into the through hole 1110 of the guide sleeve 1100. Through the configuration of the inner diameter of the guide sleeve 1100 and the outer diameter of the inserting pin R11, the inserting pin R11 can push the guide sleeve 1100 out of the installation hole H1 during the process of inserting the guide sleeve 1100. In other words, the inserting pin R11 replaces the guide sleeve 1100 and is located in the installation hole H1.

[0131] Afterwards, a base plate R12 of the fastening device R1 is connected to the locking pin R11, and a tape member R13 of the fastening device R1 is coupled to the base plate R12, so that the fastening device R1 can be positioned on the shoe tongue S11. However, this is only an example of the present invention and does not limit the present invention.

[0132] See also Figure 7 and Figure 8 ,in Figure 7 FIG. 2 is a three-dimensional schematic diagram of a mounting hole forming mechanism 2000 and a chassis R12 according to a second embodiment of the present invention. Figure 8 The exploded view of the mounting hole forming mechanism 2000 and the chassis R12 of the second embodiment is shown. The mounting hole forming mechanism 2000 is similar to the mounting hole forming mechanism 1000 of the first embodiment, and only the differences are described below, and the similarities are not repeated.

[0133] The pressing seat 2320 of the limiting assembly 2300 may include a receiving hole 2324, which is located in the middle of the pressing seat 2320 and penetrates the plate-shaped body of the pressing seat 2320. The chassis R12 may be pre-combined with the guide sleeve 2100, and the chassis R12 includes two through holes R121 that are connected to the through holes (not shown) of the guide sleeve 2100.

[0134] See also Fig. 9 , and see also Figure 8 ,in Fig. 9 A side cross-sectional schematic diagram of the installation hole forming mechanism 2000 and the chassis R12 of the second embodiment used on a shoe tongue S11 is shown. The support seat 2310 can be first placed inside the shoe member S1 and located at the lower side of the shoe tongue S11, and the pressing seat 2320 is then coupled with the support seat 2310 to press and fix the shoe tongue S11. Before puncturing, the nail member 2210 can first pass through the through hole R121 and couple with the guide sleeve 2100, and position the chassis R12 on the cover member 2220. After puncturing, the chassis R12 will be correspondingly inserted into the receiving hole 2324 of the pressing seat 2320.

[0135] See also Fig.10 ,in Fig.10 FIG. 2 is a schematic diagram showing a fastening device R1 being installed using the installation hole H1 formed by the installation hole forming mechanism 2000 of the second embodiment. Since the base plate R12 has been pre-assembled with the guide sleeve 2100, there is no need to Figure 6 As shown, the guide sleeve 2100 is removed, and the engaging pin R11 is directly engaged with the guide sleeve 2100 to limit the bottom plate R12 to the shoe tongue S11, and then the winding member R13 is coupled to the bottom plate R12 to complete the installation of the fastening device R1.

[0136] See also Fig.11 and Fig.12,in Fig.11 FIG. 1 is an exploded view showing a mounting hole forming mechanism 3000 and a chassis R12 according to a third embodiment of the present invention. Fig.12 Another exploded schematic diagram of the mounting hole forming mechanism 3000 and the chassis R12 of the third embodiment is shown. The mounting hole forming mechanism 3000 is similar to the mounting hole forming mechanism 2000 of the second embodiment, but the support seat 3310 may include a receiving hole 3315, the receiving hole 3315 is located on the middle convex portion (not marked) of the support seat 3310, and the shape of the receiving hole 3315 corresponds to the chassis R12, and other similarities are not repeated.

