Turbine pressure discharging suction cup with sole anti-skid design
By designing a turbine-style pressure suction cup on the sole and utilizing a combination of anti-slip blocks, anti-slip blocks, and suction structures, the problem of poor anti-slip performance of existing shoes on wet and slippery surfaces is solved, achieving stable grip in various wet and slippery environments.
Patent Information
- Application Number
- CN202520282996.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing shoes do not provide sufficient anti-slip performance on wet and slippery surfaces, especially in kitchens, bathrooms, and areas with low coefficients of friction during rain or snow, making it easy to slip and fall.
The shoe features a turbine-style suction cup design, including a pad, anti-slip blocks, stop blocks, and an adsorption structure. Mirror-symmetrical turbine-style suction cups are placed on the forefoot and heel of the sole. The anti-slip blocks increase lateral friction, the stop blocks increase friction in the main stress areas, and the adsorption structure generates negative pressure to adhere to the ground, improving grip.
It effectively improves the grip of the sole on wet and slippery surfaces, reducing the risk of slipping, and provides stable grip support, especially in kitchens, bathrooms, and low-friction surfaces in rainy or snowy weather.
Smart Images

Figure CN223913562U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field related to footwear, especially a shoe sole antiskid design turbine row pressure sucking disc. BACKGROUND
[0002] Wet and slippery ground is everywhere, such as bathroom, kitchen, outdoor in rainy and snowy weather, etc. Shoes with good antiskid performance can increase the friction between shoe sole and ground, effectively reduce the probability of consumers slipping down, and protect them from injuries such as fracture and sprain, especially for the elderly, children and other people prone to slipping.
[0003] The existing technology has the following problems: In order to improve the antiskid performance, the shoes under the existing technology usually have multidirectional, rough or fish scale patterns on the shoe sole, thereby improving the friction between the shoe sole and the ground. However, this method has poor effect on wet and slippery road surface with low friction coefficient, such as water stains in kitchen and bathroom, outdoor ground in rainy and snowy weather, etc. The lack of friction often leads to slipping down.
[0004] Therefore, the utility model provides a shoe sole antiskid design turbine row pressure sucking disc to solve the above problems. CONTENT OF THE UTILITY MODEL
[0005] The utility model provides a shoe sole antiskid design turbine row pressure sucking disc to solve the technical problems in the above background technology.
[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: a shoe sole antiskid design turbine row pressure sucking disc, comprising a first turbine row pressure sucking disc, the first turbine row pressure sucking disc comprises a pad body, the outer edge of the top of the pad body is arrayed with antiskid blocks, the front middle part of the top end of the pad body is provided with a skid stop block, the middle part of the pad body is provided with a suction structure, the top end of the pad body is arrayed with antiskid strips, and the installation position of the antiskid strips avoids the skid stop block and the suction structure.
[0007] Preferably, the second turbine row pressure sucking disc and the first turbine row pressure sucking disc are mirror image symmetric structures.
[0008] Preferably, the top end of the pad body is provided with a skid stop strip.
[0009] Preferably, the suction structure comprises a suction ring, a fan-shaped suction block and a suction strip, all of which are arranged in the top middle part of the pad body, the suction ring is provided with fan-shaped suction blocks in the horizontal and vertical directions, and the suction strip is arranged outside the suction ring in the shape of X with the suction ring as the center.
[0010] Preferably, the suction ring, the fan-shaped suction block and the suction strip are all composed of multiple rubber blocks, and each adjacent rubber block has a spacing of not less than 0.1 mm.
[0011] Preferably, the adsorption ring comprises an inner ring, a middle ring and an outer ring, all of which are arranged in the middle of the top end of the pad body, the outer side of the inner ring is provided with the middle ring, and the outer side of the middle ring is provided with the outer ring.
[0012] Preferably, the adsorption ring further comprises a first row of pressure grooves, which are arranged in the middle of the top end of the pad body and separate the inner ring from the middle ring.
[0013] Preferably, the adsorption ring further comprises a second row of pressure grooves, which are arranged in the middle of the top end of the pad body and separate the middle ring from the outer ring.
