CN211672681U - Waterproof and anti-skid sole structure - Google Patents
Waterproof and anti-skid sole structure Download PDFInfo
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- CN211672681U CN211672681U CN202020173334.XU CN202020173334U CN211672681U CN 211672681 U CN211672681 U CN 211672681U CN 202020173334 U CN202020173334 U CN 202020173334U CN 211672681 U CN211672681 U CN 211672681U
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Abstract
The utility model provides a can waterproof and skid-proof sole structure, including the sole body, the sole body includes the antiskid body that is formed by the preparation of polyurethane material, it has the protruding edge of top surface to surround to be provided with on the top surface of antiskid body, it has waterproof arch to distribute on the bottom surface of antiskid body, be provided with on the top surface of the antiskid body corresponding with arbitrary waterproof arch and subtract heavy concave part, the appearance that subtracts heavy concave part and waterproof protruding appearance looks adaptation, antiskid body, waterproof arch and subtract heavy concave part are the overall structure of an organic whole system of making, the wall thickness of the casing that is formed by waterproof arch and subtract heavy concave part is the same with the thickness of antiskid body. The utility model has the advantages that: the leakage of the sole is reduced, the waterproof effect is achieved, the sealing performance is good, and the shoe body with light weight and comfortable wearing is favorably manufactured; accumulated water entering the inner cavity of the waterproof bulge can be timely discharged to the outside of the antiskid body from the notch part; and the bottom surface of the waterproof bulge can be additionally provided with an anti-skid lug to further improve the anti-skid effect.
Description
Technical Field
The utility model relates to a sole preparation technical field especially indicates a waterproof and skid-proof sole structure.
Background
The existing Chinese utility model patent with the application number of CN201620388105.3 entitled "an anti-skid rubber sole" discloses an anti-skid rubber sole, which at least comprises a sole main body and an anti-skid part arranged on the bottom surface of the sole main body, wherein the anti-skid part comprises a toe anti-skid part, a front sole anti-skid part, an arch anti-skid part, a rear heel anti-skid part and a heel anti-skid part which are sequentially arranged along the length direction of the sole, the surfaces of the toe anti-skid part and the heel anti-skid part are both concave-convex surfaces, the middle parts of the toe anti-skid part and the heel anti-skid part are both provided with grooves, and the front sole anti-skid part comprises more than 2 first fold line bulges, polygonal friction blocks, a first wear-resistant circular truncated cone; the arch antiskid part comprises an M-shaped bulge and a strip-shaped bulge; the rear heel antiskid part comprises a second fold line bulge, a second wear-resistant circular table and a polygonal wear-resistant block; the sole has an anti-skid structure and a wear-resistant structure which have different shapes and structures, and the wear-resistant structure is mainly concentrated at the position of the front sole and has good anti-skid effect and wear resistance. However, the sole has insufficient height of the protrusions, the waterproof effect is not ideal, and the protrusions of the sole are of a solid structure, so that the sole is heavy in weight, and after the sole is made into a shoe body, the foot is easily rubbed after being worn for a long time, even the foot is foamed, and the use effect is not ideal, so that the structure of the sole needs to be further improved.
Disclosure of Invention
The utility model aims to solve the technical problem that a waterproof and skid-proof sole structure of ability that simple structure, light in weight, waterproof, antiskid are effectual is provided to above-mentioned prior art current situation.
The utility model provides a technical scheme that above-mentioned technical problem adopted does: this ability waterproof and skid-proof sole structure, including the sole body that can be connected with vamp, back group, its characterized in that: the anti-skid sole comprises a sole body and is characterized in that the sole body comprises an anti-skid body made of polyurethane materials, a top surface convex edge capable of being connected with a sole surface is arranged on the top surface of the anti-skid body in a surrounding mode, waterproof protrusions are distributed on the bottom surface of the anti-skid body, weight reducing concave parts are arranged on the top surface of the anti-skid body corresponding to any waterproof protrusion, the shape of each weight reducing concave part is matched with that of the waterproof protrusion, the anti-skid body, the waterproof protrusions and the weight reducing concave parts are of an integrated structure, and the wall thickness of a shell formed by the waterproof protrusions and the weight reducing concave parts is the same as that of the anti-skid body.
As an improvement, the waterproof protrusions can be preferably divided into annular protrusions and U-shaped protrusions, the annular protrusions are distributed in the front of the anti-slip body at intervals, the U-shaped protrusions are located in the rear of the anti-slip body, the openings of the U-shaped protrusions face the front of the anti-slip body, and the outer edges of the U-shaped protrusions and the corresponding side walls of the anti-slip body are located on the same plane or arc surface.
In a further improvement, the outer edge of the annular projection can preferably be located on the same plane or arc surface as the corresponding side wall of the anti-skid body.
