CN213344541U - Anti-skidding women's shoes - Google Patents

Anti-skidding women's shoes Download PDF

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Publication number
CN213344541U
CN213344541U CN202021728481.5U CN202021728481U CN213344541U CN 213344541 U CN213344541 U CN 213344541U CN 202021728481 U CN202021728481 U CN 202021728481U CN 213344541 U CN213344541 U CN 213344541U
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groove
sole
heel
block
clamping
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CN202021728481.5U
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秦杰
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Hangzhou Fuyang Gaoyi Shoes Co ltd
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Hangzhou Fuyang Gaoyi Shoes Co ltd
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Abstract

The utility model relates to an antiskid woman's shoe, it includes vamp, sole, heel, and the lower bottom surface at the vamp is established to the sole, and the lower surface at the sole is established to the heel, and the sole is kept away from one side of heel is equipped with the slipmat, and heel department is equipped with the non slipping spur. This application has the effect that strengthens woman's shoe antiskid performance.

Description

Anti-skidding women's shoes
Technical Field
The application relates to the field of shoes, especially, relate to an antiskid woman's shoe.
Background
The woman's shoe of area on the existing market with heel, especially high-heeled shoes, other ordinary shoes such as heel plate shoes, ball shoes compare, and anti-skidding effect is relatively poor.
Techniques for improving the above problems are presented in the related art, such as the utility model patent with application number CN 201110358188.3: the utility model provides a woman's shoe sole, includes sole basic unit and heel, and the antiskid piece of taking the radial decorative pattern of snowflake is inlayed at the main landing position of sole basic unit at the shoe heel, and the sole divide into plastic layer, foamed rubber layer, TPU layer from the top down in proper order.
In view of the above-mentioned related art, the inventors considered that there was a drawback that the anti-slip effect was still not good enough.
SUMMERY OF THE UTILITY MODEL
In order to improve the still not good enough defect of woman's shoe antiskid effect, this application provides an antiskid woman's shoe.
The application provides a pair of antiskid woman's shoe adopts following technical scheme:
the utility model provides an antiskid woman's shoe, includes the shoes body, sole, heel, the sole is established the lower bottom surface of the shoes body, the sole includes sole portion and rear heel, the heel is established the rear heel of sole, the sole portion of sole is equipped with the slipmat, heel department is equipped with the non slipping spur.
Through adopting above-mentioned technical scheme, slipmat and non slipping spur combined action have strengthened the non-slip properties of woman's shoe.
Preferably, the non-slip mat comprises an elastic layer, a wear-resistant layer and a friction block, wherein the elastic layer is in contact with the sole, and the wear-resistant layer is in contact with one surface of the elastic layer, which is far away from the sole; the elastic layer is provided with a groove, the groove comprises a clamping groove and a connecting groove, the groove width of the clamping groove is larger than that of the connecting groove, and the clamping groove is positioned between the sole and the connecting groove; a through groove is formed in the wear-resistant layer and communicated with the connecting groove; the friction block comprises a clamping portion and a protruding portion, the clamping portion is embedded in the clamping groove, and the upper surface of the clamping portion is in contact with the lower surface of the sole; the protruding part penetrates through the connecting groove and extends into the through groove.
Through adopting above-mentioned technical scheme, the friction block card can not drop in the cavity that sole, elastic layer, wear-resisting layer formed. When stepping on uneven ground, the upward convex ground is clamped in the through groove, so that the sliding probability of the sole and the ground can be reduced. In addition, the elastic layer also improves the wearing comfort of the shoe, and the wear-resistant layer prolongs the service life of the sole.
Preferably, the lower surface of the wear-resistant layer is provided with transverse concave stripes which are arranged at intervals.
Through adopting above-mentioned technical scheme, the wearing layer not only has the effect of protection sole, extension shoes life, still has the frictional force that increases sole and ground to the antiskid performance's of reinforcing woman's shoe effect.
Preferably, a plurality of projections are arranged on the lower surface of the projection of the friction block.
Through adopting above-mentioned technical scheme, increased the roughness on clutch blocks surface to the non-skid property of reinforcing woman's shoe.
Preferably, a cavity is arranged in the anti-skid block, and the heel is positioned in the cavity; the area of the bottom surface of the antiskid block is larger than that of the bottom surface of the heel.
