CN101416803A - Apparatus for fastening a shoe - Google Patents

Apparatus for fastening a shoe Download PDF

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Publication number
CN101416803A
CN101416803A CN200810210182.XA CN200810210182A CN101416803A CN 101416803 A CN101416803 A CN 101416803A CN 200810210182 A CN200810210182 A CN 200810210182A CN 101416803 A CN101416803 A CN 101416803A
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CN
China
Prior art keywords
shoestring
adjustable clearance
fastener element
shoes
face
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CN200810210182.XA
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Chinese (zh)
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阿哈仁·巴尔
迈克·巴尔
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Individual
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Individual
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    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43CFASTENINGS OR ATTACHMENTS OF FOOTWEAR; LACES IN GENERAL
    • A43C11/00Other fastenings specially adapted for shoes
    • A43C11/008Combined fastenings, e.g. to accelerate undoing or fastening
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43CFASTENINGS OR ATTACHMENTS OF FOOTWEAR; LACES IN GENERAL
    • A43C11/00Other fastenings specially adapted for shoes
    • A43C11/14Clamp fastenings, e.g. strap fastenings; Clamp-buckle fastenings; Fastenings with toggle levers
    • YGENERAL 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
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T24/00Buckles, buttons, clasps, etc.
    • Y10T24/27Buckles, buttons, clasps, etc. including readily dissociable fastener having numerous, protruding, unitary filaments randomly interlocking with, and simultaneously moving towards, mating structure [e.g., hook-loop type fastener]
    • Y10T24/2708Combined with diverse fastener

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  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)

Abstract

A fastening apparatus for a shoe including an adjustable gap with two sides and a fastener with two elements, wherein one fastener element is attached to the first side of the adjustable gap. At least one lace is threaded through holes along the two sides of the adjustable gap, and two ends of the lace are fastened together between the second fastening element and the second side of the adjustable gap. The lace is threaded at one end through an opening in the second fastener element and forms at least one lace segment that extends from the second fastener element to the second side of the adjustable gap, and at least one lace segment extends from the second side of the adjustable gap to the first side of the adjustable gap. The two ends of the at least one lace may be fastened together by a knot. For tightening the shoe, the second fastener element is pulled towards the first side of the adjustable gap, and is attached to the first fastener element for keeping the shoe fastened.

Description

It is footwear apparatus
The cross reference of related application
This application is U. S. application No.11/976,104, and the partial continuous case of the patent application in October 22 2007 date of application, its full content is hereby expressly incorporated by reference.
Technical field
A kind of can providing is provided to be very easy to and the device of tying the shoelace efficiently.
Background technology
Fasten shoes by this common means of tying the shoelace, for comprising a lot of the disableds and the personage who is difficult to bend over to touch vamp, such operation is inconvenient.Many solutions of fastening shoes are not to utilize shoestring, but utilize the fastening method that comprises shoe buckle or band and shackle combination, for example are well known
Figure A200810210182D00041
Velcro.But, for the shoes of some types, sport footwear for example, it is not tempting that the outward appearance of band closure seems.In addition, many wearers and disliking wear that they think the shoes made for the disabled person specially to also have many wearers only to have a preference for the outward appearance of the common method of tying the shoelace those.
Authorize the U.S. Patent No. 4,081,916 of Salisbury, authorize the U.S. Patent No. 4,414,761 of Mahood, and the U.S. Patent No. 5,027,482 of authorizing Torppey, the fastening method that band and shackle make up disclosed respectively.A series of shoestrings are side by side simultaneously gone up eyelet by the shoes opening and are extended, and connect with following lengthening sealing vamp with shackle element.In the patent of Mahood, shoestring is to be fixed under the same eyelet, and in the patent of Salisbury and Torppey, shoestring then is the eyelet that is fixed on another side.Draw vamp to shoes opening another side, cross the shoes opening and fasten shoes, cooperatively interacting by the shackle element at another vamp upper surface fixes the sealing vamp.All there is such shortcoming in all these methods, and the lengthening vamp not only influences the design of shoes, and influences the outward appearance of shoes, make shoes seem to seem burdensome.Another shortcoming is that in all these methods, shoestring is horizontal on the shoes opening, rather than forms a right-angled intersection pattern, does not therefore have the outward appearance of the common method of tying the shoelace.
