CN106136447B - Water shoes with anti-skid structure - Google Patents
Water shoes with anti-skid structure Download PDFInfo
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- CN106136447B CN106136447B CN201510137135.7A CN201510137135A CN106136447B CN 106136447 B CN106136447 B CN 106136447B CN 201510137135 A CN201510137135 A CN 201510137135A CN 106136447 B CN106136447 B CN 106136447B
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- mentioned
- vamp
- sole
- sole part
- adsorption section
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Classifications
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B5/00—Footwear for sporting purposes
- A43B5/08—Bathing shoes ; Aquatic sports shoes
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B13/00—Soles; Sole-and-heel integral units
- A43B13/02—Soles; Sole-and-heel integral units characterised by the material
- A43B13/12—Soles with several layers of different materials
- A43B13/122—Soles with several layers of different materials characterised by the outsole or external layer
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B13/00—Soles; Sole-and-heel integral units
- A43B13/14—Soles; Sole-and-heel integral units characterised by the constructive form
- A43B13/18—Resilient soles
- A43B13/181—Resiliency achieved by the structure of the sole
- A43B13/184—Resiliency achieved by the structure of the sole the structure protruding from the outsole
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B13/00—Soles; Sole-and-heel integral units
- A43B13/14—Soles; Sole-and-heel integral units characterised by the constructive form
- A43B13/22—Soles made slip-preventing or wear-resisting, e.g. by impregnation or spreading a wear-resisting layer
- A43B13/223—Profiled soles
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B13/00—Soles; Sole-and-heel integral units
- A43B13/14—Soles; Sole-and-heel integral units characterised by the constructive form
- A43B13/22—Soles made slip-preventing or wear-resisting, e.g. by impregnation or spreading a wear-resisting layer
- A43B13/223—Profiled soles
- A43B13/226—Profiled soles the profile being made in the foot facing surface
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- Health & Medical Sciences (AREA)
- General Health & Medical Sciences (AREA)
- Physical Education & Sports Medicine (AREA)
- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Materials Engineering (AREA)
- Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
Abstract
The present invention relates to the shoes that wearing feeling is excellent, and the shoes using upper comfort and safety can be especially improved in the more place of moisture, and the present invention provides the water shoes with anti-skid structure, and the above-mentioned water shoes with anti-skid structure includes:Vamp is configured to cover instep from upside;Inner sole, with being connected on the downside of above-mentioned vamp;And sole part, it is combined in a manner of bonding with above-mentioned inner sole and vamp, and it is supported in bottom surface, above-mentioned sole part is arranged with multiple adsorption sections, and above-mentioned adsorption section is by being tightly attached to bottom surface in peripheral side and the inner cup portion of adsorption capacity is provided by compression and being formed in the protrusion that protrudes downwards of central side of above-mentioned inner cup portion.
Description
Technical field
The present invention relates to shoes, more particularly to the shoes that wearing feeling is excellent, the energy especially in the more place of moisture
Enough shoes improved using upper comfort and safety.
Background technology
Shoes can buffer the impact generated during walking, and the foot of pedestrian can be protected from from external injury,
Most people can wear shoes.
Typically, this shoes by with the shape of foot it is corresponding in a manner of in bottom form midsole, and to cover
The mode of lid foot is combined to be formed in upside with vamp.
In recent years, as consumer promotes the attention rate of fashion and health, various types, shape or material are proposed
Shoes.As the representative material of shoes, skin, fiber or synthetic resin etc. can be used.
Leather shoes can preferably keep shape, and therefore, even if often wearing, shape will not occur to change greatly, but skin
Footwear dress is inconvenient, and the damage of heel or toe portion can be frequently resulted in during walking, in terms of gas permeability
There are shortcomings.
The walking shoes or sport footwear that the fiber or synthetic resin material being made of relatively soft material are formed, although dress
Sense is comfortable, but while often wearing can deform, there are durability it is poor the problem of.
In order to improve shortcoming possessed by various shoes as described above, it is made that various trials, but be also difficult to push away at present
Go out simultaneously to meet convenience, durability, comfort shoes.
On the one hand, it is proposed the shoes that the high material of the thin and flexible property of thickness is formed in recent years, on swimming pool or seashore
Wait places easy to use.
But this shoes focus on water proofing property, when moisture enters the inside of shoes, not only interfere wearing feeling,
And due to often being used in the more place of moisture, the safety accident caused by skidding inevitably occurs.
Invention content
The present invention is to propose to solve the above-mentioned problems, can either be easy to arrange the purpose of the present invention is to provide one kind
The water shoes with anti-skid structure of safety when perspiring and water, and can be lifted at walking on the more ground of moisture.
The present invention provides water shoes, and above-mentioned water shoes includes:Vamp is configured to cover instep from upside;Inner sole, it is and above-mentioned
It is connected on the downside of vamp;And sole part, it is combined in a manner of bonding with above-mentioned inner sole and vamp, and be supported in bottom
Face, above-mentioned sole part are arranged with multiple adsorption sections, and above-mentioned adsorption section is by being tightly attached to bottom surface in peripheral side and providing suction by compression
It the inner cup portion of attached power and is formed in the protrusion that protrudes downwards of central side of above-mentioned inner cup portion.And then in the more field of moisture
In activity safety be improved with convenience.
