Adsorbable, anti-fracture and anti-skid slippers
By designing the suction port structure and hidden elastic design in the slippers, the problem of slippers being prone to cracking and anti-slip texture wear after long-term wear is solved, achieving better anti-slip effect and service life.
Patent Information
- Application Number
- CN202421932485.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2034-08-12
AI Technical Summary
Existing slippers are prone to cracking and anti-slip wear after being worn for a long time, which affects the effectiveness and life.
A slipper structure including a drag back, notch, wear-resistant sole, thick sole and anti-slip mark is designed. The thick sole consists of soft strips, sectioned bodies, buffer layer, auxiliary bodies, fixed bodies and elastic strips. The wear-resistant sole has a suction port structure to enhance the anti-slip effect, and hides elasticity through the design of elastic strips and buffer layers to prevent cracking.
Through the design of the suction port structure, slippers can effectively absorb the ground when walking, prevent slipping, and extend the service life of the slippers by using the hidden design of elastic strips and buffer layers, preventing cracking and anti-slip texture wear.
Smart Images

Figure CN222815379U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of slippers, and more specifically, particularly relates to a pair of slippers capable of adsorption, anti-fracture and anti-slip. Background Art
[0002] Nowadays, slippers are used in more and more scenarios. In order to improve the safety index, the uneven patterns and particles on the bottom of the slippers are used to increase the friction coefficient and reduce the risk of slipping. They are made of rubber, EVA and other materials, and have good wear resistance and grip.
[0003] In order to increase the comfort of wearing slippers, the elasticity and softness of slippers are increasingly required. However, in order to meet the elasticity and softness, the materials used are prone to cracking and wear of the anti-slip patterns after long-term wearing, which affects the use effect and life of the slippers. Utility Model Content
[0004] In order to solve the above technical problems, the purpose and effect of the utility model of a kind of adsorbable anti-fracture and anti-slip slippers are achieved by the following specific technical means:
[0005] Its structure includes a tow back, a notch, a wear-resistant bottom, a thick bottom, and anti-skid patterns. The two ends of the tow back are fixed to the left and right sides of the thick bottom. The notch and the thick bottom are an integrated structure. The wear-resistant bottom is attached to the bottom of the thick bottom. The anti-skid patterns and the wear-resistant bottom are an integrated structure.
[0006] The thick sole includes a soft strip, a segmented body, a buffer layer, an auxiliary body, a fixed body, and an elastic strip. The soft strip and the segmented body are an integrated structure. The soft strip and the segmented body are embedded in the buffer layer, and the elastic strip is attached to the outside of the buffer layer. The auxiliary body and the fixed body assist the elastic strip to be fixed to the outside of the buffer layer. The soft strip passes through the buffer layer and is connected and fixed to the tow back.
[0007] As a further improvement of the utility model, the elastic strip is elastically wrapped between the inner side of the thick bottom skin and the buffer layer to play a hiding role, the fixed body fixes the elastic strip in sections, the elasticity of the elastic strip follows the bending changes of the thick bottom to perform pulling and buffering, and when the connecting part is subjected to force, it pulls back to form a reaction force, playing the role of elastic wrapping, and the segmented body plays the role of segmented force on the soft strip to assist bending.
[0008] As a further improvement of the utility model, the wear-resistant sole includes an external interface, a through port, and a suction port. The external interface is connected to the through port. The external interface passes through the buffer layer and is connected to the outside world. The middle end of the suction port is connected to the through port. Five suction ports are provided at the tail of the shoe body.
[0009] As a further improvement of the utility model, the drag back includes a fixing strip, a rubber strip, and a wrapping layer. The left and right sides of the rubber strip are connected to the fixing strip. The fixing strip and the rubber strip are located inside the wrapping layer. There are four rubber strips in total.
[0010] As a further improvement of the present invention, the upper surface of the thick sole is curved and elastic, so that it can fit the sole of the foot better. The anti-slip pattern forms a drop with the bottom to increase friction. When the upper end of the external interface is pressed downward, the port will be closed.
[0011] As a further improvement of the utility model, the rubber strips are distributed from dense to sparse from top to bottom, and the rubber strips are used to pull and buffer the force exerted on the back of the trailer. The fixed body is provided with eight rubber strips symmetrically distributed on both sides of the elastic strips.
[0012] Compared with the prior art, the utility model has the following beneficial effects:
[0013] 1. The patterns formed by the anti-slip patterns have a certain anti-slip effect. When the thick sole and the wear-resistant sole are pressed down by the heel, the softness of the buffer layer itself will be pressed down and deformed when subjected to force, thereby blocking the opening of the outer interface and the through-port, so that the suction port can be smoothly adsorbed to the ground. When it is necessary to continue walking, the buffer layer is lifted by the heel and the external pressure is lost. The through-port and the outer interface will be connected to the outside air and input into the suction port, so that the suction port is separated from the ground, which has a further anti-slip effect. During the use of the slippers, it can play a role of pullback buffering at the highest bending frequency, and fit them tightly in sections to prevent cracking.