[0014] The beneficial effects of the utility model are as follows:
[0015] The utility model discloses a first turbine pressure relief chuck and a second turbine pressure relief chuck, which are mirror image symmetrical structures, and are used for setting the forefoot and the hind foot of the shoe sole respectively, wherein the first turbine pressure relief chuck comprises a pad body, the pad body is used for mounting and connecting, the bottom of the pad body is arranged on the forefoot of the shoe sole, anti -skid blocks are arranged on the outer edge of the top end of the pad body in an array, the anti -skid blocks can increase the friction force between the shoe sole and the ground, and when the rough road surface is encountered, the anti -skid blocks arranged on the outer edge of the pad body can be embedded into the gaps and recesses of the irregular ground, and the grip of the shoe sole on the ground is improved.
[0016] The anti -skid block is arranged at the front middle part of the top end of the pad body and just in the main stress area, can increase the friction force between the shoe sole and the ground, makes the forefoot can more stably hold the ground in the moment of treading the ground.
[0017] The adsorption structure is arranged in the middle of the pad body, when the adsorption structure contacts the ground, will extrude the air of the surface contacted with it, produces the negative pressure, reaches " holds " the effect of the ground, improves the grip of the shoe sole on the smooth surface.
[0018] The utility model solves the problem that the anti -skid line of the shoe sole has poor anti -skid effect on the kitchen, the water stain in the bathroom, the outdoor ground in the rainy and snowy weather and other wet and slippery road surfaces with low friction coefficient. ACCURACY OF DRAWINGS
[0019] Figure 1 It is the schematic diagram of the utility model;
[0020] Figure 2 It is the structural schematic diagram of the first turbine pressure relief chuck of the utility model;
[0021] Figure 3 It is the structural schematic diagram of the pad body and the anti -skid block of the utility model;
[0022] Figure 4 It is the utility model Figure 2 The enlarged structural schematic diagram of the middle A place;
[0023] Figure 5 is a structural schematic view of the adsorption structure of the utility model;
[0024] Figure 6 is a structural schematic view of the utility model Figure 5 enlarged structure schematic view of B.
[0025] Wherein: first turbine exhaust suction disc-1, second turbine exhaust suction disc-2, pad-11, anti-skid block-12, stop block-13, adsorption structure-14, anti-skid bar-15, stop bar-16, adsorption ring-141, fan-shaped adsorption block-142, adsorption bar-143, inner ring-1411, middle ring-1412, outer ring-1413, first exhaust groove-1414, second exhaust groove-1415. DETAILED DESCRIPTION
[0026] In order to further explain the technical scheme of the utility model, the following specific embodiments are described in detail.
[0027] As Figure 1 , 2 , 3, 4, the utility model provides a shoe sole anti -skid design's turbine exhaust suction disc, including first turbine exhaust suction disc 1, first turbine exhaust suction disc 1 sets up in shoe sole forefoot, provides strong adhesion for shoe sole, to cope with the low friction coefficient wet and slippery road surface, first turbine exhaust suction disc 1 includes pad 11, pad 11 is used to install and connect, when using, pad 11 bottom sets up in the forefoot of shoe sole, and the outer edge of pad 11 top is arrayed with anti-skid block 12, and anti-skid block 12 can increase the lateral friction force of shoe sole and ground, and when coping with rugged road surface, the anti-skid block set up in the outer edge of pad 11 can be embedded in the gap, recess of these irregular ground, improve the adhesion of shoe sole and ground, and pad 11 top end front middle part is provided with stop block 13, and stop block 13 is the main stress area of forefoot, and in the moment of kicking the ground, through stop block 13, the forefoot can more stably hold the ground, and pad 11 middle part is provided with adsorption structure 14, and when adsorption structure 14 contacts with ground, will squeeze the air of the surface contacted with it, produce negative pressure, reach the effect of " hold " ground, improve the adhesion of shoe sole to smooth surface, and pad 11 top end is arrayed with anti-skid bar 15, and the installation position of anti-skid bar 15 avoids stop block 13 and adsorption structure 14, and the arrayed anti-skid bar 15 is like a small claw, can tightly hold the ground, and in the moment of kicking the ground, the leg muscle strength is more effectively transmitted, and simultaneously can also increase the adhesion to rugged road surface;
[0028] The second turbine exhaust suction disc 2 and the first turbine exhaust suction disc 1 are mirror-symmetrical structures, are arranged on the forefoot and the hindfoot of the shoe sole respectively, the mirror-symmetrical structure can reduce the production cost, provides economic benefit, and the mirror-symmetrical structure can ensure that the second turbine exhaust suction disc 2 and the first turbine exhaust suction disc 1 arranged on the forefoot and the hindfoot of the shoe sole provide the same antiskid effect.