Through adopting above-mentioned technical scheme, the non slipping spur has increased the area of contact of heel and ground, makes the contact of sole and ground more stable to reduce the probability of slipping.
Preferably, the cavity bottom of the cavity is provided with a bottom groove, and the bottom of the heel is embedded in the bottom groove.
By adopting the technical scheme, when the heel is nested in the cavity of the anti-skid block, the heel is not easy to slide in the horizontal direction, and the stability of the anti-skid block is enhanced.
Preferably, a ring sleeve is fixed on the outer peripheral wall of the heel, an upper clamping groove is formed in the upper surface of the ring sleeve, and a lower clamping groove is formed in the lower surface of the ring sleeve; an upper boss and a lower boss are arranged on the cavity wall of the cavity of the anti-skid block, the distance from the lower surface of the upper boss to the upper surface of the lower boss is equal to the thickness of the annular convex part, an elastic upper clamping block is arranged on the lower surface of the upper boss, and an elastic lower clamping block is arranged on the upper surface of the lower boss; the upper clamping block is clamped with the upper clamping groove, and the lower clamping block is clamped with the lower clamping groove.
Through adopting above-mentioned technical scheme, the non slipping spur can be dismantled with the heel and be connected, and when the heel nestification was in the non slipping spur cavity, go up boss and lower boss with ring cover card in the centre, make the slip of the difficult vertical direction that takes place of heel and non slipping spur, go up joint piece and last joint groove, joint between lower joint piece and the lower joint groove, make heel and non slipping spur difficult emergence relative rotation to the stability of non slipping spur has been strengthened.
Preferably, the outer wall in the middle of the antiskid block is provided with an annular groove.
Through adopting above-mentioned technical scheme, the human design of annular groove laminating, when loading and unloading non slipping spur with the finger card in annular groove, convenient operation.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the elastic layer on the non-slip mat improves the wearing comfort of the shoe, the wear-resistant layer on the non-slip mat prolongs the service life of the sole, and the friction blocks on the non-slip mat increase the friction force between the sole and the ground, so that the non-slip performance of the women's shoes is enhanced;
2. the anti-skid performance of the protective pad is further enhanced by the aid of the transverse convex stripes and the transverse concave stripes which are alternately arranged on the wear-resistant layer and the plurality of convex blocks arranged on the lower surface of the convex part of the friction block;
3. the non-slip block can be dismantled with the heel and be connected, and loading and unloading are convenient, and relatively stable when connecting, and difficult emergence is slided or is rotated.
Drawings
Fig. 1 is an overall schematic view of an anti-slip woman's shoe according to an embodiment of the present application;
FIG. 2 is a cross-sectional view of a cleat for a women's anti-slip shoe according to an embodiment of the present application;
FIG. 3 is a schematic view showing the connection relationship between the elastic layer, the wear-resistant layer and the friction block in the non-slip mat of the anti-slip women's shoe according to the embodiment of the present application;
FIG. 4 is a cross-sectional view of the shoe of the present application showing the shoe nesting process;
fig. 5 is a cross-sectional view of the anti-slip shoes of the anti-slip women shoe according to the embodiment of the present application after the anti-slip shoes are nested.
Description of reference numerals: 1. a shoe upper; 2. a sole; 3. a heel; 4. a non-slip mat; 5. anti-skid blocks; 6. an elastic layer; 7. a wear layer; 71. Transversely recessing the stripes; 8. a friction block; 81. a clamping part; 82. a boss portion; 83. a bump; 9. a groove; 91. a card slot; 92 connecting grooves; 10. a through groove; 11. sleeving a ring; 111. an upper clamping groove; 112. a lower clamping groove; 12. a cavity; 13. an upper boss; 131. an upper clamping block; 14. A lower boss; 141. a lower clamping block; 15. a heel groove; 16. an annular groove.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses antiskid woman's shoe. Referring to fig. 1, an antiskid woman's shoe includes the shoes body 1, sole 2, heel 3, and sole 2 establishes the lower bottom surface at the shoes body 1, and heel 3 establishes the lower surface at sole 2, and the preceding sole portion of sole 2 is equipped with slipmat 4, and 3 departments of heel are equipped with non slipping spur 5.
General area woman's shoe with heel, especially high-heeled shoes, sole 2 is thinner, and sole 2's line is lighter, and anti-skidding effect is poor. The slipmat 4 of addding has increased the thickness of sole 2 on the one hand in this scheme, improves the comfort level that shoes were worn, and the line on the other hand slipmat 4 is darker than the line of general sole 2, can improve the roughness of sole 2, reinforcing skid resistance. The non-slip block 5 that adds in this scheme has increased the area of contact of 3 bottom surfaces of heel and bottom surface, makes the contact of sole 2 and ground more stable to reduce the probability of slipping.