Authorize the U.S. Patent No. 6,941,683 of Freed, disclosure remain a kind of method of tying the shoelace that combines shoestring and band.This method is based on the shoestring ring of a prolongation that partly is made of 4 shoestrings, begins to extend from shoes band simultaneously, by the several shoestring openings on the side vamp, is crossing the shoes opening after the right-angled intersection mutually.The alternatively shoestring ring of a prolongation that partly is made of 2 shoestrings, each begins to extend on the band of shoes one side, by the several shoestring openings on two vamps, is crossing the shoes opening after the right-angled intersection mutually.One tie rod band, a plurality of shoestrings part be by all eyelets, thereby with the fastening of shoes opening part.
U.S. Patent number No.6, a major defect of 941,683 is that it does not propose series of solutions when the eyelet of shoes is less than 4 pairs, because shoestring part in the middle of this method needs three at least, and at least two far-end shoestring parts are intersected mutually at the shoes opening.In addition, between the too much shoestring mutually right-angled intersection make and seem to seem disorderly and unsystematic.Another shortcoming is that the high frictional force that this method is subjected to causing because of the structure of the method for tying the shoelace easily influences, and some of them shoestring part begins to extend with sharp-pointed angle by eyelet, has aggravated pressure and friction between shoestring and the eyelet.This high frictional force makes the pulling shoestring by all eyelets difficulty that becomes, and has stoped some shoestrings partly to move freely, thereby causes may not can evenly being tightened up at the shoes opening part, and may cause shoestring to tear or wear and tear more frequent.
Summary of the invention
The present invention is that a kind of low-frictional force is a footwear apparatus, uses this device wearer at an easy rate shoes to be fastened.
It is a kind of at an easy rate with the device of shoes fastening that improvements of the present invention have been to provide, and this device can be for those with the shoes fastening and be tied to form usually the method for tying the shoelace and have the personage of certain difficulty to use.
Improvements of the present invention have been to provide that a kind of what can use is footwear apparatus on the shoes that have on the varying number eyelet.
Difference of the present invention is to provide one to be footwear apparatus, and wherein the end component of shoes opening has and the common the same outward appearance of method shoes of tying the shoelace.
Description of drawings
The present invention can be by understanding below in conjunction with the detailed introduction of drawing and differentiating more fully.Wherein:
Fig. 1 is the schematic diagram of shoes, and second face of this footwear adjustable clearance has two eyelets, and first face of adjustable clearance has an eyelet, and structure and operation are consistent with the concrete device of invention;
Fig. 2 is the schematic diagram that two shoestrings and shoestring are fixed on preceding second fastener element of second fastener element;
Fig. 3 is the schematic diagram that two shoestrings and shoestring are fixed on second fastener element behind second fastener element;
Fig. 4 is the schematic diagram of the adjustable clearance of shoes among Fig. 1 at tightening state;
Fig. 5 is the schematic diagram of shoes, and second face of this footwear adjustable clearance has two eyelets, and first face of adjustable clearance has an eyelet, and structure and operation are consistent with the novel concrete device of invention;
Fig. 6 is the schematic diagram of shoes, and second face of this footwear adjustable clearance has two eyelets, and first face of adjustable clearance has two eyelets, and structure and operation are consistent with the concrete device of invention;
Fig. 7 is the schematic diagram of shoes, and second face of this footwear adjustable clearance has three eyelets, and first face of adjustable clearance has two eyelets, and structure and operation are consistent with the concrete device of invention;
Fig. 8 is the schematic diagram of the adjustable clearance of shoes among Fig. 7 at tightening state;
Fig. 9 is the schematic diagram of shoes, and second face of this footwear adjustable clearance has three eyelets, and first face of adjustable clearance has two eyelets, and structure and operation are consistent with the novel concrete device of invention;
Figure 10 is the schematic diagram of shoes, and second face of this footwear adjustable clearance has four eyelets, and first face of adjustable clearance has three eyelets, and structure and operation are consistent with the concrete device of invention;
Figure 11 is the schematic diagram of the adjustable clearance of shoes among Figure 10 at tightening state;
Figure 12 is the schematic diagram of shoes, and second face of this footwear adjustable clearance has four eyelets, and first face of adjustable clearance has three eyelets, and structure and operation are consistent with the novel concrete device of invention;
Figure 13 is the schematic diagram of the adjustable clearance of shoes among Figure 12 at tightening state;
Figure 14 is the schematic diagram of shoes, and second face of this footwear adjustable clearance has five eyelets, and first face of adjustable clearance has four eyelets, and structure and operation are consistent with the concrete device of invention;
Figure 15 is the schematic diagram of the adjustable clearance of shoes among Figure 14 at tightening state;