Preferably, the periphery of the inner cup portion of above-mentioned adsorption section is configured at downside compared to the lower end of protrusion.
Above-mentioned adsorption section can in the contact process with bottom surface, compressed while being in contact with the periphery of inner cup portion from
And adsorption capacity is provided, and it can be during the loading of foot be moved, with the increase of pressure, protrusion is in contact with bottom surface
Desorb power simultaneously.
Above-mentioned sole part can have connecting portion and opening portion, wherein above-mentioned connecting portion makes the mutual phase in the upside of adsorption section
Connection;Above-mentioned opening portion is vertically formed through between connecting portion.And then drainage is improved.
Above-mentioned sole part can have inlay, be formed as plate morphology, with across front-rear direction, and both sides be extended with it is more
A portion, the bottom surface of above-mentioned inlay can be corresponding with the height of the lower end of adsorption section.
Above-mentioned sole part can have the side of sidewall portion at the edge for the arrangement for forming adsorption section, in the company adjacent with above-mentioned inlay
Opening portion can be formed between socket part, filling part can be formed between the connecting portion adjacent with side of sidewall portion.And then draining can be had both
Property and stability.
Also, above-mentioned sole part can centered on an adsorption section and by it is radial it is equidistant in a manner of by six companies
Socket part connects six adsorption sections and forms the base unit of hexagonal form.And then, it is possible to provide uniform adsorption capacity.
Preferably, above-mentioned vamp is connected with inner sole by the opposite state in corner and in a manner of single-piece sewing between each other
It connects.
The present invention may also include rake portion, be extended to form to the front side of above-mentioned sole part, can push flow open in water.
It according to the present invention, is made of light material, and with the structure that can simplify production technology, therefore, can both carry
High production rate can also provide the shoes optimized in terms of feet shape and action.
Also, the present invention utilizes adsorption capacity, to prevent the slipping phenomenon that can occur in the more place use of moisture, into
And safety can be promoted, and in the gait processes of foot with the variation of pressure knot that adsorption capacity may be released from
Structure so that ease of use maximizes.
Description of the drawings
Fig. 1 is the stereogram for representing the water shoes with anti-skid structure of the present invention.
Fig. 2 is to represent that the bonding state of vamp and sole part is looked up in the water shoes with anti-skid structure of the present invention
Figure.
Fig. 3 is the orthogonal view of the water shoes with anti-skid structure of the present invention.
Fig. 4 is the bottom view of the water shoes with anti-skid structure of the first embodiment of the present invention.
Fig. 5 is the bottom view of the water shoes with anti-skid structure of the second embodiment of the present invention.
Fig. 6 is the bottom view of the water shoes with anti-skid structure of the third embodiment of the present invention.
Fig. 7 is the vertical view for the patent part side for representing the water shoes with anti-skid structure of the present invention.
Fig. 8 is the bottom view of the embodiment in the insole portion of the water shoes with anti-skid structure of the present invention.
Specific embodiment
Hereinafter, the water shoes with anti-skid structure of the present invention is described in detail with reference to the accompanying drawings.
The water shoes of the present invention is to represent to have flexibility and outstanding with the close property of foot, and with aftermentioned anti-Slipped Clove Hitch
The patch foot type shoes of structure and discharge structure, so that the ground such as brook, swimming pool, the seashore more than the water use.That is, the water shoes of the present invention
Concept allows for the usability in the more place of moisture and defines, and can have both upper surface water proofing property, bottom discharge
And bottom surface adsorptivity, by using " water (the Aqua) " term for representing water, water shoes is defined with functional meaning.
The water shoes with anti-skid structure of concept according to the present invention, consists essentially of:Sole part is configured at bottom, tool
There is adsorption structure, to prevent from skidding on ground;Vamp is configured to from the upside for covering above-mentioned sole part;Inner sole
(insole), it is combined in a manner of sewing with above-mentioned vamp, and in bottom surface side in a manner of bonding and the upper surface of sole part
It is combined.
Sole part can be in various forms and size according to the type of shoes, when being applicable in idea of the invention, not limit
In aftermentioned explanation and attached drawing.It, will be opposite on the basis of the state stood in a manner that both feet are opposite in the explanation of the present invention
Side is defined as inside, and opposite to that side is defined as outside.
But the purposes of the water shoes with anti-skid structure of the invention might not be limited to the example above.
Fig. 1 is the stereogram for the water shoes with anti-skid structure for representing the embodiment of the present invention, and Fig. 2 is bottom view.
The present invention is substantially made of since upside vamp 100, inner sole and sole part 300.
Sole part 300 is configured by upward collateral spike bottom and in a manner of being in contact with bottom surface to downside, this sole part
300 can be made of natural rubber or synthetic resin material, to improve frictional force, but be not limited by this.