[0029] The top front end of the pad body 11 is provided with a skid-resistant strip 16, the skid-resistant strip 16 can further improve the ground adhesion of the shoe sole, when walking, the skid-resistant strip 16 will be rubbed with the ground, thereby achieving the effect of preventing skidding.
[0030] As shown in Figure 5 The utility model discloses an adsorption structure 14 including an adsorption ring 141, a fan-shaped adsorption block 142 and an adsorption strip 143, which are all arranged on the top middle part of the pad body 11, the adsorption ring 141 has the fan-shaped adsorption block 142 arranged on the upper and lower parts and the left and right parts in the horizontal and vertical directions, and the adsorption strip 143 is arranged outside the adsorption ring 141 in the shape of X with the adsorption ring 141 as the center; wherein the adsorption ring 141, the fan-shaped adsorption block 142 and the adsorption strip 143 are all composed of a plurality of rubber blocks, there is a space of no less than 0.1mm between each adjacent rubber block, the adsorption ring 141, the fan-shaped adsorption block 142 and the adsorption strip 143 form a suction disc structure in cooperation, when the adsorption ring 141, the fan-shaped adsorption block 142 and the adsorption strip 143 contact the ground, the air in the contact surface with the ground will be squeezed, the adsorption ring 141, the fan-shaped adsorption block 142 and the adsorption strip 143 are all composed of a plurality of rubber blocks, there is a space of no less than 0.1mm between each adjacent rubber block, the space forms an air flow channel, the squeezed air will be discharged along the air flow channel, thereby generating negative pressure, achieving the effect of "sucking" the ground and improving the ground adhesion of the shoe sole on the smooth surface.
[0031] As shown in Figure 6 The utility model discloses an adsorption ring 141 including an inner ring 1411, a middle ring 1412 and an outer ring 1413, which are all arranged on the top middle part of the pad body 11, the middle ring 1412 is arranged outside the inner ring 1411, and the outer ring 1413 is arranged outside the middle ring, the inner ring 1411, the middle ring 1412 and the outer ring 1413 increase the friction of the shoe sole, squeeze the air in the contact surface with the ground, discharge the air through the first exhaust groove 1414 and the second exhaust groove 1415, generate negative pressure, thereby achieving the effect of "sucking" the ground and improving the ground adhesion of the shoe sole on the smooth surface.
[0032] The adsorption ring 141 further comprises a first pressure discharge groove 1414, which is arranged in the middle of the top end of the pad body 11 and separates the inner ring 1411 from the middle ring 1412. When the inner ring 1411 and the middle ring 1412 squeeze the air in contact with the ground, the air is discharged through the first pressure discharge groove 1414, thereby generating negative pressure and improving the grip of the sole on a smooth surface.
[0033] The adsorption ring 141 further comprises a second pressure discharge groove 1415, which is arranged in the middle of the top end of the pad body 11 and separates the middle ring 1412 from the outer ring 1413. When the middle ring 1412 and the outer ring 1413 squeeze the air in contact with the ground, the air is discharged through the second pressure discharge groove 1415, thereby generating negative pressure and improving the grip of the sole on a smooth surface.
[0034] Working principle:
[0035] The second turbine pressure discharge suction disc 2 and the first turbine pressure discharge suction disc 1 are mirror-symmetric structures, and are arranged in the forefoot and hindfoot of the sole, respectively. Through the two, the grip of the sole can be increased, thereby solving the problem of poor anti-skid effect of the anti-skid lines of the sole on the kitchen, bathroom, outdoor ground in rainy and snowy weather, and other wet and slippery road surfaces with low friction coefficient in the prior art;
[0036] In the production of the sole, the bottom of the pad body 11 is arranged at the forefoot part of the sole, the top outer edge of the pad body 11 is arrayed with anti-skid blocks 12, the anti-skid blocks 12 can increase the lateral friction between the sole and the ground, and when facing rugged roads, the anti-skid blocks arranged at the outer edge of the pad body 11 can be embedded into the gaps and recesses of these irregular grounds, thereby improving the grip of the sole on the ground. The front middle part of the top end of the pad body 11 is provided with a non-slip block 13, which is the main stress area of the forefoot. In the moment of stepping on the ground, the forefoot can more stably grasp the ground through the non-slip block 13. The middle part of the pad body 11 is provided with an adsorption structure 14. When the adsorption structure 14 contacts the ground, it will squeeze the air in contact with it, generate negative pressure, and achieve the effect of "sucking" the ground. The top end of the pad body 11 is arrayed with anti-skid strips 15, which are like small claws and can tightly grasp the ground. In the moment of stepping on the ground, the leg muscle strength can be more effectively transmitted. At the same time, the anti-skid strips 15 can also increase the grip on rugged roads. The top front end of the pad body 11 is provided with a non-slip strip 16, which can further improve the grip of the sole. When walking, the non-slip strip 16 will rub against the ground, thereby achieving the effect of anti-skid.