[0014] 2. The bottom of the wear-resistant sole is equipped with anti-slip grooves to prevent slipping. When the suction port is pressed down during walking, the external interface and the port are softly closed, so that the suction port can further absorb the ground and prevent slipping. When the pressure on the heel is released, the external interface and the port are connected to the outside air to clear the inside of the suction port, so that the suction port is off the ground and can walk normally. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 The utility model is a structural schematic diagram of a pair of slippers capable of adsorption, anti-fracture and anti-slip.
[0016] Figure 2 The utility model is a schematic diagram of the top view of the structure of the adsorbable anti-fracture and anti-slip slippers.
[0017] Figure 3 It is a schematic structural diagram of the thick sole and wear-resistant sole of the utility model.
[0018] Figure 4 It is a three-dimensional structural schematic diagram of the thick sole of the utility model.
[0019] Figure 5 It is a schematic diagram of the bottom structure of the wear-resistant bottom of the utility model.
[0020] Figure 6 It is a structural schematic diagram of the utility model towing back.
[0021] In the figure: backrest -1, notch -2, wear-resistant bottom -3, thick bottom -4, anti-slip pattern -5, soft strip -41, segmented body -42, buffer layer -43, auxiliary body -44, fixed body -45, elastic strip -46, external interface -31, through port -32, suction port -33, fixed strip -11, rubber strip -12, wrapping layer -13. DETAILED DESCRIPTION
[0022] The utility model is further described below in conjunction with the accompanying drawings:
[0023] As attached Figure 1 To Attachment Figure 6 As shown:
[0024] The utility model provides an adsorbable anti-fracture and anti-slip slipper, which comprises a slipper back 1, a notch 2, a wear-resistant sole 3, a thick sole 4, and anti-slip patterns 5. The two ends of the slipper back 1 are fixed to the left and right sides of the thick sole 4, the notch 2 and the thick sole 4 are an integrated structure, the wear-resistant sole 3 is attached to the bottom of the thick sole 4, and the anti-slip patterns 5 and the wear-resistant sole 3 are an integrated structure.
[0025] The thick bottom 4 includes a soft strip 41, a segmented body 42, a buffer layer 43, an auxiliary body 44, a fixed body 45, and an elastic strip 46. The soft strip 41 and the segmented body 42 are an integrated structure. The soft strip 41 and the segmented body 42 are embedded in the buffer layer 43. The elastic strip 46 is attached to the outside of the buffer layer 43. The auxiliary body 44 and the fixed body 45 assist the elastic strip 46 to be fixed to the outside of the buffer layer 43. The soft strip 41 penetrates the buffer layer 43 and is connected and fixed to the drag back 1. The soft strip 41 is located at the frequently bent part of the buffer layer 43 for fitting and telescopic protection.
[0026] Among them, the elastic strip 46 has the function of elastically wrapping between the inner side of the epidermis of the thick sole 4 and the buffer layer 43 to play a hiding role, the fixing body 45 fixes the elastic strip 46 in sections, the elasticity of the elastic strip 46 follows the bending change of the thick sole 4 to perform pulling and buffering, and when the connecting part is subjected to force, it pulls back to form a reaction force, playing the role of elastic wrapping, the segmented body 42 plays the role of segmented force on the soft strip 41 to assist bending, and the elastic strip 46 wraps the buffer layer 43 for a whole circle.
[0027] Among them, the wear-resistant sole 3 includes an external interface 31, a through port 32, and a suction port 33. The external interface 31 is connected with the through port 32. The external interface 31 is connected with the outside through the buffer layer 43. The middle end of the suction port 33 is connected with the through port 32. The suction port 33 is provided with five locations at the tail of the shoe body. The suction port 33 is hollow in shape. When it is pressed down by force, the pores will be blocked, so that it is adsorbed to the ground. When the force disappears, the pores are connected, and the suction port 33 returns to a hollow state to release the adsorption.
[0028] Among them, the tow back 1 includes a fixing strip 11, a rubber strip 12, and a wrapping layer 13. The left and right sides of the rubber strip 12 are connected to the fixing strip 11. The fixing strip 11 and the rubber strip 12 are located inside the wrapping layer 13. There are four rubber strips 12 in total. The soft strip 41 is connected to the wrapping layer 13 to assist in fixing the force.
[0029] Among them, the upper surface of the thick sole 4 is curved and elastic, which can fit the sole of the foot better. The anti-slip pattern 5 forms a drop with the bottom to increase friction. When the external interface 31 is pressed down at the upper end, the port will be closed. The overall material of the wear-resistant sole 3 has a certain elasticity, which can allow the suction port 33 to be better adsorbed on the ground.