Further improved, the annular bulge can be preferably provided with a gap part which can communicate the inner cavity of the annular bulge with the outside of the antiskid body and can discharge accumulated water.
In a further improvement, preferably, the U-shaped protrusion may also be distributed with notch portions.
The improved structure is characterized in that the annular bulge comprises a first bulge, a second bulge and a third bulge, the first bulge, the second bulge and the third bulge are arranged at intervals in the front and at the back, a water outlet channel capable of discharging accumulated water is arranged between the first bulge and the second bulge and between the second bulge and the third bulge respectively, the first bulge is communicated with the first water outlet channel towards the rear part of the antiskid body, the second bulge is provided with two notch parts, the front notches of the two notch parts are positioned at the front part of the second bulge and communicated with the first water outlet channel, the rear notches of the two notches are positioned at the rear part of the second bulge and communicated with the second water outlet channel, the third bulge is communicated with the second water outlet channel towards the front part of the antiskid body, and when the antiskid body is stepped on the accumulated water, the accumulated water in the annular bulge is discharged from the first water outlet channel and the second water outlet channel.
As a modification, non-slip protrusions may be preferably distributed on the bottom surface of the waterproof protrusion.
In a further improvement, the antiskid lugs can be preferably in a rhombus shape, and the distance between adjacent rhombus lugs is 0.8-1.5 mm.
Further improvement, the antiskid lug can be preferably square, and the interval of adjacent square lugs is 3-5 mm.
In a further improvement, the anti-skid bumps can be preferably of a semitransparent solid structure, and the thickness of the anti-skid bumps is 1-3 mm.
Compared with the prior art, the utility model has the advantages of: the waterproof bulge can increase the height of the bottom surface of the shoe, prevent the sole from directly immersing in accumulated water, reduce the leakage of the sole and achieve the waterproof effect, and the anti-skid body and the waterproof bulge are integrally manufactured, so that the manufacture is more convenient, the sealing performance is good, and the weight-reducing concave part is arranged at the corresponding position of the waterproof bulge, so that the weight of the anti-skid body is effectively reduced, and the shoe body with light weight and comfortable wearing is favorably manufactured; the waterproof bulge is provided with the notch part, so that accumulated water entering the inner cavity of the waterproof bulge can be timely discharged to the outside of the anti-skid body from the notch part, and the waterproof effect is more excellent; in addition, the waterproof bulge can play a role in increasing the friction of the bottom surface of the antiskid body, and the bottom surface of the waterproof bulge can be additionally provided with an antiskid lug to further improve the antiskid effect.
Drawings
Fig. 1 is a perspective view of an embodiment of the present invention;
FIG. 2 is a perspective view of FIG. 1 at another angle;
FIG. 3 is a perspective view of a second embodiment;
FIG. 4 is a bottom view of FIG. 3;
fig. 5 is a bottom view of the third embodiment.
Detailed Description
The present invention will be described in further detail with reference to the following embodiments.
As shown in fig. 1 and fig. 2, the waterproof and anti-skid sole structure of the present embodiment includes a sole body capable of being connected with a shoe upper and a heel counter, the sole body includes an anti-skid body 1 made of polyurethane material, a top surface convex edge capable of being connected with the sole surface is arranged on the top surface of the anti-skid body 1 in a surrounding manner, waterproof protrusions are distributed on the bottom surface of the anti-skid body 1, weight-reducing concave portions 11 are arranged on the top surface of the anti-skid body 1 corresponding to any waterproof protrusion, the shape of the weight-reducing concave portions 11 is adapted to the shape of the waterproof protrusions, the anti-skid body 1, the waterproof protrusions and the weight-reducing concave portions 11 are an integrated structure, and the wall thickness of a shell formed by the waterproof protrusions and the weight-reducing concave portions 11 is the same as the thickness of the.
The waterproof bulge is divided into an annular bulge 12 and a U-shaped bulge 13, the annular bulge 12 is distributed in the front of the antiskid body 1 at intervals, the U-shaped bulge 13 is positioned at the rear of the antiskid body 1, the opening of the U-shaped bulge 13 faces the front of the antiskid body 1, and the outer edge of the U-shaped bulge 13 and the corresponding side wall of the antiskid body 1 are positioned on the same plane or arc surface. The outer edge of the annular bulge 12 and the corresponding side wall of the antiskid body 1 are positioned on the same plane or cambered surface. The annular bulge 12 is provided with a gap part 14 which can communicate the inner cavity of the annular bulge with the outside of the antiskid body and can discharge accumulated water. The U-shaped protrusion 13 is also distributed with a gap part 14.