[0037] The adsorption structure 14 comprises an adsorption ring 141, a fan-shaped adsorption block 142 and an adsorption strip 143, which cooperate to form a suction cup structure, and when the adsorption ring 141, the fan-shaped adsorption block 142 and the adsorption strip 143 are in contact with the ground, air in contact with the ground will be squeezed out, and the adsorption ring 141, the fan-shaped adsorption block 142 and the adsorption strip 143 are all composed of a plurality of rubber blocks, and there is a space not less than 0.1mm between each adjacent rubber block, and the space is an air flow channel, and the squeezed air will be discharged along the air flow channel, so as to generate negative pressure, so as to achieve the effect of "sucking" the ground, and improve the grip of the sole on the smooth surface.
[0038] The adsorption ring 141 comprises an inner ring 1411, a middle ring 1412, an outer ring 1413, a first row of pressure grooves 1414 and a second row of pressure grooves 1415, the inner ring 1411, the middle ring 1412 and the outer ring 1413 can increase the friction of the sole, and can also squeeze the air in contact with the ground, and discharge the air through the first row of pressure grooves 1414 and the second row of pressure grooves 1415, so as to generate negative pressure, so as to achieve the effect of "sucking" the ground, and improve the grip of the sole on the smooth surface.
[0039] The above is only a preferred example of the present application and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, and for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A turbine exhaust pressure suction cup for shoe sole traction design, characterized by: The utility model provides a first turbine exhaust pressure suction disc (1) comprising a pad body (11), the pad body (11) top outer edge array is provided with antiskid block (12), the pad body (11) top end front middle part is provided with stopper (13), and the pad body (11) middle part is provided with adsorption structure (14), the pad body (11) top end array is provided with antiskid strip (15), and the antiskid strip (15) installation position avoids stopper (13) with adsorption structure (14).
2. The turbine pressure exhaust suction cup of the shoe sole anti-skid design according to claim 1, characterized in that: Also including second turbine exhaust pressure suction disc (2), the second turbine exhaust pressure suction disc (2) with first turbine exhaust pressure suction disc (1) is mirror image symmetry structure.
3. The turbine pressure discharge suction cup of the shoe sole slip-resistant design according to claim 2, characterized by: The pad body (11) top front end is provided with stopper (16).
4. The turbine pressure exhaust suction cup for shoe sole slip resistance design according to claim 1, wherein: The adsorption structure (14) includes adsorption ring (141), sector adsorption block (142) and adsorption strip (143), three are set in the pad body (11) top middle part, the adsorption ring (141) has set sector adsorption block (142) in the horizontal and vertical direction, left and right, the adsorption strip (143) is with adsorption ring (141) as center, and is set to X outside adsorption ring (141) in four directions.
5. The turbine pressure discharge suction cup of the shoe sole slip-resistant design according to claim 4, characterized by: The adsorption ring (141), sector adsorption block (142) and adsorption strip (143) are all combined by multiple rubber blocks, and there is no less than 0.1MM interval between each adjacent rubber block.
6. The turbine pressure discharge suction cup of the shoe sole slip-resistant design according to claim 5, characterized by the fact that: The adsorption ring (141) includes inner ring (1411), middle ring (1412) and outer ring (1413), three are set in the pad body (11) top end middle part, the inner ring (1411) outer side is provided with middle ring (1412), and the middle ring outer side is provided with outer ring (1413).
7. The turbine pressure discharge suction cup of the shoe sole slip-resistant design according to claim 6, characterized by the fact that: The adsorption ring (141) further includes first exhaust groove (1414), and the first exhaust groove (1414) is opened in the pad body (11) top end middle part, and separates the inner ring (1411) from the middle ring (1412).
8. The turbine pressure discharge suction cup of the shoe sole slip-resistant design according to claim 7, characterized by: The adsorption ring (141) further includes second exhaust groove (1415), and the second exhaust groove (1415) is opened in the pad body (11) top end middle part, and separates the middle ring (1412) from the outer ring (1413).