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CN-224206277-U - Slipper with anti-skid drainage structure

CN224206277UCN 224206277 UCN224206277 UCN 224206277UCN-224206277-U

Abstract

The utility model discloses an anti-skid drainage structure slipper, which comprises a sole, a vamp arranged on one side of the sole, and a drainage assembly arranged on the sole and used for draining water, wherein the drainage assembly comprises an annular drainage groove arranged on one side of the sole close to the vamp, the annular drainage groove is arranged close to the edge of the sole, a plurality of V-shaped grooves which are equidistantly arranged are arranged on one side of the sole close to the vamp, two ends of each V-shaped groove are communicated with the annular drainage groove, a plurality of drainage holes are arranged on the side wall of the sole, each drainage hole is communicated with the annular drainage groove, and an anti-skid assembly is arranged on one side of the sole far away from the vamp. According to the anti-skid drainage structure slippers, through the arrangement of the drainage assembly and the anti-skid assembly, the probability that external water enters the sole from the drainage holes is reduced, and the sole can be effectively contacted with the ground when being stressed in different directions, so that the anti-skid drainage performance of the slippers is improved.

Inventors

  • LIN CHAO

Assignees

  • 东莞市杰麟鞋业有限公司

Dates

Publication Date
20260508
Application Date
20250619

Claims (6)

  1. 1. An anti-slip drainage structure slipper comprising: A sole (101) and an upper (102) provided on one side of the sole (101); characterized by further comprising: A drain assembly provided to the sole (101) for draining water; The utility model provides a shoe sole, including seting up in sole (101) be close to annular water drainage tank (201) of vamp (102) one side, annular water drainage tank (201) are close to sole (101) edge setting, a plurality of V type grooves (202) that are the equidistance setting are seting up in one side that sole (101) are close to vamp (102), each the both ends and the annular water drainage tank (201) of V type groove (202) communicate with each other and set up, a plurality of wash port (203) have been setted up to the lateral wall of sole (101), each wash port (203) communicate with each other with annular water drainage tank (201) and set up, one side that vamp (102) was kept away from to sole (101) is equipped with anti-skidding subassembly.
  2. 2. The anti-skid drainage structure slipper of claim 1, wherein each of the V-shaped grooves (202) is provided with a middle-high side and a low side.
  3. 3. The anti-skid drainage structure slipper according to claim 1, wherein each drainage hole (203) is obliquely arranged in an L shape, a plurality of rubber sheets (3) are arranged at the drainage end, and each rubber sheet (3) is arranged in a conical shape.
  4. 4. The slipper with the anti-skid and water draining structure of claim 1, wherein the anti-skid component comprises a plurality of longitudinal wave lines (401) and transverse wave lines (402) fixedly connected to one side of the sole (101) far away from the vamp (102), and the longitudinal wave lines (401) and the transverse wave lines (402) are arranged in a staggered manner.
  5. 5. The slipper with the anti-skid and drainage structure according to claim 1, wherein a plurality of triangular convex teeth (5) with different shapes are arranged on the side, far away from the vamp (102), of the sole (101) near the sole and the heel, and each triangular convex tooth (5) is positioned between each longitudinal wave line (401) and each transverse wave line (402).
  6. 6. The slipper with the anti-skid and water draining structure according to claim 1, wherein the surfaces of the sole (101) and the upper (102) are coated with polyurethane paint, and the coating thickness of the polyurethane paint is between 0.2 and 0.5 mm.

Description

Slipper with anti-skid drainage structure Technical Field The utility model relates to the technical field of slippers, in particular to a slipper with an anti-skid drainage structure. Background In order to improve the ponding of reducing the sole when walking in the wading area, can realize the drainage through setting up fretwork formula apopore at the sole, but the user is stepped on in the ponding area, and outside ponding is not only comparatively easy to get into in the slippers by the apopore of sole again along with the people lifts the foot, and when the sole walks, can produce the extrusion to the apopore because of the bending that lifts the foot and produce for the inside certain negative pressure that leads to inside because of the space reduces of apopore, and then under negative pressure suction effect, makes slippers and ground produce certain suction, thereby has brought certain inconvenience for user's walking. Thus, there is a need for a slipper with a non-slip drainage structure to solve the above problems. Disclosure of utility model In order to achieve the aim, the utility model provides the technical scheme that the slipper with the anti-skid drainage structure comprises a sole, a vamp arranged at one side of the sole and a drainage assembly arranged at the sole for draining water; The drainage assembly comprises an annular drainage groove formed in one side of the sole, close to the vamp, of the sole, the annular drainage groove is arranged close to the edge of the sole, a plurality of V-shaped grooves which are equidistantly arranged are formed in one side of the sole, close to the vamp, two ends of each V-shaped groove are communicated with the annular drainage groove, a plurality of drainage holes are formed in the side wall of the sole, each drainage hole is communicated with the annular drainage groove, and an anti-slip assembly is arranged on one side, away from the vamp, of the sole. Each V-shaped groove is arranged at the middle and high sides in a low mode. Each drain hole is L-shaped and obliquely arranged, a plurality of rubber sheets are arranged at the drain end, and each rubber sheet is arranged in a conical shape. The anti-skid assembly comprises a plurality of longitudinal wave lines and transverse wave lines which are fixedly connected to one side, far away from the vamp, of the sole, and the longitudinal wave lines and the transverse wave lines are staggered. The sole is far away from one side of vamp and is equipped with a plurality of triangle protruding teeth of different shapes in being close to sole and heel department, each triangle protruding tooth is located between each longitudinal wave line and the horizontal wave line. The surfaces of the sole and the vamp are coated with polyurethane coating, and the coating thickness of the polyurethane coating is between 0.2 and 0.5 millimeter. Compared with the prior art, the utility model has the beneficial effects that: According to the anti-skid drainage structure slippers, through the arrangement of the drainage assembly, the drainage performance is achieved, meanwhile, the suction force between the sole and the ground is reduced, so that the comfort of the slippers when worn and walked is improved, and under the cooperation of the plurality of conical rubber sheets, the resistance of external water flowing to the drainage holes is increased, so that the probability that the external water enters the sole from the drainage holes is reduced, meanwhile, through the arrangement of the anti-skid assembly, the sole can be effectively contacted with the ground when stressed in different directions, and various walking postures are adapted, so that the anti-skid performance of the slippers in the use process is improved, and therefore, the anti-skid drainage performance of the slippers is improved under the combined action of the drainage assembly and the anti-skid assembly. Drawings FIG. 1 is a schematic diagram of the overall structure of the present utility model; FIG. 2 is a schematic view of an anti-skid assembly according to the present utility model; Fig. 3 is a schematic view of the internal structure of the drainage assembly according to the present utility model. In the figure, 101, sole, 102, vamp, 201, annular drainage groove, 202, V-shaped groove, 203, drainage hole, 3, rubber sheet, 401, longitudinal wave grain, 402, transverse wave grain, 5, triangular convex tooth. Detailed Description The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model. Example 1 Referring to fig