Figure 16 is the schematic diagram of shoes, and second face of this footwear seam adjustable slit has five eyelets, and first face of adjustable clearance has four eyelets, and structure and operation are consistent with the novel concrete device of invention;
Figure 17 is the schematic diagram of shoes, and these footwear have a shoestring, and second face of adjustable clearance has two eyelets, and first face has an eyelet, and structure and operation are consistent with the concrete device of invention;
Figure 18 is the schematic diagram of the adjustable clearance of shoes among Figure 17 at tightening state;
Figure 19 is the schematic diagram of shoes, and these footwear have two shoestrings, and second face of adjustable clearance has two eyelets, and first face has an eyelet, and structure and operation are consistent with the novel concrete device of invention;
Figure 20 is the schematic diagram of shoes, and these footwear have a shoestring, and second face of adjustable clearance has two eyelets, and first face has an eyelet, and structure and operation are consistent with the novel concrete device of invention;
Figure 21 is the schematic diagram of shoes, and these footwear have a shoestring, and second face of adjustable clearance has two eyelets, and first face has an eyelet, and structure and operation are consistent with the novel concrete device of invention;
Figure 22 is the schematic diagram of the adjustable clearance of shoes among Figure 21 at tightening state;
Figure 23 is the schematic diagram of shoes, and these footwear have a shoestring, and second and first of adjustable clearance respectively has two eyelets, and structure and operation are consistent with the concrete device of invention;
Figure 24 is the schematic diagram of shoes, and these footwear have a shoestring, and second face of adjustable clearance has three eyelets, and first face has two eyelets, and structure and operation are consistent with the concrete device of invention;
Figure 25 is the schematic diagram of the adjustable clearance of shoes among Figure 24 at tightening state;
Figure 26 is the schematic diagram of shoes, and these footwear have two shoestrings, and second face of adjustable clearance has three eyelets, and first face has two eyelets, and structure and operation are consistent with the novel concrete device of invention;
Figure 27 is the schematic diagram of shoes, and these footwear have a shoestring, and second face of adjustable clearance has three eyelets, and first face has two eyelets, and structure and operation are consistent with the novel concrete device of invention;
Figure 28 is the schematic diagram of the adjustable clearance of shoes among Figure 27 at tightening state;
Figure 29 is the schematic diagram of shoes, and these footwear have a shoestring, and second face of adjustable clearance has four eyelets, and first face has three eyelets, and structure and operation are consistent with the concrete device of invention;
Figure 30 is the schematic diagram of shoes, and these footwear have two shoestrings, and second face of adjustable clearance has four eyelets, and first face has three eyelets, and structure and operation are consistent with the novel concrete device of invention;
Figure 31 is the schematic diagram of shoes, and these footwear have a shoestring, and second face of adjustable clearance has four eyelets, and first face has three eyelets, and structure and operation are consistent with the novel concrete device of invention;
Figure 32 is the schematic diagram of the adjustable clearance of shoes among Figure 31 at tightening state.
The specific embodiment
With reference now to Fig. 1 show shoes 1, these footwear are fastened the structure of method and operation and invention first-selected specifically install consistent.Should be pointed out that the shoes that have only right crus of diaphragm in this quilt show-and-tell from start to finish, it must be admitted that for those skilled in the art, and the concrete device of various fastening methods can be included into left footwear at an easy rate, and the footwear of other kinds such as sport footwear, sandals, boots, skating boots, slippers, or the like.
It should still be noted that and be, though showing first opening of shoes opening, Fig. 1 adjoins the shoes outside, second opening of shoes opening adjoins shoe inside (or bow face), it must be admitted that for those skilled in the art, here as a reference first and second face only are for reference to convenient, content disclosed herein can be equally applicable to second opening and adjoin the shoes outside, and first opening adjoins shoe inside (or bow face).
The part of shoes comprises an adjustable clearance on upper region, and this is intended for the usefulness that the shoes opening on wearer's pin is tightened up and loosens, and comprises first 2, the second 3, terminal surface 4 and open top end face 5.
In the concrete device of showing in Fig. 1, second face of adjustable clearance comprises two openings, and first face comprises an opening.Being similar to such opening can be hole, eyelet, bracelet and ring.
Two parts of an element 6 and a fastener of 9 explanations, wherein first fastener element 6 is bound up on first of shoes, 9 of second fastener elements are bound up on the shoestring, as following narrate.According to the first-selected concrete device of submission invention, these two fastener elements 6 and 9 comprise two elements that cooperatively interact, clip for example, and bracelet, snap-fastener, button or shackle combined system ( ), so that lock mutually between two elements.