Within the concept of the invention, proposed about the material for forming whole shoes has light weight compared to existing shoes
The concept of change feature, above-mentioned sole part 300 may be selected from the synthetic resin material that can be molded, thermoplastic elastomer (s)
(TPE), natural rubber material or synthetic rubber material.
Preferably, above-mentioned sole part 300 supports overall structure, and compared to other positions, has high-durability, because
This, the thickness of above-mentioned sole part 300 is more than the thickness of above-mentioned vamp 100 and inner sole 200.
This sole part 300 is broadly divided into the bottom on support ground and surrounds the side wall of the side of the downside of vamp 100
Position in order to realize the reinforcing of lightweight shoes, can form the shape swelled and be recessed up and down at side wall position.
The sole part 300 of the present invention has bottom adsorption structure, be lifted at that moisture is more or smooth earth on activity
Property and safety, but this adsorption structure can be a kind of vacuum suction cup body structure.Related preferred embodiment will be in below Fig. 4
Explanation in refer to.
On the whole in the form of cladding instep and instep, there is vamp 100 opening portion that can pass in and out foot (not mark for upside
Note).Preferably, the outstanding light material of the materials'use retractility of this vamp 100, to meet the general of the lightweight shoes of the present invention
It reads, but in view of retractility, neoprene (Neoprene) material or terylene (Polyspan) material can be used.
By the retractility of this vamp 100, it is improved with the close property of instep and instep, during walking, with
The deformation of foot, the soft deformation therewith naturally of vamp 100, therefore, has the advantages that improve with the associative perception of foot.
Above-mentioned vamp 100 without the technique being generally combined immediately with sole part 300, but first with inner sole
200 are combined, in fig. 2 it is shown that the bonding state of vamp and inner sole.
Within the concept of the invention, vamp 100 is combined with inner sole 200 in a manner of sewing, to promote light weight
With the stability of combination, sole part 300 and the bottom surface of inner sole 200 are bonding simultaneously, while the side wall position of sole part 300
Inner face and vamp 100 downside outside also formed and combine with bonding mode together.
With reference to Fig. 2, further specific observation, the lower end side of vamp 100 is along the outer peripheral edge of inner sole 200 and with sewing
Mode be combined.
In previous ankle socks production process, common practice is as follows, that is, so that facing towards the side in outside in vamp
In a state that formula is turned up, make to be equivalent to the bottom reversed of inner sole, in the bottom surface of the lower end side peripheral surface and bottom of vamp
It sews in the state of circumferential lateral surface contact, is used after the vamp that turns up again in a manner that sewing face is not exposed.
According to the vamp of this prior art and the combination of bottom, although the ending in outside processes no big problem,
But it is protruded in the corner part that inner face is sewn, wearing feeling can according to circumstances occur there are problem to sole or instep
Cause the situation of actual bodily harm.Also, also there is the problem of production technology is also very complicated.
In the present invention, it is contemplated that this problem, it is proposed that vamp 100 is with inner sole 200 with single-piece technique (One
Piece Pattern) sewing combination.That is, so that the corner of the downside end of vamp 100 and inner sole 200 it is outer
The adjacent mode of peripheral angle is configured, and position adjacent in plane is connected using sewing thread in a manner of the zigzag of upper and lower directions
It connects, the combination of vamp 100 and inner sole 200 is completed with a sewing technology.At this point, compared to existing mode, not only make
It is simplified as technique, and when wearing, drop or protruding parts are not present in connecting portion, and then wearing feeling gets a promotion.
Above-mentioned vamp 100 is defined as connecting portion 210 with the connecting portion that inner sole 200 is stitched, as described below, above-mentioned company
Socket part 210 is bonded in the inner circumferential side of sole part 300 without exposed.
On the one hand, since above-mentioned inner sole 200 is in direct contact sole, it is thereby possible to select using having outstanding wear
The material of sense.Preferably, it is contemplated that the moisture absorption of sweat or moisture or drainage, above-mentioned inner sole 200 can be multiple by being formed with
The material of gap or through hole is formed, thus, it is preferable that using the synthetic fibers material with sieve form, but is not limited
It is fixed.Diversified forms can be used in sense of touch and draining or moisture pick-up properties in view of sole, above-mentioned sieve form.As described below, it is this
Sieve form provides drainage together with the interconnecting part in insole portion that the opening portion of sole part 300 330 and supplement have.
In the present invention, sole part 300 and vamp 100 and inner sole 200 are combined with bonding mode, and due to
Using light material, it is considered as the promotion of the integrated support performance by sole part 300.
For this purpose, above-mentioned sole part 300 includes bottom and side wall position, side wall position forms bending shape.
As shown in Figure 1, the side wall position of sole part 300 may include at the upwardly projecting position of preceding heel and rear
The upwardly projecting position of heel.
