Hydrophobic slippers with pressure grooves
By setting up water guide channels and open groove structures inside the sole of the slipper, the problem of water accumulation in the slippers is solved, and a fast and insensitive drainage effect is achieved, and the comfort of use is improved.
Patent Information
- Application Number
- CN202422108152.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Existing slippers are prone to water after being touched, which affects the use feeling and may lead to slippery falls.
A water guide channel is set inside the sole of the slipper, and water is discharged through the opening groove connecting the surface of the bottom plate. A trapezoidal opening groove, a flow guide channel, a water seepage port and an extrusion block are set in the water guide channel to improve drainage efficiency.
It achieves a fast and senseless drainage effect, keeps the slippers dry and comfortable, and improves the user experience.
Smart Images

Figure CN223183017U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of slippers, in particular to a hydrophobic slipper with a pressure groove. Background Art
[0002] Slippers are typically worn indoors or in recreational settings. They consist of a sole and an upper, made of a variety of materials, including plastic, rubber, and fabric. Slippers are comfortable, easy to put on and take off, and allow your feet to relax while maintaining a certain degree of breathability. Whether relaxing at home or treading water at the beach, slippers are a great choice. However, existing slippers often retain water when wet, leaving your feet submerged in water, affecting the wearer's experience and even causing falls. Utility Model Content
[0003] In order to overcome the above technical problems, the utility model provides a hydrophobic slipper with a pressure groove, which is used to improve the drainage problem of the slipper.
[0004] In order to achieve the above purpose, the utility model proposes a hydrophobic slipper with a pressure groove, comprising a bottom plate, a water guide channel formed inside the bottom plate, and an open groove connecting the bottom plate surface and the water guide channel formed between the water guide channel and the bottom plate surface.
[0005] A water guide channel is provided inside the sole of the slippers, and an open groove connecting the water guide channel and the surface of the sole plate is provided. When the slippers are used, if there is water on the surface of the slippers, it will flow down along the open groove into the water guide channel. Under the action of stepping pressure, the water inside the water guide channel flows out to the openings on both sides along the length direction of the water guide channel, thereby realizing the process of draining the water stored in the slippers.
[0006] Preferably, the cross-section of the opening groove perpendicular to the length direction is a trapezoidal structure.
[0007] Setting the opening groove to have a small upper opening and a large lower opening helps to squeeze the stored water into the water guide channel more easily when discharging. The small upper opening will not affect the user's experience. The user can hardly feel the presence of the opening groove on the surface of the bottom plate. During the leakage process of the stored water, the large opening at the bottom of the opening groove allows the stored water to leak quickly without affecting the drainage efficiency.
[0008] Preferably, a guide groove extending from the bottom plate surface to the water guide channel is formed on the side wall of the open groove.
[0009] The function of the diversion trough is to guide the water in the process of water leakage. With the existence of the diversion trough, the stored water will flow downward along the diversion trough instead of accumulating in a local location and affecting the drainage efficiency.
[0010] Preferably, a plurality of water seepage openings for assisting water seepage are formed on both sides of the open groove in the length direction.
[0011] The purpose of setting up the seepage port is to increase the drainage force. In addition to seeping from the open groove, water can also seep from the seepage port, and the final flow direction is the inner cavity of the open groove. The seepage port occupies a small space and will not cause too much impact on the user.
[0012] Preferably, the bottom of the water seepage opening extends to the water guiding channel.
[0013] By increasing the extension depth of the seepage port and connecting to the water channel directly from the seepage port, the drainage path is increased and the drainage efficiency is improved.
[0014] Preferably, the water seepage port is wedge-shaped from one side of the bottom plate surface to one side of the water guide channel.
[0015] The wedge-shaped seepage opening is convenient for absorbing water from the bottom plate surface. The bottom opening is smaller than the upper opening to avoid water backflow inside the water channel.
[0016] Preferably, an extrusion block is formed in the water guiding channel, which protrudes from the middle of the water guiding channel in the length direction and gradually decreases in height toward both sides.
[0017] An extrusion block is set in the water guide channel. When the bottom plate is stepped on, the inside of the water guide channel will also be flattened, and the top of the extrusion block will first contact the top of the water guide channel, and the two sides will gradually contact the extrusion block. In this way, the water stored in the water guide channel can be squeezed and discharged from the middle of the water guide channel to the two sides, thereby emptying the inside of the water guide channel.