The concrete device first-selected, two shoestrings 7 and 8 according to submission invention separately with its immediate client link on second fastener element 9.Fig. 2 and Fig. 3 show shoestring 7 and 8 and the example that connects of fastener element 9, and this makes that the wearer can be according to the length available of own double-legged size adjusting shoestring.Fig. 2 has showed the bottom of second fastener element 9, passes hole on the fastener element at these two shoestrings as line, and wherein the length available of every shoestring all can be adjusted.In case reach desired available shoestring length, every shoestring is all firm with second fastener element, 9 knots, for example ties up into a knot by hole around two circles, as shown on Fig. 3.
Article two, shoestring 7 and 8 extends to second of adjustable clearance from second fastener element 9.According to one that submits invention to concrete device, as showing in Fig. 1 and 4, two shoestrings 7 pass through eyelet on second of the adjustable clearance with 8 as line.Shoestring 7 extends to second from first of adjustable clearance, forms the shoestring part 7a across adjustable clearance, and the far-end of shoestring 7 is bound up on first of adjustable clearance.The far-end of shoestring 8 is bound up on second of adjustable clearance.
As Fig. 1 and 4 are showed, shoestring 7 and 8 far-end and the connection between the face of adjustable clearance separately, can be by directly their end and the eyelet knot jail of adjustable clearance face separately being finished, for example, tie a knot there, or pass through eyelet, with the object knot jail of eyelet back as line, this object is because size is former thereby can not pass through eyelet, as those skilled in the art in common knowledge.
In order to fasten shoes, draw fastener element 9 to first face of shoes, approaching by shoestring 7,8 and shoestring part 7a, the tension force on the end causes the deflation between first and second of adjustable clearance freely.Just as shown in Figure 4 like that, to fastener element 6, keep deflated state by fastening fastener element 9.
With reference now to Fig. 5 show the novel concrete device of present submission invention, wherein the far-end of shoestring 7 (at the far-end of shoestring part 7a) and shoestring 8 interconnects in the bottom of adjustable clearance, formation shoestring part 11.In this concrete device, shoestring 7 and 8 is actually a long shoestring, and their end all is near-end at present, with second fastener element, 9 knot jails.In order to fasten shoes, draw fastener element 9 to first face of shoes,, freely end and shoestring part 7a 7,8 approaching by shoestring, the tension force on 11 cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 is to fastener element 6.
With reference now to Fig. 6 show the novel concrete device of present submission invention, wherein second of adjustable clearance and first face all comprise two eyelets, top eyelet and bottom eyelet, wherein shoestring 7 and 8 far-end all with first connection mutually of adjustable clearance.In this concrete device, the far-end of shoestring 7 is still firm with first bottom eyelet knot of adjustable clearance, but the eyelet of the far-end of shoestring 8 by second bottom, from adjustable clearance second towards first extension, form the shoestring part 8a of first the top eyelet that is bound up on adjustable clearance.In order to fasten shoes, draw fastener element 9 to first face of adjustable clearance,, freely end and shoestring part 7a 7,8 approaching by shoestring, the tension force on the 8a cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 is to fastener element 6.
With reference now to Fig. 7 show the novel concrete device of present submission invention, similar with Fig. 1, but wherein second face of adjustable clearance comprises three eyelets, first face comprises two eyelets.In this concrete device, two independently shoestring 7 and 8 from second fastener element 9 by second top of adjustable clearance and middle eyelet, extend to first of adjustable clearance respectively, form part 7a and 8a across adjustable clearance.The far-end of shoestring 8 is bound up on first bottom eyelet.Shoestring 7 is gone back to second as the top eyelet of line by first from first extension, has formed the part 7b across adjustable clearance, and the far-end of shoestring 7 is bound up on second bottom eyelet.
In order to fasten shoes, draw fastener element 9 to first face of shoes,, freely end and shoestring part 7a 7,8 approaching by shoestring, 7b, the tension force on the 8a cause the deflation between first and second of adjustable clearance.Just as shown in Figure 8 like that, to fastener element 6, keep deflated state by fastening fastener element 9.
In the novel concrete device of Fig. 7 and Fig. 8 (not showing), the far-end of shoestring 7 and shoestring 8 (at the far-end of part 7b and 8a) interconnects near the bottom near adjustable clearance, forms a new shoestring part 11, is similar to the shoestring part 11 among Fig. 5.In this concrete device, shoestring 7 and 8 is actually a long shoestring, and their two ends all are near-end at present, all with second fastener element, 9 knot jails.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 7,8 approaching, end and shoestring part 7a freely, 7b, the tension force on the 8a and 11 cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 is to fastener element 6.