The protrusion and recessed portion of sole part 300 as described above are crossed, in lightweight shoes, form, and energy can either be kept
Enough corresponding deformations easily realized with the natural trend of body and generated, and then with wearing feeling and durability can be promoted
Advantage.
Also, in view of above-mentioned durability, in the present invention, in vamp 100 front vamp (not marking Ref. No.) and
Rear vamp 120 can be further combined.
It is made of in view of vamp 100 the outstanding material of retractility, above-mentioned front vamp and rear vamp 120 are played in phase
More positions to stress can either inhibit retractility, and can improve the work to the repellence of external impact to a certain extent
With it is therefore preferred that front vamp and rear vamp are made of compared to vamp 100 more rigid material.For example, when upper
When stating vamp 100 and being made of neoprene material, front vamp and rear vamp 120 can be by the materials structures such as cloth, skin, synthetic fibers
Into.
Above-mentioned front vamp has the bending section of side bending forwards, and front footwear at the position for being configured with third toe bone
The rear side lines in face are formed as the portion forms of Tai Ji shape.At this point, actually by foot it is wide on the basis of from the point of view of, big mother's toe
Width be noticeably greater than the width of other toes, therefore, bending section is configured in the form of deflection outward.
Above-mentioned rear vamp 120 makes the minimizing deformation of taking on/off shoes period of the day from 11 p.m. to 1 a.m rear side, and weight plays when concentrating on heel
Reinforcement effect the phenomenon that heel lift and is strengthened to the repellence of external impact before front vamp is played when preventing walking.
On the one hand, above-mentioned rear vamp 120 can substantially be formed as from sole part 300 to the opening portion side of vamp 100 certainly
The form that rear extends towards upper and lower directions, what at rear, the upper end side of vamp 120 may be configured with that side further up protrudes prolongs
Extending portion 130.
Above-mentioned extension 130 can be dominated by hand, can improve the convenience of the taking on/off shoes period of the day from 11 p.m. to 1 a.m.
This extension 130 and rear vamp 120 are integrally-formed, it is preferable that such as front vamp, in a manner of sewing with
The upper surface of vamp 100 is combined, but it is not excluded that the various combinations such as bonding mode or hot melting way.
Such as front vamp of rear vamp 120, is used to support the rear side of vamp 100 being made of soft materials, it is contemplated that
Durability, it is preferable that formed in a manner that the width from downside to left and right directions is maximum.
As described above, rear vamp 120 is configured with extension 130 in upper end side, there is the structure that can be held, in order to
It is combined with vamp 100, the mode that rear perforation forward can be used is formed with rear sewing portion.
This front vamp with rear vamp 120 vamp 100 before inner sole 200 is combined to sew in advance
Mode is combined, and when being combined by connecting portion 210, can be sewed simultaneously, is combined in particular, single-piece sewing mode can be used.
On the one hand, ring portion (Fig. 7 of the form of the upper end side of cladding opening portion can be further configured in above-mentioned vamp 100
140), to prevent from damaging caused by Reusability in the opening portion side passed in and out for foot.
Fig. 3 represents the section of the lightweight shoes of the present invention, is represented in particular in be configured with the second protrusion the one of front side
The form that side is cut along left and right directions.
As described above, when vamp 100 and inner sole 200 are with the adjacent state in mutual corner and by such as single-piece work
Skill is applied when the connecting portion 210 of the mode of sewing is connected in the lower outer periphery of the bottom surface of inner sole 200 and vamp 100
There is joint portion 400, above-mentioned joint portion 400 can be such as binder material.Certainly, above-mentioned joint portion 400 is coatable in sole
The upside in portion 300 can be simultaneously coated on vamp 100 and inner sole 200 and sole part 300.
As a result, by joint portion 400, inner sole 200 is combined with sole part 300, vamp 100 and 300 phase of sole part
With reference to, and the connection status in the connecting portion 210 of inner sole 200 and vamp 100 can further be strengthened.
In the case, joint portion 400 is formed in the inner surface of above-mentioned protrusion, completion and footwear in each protrusion
The combination in face 100.
Insole portion 500 can be addedly configured in the upside of above-mentioned inner sole 200, with Promoting Layered Buffer performance with feeling,
This insole portion 500 and the bottom surface of foot are in direct contact, it is possible to provide drainage performance.Related content is explained below.
Addedly, above-mentioned vamp 100 can be combined with reinforcing portion (not shown), above-mentioned reinforcing portion and above-mentioned vamp 100
Exterior side is combined, and for deformation repeatedly, can suitably support foot structure.
This reinforcing portion can play the role of scheduled frame, form scheduled lines outside with this, also can
Support is front and rear or the power of upper and lower directions, above-mentioned reinforcing portion can be used synthetic resin material and be pre-formed, in a manner of sewing or bonding
Mode or welding mode are configured at the outside of vamp 100.
This reinforcing portion as scheduled male and fomale(M&F) can be configured at vamp 100, it is contemplated that aesthetic appearance and reinforcement performance,
Preferably, it is formed with the printing and dyeing method that foams.