[0137] See also Fig.13 and Fig.14 , and see also Figure 11 to Figure 12 ,in Fig.13 A front cross-sectional view of the mounting hole forming mechanism 3000 and the chassis R12 used on a shoe tongue S11 according to the third embodiment is shown. Fig.14 Another front cross-sectional view of the mounting hole forming mechanism 3000 and the chassis R12 used in the shoe tongue S11 of the third embodiment is shown. Fig.13 As shown, before puncturing, the chassis R12 is first placed upside down in the receiving hole 3315, and the support seat 3310 is placed on the upper side of the shoe tongue S11, and the pressing seat 3320 is coupled with the support seat 3310 to press and fix the shoe tongue S11. Fig.14 As shown, after piercing the shoe tongue S11, the nail piece 3210 sleeved with the guide sleeve 3100 will pass through the through hole R121 of the chassis R12, so that the guide sleeve 3100 is coupled to the chassis R12.

[0138] See also Fig.15 ,in Fig.15 FIG. 2 is a schematic diagram showing a method of installing a fastening device R1 using the installation hole H1 formed by the installation hole forming mechanism 3000 of the third embodiment. Since the base plate R12 is already coupled to the guide sleeve 3100, there is no need to Figure 6 As shown, the guide sleeve 3100 is removed, and the locking pin R11 is engaged with the guide sleeve 3100 to limit the bottom plate R12 to the shoe tongue S11, and then the tape R13 is coupled to the bottom plate R12 to complete the installation of the fastening device R1.

[0139] See also Fig.16 , Fig.17 and Fig.18 ,in Fig.16 FIG. 1 is an exploded schematic diagram showing a mounting hole forming mechanism 4000 and a chassis R12 according to a fourth embodiment of the present invention. Fig.17 Another exploded schematic diagram showing the mounting hole forming mechanism 4000 and the chassis R12 of the fourth embodiment is shown. Fig.18A schematic top view of a position limiting assembly 4300 of the mounting hole forming mechanism 4000 of the fourth embodiment is shown. The position limiting assembly 4300 may include a main frame 4310 and a clamping claw 4320 , wherein the clamping claw 4320 is connected to the main frame 4310 and forms a clamping space C1 with the main frame 4310 .

[0140] The main frame 4310 includes an insertion space C2, two openings 4311 and two slots 4312. Each opening 4311 is connected to the insertion space C2, and each slot 4312 is connected to each opening 4311 and the insertion space C2. Specifically, the main frame 4310 includes an upper top surface (not shown) and an annular wall (not shown). The annular wall extends downward from the upper top surface to define the insertion space C2. The two openings 4311 are located on the upper top surface, and each slot 4312 extends from each opening 4311 to the annular wall.

[0141] The clamping jaw 4320 is connected to the upper top surface and includes two clamping arms 4321, two inner side indicating portions 4322, two outer side indicating portions 4323, and a center line indicating portion 4324. The two clamping arms 4321 are spaced apart from each other, the two inner side indicating portions 4322 are respectively located on the inner sides of the two clamping arms 4321 and have a missing corner structure, the two outer side indicating portions 4323 are respectively located on the surfaces of the two clamping arms 4321 and aligned with the two inner side indicating portions 4322, and the center line indicating portion 4324 is aligned with the center line of the clamping jaw 4320.

[0142] The chassis R12 may be pre-assembled with the guide sleeve 4100, and the chassis R12 includes two through holes (not shown) connected to the through holes (not shown) of the guide sleeve 4100. Fig.16 In the embodiment, the chassis R12 may further include two lugs R122. The cover 4220 is disc-shaped and has a size corresponding to that of the chassis R12, and the cover 4220 may include a cover indicator 4221.

[0143] See also Fig.19 , and see also Figures 16 to 18 ,in Fig.19 A schematic diagram showing the positioning of the limiting assembly 4300 of the mounting hole forming mechanism 4000 of the fourth embodiment on a shoe tongue S11 is shown. Since the two clamping arms 4321 of the clamping jaw 4320 are elastic, the shoe tongue S11 can be clamped into the clamping space C1 after the clamping arms 4321 are deformed, and the shoe tongue S11 can be pressed and positioned after the clamping arms 4321 are reset. When positioning, the center line indicator 4324 can be aligned with the center line of the shoe tongue S11, and the two outer side indicator portions 4323 can be used to align with any eyelet hole on the shoe member S1, but the present invention is not limited thereto.