With reference now to Fig. 9 show different with Fig. 1 novel concrete devices, wherein second face of adjustable clearance comprises three eyelets, first face comprises two eyelets.In this concrete device, shoes have three independently shoestrings (promptly 7,8,9), and near-end separately preferably connects with second fastener element 9 as mentioned above, thus with first connection mutually of shoes, and fastener element 9 cooperatively interacts with fastener element 6.These three shoestrings 7,8 and 9 extend to second of adjustable clearance from fastener element 9.According to a concrete device of submission invention, top two shoestrings 7 pass two eyelets on second top of adjustable clearance with 8 as line, since second, intersect and extend to first, have correspondingly formed shoestring part 7a and 8a across adjustable clearance.The far-end of shoestring 9 is bound up on second of adjustable clearance in above-described mode.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 7,8,9 near-end and end and shoestring part 7a, the tension force on the 8a cause the deflation between first and second of adjustable clearance.To fastener element 6, keep deflated state by fastening fastener element 9.
With reference now to Figure 10 show the novel concrete device of present submission invention, similar with Fig. 1 and Fig. 7, but wherein second face of adjustable clearance comprises four eyelets, first face comprises three eyelets.Article two, independently shoestring 7 and 8 extends from second fastener element 9, by second top and second eyelet, intersects the back respectively to first, forms the part 7a across adjustable clearance, 8a.Shoestring part 7a goes back to second as the top eyelet of line by first from first extension, has formed part 7b.Part 7b passes the 3rd eyelet on second as line, extends to first again, forms shoestring part 7c, and the far-end of shoestring 7 is bound up on first of adjustable clearance.Shoestring part 8a goes back to second as the eyelet of line by first from first extension, has formed part 8b, and the far-end of shoestring 8 connects second of adjustable clearance.
In order to fasten shoes, draw fastener element 9 to first face of shoes,, freely end and shoestring part 7a 7,8 approaching by shoestring, 7b, 7c, the tension force on 8a and the 8b causes the deflation between first and second of adjustable clearance.What go out as shown in Figure 11 is such, to fastener element 6, keeps deflated state by fastening fastener element 9.
In the novel concrete device of Figure 10 and Figure 11 (not showing), the far-end of shoestring 7 and shoestring 8 (at the far-end of part 7c and 8b) interconnects near the bottom near adjustable clearance, forms a new shoestring part 11, is similar to the shoestring part 11 among Fig. 5.In this concrete device, shoestring 7 and 8 is actually a long shoestring, and their two ends all are near-end at present, all with second fastener element, 9 knot jails.In order to fasten shoes, draw fastener element 9 to first face of shoes,, freely end and shoestring part 7a 7,8 approaching by shoestring, 7b, 7c, 8a, tension force on the 8b and 11 causes the deflation between first and second of adjustable clearance, and fastening fastener element 9 is to fastener element 6.
With reference now to Figure 12 show the novel concrete device of present submission invention, wherein second face of adjustable clearance comprises four eyelets, first face comprises three eyelets.In this concrete device, shoes have four independently shoestrings 7,8,9 and 10, and as mentioned above, their near-ends separately preferably connect mutually with second fastener element 9, and fastener element 9 cooperatively interacts with fastener element 6, thus with first connection of shoes.
Article four, shoestring 7,8, and 9 and 10 extend to second of adjustable clearance from fastener element 9.According to a concrete device of submission invention, top three shoestrings 7,8 pass three eyelets on second top of adjustable clearance with 9 as line, since second, intersection extends to first, has correspondingly formed shoestring part 7a, 8a and 9a across adjustable clearance.Shoestring 7,8,9 far-end are bound up on first of adjustable clearance, and the far-end of shoestring 20 is bound up on second of adjustable clearance in described mode.
In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 7,8,9,10 approaching, end and shoestring part 7a freely, the tension force on 8a and the 9a causes the deflation between first and second of adjustable clearance.As Figure 13 set forth, to fastener element 6, keep deflated state by fastening fastener element 9.
In the novel concrete device of Figure 12 and Figure 13 (not showing), the far-end of shoestring 19 (at the far-end of part 19a) and shoestring 20 interconnects near the bottom near adjustable clearance, forms a new shoestring part 11, is similar to the shoestring part 11 among Fig. 5.Therefore, three rather than four shoestrings have been used in this concrete device.In this concrete device, shoestring 19 and 20 is actually a long shoestring, and their two ends all are near-end at present, all with second fastener element, 9 knot jails.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 17,18,19,20 approaching, end and shoestring part 17a freely, 18a, tension force on the 19a and 11 causes the deflation between first and second of adjustable clearance, and fastening fastener element 9 is to fastener element 6.