[0018] Preferably, a water guide groove extending along the length direction of the water guide channel is formed in the water guide channel.
[0019] The diversion trough is used to assist the water channel in guiding the direction of water flow during drainage, so as to prevent water from accumulating somewhere in the water channel.
[0020] The hydrophobic slippers with pressure grooves provided by the utility model have a water guide channel arranged inside the bottom plate, and the water retained on the upper surface of the bottom plate is discharged downwardly through the open grooves, thereby drying the bottom plate of the slippers. Moreover, the opening range of the open grooves is small, and the user can hardly feel the presence of the open grooves when wearing the slippers. The imperceptible drainage makes the slipper experience better. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 A schematic diagram of the three-dimensional structure of a hydrophobic slipper with a pressure groove provided in an embodiment of the present utility model;
[0022] Figure 2 This is a schematic diagram of the cross-sectional structure of the water guide channel provided in an embodiment of the present utility model.
[0023] Description of Reference Numerals
[0024] 1. Bottom plate; 2. Water channel; 3. Opening groove; 4. Seepage port; 5. Extrusion block; 6. Water channel. DETAILED DESCRIPTION
[0025] The following describes embodiments of the present invention with reference to the accompanying drawings. Elements and features described in one drawing or one embodiment of the present invention may be combined with elements and features shown in one or more other drawings or embodiments. It should be noted that for the sake of clarity, the drawings and descriptions omit the representation and description of components or processes that are not relevant to the present invention and are known to those of ordinary skill in the art.
[0026] The present invention will be further described below in conjunction with the accompanying drawings.
[0027] like Figure 1 、 Figure 2 As shown, the hydrophobic slippers with pressure grooves provided by the present invention include a bottom plate 1, a water guide channel 2 is formed inside the bottom plate 1, and an open groove 3 is formed between the water guide channel 2 and the surface of the bottom plate 1 to connect the surface of the bottom plate 1 and the water guide channel 2.
[0028] A water guide channel 2 is provided inside the sole plate 1 of the slippers, and an open groove 3 is provided to connect the water guide channel 2 and the surface of the sole plate 1. When the slippers are used, if there is water on the surface of the slippers, it will flow down along the open groove 3 into the water guide channel 2. Under the action of stepping on the water, the water inside the water guide channel 2 flows out along the length direction of the water guide channel 2 to the openings on both sides, thereby realizing the process of draining the water inside the slippers.
[0029] The opening area of the opening groove 3 located on the surface of the bottom plate 1 is extremely small. When stepped on, the opening groove 3 is even in a closed state. When there is no pressure, the opening groove 3 opens, absorbs water on the surface of the bottom plate 1 and seeps downward to the water guide channel 2. When the user steps on it, since the opening groove 3 is closed, the user can hardly feel the existence of the opening groove 3, which makes the experience better.
[0030] In addition, the edge of the opening of the open groove 3 can also form a downwardly inclined guide surface, which extends downward from the bottom plate 1 to the groove mouth of the open groove 3 and is inclined to facilitate the stored water to flow downward into the open groove 3.
[0031] In one embodiment of the present invention, the cross section of the opening slot 3 perpendicular to the length direction is a trapezoidal structure.
[0032] The opening groove 3 is set to have a structure with a small upper opening and a large lower opening, which helps to make it easier for the stored water to be squeezed into the water guide channel 2 when it is discharged. The small upper opening will not affect the user's experience. The user can hardly feel the presence of the opening groove 3 on the surface of the bottom plate 1. During the leakage process of the stored water, the large lower opening of the opening groove 3 allows the stored water to leak quickly without affecting the drainage efficiency.
[0033] In one embodiment of the present invention, a guide groove extending from the surface of the bottom plate 1 to the water guide channel 2 is formed on the side wall of the opening groove 3 .
[0034] The function of the diversion trough is to guide the water in the process of water leakage. With the existence of the diversion trough, the stored water will flow downward along the diversion trough instead of accumulating in a local location and affecting the drainage efficiency.
[0035] In one embodiment of the present invention, a plurality of water seepage openings 4 for assisting water seepage are formed on both sides of the opening groove 3 in the length direction.