At this point, above-mentioned foaming printing and dyeing can be made of polyurethane foam (Poly Urethane Foam) material, in vamp 100
With in the technique before inner sole 200 is combined, vamp 100 can be previously formed in.
For example, form printing and dyeing process face, in the state of covering mold herein, note on the surface for forming the fiber of vamp 100
Enter material of printing and dyeing, above-mentioned reinforcing portion is consequently formed.At this point, when injecting foam ink, three-dimensional shape can be formed, it can be by squeezing
Pressure, is formed with the thickness of uniform thickness or required shape.
The reinforcing portion formed as a result, can be divided into the shape that is vertically configured and forward in the state of shoes molding
The shape of rear direction configuration, the section that upper and lower directions is formed supports the stretching of upper and lower directions as upper and lower reinforcing section, logical
It crosses rear forward to bend and the front and rear reinforcing section with scheduled front and back thickness, supports stretching in the front-back direction.
In the present invention, above-mentioned vamp 100 is formed by the high material of retractility, therefore, has outstanding close property and one
Body-sensing, but there are problems that unsuitable high-intensity exercise, therefore, activity can further improve by reinforcing portion.
Fig. 4 is the bottom view of the water shoes with anti-skid structure of the first embodiment of the present invention.
In the present embodiment, it for convenience, is illustrated on the basis of bottom view, and as shown in Figure 1, to be through on foot
It is illustrated on the basis of the state that sole part 300 is touched with ground later.
As noted previously, as movable in the more environment of the moisture such as swimming pool, for safety and activity, preferably
Ground should have scheduled friction structure, this frictional force can be formed by vacuum suction.
Therefore, sole part 300 can have multiple adsorption sections 310 in bottom.It is in be recessed to upside that above-mentioned adsorption section 310, which is,
The cup body of form, for performing the function of vacuum suction.
When the load applying of body is in sole, adsorption section 310 extends to outer peripheral side due to pressure, and is pressed downwards
Contracting, and then the air inside discharge, as a result, in the inside of adsorption section 310, adsorption capacity is provided, and then can adhere to by negative pressure
In bottom surface.This adsorption capacity can further be strengthened by the moisture film for being configured at bottom surface.
But in the case where keeping adsorption capacity, inconvenience will be generated to walking, for this purpose, above-mentioned adsorption section 310 can be addedly
With for desorbing the structure of power.Related content is explained below.
Above-mentioned adsorption section 310 is formed as round, between each other can be by connecting portion 320 under the diagram state of bottom surface
It is connected, can be formed between above-mentioned connecting portion 320 and be opened for discharging the moisture of internal inner sole 200 and insole portion
Oral area 330.
Above-mentioned adsorption section 310 and the arrangement of connecting portion 320 have washability, it is contemplated that provide uniform adsorption capacity and adaptation
The shoes of various types and form, the adsorption section 310 adjacent with an adsorption section 310 can be with the morphologic arrangements of regular hexagon.
That is, in an adsorption section 310, connecting portion 320 is in equally spaced manner to six peripheral directions with radial shape
Into, connecting portion 320 is combined respectively with adsorption section 310, this each adsorption section being configured in a manner of coating an adsorption section it
Between be also connected by connecting portion 320, to respectively constitute regular hexagon side.
According to this conception of species, in an adsorption section 310, radial six connecting portions 320 are extended with, are arranged with herein
Six adsorption sections, and form a base unit 302.Each adsorption section 310 is respectively formed base unit 302 as center,
Adjacent base unit 302 forms crossover sites in the area of bottom.
The form of above-mentioned connecting portion 320 has washability, it is, however, preferable that closer to adsorption section 310, above-mentioned connecting portion
320 width is bigger.
Also, about the opening portion 330 formed between above-mentioned connecting portion 320, in the first embodiment, when three connections
Portion 320 show greatly triangle it is morphogenetic in the case of, triangle form can be generally formed into.
Side of sidewall portion 301 can be extended to form in the form of coating the periphery of bottom surface of sole part 300 in bottom, can be in bottom surface
Frame on the outside of upper formation.At this time, it is preferable that the peripheral side of the arrangement of base unit 302 is connected with each side of sidewall portion 301, this
Kind form is formed on the whole with integrated injection article.
Hereinafter, the structure of above-mentioned adsorption section will be explained in further detail.
The position for contacting bottom surface is mainly adsorption section 310, thus, it is preferable that compared to connecting portion 320, adsorption section 310 into
One step protrudes downwards.
In this regard, connecting portion 320 is configured in the form of the upside with adsorption section 310 is connected, adsorption section 310 is included to upside
With the morphogenetic inner cup portion 311 of the disk of recess.As described above, above-mentioned inner cup portion 311 is between internal space and bottom surface
Vacuum pressure is formed to provide adsorption capacity.
But in walking, it should be taken into account that inconvenience can be eliminated by desorbing power.It is proposed to this end that it is inhaled for releasing
The supplement of attached power is formed, and this composition for being used to desorb power can protrude shape downwards from the central side of inner cup portion 311
Into protrusion 312.