[0144] See also Fig. 20 , and please also refer to Figures 16 to 19 ,in Fig. 20A schematic diagram showing the installation hole forming mechanism 4000 and the chassis R12 piercing the shoe tongue S11 of the fourth embodiment is shown. Before piercing, the nail 4210 can first pass through the through hole to couple with the guide sleeve 4100, and position the chassis R12 on the cover 4220. Afterwards, the cover indicator 4221 is aligned with the midline indicator 4324, and the cover 4220 is pressed down toward the shoe tongue S11. After piercing, the nail 4210 can enter the insertion space C2 through the opening 4311, and the chassis R12 will be pressed between the two clamp arms 4321, so that the two lugs R122 are embedded in the two inner indicator portions 4322. Since each slot 4312 is connected to each opening 4311 and the insertion space C2, the movement of the limiting assembly 4300 does not affect the nail 4210. The user can pull the limiting assembly 4300 backward to remove the limiting assembly 4300 from the tongue S11, while keeping the chassis R12 and the piercing assembly 4200 on the tongue S11.

[0145] Since the chassis R12 has been pre-assembled with the guide sleeve 4100, it is not necessary to Figure 6 As shown, the guide sleeve 4100 is removed, and the locking pin is engaged with the guide sleeve 4100, and then the chassis R12 and the take-up member R13 are coupled in sequence to complete the installation of the fastening device R1.

[0146] See also Fig.21 , and please also refer to Figures 1 to 10 ,in Fig.21 A block flow chart of a fastening device installation method 5000 according to a fifth embodiment of the present invention is shown. The fastening device installation method 5000 is used to install a fastening device R1 on a shoe component S1, and the fastening device installation method 5000 includes a mounting hole forming step 5200 and a fastening device limiting step 5300.

[0147] In the installation hole forming step 5200, force is applied to make at least one nail 1210, 2210 penetrate a shoe component S1, so as to form at least one installation hole H1 on the shoe component S1. Specifically, at least one nail 1210, 2210 is inserted into a through hole 1110 of at least one guide sleeve 1100, 2100, and a tip 1211 of at least one nail 1210, 2210 is exposed, and force is applied to make at least one nail 1210, 2210 and at least one guide sleeve 1100, 2100 penetrate the shoe component S1.

[0148] In the fastening device limiting step 5300 , the fastening device R1 is coupled to at least one mounting hole H1 , so that the fastening device R1 is limited to the shoe component S1 .

[0149] The fastening device installation method 5000 may further include a tongue positioning step 5100, providing a limiting component 1300, 2300, coupling the limiting component 1300, 2300 with a tongue S11 of the shoe component S1 to position the tongue S11, wherein the tongue positioning step 5100 is performed before performing the installation hole forming step 5200. Specifically, in the tongue positioning step 5100, a supporting seat 1310, 2310 of the limiting component 1300, 2300 is placed on one of the upper side and the lower side of the tongue S11, and a pressing seat 1320, 2320 of the limiting component 1300, 2300 is placed on the other of the upper side and the lower side of the tongue S11 and coupled to the supporting seat 1310, 2310, so that the tongue S11 is limited between the supporting seat 1310, 2310 and the pressing seat 1320, 2320.

[0150] like Figure 3 As shown, the support seat 1310 can be placed on the upper side of the shoe tongue S11 (the side away from the inside of the shoe member S1) first, and then Fig. 9 As shown, the support seat 2310 can be placed on the lower side of the shoe tongue S11 (the side facing the inside of the shoe component S1), and then the pressing seats 1320, 2320 and the support seats 1310, 2310 are aligned, so that the first engaging portion 1311 is inserted into the second engaging portion 1321, and the spacing between the pressing seat 1320 and the support seat 1310 is adjusted through the rack structure of the first engaging portion 1311 to stably press against and position the shoe tongue S11. After the shoe tongue S11 is positioned, the installation hole forming step 5200 can be performed.