[0036] The purpose of setting the seepage port 4 is to increase the drainage force. In addition to seeping water from the open groove 3, water can also seep from the seepage port 4, and finally flow to the inner cavity of the open groove 3. Moreover, the seepage port 4 occupies a small space and will not cause too much impact on the user.
[0037] In one embodiment of the present invention, the bottom of the water seepage opening 4 extends to the water guide channel 2 .
[0038] By increasing the extension depth of the water seepage port 4 and directly connecting to the water guide channel 2 from the water seepage port 4, the drainage path is increased and the drainage efficiency is improved.
[0039] In one embodiment of the present invention, the water seepage port 4 is wedge-shaped from one side of the bottom plate 1 surface to one side of the water guide channel 2 .
[0040] The wedge-shaped seepage opening 4 is convenient for absorbing water on the surface of the bottom plate 1. The bottom opening is smaller than the upper opening to avoid the backflow of water inside the water channel 2.
[0041] In one embodiment of the present invention, an extrusion block 5 is formed in the water channel 2 , which protrudes from the middle of the water channel 2 in the length direction and gradually decreases in height toward both sides.
[0042] An extrusion block 5 is provided in the water-guiding channel 2. When the bottom plate 1 is stepped on, the inside of the water-guiding channel 2 will also be flattened. The top of the extrusion block 5 first contacts the top of the water-guiding channel 2, and the two sides gradually contact the extrusion block 5. In this way, the water stored in the water-guiding channel 2 can be squeezed and discharged from the middle of the water-guiding channel 2 to the two sides, thereby emptying the inside of the water-guiding channel 2.
[0043] In one embodiment of the present invention, a water guide groove 6 extending along the length direction of the water guide channel is formed in the water guide channel.
[0044] The guide groove assists the water channel 2 in guiding the direction of water flow during drainage, thereby preventing water from being retained somewhere in the water channel 2 .
[0045] The hydrophobic slippers with pressure grooves provided by the utility model have a water guide channel 2 set inside the bottom plate 1, and the water retained on the upper surface of the bottom plate 1 is discharged downwardly through the opening groove 3, thereby drying the bottom plate 1 of the slippers. The opening range of the opening groove 3 is small, and the user can hardly feel the existence of the opening groove 3 when wearing the slippers. The imperceptible drainage makes the slipper experience better.
[0046] Although the present invention and its advantages have been described in detail, it should be understood that various changes, substitutions and conversions can be made without exceeding the spirit and scope of the present invention as defined by the appended claims. Moreover, the scope of this application is not limited to the specific embodiments of the processes, devices, means, methods and steps described in the specification. It will be readily understood by those skilled in the art from the disclosure of the present invention that existing and future processes, devices, means, methods or steps to be developed that perform substantially the same functions as the corresponding embodiments described herein or obtain substantially the same results as the corresponding embodiments described herein can be used according to the present invention. Therefore, the appended claims are intended to include such processes, devices, means, methods or steps within their scope.
Claims
1. A hydrophobic slipper with a pressure groove, comprising a bottom plate (1), characterized in that: A water guide channel (2) is formed inside the bottom plate (1), and an open groove (3) is formed between the water guide channel (2) and the surface of the bottom plate (1) to connect the surface of the bottom plate (1) and the water guide channel (2). The cross section of the open groove (3) perpendicular to the length direction is a trapezoidal structure. A guide groove extending from the surface of the bottom plate (1) to the water guide channel (2) is formed on the side wall of the open groove (3), and a plurality of water seepage openings (4) for assisting water seepage are formed on both sides of the length direction of the open groove (3).
2. The hydrophobic slippers with pressure grooves according to claim 1, characterized in that: The bottom of the water seepage port (4) extends to the water guide channel (2).
3. The hydrophobic slippers with pressure grooves according to claim 2, characterized in that: The water seepage port (4) is in a wedge-shaped structure extending from one side of the bottom plate (1) surface to one side of the water guide channel (2).
4. The hydrophobic slippers with pressure grooves according to claim 3, characterized in that: An extrusion block (5) is formed in the water-guiding channel (2), which protrudes from the middle of the water-guiding channel (2) in the longitudinal direction and gradually decreases in height toward both sides.
5. The hydrophobic slippers with pressure grooves according to claim 4, characterized in that: A water guide groove (6) extending in the length direction of the water guide channel is formed in the water guide channel.