Preferably, compared to above-mentioned protrusion 312, the peripheral side of inner cup portion 311 is further extended to form to downside, according to
This form, when the scheduled position of sole part 300 starts to contact bottom surface in gait processes, at the beginning in inner cup portion 311
Peripheral side be close to bottom surface, with apply pressure and by compressive deformation, internal air is discharged, to the bottom of inner cup portion 311
Adsorption capacity is provided between bottom surface.During bigger pressure is applied with, it is configured at the protrusion of the central side of inner cup portion 311
312 move downwards and are in contact with bottom surface, and the air for remaining in the inside of inner cup portion 311 is compressed and pushes bottom surface, and then
Power can be desorbed.
The structure that the more position of moisture is proposed there is a situation where skidding when this allows for walking, this skidding are hairs
The raw moment that moisture film is formed in the bottom contact wetting of initial shoes, therefore, in order to persistently be sent out in the contact site with bottom surface
It generates adsorption capacity by inner cup portion 311 during initial pressure is in contact and provided during changing and is moved
It is dynamic so that protrusion 312 is in loading to further being moved downwards, and then natural during the movement of the contact site of bottom surface
Ground desorbs power.
Above-mentioned connecting portion 320 flexibly can be deformed and be distorted, and be connected to keep form between adsorption section 310 by making
Meanwhile also by keeping the form of of adsorption section 310 itself, flexibly change the form of bottom so that generate uniform adsorption capacity.
Above-mentioned opening portion 330 can as the interim storage space for containing moisture to a certain degree in contact process, with
It avoids forming excessive moisture film between bottom surface and inner cup portion 311 in adsorption process.
Fig. 5 is the bottom view of the water shoes with anti-skid structure of the second embodiment of the present invention.
Such as first embodiment, it is arranged with base unit 302 on the whole, in the connecting portion 320 for forming a base unit 302
Between be respectively formed with opening portion 330 in the case of, can provide flexibility on the whole, but can there are rigidity or support force are insufficient
The problem of.
In view of this problem, ruggedized construction is proposed in the second embodiment of the present invention, that is, inlay is further configured
350, promote support force.
The mode in the front-back direction that this inlay 350 is shown across bottom greatly is configured, and scheduled branch portion extends to both sides
It is formed.Above-mentioned adsorption section 310 can be arranged between this inlay 350.
Preferably, above-mentioned inlay 350 is on the whole in plate morphology, the height of bottom surface and the inner cup portion 311 of adsorption section 310
Lower end it is corresponding.As a result, when providing pressure downward, inlay 350 is compressed, can be by adsorption section 310 successfully
Adsorption capacity is provided.
Above-mentioned inlay 350 can be in the annular state for being partially formed at least one concave groove portion 351 and being recessed to upside
Bank portion 352.This groove portion 351 and bank portion 352 provide the space that can store moisture temporarily, make the inlay in plate morphology
350 hydroplaning minimizes.
And, it is preferable that opposite with the heel position for initially forming maximum pressure during walking after touch with ground
The friction portion 370 with multiple protrusions can be further formed in the inlay 350 answered.
On the one hand, in the present embodiment, it is possible to which being selectively arranged with makes open opening portion 330 between connecting portion 320
And for filling the filling part 340 between above-mentioned connecting portion 320, above-mentioned filling part 340 by be further bonded portion 320 it
Between connection relation, and then improve global shape retention property.
The arrangement of this opening portion 330 and filling part 340 have washability, it is, however, preferable that with 350 phase of inlay
Adjacent position is arranged with opening portion 330, so that hydroplaning minimizes, filling is arranged at the position adjacent with side of sidewall portion 301
Portion 340 is to ensure rigidity.
Fig. 6 is the bottom view of the water shoes with anti-skid structure of the third embodiment of the present invention.
About adsorption section 310 and inlay 350, repeated explanation will be omitted.
As described above, the present invention relates to water shoes, in the place that can be dabbled in swimming pool or seashore etc., the application of above-mentioned water shoes
Property maximization.In the third embodiment of the present invention, sole part 300 is with the rake portion further with the flow that can push front side
It is illustrated in case of 360, to improve utility when dabbling.
Above-mentioned rake portion 360 towards the front of sole part 300 in the form of protruding, as shown in the figure, to ensure to put on as user
Shoes can push the predetermined area in the front of flow open when swimming.
In order to promote the function of pushing flow open, it is preferable that above-mentioned rake portion 360 is formed as the form of upward lateral bending folding.
Also, at least one reinforcing rib 361 can also be further configured with, above-mentioned reinforcing rib 361 is in from forward and backward
The timber form of formation, to prevent the deformation in rake portion 360, the thickness of the upper and lower directions of this reinforcing rib 361 to a certain extent
It is formed as the thickness at the remaining position more than rake portion 360.
Preferably, this rake portion 360 is formed with 300 entirety of sole part with integrated injection moulding structure.