[0151] like Figure 4 As shown, in the installation hole forming step 5200, the guide sleeve 1100 has been put on the nail piece 1210, and the user presses the cover piece 1220 toward the shoe tongue S11, and the nail piece 1210 can pierce the shoe tongue S11 to form the installation hole H1.

[0152] In addition, in the fastening device limiting step 5300, the fastening device R1 may include a chassis R12 and a tape member R13. The chassis R12 is first coupled to the at least one mounting hole H1, and then the tape member R13 is coupled to the chassis R12.

[0153] like Figures 7 to 10 As shown, since the chassis R12 has been pre-assembled with the guide sleeve 2100, an inserting pin R11 can be inserted into the guide sleeve 2100 to couple the chassis R12 to the installation hole H1 and to be confined to the shoe tongue S11. Then, the tape R13 is coupled to the chassis R12 to complete the installation of the fastening device R1.

[0154] Or, alternatively, if Figure 6As shown, in the installation hole forming step 5200, at least one nail 1210 is removed from at least one guide sleeve 1100, and at least one guide sleeve 1100 is retained in at least one installation hole H1, and in the fastening device limiting step 5300, at least one embedding pin R11 is inserted into at least one guide sleeve 1100, and after pushing at least one embedding pin R11 to push at least one guide sleeve 1100 out of at least one installation hole H1, at least one embedding pin R11 is accommodated in at least one installation hole H1, and the chassis R12 is coupled to the at least one embedding pin R11.

[0155] Specifically, after the nail 1210 is removed, only the guide sleeve 1100 remains in the installation hole H1. Then, the embedding pin R11 is inserted into the guide sleeve 1100, and force is applied to push the embedding pin R11 to push the guide sleeve 1100 out of the installation hole H1. The embedding pin R11 can be accommodated in the installation hole H1. Then, the chassis R12 can be connected to the embedding pin R11, and the tape R13 can be positioned on the tongue S11 through the chassis R12.

[0156] See also Fig. 22 ,in Fig. 22 A fastening system 6000 is shown using the fastening device installation method 5000 of the fifth embodiment. Before the tape R13 is coupled to the chassis R12, a tie wire W1 can be taken first, and the tie wire W1 is passed through the eyelet holes on the shoe S1, and then coupled to a wire reel (not shown) in the tape R13. After that, the tape R13 is combined with the chassis R12 to form the fastening system 6000, and the tie wire W1 can be retracted and released through the tape R13 to tighten or loosen the shoe S1.

[0157] It can be seen that even if the shoe S1 itself does not include the fastening system 6000 when it is shipped or sold, but is fastened by threading ordinary shoelaces through the eyelets, the user can still use the fastening device installation method 5000 to install the fastening device R1 on the shoe S1 and couple it with the tie line W1 to form the fastening system 6000, which can replace the shoelaces. It should be particularly noted that although the fastening device R1 is set on the tongue S11 in the first to fifth embodiments, it can also be set on any part of the shoe S1 according to the structure of the shoe S1, and the present invention is not limited thereto.

[0158] Although the present invention has been disclosed as above by the embodiments, it is not intended to limit the present invention. Anyone familiar with this technology can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention shall be based on the scope defined by the attached claims.

Claims

1. A mounting hole forming mechanism, It is characterized in that Include: at least one guide cannula including a perforation; and A puncture assembly is detachably coupled to the at least one guide sleeve, and the puncture assembly comprises: At least one nail member, used to couple to the through hole of the at least one guide sleeve, and the at least one nail member includes a tip portion and a neck portion; Among them, when the at least one nail is inserted into the through hole of the at least one guide sleeve, the tip of the at least one nail is exposed, and an end edge of the at least one guide sleeve rests on the necked portion. The at least one nail and the at least one guide sleeve are pressurized to pierce a shoe component, so that at least one installation hole is formed on the shoe component, and after the at least one nail leaves the shoe component, the at least one guide sleeve is retained in the at least one installation hole.