In addition, the outer wall in the middle of the antiskid block 5 is provided with an annular groove 16, the human body design is attached, fingers are clamped in the annular groove 16 when the antiskid block 5 is assembled and disassembled, and the operation is convenient.
Referring to fig. 2, the non-slip mat 4 comprises an elastic layer 6, a wear-resistant layer 7 and a friction block 8, wherein the elastic layer 6 is tightly attached to the lower surface of the sole 2, and the wear-resistant layer 7 is tightly attached to the lower surface of the elastic layer 6.
Referring to fig. 2 and 3, a groove 9 is formed in the elastic layer 6, the groove 9 includes a locking groove 91 and a connecting groove 92, the groove width of the locking groove 91 is greater than the groove width of the connecting groove 92, and the locking groove 91 is located between the sole 2 and the connecting groove 92.
The wear-resistant layer 7 is provided with a through groove 10, and the through groove 10 is communicated with the connecting groove 92.
The friction block 8 comprises a clamping portion 81 and a protruding portion 82, the clamping portion 81 is embedded in the clamping groove 91, and the upper surface of the clamping portion 81 is in contact with the lower surface of the sole 2; the boss 82 projects into the through slot 10 through the connecting slot 92.
The lower surface of the wear-resistant layer 7 is provided with transverse recessed stripes 71 which are arranged at intervals, and the lower surface of the protruding part 82 of the friction block 8 is provided with a plurality of protruding blocks 83.
During the walking, the foot exerts pressure for slipmat 4 through sole 2, and the deformation takes place for the elastic layer 6 atress in the slipmat 4 is compressed, and 8 atress of clutch blocks are displacement downwards, and 8 lower surfaces of clutch blocks originally are located logical groove 10 of wearing layer 7, contact with ground after the displacement downwards, increase frictional force. Particularly, when walking on uneven ground, the ground protruding upwards is clamped in the through groove 10, so that the probability of the sliding between the sole 2 and the ground can be reduced.
Referring to fig. 4, the anti-skid block 5 is internally provided with a cavity 12, the heel 3 is positioned in the cavity 12, and the bottom of the cavity 12 is provided with a bottom groove 15.
A ring sleeve 11 is fixed on the outer peripheral wall of the heel 3, an upper clamping groove 111 is formed in the upper surface of the ring sleeve 11, and a lower clamping groove 112 is formed in the lower surface of the ring sleeve 11; an upper boss 13 and a lower boss 14 are arranged on the cavity wall of the cavity 12, the distance from the lower surface of the upper boss 13 to the upper surface of the lower boss 14 is equal to the thickness of the ring sleeve 11, an elastic upper clamping block 131 is arranged on the lower surface of the upper boss 13, and an elastic lower clamping block 141 is arranged on the upper surface of the lower boss 14; the upper engaging pieces 131 are engaged with the upper engaging grooves 111, and the lower engaging pieces 141 are engaged with the lower engaging grooves 112.
Referring to fig. 5, when the bottom of the heel 3 is nested in the cavity 12 of the anti-slip block 5, the bottom slot 15 limits the horizontal sliding of the bottom of the heel 3 in the cavity 12; the ring sleeve 11 is clamped between the upper boss 13 and the lower boss 14, so that the shoe heel 3 and the anti-skid block 5 are not easy to slide in the vertical direction; the upper clamping block 131 is clamped with the upper clamping groove 111 and the lower clamping block 141 is clamped with the lower clamping groove 112, so that the heel 3 and the anti-slip block 5 are not easy to rotate relatively. Therefore, when the anti-skid block 5 is sleeved on the heel 3, the relative stability can be kept, and the anti-skid block is not easy to slide or rotate.
Referring to fig. 4 and 5, when walking on a wet and slippery ground, the cavity 12 on the upper surface of the anti-slip block 5 is aligned with the bottom of the heel 3 and sleeved from bottom to top, the ring sleeve 11 on the heel 3 slides against the inner wall of the side far away from the upper boss 13, when the lower surface of the ring sleeve 11 touches the upper surface of the lower boss 14, the lower surface of the upper boss 13 just touches the upper surface of the ring sleeve 11, and the anti-slip block 5 is rotated, when sensing a slight shock, it indicates that the upper clamping block 131 and the upper clamping groove 111, and the lower clamping block 141 and the lower clamping groove 112 are clamped with each other. So far, the antiskid block 5 and the heel 3 are completely nested.
The implementation principle of this application embodiment antiskid woman's shoe does: set up slipmat 4, set up non slipping spur 5 in 3 departments of heel through the sole portion at sole 2, reach the effect of the non slipping performance of reinforcing woman's shoe. Furthermore, the arrangement of the telescopic friction blocks 8 on the non-slip mat 4 is particularly suitable for walking on uneven ground.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (6)