Fig. 7 is the vertical view of the opening portion of the water shoes with anti-skid structure of the present invention.
As described above, vamp 100 eliminates segment difference with inner sole 200 by single-piece sewing mode, between each other even
It is connected in socket part 320, is formed with ring portion 140 in the upper end side of vamp 100, above-mentioned ring portion 140 is inserted into or is detached from for foot
Durability and sense of touch get a promotion during opening portion.
Above-mentioned ring portion 140 can be combined in a manner of sewing with vamp 100.
Also, in view of drainage, above-mentioned inner sole 200 can by sieve form, be formed with the material shape in multiple gaps
Into in this case, internal moisture can discharge, but for Promoting Layered Buffer performance from the opening portion 330 of above-mentioned sole part 300
Or wearing feeling, insole portion can addedly be configured in upside.
Fig. 8 is the bottom view for the preferred embodiment for representing above-mentioned insole portion.
Above-mentioned insole portion can by detachably in the upside of inner sole 200 in a manner of be configured, can have can with it is above-mentioned
Multiple interconnecting parts 510 that the opening portion 330 of sole part 300 is connected.Shape, size and the arrangement of this interconnecting part 510 have
Washability.
It is, however, preferable that further having connectivity slot 520, above-mentioned connectivity slot 520 is for connecting portion 510 with connecting
The slot of form between logical portion 510, to improve the drainage in bottom, and this connectivity slot can be formed with scheduled shading.
Central side in insole portion 500, which can protrude downwards, to be formed with to provide and the frictional force of inner sole 200
Rub protrusion 530.
According to the water shoes with anti-skid structure present invention as described above, vamp, inner sole and sole part are by lightweight
Material is formed, and with the structure that can minimize production technology, therefore, productivity can not only be improved, but also can provide by having
The shoes optimized in terms of feet shape and action the advantages of.
Also, by using adsorption capacity, to prevent the slipping phenomenon that can occur in the more place use of moisture, and then
Safety can be promoted, and with the structure that can desorb power with the variation of pressure in the gait processes of foot, is made
Obtain ease of use maximization.
As described above, the present invention is described in detail based on embodiment and attached drawing.But above-described embodiment and attached drawing
The scope of the present invention is not intended to limit, the scope of the present invention is only determined by content recorded in claims of the present invention
It is fixed.
Claims (7)
1. a kind of water shoes with anti-skid structure, wherein, including:
Vamp is configured to cover instep from upside;
Inner sole, with being connected on the downside of above-mentioned vamp;And
Sole part is combined with above-mentioned inner sole and vamp in a manner of bonding, and is supported in bottom surface,
Above-mentioned sole part is arranged with multiple adsorption sections, and above-mentioned adsorption section is by being tightly attached to bottom surface in peripheral side and providing suction by compression
It the inner cup portion of attached power and is formed in the protrusion that protrudes downwards of central side of above-mentioned inner cup portion,
Above-mentioned sole part has inlay, is formed as plate morphology, the bottom surface of above-mentioned inlay and the lower end of above-mentioned adsorption section
It is highly corresponding,
Wherein, the periphery of the inner cup portion of above-mentioned adsorption section is configured at downside compared to the lower end of protrusion,
Wherein, in the contact process with bottom surface, the periphery of inner cup portion is in contact with bottom surface and by being pressed for above-mentioned adsorption section
Contracting is so as to provide adsorption capacity, and during the loading movement of foot, with the increase of pressure, protrusion is in contact with bottom surface
Power is desorbed simultaneously,
Wherein, above-mentioned sole part has connecting portion and opening portion, wherein above-mentioned connecting portion makes the mutual phase in the upside of adsorption section
Connection;Above-mentioned opening portion is vertically formed through between connecting portion, therefore the structure of above-mentioned connecting portion and opening portion can
Enough improve drainage.
2. the water shoes according to claim 1 with anti-skid structure, wherein,
Above-mentioned inlay is across the front-rear direction of above-mentioned sole part, and both sides are extended with multiple portions.
3. the water shoes according to claim 1 with anti-skid structure, wherein, above-mentioned sole part has the row for forming adsorption section
The side of sidewall portion at the edge of row is formed with opening portion, the company adjacent with side of sidewall portion between the adjacent connecting portion of above-mentioned inlay
Filling part is formed between socket part.
4. there is the water shoes of anti-skid structure according to any one of them of claims 1 to 3, wherein, in above-mentioned sole part with one
Centered on a adsorption section and by it is radial it is equidistant in a manner of connect six adsorption sections by six connecting portions and formed hexagonal form
Base unit.
5. the water shoes according to claim 2 with anti-skid structure, wherein, above-mentioned vamp and inner sole between each other with
The opposite state in corner is simultaneously connected in a manner of single-piece sewing.
6. the water shoes according to claim 3 with anti-skid structure, wherein, rake portion is further included, before above-mentioned sole part
Square side extends to form, and can push flow open in water.