With reference now to Figure 14 show the novel concrete device of present submission invention, wherein second face of adjustable clearance comprises five eyelets, first face of adjustable clearance comprises four eyelets.Similar among concrete device of the present invention and Figure 12 passes the 4th eyelet of second of adjustable clearance except shoestring part 10 as line, extends to first of adjustable clearance, forms shoestring part 10a, and the far-end of shoestring 10 is bound up on first.Shoestring part 9a passes the eyelet on first of adjustable clearance as line, and extend the adjustable clearance that turns back second, form shoestring part 9b, the far-end of shoestring 19 is bound up on second of adjustable clearance.
In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 7,8,9,10 approaching, end and shoestring part 7a freely, 8a, 9a, the tension force on 9b and the 10a causes the deflation between first and second of adjustable clearance.Just as shown in Figure 15 like that, to fastener element 6, keep deflated state by fastening fastener element 9.
With reference now to Figure 16 show the novel concrete device of present submission invention, wherein the far-end of shoestring 9 and shoestring 10 (at the far-end of part 10a and 9b) interconnects near the bottom near adjustable clearance, forms new shoestring part 11.Therefore, three rather than four shoestrings have been used in this concrete device.In this concrete device, shoestring 9 and 10 is actually a long shoestring, and their two ends all are near-end at present, all with second fastener element, 9 knot jails.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 7,8,9,10 last approaching, end and shoestring part 7a freely, 8a, 9a, 9b, 10a, the tension force on 11 causes the deflation between first and second of adjustable clearance, and fastening fastener element 9 is to fastener element 6.
With reference now to Figure 17 show the novel concrete device of present submission invention, be similar to Fig. 1, but wherein an independent shoestring passes second fastener element 9 as line, has formed the shoestring part 7 and 8 that extends to second of adjustable clearance from second fastener element 9.According to a concrete device of submission invention, two shoestring parts 7 are passed the eyelet of second of adjustable clearance with 8 as line.Shoestring 7 extends to first from second face of adjustable clearance, has formed the shoestring part 7a across adjustable clearance, and the far-end of shoestring 7a is bound up on first of adjustable clearance.The far-end of second shoestring 8 is bound up on second of adjustable clearance.Go out as shown in Figure 18 like that, to fastener element 6, keep the deflated state between first and second of adjustable clearance by fastening fastener element 9.
With reference now to Figure 19 show the novel concrete device of present submission invention, wherein tie down device comprises two shoestrings, wherein one is passed second fastener element 9 as line, formation extends to the shoestring part 7 of second of adjustable clearance ' and 8 from second fastener element 9, another end passes the eyelet on second top of adjustable clearance as line, forms first shoestring part 7 " and the 7a that extends to adjustable clearance.Article two, shoestring part 7 ' and 7 " by on second of second fastener element 9 and adjustable clearance between the eyelet knot 10 of part fasten together, replaced the shoestring part 7 in Figure 17.This makes the wearer can at an easy rate shoestring be adjusted to the length that is fit to own double-legged size, when shoes are fastened, can make between second fastener element 9 and first fastener element 6 and adjust better simultaneously.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 7,7a, the tension force on 8 cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 (is showed) to fastener element 6.When fastener element 9 fastenings were on fastener element 6, the shoes that the image scale standard is tied the shoelace were the same, and knot 10 is generally all located at the shoes aperture position of shoes.
With reference now to Figure 20 show the novel concrete device of present submission invention, wherein tie down device comprises an independent shoestring that passes second fastener element 9 as line, formed the shoestring part 7 and 8 that all extends to second of adjustable clearance from second fastener element 9, fasten in the adjustable clearance bottom with 8 far-end at this shoestring part 7a and to be in the same place, form shoestring part 11.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring part 7,7a, the tension force on 8 and 11 cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 (is showed) to fastener element 6. Shoestring part 7a and 8 can fasten and form shoestring part 11 together by fastening means 12 arbitrarily, for example by using clip, similar means such as nail.Shoestring part 7a and 8 also can be bound together and form single or appear to single shoestring part 11, just as what Figure 20 showed.
With reference now to Figure 21 show the novel concrete device of present submission invention, be similar to Figure 19, but wherein tie down device comprises an independent shoestring, one end passes second fastener element 9 as line and has formed shoestring part 7 ' and 8, the other end passes the eyelet on second top of adjustable clearance as line, form shoestring part 7 " and 7a, the far-end in this shoestring part 7a and 8 connects in the adjustable clearance bottom, has formed a new shoestring part 11.In addition, called after 7 ' and 7 " two open ends of shoestring part, fasten together by the knot 10 of part between second fastener element 9 and second top eyelet of adjustable clearance, replaced shoestring part 7.