1. The utility model provides an antiskid woman's shoe, includes the shoes body (1), sole (2), heel (3), establish sole (2) the lower bottom surface of the shoes body (1), sole (2) are including sole portion and back heel, heel (3) are established the back heel of sole (2), its characterized in that: the sole part of the sole (2) is provided with an anti-skid pad (4), the heel part is provided with an anti-skid block (5), a cavity (12) is arranged inside the anti-skid block (5), and the heel (3) is positioned in the cavity (12); the bottom surface area of the antiskid block (5) is larger than that of the heel (3), a ring sleeve (11) is fixed on the outer peripheral wall of the heel (3), an upper clamping groove (111) is formed in the upper surface of the ring sleeve (11), and a lower clamping groove (112) is formed in the lower surface of the ring sleeve (11); an upper boss (13) and a lower boss (14) are arranged on the cavity wall of a cavity (12) of the anti-skid block (5), the distance from the lower surface of the upper boss (13) to the upper surface of the lower boss (14) is equal to the thickness of the ring sleeve (11), an elastic upper clamping block (131) is arranged on the lower surface of the upper boss (13), and an elastic lower clamping block (141) is arranged on the upper surface of the lower boss (14); the upper clamping block (131) is clamped with the upper clamping groove (111), and the lower clamping block (141) is clamped with the lower clamping groove (112).
2. The anti-slip women's shoes according to claim 1, wherein: the anti-skid pad (4) comprises an elastic layer (6), a wear-resistant layer (7) and a friction block (8), wherein the elastic layer (6) is in contact with the sole (2), and the wear-resistant layer (7) is in contact with one surface, far away from the sole (2), of the elastic layer (6); a groove (9) is formed in the elastic layer (6), the groove (9) comprises a clamping groove (91) and a connecting groove (92), the groove width of the clamping groove (91) is larger than that of the connecting groove (92), and the clamping groove (91) is located between the sole (2) and the connecting groove (92); a through groove (10) is formed in the wear-resistant layer (7), and the through groove (10) is communicated with the connecting groove (92); the friction block (8) comprises a clamping portion (81) and a protruding portion (82), the clamping portion (81) is embedded in the clamping groove (91), and the upper surface of the clamping portion (81) is in contact with the lower surface of the sole (2); the protruding part (82) penetrates through the connecting groove (92) and extends into the through groove (10).
3. The anti-slip women's shoes according to claim 2, wherein: the lower surface of the wear-resistant layer (7) is provided with transverse concave stripes (71) which are arranged at intervals.
4. The anti-slip women's shoes according to claim 2, wherein: the lower surface of the bulge (82) of the friction block (8) is provided with a plurality of convex blocks (83).
5. The anti-slip women's shoes according to claim 1, wherein: the bottom of the cavity (12) is provided with a bottom groove (15), and the bottom of the heel (3) is embedded in the bottom groove (15).
6. The anti-slip women's shoes according to claim 1, wherein: the outer wall in the middle of the anti-skid block (5) is provided with an annular groove (16).
CN202021728481.5U 2020-08-18 2020-08-18 Anti-skidding women's shoes Active CN213344541U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021728481.5U CN213344541U (en) 2020-08-18 2020-08-18 Anti-skidding women's shoes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021728481.5U CN213344541U (en) 2020-08-18 2020-08-18 Anti-skidding women's shoes

Publications (1)

Publication Number Publication Date
CN213344541U true CN213344541U (en) 2021-06-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021728481.5U Active CN213344541U (en) 2020-08-18 2020-08-18 Anti-skidding women's shoes

Country Status (1)

Country Link
CN (1) CN213344541U (en)

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