7. a kind of water shoes with anti-skid structure, wherein,
Including:
Vamp is configured to cover instep from upside;
Inner sole, with being connected on the downside of above-mentioned vamp;And
Sole part is combined with above-mentioned inner sole and vamp, and is supported in bottom surface,
Above-mentioned sole part is arranged with multiple adsorption sections, and above-mentioned adsorption section is by being tightly attached to bottom surface in peripheral side and providing suction by compression
It the inner cup portion of attached power and is formed in the protrusion that protrudes downwards of central side of above-mentioned inner cup portion,
The periphery of the inner cup portion of above-mentioned adsorption section is configured at downside compared to the lower end of protrusion,
Above-mentioned adsorption section in the contact process with bottom surface, the periphery of inner cup portion be in contact with bottom surface and by by compression so as to
Adsorption capacity is provided, during the loading movement of foot, with the increase of pressure, is solved while protrusion is in contact with bottom surface
Except adsorption capacity,
Above-mentioned sole part has connecting portion and opening portion, wherein above-mentioned connecting portion makes the upside of adsorption section be connected between each other;
Above-mentioned opening portion is vertically formed through between connecting portion, therefore the structure of above-mentioned connecting portion and opening portion can improve
Drainage.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR1020150024180A KR101601673B1 (en) | 2015-02-17 | 2015-02-17 | Aqua shoes having non-slip structure |
KR10-2015-0024180 | 2015-02-17 |
Publications (2)
Publication Number | Publication Date |
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CN106136447A CN106136447A (en) | 2016-11-23 |
CN106136447B true CN106136447B (en) | 2018-07-06 |
Family
ID=55539210
Family Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201590001366.9U Expired - Fee Related CN207531969U (en) | 2015-02-17 | 2015-03-10 | Water shoes with anti-skid structure |
CN201510137135.7A Active CN106136447B (en) | 2015-02-17 | 2015-03-26 | Water shoes with anti-skid structure |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
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CN201590001366.9U Expired - Fee Related CN207531969U (en) | 2015-02-17 | 2015-03-10 | Water shoes with anti-skid structure |
Country Status (12)
Country | Link |
---|---|
US (2) | US20180027920A1 (en) |
EP (1) | EP3258804B1 (en) |
JP (1) | JP6687643B2 (en) |
KR (1) | KR101601673B1 (en) |
CN (2) | CN207531969U (en) |
AU (1) | AU2015383268A1 (en) |
IL (1) | IL253744A0 (en) |
MX (1) | MX2017010483A (en) |
PH (1) | PH12017501485A1 (en) |
RU (1) | RU2677403C1 (en) |
SG (1) | SG11201706344XA (en) |
WO (1) | WO2016133237A1 (en) |
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USD861302S1 (en) * | 2011-10-24 | 2019-10-01 | Dynasty Footwear, Ltd. | Shoe bottom |
KR101607584B1 (en) * | 2015-11-30 | 2016-03-31 | 주식회사 지티에스글로벌 | Non-slip footwear with flipper |
US11589650B2 (en) * | 2017-08-04 | 2023-02-28 | Stefanie Miller Kwiatkowski | Slip resistant shoe |
KR101925294B1 (en) | 2017-10-17 | 2018-12-05 | 동명대학교산학협력단 | A heat-resistant boot with improved anti-slip performance |
KR102109512B1 (en) * | 2019-02-27 | 2020-05-12 | (주)서브원 | Aqua shoes |
CN210611192U (en) * | 2019-04-03 | 2020-05-26 | 霍尼韦尔国际公司 | Footwear outsole with resistance elements |
USD899741S1 (en) * | 2019-05-14 | 2020-10-27 | Nike, Inc. | Shoe |
USD934545S1 (en) * | 2020-12-22 | 2021-11-02 | Nike, Inc. | Shoe |
USD1029469S1 (en) | 2021-03-24 | 2024-06-04 | Nike, Inc. | Shoe |
USD1056424S1 (en) * | 2024-07-25 | 2025-01-07 | Yonghua Li | Beach shoe |
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Also Published As
Publication number | Publication date |
---|---|
JP2018505033A (en) | 2018-02-22 |
CN207531969U (en) | 2018-06-26 |
RU2677403C1 (en) | 2019-01-16 |
KR101601673B1 (en) | 2016-03-10 |
US20180027920A1 (en) | 2018-02-01 |
AU2015383268A1 (en) | 2017-10-05 |
MX2017010483A (en) | 2018-01-16 |
SG11201706344XA (en) | 2017-09-28 |
WO2016133237A1 (en) | 2016-08-25 |
PH12017501485A1 (en) | 2018-02-05 |
EP3258804A1 (en) | 2017-12-27 |
EP3258804A4 (en) | 2018-10-03 |
EP3258804B1 (en) | 2020-04-22 |
CN106136447A (en) | 2016-11-23 |
IL253744A0 (en) | 2017-09-28 |
JP6687643B2 (en) | 2020-04-28 |
US20200196702A1 (en) | 2020-06-25 |
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