2. The mounting hole forming mechanism according to claim 1, further comprising: a limiting assembly detachably coupled to a tongue of the shoe; in, The piercing component penetrates the limiting component to form the at least one installation hole on the shoe tongue.

3. The mounting hole forming mechanism according to claim 2, in, The limit assembly includes: a supporting seat, located at one of an upper side and a lower side of the shoe tongue, and the supporting seat includes two first engaging portions; and A pressing seat is located at the other of the upper side and the lower side of the shoe tongue, the pressing seat is detachably coupled to the supporting seat, and the pressing seat comprises: Two second embedding parts, each of which is correspondingly embedded in each of the first embedding parts, so that the shoe tongue is limited between the supporting seat and the pressing seat.

4. The mounting hole forming mechanism according to claim 3, in, Each of the first embedded parts has a rack structure, and each of the second embedded parts has a hole structure.

5. The mounting hole forming mechanism according to claim 3, in: The puncture assembly also includes: a cover member connected to the at least one nail member and comprising two positioning holes, the two positioning holes being spaced apart from each other; and The pressing seat is located between the cover and the supporting seat and further comprises: The two positioning posts are respectively inserted into the two positioning holes.

6. The mounting hole forming mechanism according to claim 3, in, The support seat also includes: At least one guiding channel guides the at least one nail piece.

7. The mounting hole forming mechanism according to claim 3, in, The supporting seat further comprises an upper arc surface, and the pressing seat further comprises a lower arc surface matching the upper arc surface.

8. The mounting hole forming mechanism according to claim 1, in, The tip of the at least one nail component has a cone structure, and the tip of the at least one nail component has a maximum diameter between 1 mm and 5 mm.

9. The mounting hole forming mechanism according to claim 1, in, The tip of the at least one nail component has a conical surface, and an angle between the conical surface of the at least one nail component and a center line of the at least one nail component is between 1 degree and 45 degrees.

10. A method for installing a fastening device, for installing a fastening device on a shoe component, It is characterized in that The fastening device installation method comprises: a step of forming a mounting hole, wherein at least one nail comprises a tip and a necked portion, and after the at least one nail is inserted into a through hole of at least one guide sleeve, the tip of the at least one nail is exposed, an end edge of the at least one guide sleeve rests on the necked portion, and the at least one nail and the at least one guide sleeve are located on one side of the shoe member, and force is applied to make the at least one nail sleeved in the at least one guide sleeve pierce toward the other side of the shoe member to form at least one mounting hole on the shoe member, and after the at least one nail leaves the shoe member, the at least one guide sleeve is retained in the at least one mounting hole; and A fastening device limiting step is performed to couple the fastening device to the at least one installation hole, and remove or continue to retain the at least one guide sleeve so that the fastening device is limited to the shoe component.

11. The method for installing a fastening device according to claim 10, in, In the step of limiting the position of the fastening device, the fastening device includes a chassis and a tape component. The chassis is first coupled to the at least one mounting hole, and then the tape component is coupled to the chassis.

12. The method for installing a fastening device according to claim 11, in: In the step of limiting the position of the fastening device, at least one embedded pin is inserted into the at least one guide sleeve, and after the at least one embedded pin is pushed to push the at least one guide sleeve out of the at least one installation hole, the at least one embedded pin is accommodated in the at least one installation hole, and the chassis is coupled to the at least one embedded pin.

13. The method for installing a fastening device according to claim 10, further comprising: a tongue positioning step, providing a limiting component, coupling the limiting component with a tongue of the shoe piece to position the tongue; in, Before performing the installation hole forming step, the shoe tongue positioning step is performed first.

14. The method for installing a fastening device according to claim 13, in, In the tongue positioning step, a supporting seat of the limiting component is placed on one of the upper side and the lower side of the tongue, and a pressing seat of the limiting component is placed on the other of the upper side and the lower side of the tongue and coupled to the supporting seat, so that the tongue is limited between the supporting seat and the pressing seat.

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