In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 7 ', 7 ", 7a, the tension force on 8 and 11 causes the deflation between first and second of adjustable clearance, as Figure 22 showed, fastening fastener element 9 was to fastener element 6.When fastener element 9 fastenings were on fastener element 6, the shoes that the image scale standard is tied the shoelace were the same, and knot 10 is generally all located at the welt position of shoes.
With reference now to Figure 23 show the novel concrete device of present submission invention, wherein tie down device comprises that independent one is passed the shoestring of second fastener element 9 as line, has formed the shoestring part 7 and 8 that all extends to second of adjustable clearance from second fastener element 9.According to a concrete device of submission invention, wherein first of adjustable clearance and second face all comprise two eyelets, and eyelet bottom top eyelet and, shoestring part 7 and 8 far-end all are bound up on first of adjustable clearance.In this concrete device, shoestring part 7 is still tied the jail on first bottom eyelet of adjustable clearance, but the far-end of shoestring part 8 is by second bottom eyelet, extend to first from second face of adjustable clearance, form first the top eyelet shoestring part 8a that is bound up on adjustable clearance.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring part 7,8,7a, the tension force on the 8a cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 is to fastener element 6.
With reference now to Figure 24 show the novel concrete device of present submission invention, be similar to Fig. 7, but wherein tie down device comprises an independent shoestring that passes second fastener element 9 as line, shoestring part 7 and 8 have been formed, wherein second bread of adjustable clearance contains three eyelets, and first bread contains two eyelets.In this concrete device, shoestring part 7 and 8 is since second fastener element 9, by second top of adjustable clearance and middle eyelet, extends to respectively on first of adjustable clearance, and formation is across the part 7a and the 8a of adjustable clearance.The far-end of shoestring part 8a is bound up on first the bottom eyelet.Shoestring part 7a passes first top eyelet as line, turns back second from first extension, forms the part 7b across adjustable clearance, and the far-end of shoestring part 7b is bound up on second the bottom eyelet.
As shown in Figure 25, in order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring 7,8,7a, the tension force on 7b and the 8a causes the deflation between first and second of adjustable clearance.By fastening fastener element 9 to fastener element 6, keep deflated state.
With reference now to Figure 19 show the novel concrete device of present submission invention, be similar to Figure 24, but wherein tie down device comprises two shoestrings, wherein one is passed (or fastening) second fastener element 9 as line, forms shoestring part 7 ' and 8.In addition, called after 7 ' and 7 " two openends of shoestring part, by the knot 10 of part between second fastener element 9 and second top eyelet of adjustable clearance, fasten together, replaced shoestring part 7.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring part 7 ', 7 ", 7a, 7b, 8 and 8a on tension force, cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 (is showed) to fastener element 6.When fastener element 9 fastenings on fastener element 6, the shoes that the image scale standard is tied the shoelace are the same, the welt position that knot 10 is generally all located at shoes.
With reference now to Figure 27 show the novel concrete device of present submission invention, be similar to Figure 26, but wherein the far-end of shoestring part 7b and 8a interconnects near the bottom near adjustable clearance, forms a new shoestring part 11.In this concrete device, called after 7 ' and 7 " two openends of shoestring part, by the knot 10 of part between second fastener element 9 and second top eyelet of adjustable clearance, fasten together.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring part 7 ', 7 "; 8,7a, 7b, the tension force on the 8a and 11; cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 is to fastener element 6, as what Figure 28 showed.
With reference now to Figure 29 show the novel concrete device of present submission invention, be similar to Figure 10, but wherein tie down device comprises an independent shoestring that passes second fastener element 9 as line, shoestring part 7 and 8 have been formed, wherein second bread of adjustable clearance contains four eyelets, and first bread of adjustable clearance contains three eyelets.Article two, shoestring part 7 and 8 is since second fastener element 9, and by second top of adjustable clearance and second eyelet, intersection extends on first respectively, forms part 7a and 8a across adjustable clearance.Shoestring part 7a passes the eyelet on first top as line, turns back second from first extension, forms shoestring part 7b.Shoestring part 7b passes the 3rd eyelet since second top as line, extends to first again, forms shoestring part 7c, and the far-end of shoestring part 7c is bound up on first of adjustable clearance.Shoestring part 8a passes first eyelet as line, turns back second from first extension, forms part 8b.The far-end of shoestring part 8b is bound up on first of adjustable clearance.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring part 7,8,7a, 7b, 7c, the tension force on 8a and the 8b causes the deflation between first and second of adjustable clearance.By fastening fastener element 9 to fastener element 6, keep deflated state (not showing).