[0030] The rubber strips 12 are distributed from top to bottom from dense to sparse, and the rubber strips 12 are used to pull and buffer the force applied to the tow back 1. The fixing body 45 is provided with eight pieces symmetrically distributed on both sides of the elastic strip 46. The recess 2 has a certain depth for more comfortable wearing.
[0031] The specific usage and function of this embodiment are as follows:
[0032] In the utility model, when the user wears the shoes, the recess 2 has a certain depth of depression, which makes it more comfortable. When the user wears the shoes and walks, the lines formed by the anti-skid lines 5 play a certain anti-skid role. When the thick sole 4 and the wear-resistant sole 3 are pressed down by the back heel, the cushioning layer 43 will be pressed down and deformed when subjected to force, thereby blocking the openings of the external interface 31 and the through opening 32, so that the suction port 33 can be smoothly adsorbed to the ground. When it is necessary to continue walking, the back heel lifts the cushioning layer 43 to lose the downward pressure of the external force, and the through opening 32 and the external interface 31 will be connected to the outside air, and the air is input into the suction port 33, so that the suction port 33 is separated from the adsorption of the ground, which plays a further anti-skid effect. The user When the tow back 1 is pulled and stressed during walking, the internal rubber strip 12 buffers and supports the force it bears through its own elasticity, and the soft strip 41 and the segmented body 42 are in a high-frequency bending position. The soft strip 41 and the segmented body 42 are fixed and stressed by the wrapping layer 13 on both sides. The segmented body 42 divides the bent soft strip 41 into segments and bears stress. When the buffer layer 43 bends, the soft strip 41 will bend together to buffer the pulling to prevent the buffer layer 43 from cracking, and the outer layer of the buffer layer 43 is wrapped with an elastic strip 46, which wraps the entire layer for buffering. The oil fixing body 45 and the auxiliary body 44 fix the elastic strip 46 at different points, so that each section of the elastic strip 46 can maintain uniform elasticity to wrap the buffer layer 43.
[0033] Utilizing the technical solution described in the utility model, or those skilled in the art designing similar technical solutions inspired by the technical solution of the utility model to achieve the above-mentioned technical effects, all fall within the protection scope of the utility model.
Claims
1. A kind of adsorbable anti-fracture and anti-slip slippers, the structure of which comprises a slipper back (1), a notch (2), a wear-resistant bottom (3), a thick bottom (4), and anti-skid patterns (5), the front and rear ends of the slipper back (1) are fixed to the left and right sides of the thick bottom (4), the notch (2) and the thick bottom (4) are an integrated structure, the wear-resistant bottom (3) is attached to the bottom of the thick bottom (4), and the anti-skid patterns (5) and the wear-resistant bottom (3) are an integrated structure, characterized in that: The thick sole (4) comprises a soft strip (41), a segmented body (42), a buffer layer (43), an auxiliary body (44), a fixed body (45), and an elastic strip (46); the soft strip (41) and the segmented body (42) are an integrated structure; the soft strip (41) and the segmented body (42) are embedded in the buffer layer (43); the elastic strip (46) is attached to the outside of the buffer layer (43); and the auxiliary body (44) and the fixed body (45) assist the elastic strip (46) in being fixed to the outside of the buffer layer (43).
2. The adsorbable anti-fracture and anti-slip slippers according to claim 1, characterized in that: The elastic strip (46) is elastically wrapped between the inner side of the surface of the thick sole (4) and the buffer layer (43) to play a hiding role. The fixing body (45) fixes the elastic strip (46) in sections. The elasticity of the elastic strip (46) follows the bending change of the thick sole (4) to pull and buffer. When the connecting part is subjected to force, it pulls back to form a reaction force, playing the role of elastic wrapping.
3. The adsorbable anti-fracture and anti-slip slippers according to claim 1, characterized in that: The wear-resistant bottom (3) comprises an external interface (31), a through port (32), and a suction port (33); the external interface (31) is connected to the through port (32); the external interface (31) passes through a buffer layer (43) to be connected to the outside; and the middle end of the suction port (33) is connected to the through port (32).
4. The adsorbable anti-fracture and anti-slip slippers according to claim 1, characterized in that: The tow back (1) comprises a fixing strip (11), a rubber strip (12), and a wrapping layer (13); the left and right sides of the rubber strip (12) are connected to the fixing strip (11); and the fixing strip (11) and the rubber strip (12) are located inside the wrapping layer (13).
5. The adsorbable anti-fracture and anti-slip slippers according to claim 1, characterized in that: The upper surface of the thick sole (4) is curved and elastic, so that it can fit the sole of the foot more closely. The anti-slip pattern (5) forms a step with the bottom to increase friction.
6. The adsorbable anti-fracture and anti-slip slippers according to claim 4, characterized in that: The rubber strips (12) are distributed from dense to sparse from top to bottom, and the rubber strips (12) are used to pull and buffer the force exerted on the trailer back (1).