The annular bulge comprises a first bulge, a second bulge and a third bulge which are arranged at a front interval and a rear interval, water outlet channels capable of discharging accumulated water are respectively arranged between the first bulge and the second bulge and between the second bulge and the third bulge, the first bulge is provided with two notch parts facing the rear part of the antiskid body and communicated with the first water outlet channel 17, the second bulge is provided with two notch parts, the front notches of the two notch parts are positioned at the front part of the second bulge and communicated with the first water outlet channel 17, the rear notches of the two notches are positioned at the rear part of the second bulge and communicated with the second water outlet channel 18, the third bulge is facing the front part of the antiskid body and communicated with the second water outlet channel 18, and when the antiskid body steps on the accumulated water, the accumulated water in the annular bulge is discharged from the first water outlet channel 17 and the second water outlet channel 18.
As shown in fig. 3 and 4, a second embodiment of a waterproof and anti-skid sole structure includes a sole body capable of being connected with a shoe upper and a heel part, the sole body includes an anti-skid body 1 made of polyurethane material, a top surface convex edge capable of being connected with the sole surface is arranged on the top surface of the anti-skid body 1 in a surrounding manner, waterproof protrusions are distributed on the bottom surface of the anti-skid body 1, weight-reducing recesses 11 are arranged on the top surface of the anti-skid body 1 corresponding to any waterproof protrusion, the shape of the weight-reducing recesses 11 is matched with the shape of the waterproof protrusions, the anti-skid body 1, the waterproof protrusions and the weight-reducing recesses 11 are an integrated structure, and the wall thickness of a shell formed by the waterproof protrusions and the weight-reducing recesses 11 is the same as the thickness of the anti-skid body 1.
The waterproof bulge is divided into an annular bulge 12 and a U-shaped bulge 13, the annular bulge 12 is distributed in the front of the antiskid body 1 at intervals, the U-shaped bulge 13 is positioned at the rear of the antiskid body 1, the opening of the U-shaped bulge 13 faces the front of the antiskid body 1, and the outer edge of the U-shaped bulge 13 and the corresponding side wall of the antiskid body 1 are positioned on the same plane or arc surface. The outer edge of the annular bulge 12 and the corresponding side wall of the antiskid body 1 are positioned on the same plane or cambered surface. The annular bulge 12 is provided with a gap part 14 which can communicate the inner cavity of the annular bulge with the outside of the antiskid body and can discharge accumulated water. The U-shaped protrusion 13 is also distributed with a gap part 14.
The annular bulge comprises a first bulge, a second bulge and a third bulge which are arranged at a front interval and a rear interval, water outlet channels capable of discharging accumulated water are respectively arranged between the first bulge and the second bulge and between the second bulge and the third bulge, the first bulge is provided with two notch parts facing the rear part of the antiskid body and communicated with the first water outlet channel 17, the second bulge is provided with two notch parts, the front notches of the two notch parts are positioned at the front part of the second bulge and communicated with the first water outlet channel 17, the rear notches of the two notches are positioned at the rear part of the second bulge and communicated with the second water outlet channel 18, the third bulge is facing the front part of the antiskid body and communicated with the second water outlet channel 18, and when the antiskid body steps on the accumulated water, the accumulated water in the annular bulge is discharged from the first water outlet channel 17 and the second water outlet channel 18. Anti-skid lugs are distributed on the bottom surfaces of the waterproof bulges. The anti-skid lugs are square, and the distance between every two adjacent square lugs 15 is 3-5 mm. The anti-skid bumps are of a semitransparent solid structure, and the thickness of the anti-skid bumps is 1-3 mm.
As shown in fig. 5, the waterproof and anti-skid sole structure of the third embodiment includes a sole body capable of being connected with a shoe upper and a heel part, the sole body includes an anti-skid body 1 made of polyurethane material, a top surface convex edge capable of being connected with the sole surface is arranged on the top surface of the anti-skid body 1 in a surrounding manner, waterproof protrusions are distributed on the bottom surface of the anti-skid body 1, weight-reducing concave parts 11 are arranged on the top surface of the anti-skid body 1 corresponding to any waterproof protrusion, the shape of the weight-reducing concave parts 11 is matched with that of the waterproof protrusions, the anti-skid body 1, the waterproof protrusions and the weight-reducing concave parts 11 are an integrated structure, and the wall thickness of a shell formed by the waterproof protrusions and the weight-reducing concave parts 11 is the same as the thickness of the anti-skid body 1.
The waterproof bulge is divided into an annular bulge 12 and a U-shaped bulge 13, the annular bulge 12 is distributed in the front of the antiskid body 1 at intervals, the U-shaped bulge 13 is positioned at the rear of the antiskid body 1, the opening of the U-shaped bulge 13 faces the front of the antiskid body 1, and the outer edge of the U-shaped bulge 13 and the corresponding side wall of the antiskid body 1 are positioned on the same plane or arc surface. The outer edge of the annular bulge 12 and the corresponding side wall of the antiskid body 1 are positioned on the same plane or cambered surface. The annular bulge 12 is provided with a gap part 14 which can communicate the inner cavity of the annular bulge with the outside of the antiskid body and can discharge accumulated water. The U-shaped protrusion 13 is also distributed with a gap part 14.