With reference now to Figure 30 show the novel concrete device of present submission invention, be similar to Figure 29, but wherein tie down device comprises two shoestrings, wherein one is passed second fastener element 9 as line, forms shoestring part 7 ' and 8.In addition, called after 7 ' and 7 " two openends of shoestring part, by the knot 10 of part between second fastener element 9 and second top eyelet of adjustable clearance, fasten together.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring part 7 ', 7 "; 7a, 7b, 7c, 8; tension force on 8a and the 8b, cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 (is showed) to fastener element 6.
With reference now to Figure 31 show the novel concrete device of present submission invention, be similar to Figure 30, but wherein tie down device comprises a shoestring, wherein second bread of adjustable clearance contains four eyelets, first bread of adjustable clearance contains three eyelets, but wherein the far-end of shoestring part 7c and 8b interconnects near the bottom near adjustable clearance, forms a new shoestring part 11.In this concrete device, called after 7 ' and 7 " two openends of shoestring part, by the knot 10 of part between second fastener element 9 and second top eyelet of adjustable clearance, fasten together.In order to fasten shoes, draw fastener element 9 to first face of shoes, by shoestring part 7 ', 7 ", 7a; 7b, 7c, 8,8a; the tension force on the 8b and 11 cause the deflation between first and second of adjustable clearance, and fastening fastener element 9 are to fastener elements 6, as what Figure 31 showed.
Should be noted that some feature in order to show and to describe to invent, drawing is not that ratio according to reality provides.
The description of schematic diagram and front is not the unique form of expression about structure of the present invention and method of operating.Clearly, to those skilled in the art, set out according to spirit of the present invention and essence and can make various corresponding corrections and variation.Although used specific clause, only have generally with the meaning of describing and unrestricted purpose, relevant scope of the present invention is described in following claims.

Claims (9)

1, a kind of is footwear apparatus, comprising:
An adjustable clearance that is defined in the upper region top, the adjustable clearance of shoes comprises first, second, a bottom vamp and an open top face;
The fastener that comprises at least two elements that cooperatively interact, that is: first element and second element, wherein said first element are to be bound up on first of described adjustable clearance; And
Have a shoestring at least, described at least one shoestring has the two ends of mutual fastening between described second fastener element and described adjustable clearance described second;
Wherein, described have at least a shoestring to be meant as line to pass an opening on described second fastener element, form at least one shoestring part, and described shoestring part extends to second of wherein said adjustable clearance from described second fastener element;
Wherein, described at least one shoestring partly is meant from described second face of described adjustable clearance and extends to described first of described adjustable clearance;
Wherein, draw described second fastener element by first face to described adjustable clearance, described adjustable clearance causes the deflation between described first and described second; Simultaneously wherein, described second fastener element keeps described contraction state by being attached to described first fastener element.
2, according to claim 1 is footwear apparatus, and wherein, the described two ends of described at least one shoestring by a clone tightly together.
3, according to claim 2 is footwear apparatus, and wherein, described second fastener element is bound up on described first fastener element, and described knot is positioned at the described open top face of described adjustable clearance.
4, according to claim 1 is footwear apparatus, wherein, described at least one shoestring comprises two shoestrings, wherein said two shoestrings, first end of every shoestring interconnects between described second fastener element and described adjustable clearance described second, and second end of every shoestring is bound up near the bottom section of described adjustable clearance.
5, according to claim 4 is footwear apparatus, and wherein, first end of described shoestring by a clone tightly together.
6, according to claim 4 is footwear apparatus, and wherein, second end of described shoestring is held together the shoestring of forming a prolongation in the bottom of adjustable clearance.
7, according to claim 1 is footwear apparatus, wherein, has shoestring part at least from turn back described second of described adjustable clearance of described first extension of described adjustable clearance.
8, according to claim 7 is footwear apparatus, wherein, has at least shoestring part to extend to described first of described adjustable clearance from described second face of described adjustable clearance once more.
9, according to claim 1 is footwear apparatus, wherein, first end of described shoestring, from a described part that is passed in the shoestring of the described opening on described second fastener element as line, begin to extend, second end of described shoestring extends to a part of described first shoestring there from described second face of described adjustable clearance, begins to extend.
CN200810210182.XA 2007-10-22 2008-08-29 Apparatus for fastening a shoe Pending CN101416803A (en)

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US11/976,104 US20090100649A1 (en) 2007-10-22 2007-10-22 Apparatus and method for fastening a shoe

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