The annular bulge comprises a first bulge, a second bulge and a third bulge which are arranged at a front interval and a rear interval, water outlet channels capable of discharging accumulated water are respectively arranged between the first bulge and the second bulge and between the second bulge and the third bulge, the first bulge is provided with two notch parts facing the rear part of the antiskid body and communicated with the first water outlet channel 17, the second bulge is provided with two notch parts, the front notches of the two notch parts are positioned at the front part of the second bulge and communicated with the first water outlet channel 17, the rear notches of the two notches are positioned at the rear part of the second bulge and communicated with the second water outlet channel 18, the third bulge is facing the front part of the antiskid body and communicated with the second water outlet channel 18, and when the antiskid body steps on the accumulated water, the accumulated water in the annular bulge is discharged from the first water outlet channel 17 and the second water outlet channel 18. Anti-skid lugs are distributed on the bottom surfaces of the waterproof bulges. The anti-skid lugs are rhombic, and the distance between every two adjacent rhombic lugs 16 is 0.8-1.5 mm. The anti-skid bumps are of a semitransparent solid structure, and the thickness of the anti-skid bumps is 1-3 mm.
Claims (10)
1. The utility model provides a can waterproof and skid-proof sole structure, includes the sole body that can be connected with vamp, back group, its characterized in that: the sole body comprises an anti-skid body (1) made of polyurethane materials, a top surface convex edge capable of being connected with a sole surface is arranged on the top surface of the anti-skid body (1) in a surrounding mode, waterproof protrusions are distributed on the bottom surface of the anti-skid body (1), a weight reducing concave portion (11) is arranged on the top surface of the anti-skid body (1) corresponding to any waterproof protrusion, the shape of the weight reducing concave portion (11) is matched with that of the waterproof protrusion, the anti-skid body (1), the waterproof protrusions and the weight reducing concave portions (11) are of an integrated structure, and the wall thickness of a shell formed by the waterproof protrusions and the weight reducing concave portions (11) is the same as the thickness of the anti-skid body (1).
2. The sole structure according to claim 1, wherein: the waterproof bulge is divided into an annular bulge (12) and a U-shaped bulge (13), the annular bulge (12) is distributed in the front of the antiskid body (1) at intervals, the U-shaped bulge (13) is located at the rear of the antiskid body (1), the opening of the U-shaped bulge (13) faces the front of the antiskid body (1), and the outer edge of the U-shaped bulge (13) and the corresponding side wall of the antiskid body (1) are located on the same plane or arc surface.
3. The sole structure according to claim 2, wherein: the outer edge of the annular bulge (12) and the corresponding side wall of the antiskid body (1) are positioned on the same plane or arc surface.
4. The sole structure according to claim 2, wherein: the annular bulge (12) is provided with a gap part (14) which can communicate the inner cavity of the annular bulge with the outside of the antiskid body and can discharge accumulated water.
5. The sole structure according to claim 4, wherein: and notch parts (14) are also distributed on the U-shaped bulges (13).
6. The sole structure according to claim 5, wherein: the annular is protruding including the first arch, the second arch and the third arch that the interval set up around, and it can discharge ponding to be provided with the outlet channel between first arch and the second arch and between the second arch and the third arch respectively, first bellied breach portion is linked together towards the antiskid body rear portion and with first outlet channel (17), the second arch has two breach portions, and the preceding breach of two breach portions is located the bellied front portion of second and is linked together with first outlet channel (17), and the back breach of two breachs is located the bellied rear portion of second and is linked together with second outlet channel (18), and the bellied breach portion of third is linked together towards the front portion of antiskid body and with second outlet channel (18), and when the antiskid body was stepped on in ponding, ponding in the annular arch was discharged from first outlet channel (17) and second outlet channel (18).
7. The sole structure according to any one of claims 1 to 6, wherein: and anti-skid lugs are distributed on the bottom surfaces of the waterproof bulges.
8. The sole structure according to claim 7, wherein: the anti-skid lugs are rhombic, and the distance between every two adjacent rhombic lugs (16) is 0.8-1.5 mm.
9. The sole structure according to claim 7, wherein: the anti-skid lugs are square, and the distance between every two adjacent square lugs (15) is 3-5 mm.
10. The sole structure according to claim 7, wherein: the anti-skidding lug is a semitransparent solid structure, and the thickness of the anti-skidding lug is 1-3 mm.
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CN202020173334.XU CN211672681U (en) | 2020-02-15 | 2020-02-15 | Waterproof and anti-skid sole structure |
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CN202020173334.XU CN211672681U (en) | 2020-02-15 | 2020-02-15 | Waterproof and anti-skid sole structure |
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