Sole cushion block, sliding component, anti-skid component and combined component
By designing a combination of sole pads, gliding components, and anti-slip components, the problem of insufficient friction during dragging is solved, improving walking stability and sole lifespan, and reducing the risk of falls and economic burden.
Patent Information
- Application Number
- CN202520147830.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Ordinary shoes fail to effectively address the issues of insufficient friction and falls caused by dragging, especially among the elderly and those with pathological lower limb weakness, leading to increased wear on the soles and difficulty walking.
Design a sole pad that combines a gliding component and an anti-slip component, using a combination of elastic materials and specifically shaped components to provide anti-slip support during support and reduce friction during dragging. The combination of sole pad, gliding component and anti-slip component is suitable for dragging shoe soles.
By reducing friction during dragging, walking stability is improved, the risk of falling is reduced, the life of the sole is extended, and the economic burden is reduced.
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Figure CN223682064U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of footwear, in particular to a shoe sole pad, sliding component, anti -skidding component and combined component. BACKGROUND
[0002] The process of walking is to realize the forward movement by lifting, stepping and falling of two feet alternately. But in a part of the population, the foot (single foot or double foot) is not lifted high enough, which causes the originally forward step to become the dragging on the ground with the forefoot. There are many reasons for this walking method, including bad habits, and more importantly, caused by lower limb weakness, which is often pathological. The bad walking posture caused by bad habits can be improved by training or correction, while the pathological one needs to be relieved by treatment, and generally exists for a long time or for a long time, which may need specially designed shoes to improve the difficulty of walking. This difficulty is reflected in that ordinary shoes usually do not consider the dragging walking method, so in the dragging process, the ordinary shoe sole is in contact with the ground and relatively slides with the ground in the dragging process, and the sliding friction is large. This part of the population often concentrates on the old, the people with partial function loss due to disease, and their ability to resist large friction in walking is insufficient, which further aggravates the difficulty of walking and is prone to fall, and also causes abnormal wear of the shoe sole, increasing the economic burden of the disadvantaged group. CONTENT OF THE UTILITY MODEL
[0003] In view of the above shortcomings, the purpose of the utility model is to provide each independent component of the combined component suitable for the shoe sole for dragging, and the combined component of the shoe sole formed by the combination of each component.
[0004] Therefore, the shoe sole pad of the utility model is suitable for being fixed in the installation area of the forefoot part of the shoe sole, the shoe sole pad has elastic deformation capacity, the sliding component is arranged on the lower side of the shoe sole pad, the shoe sole pad constitutes the shoe sole, and the sliding component protrudes outside the anti-skid surface of the shoe sole in the natural state. When the elastic indentation of the sliding component exceeds the set value, the anti-skid component touches the ground.
[0005] Further, the shoe sole pad as a whole or in part is made of elastic material, so that the sliding component carried by the shoe sole pad can be indented or restored with the elastic deformation of the shoe sole pad.
[0006] Further, the two sides of the shoe sole pad are provided with protruding bearing parts, the position of the outer side of the bearing part is corresponding to the side of the forefoot part of the shoe sole, recesses corresponding to the curvature of the shoe sole are arranged between the two bearing parts of the shoe sole pad, and the anti-skid component is suitable for being installed, and the thickness of the bearing part of the shoe sole pad continuously decreases or does not decrease in the length direction of the shoe sole.
[0007] The utility model also includes a sliding component for fixing on the bearing part, the sliding component is combined to the sole and projects out of the anti -skid surface of the sole in the natural state, the anti -skid component touches the ground after the elastic inward intrusion of the sliding component exceeds the set value.
[0008] Further, the shape of the sliding component is a sled plate shape, and the length direction of the sole is in a strip shape, and the height direction is in a sheet shape.
[0009] Further, the surface of the sliding component is provided with one-way anti -skid lines, and the one-way anti -skid lines are used for anti -skid towards the rear side or the lateral side of the sole.
[0010] The utility model also includes an anti -skid component, and the anti -skid component is suitable for cooperating with the above-mentioned sole pad and the above-mentioned sliding component, and the anti -skid component is used for fixing in the forefoot part of the sole, and the position of the anti -skid component makes the sliding component project out of the surface of the anti -skid component of the sole in the natural state, and the anti -skid component touches the ground after the elastic inward intrusion of the sliding component exceeds the set value.
[0011] Further, the anti -skid component includes a transverse part and a longitudinal part, and the transverse part of the anti -skid component is installed on the front side and / or rear side of the sliding component, and the longitudinal part of the anti -skid component is fixed in the groove of the sole pad.
[0012] The utility model also includes a combined component, including sole pad, and further including sliding component and / or anti -skid component, the sliding component is fixed with the sole pad, and the anti -skid component is fixed on the sole pad, and the sole pad, the sliding component, the anti -skid component and the sole body constitute the sole, and the sliding component projects out of the anti -skid surface of the sole in the natural state, and the anti -skid component touches the ground after the elastic inward intrusion of the sliding component exceeds the set value.
[0013] Further, the two sides of the sole pad are provided with protruding bearing parts, the position of the outer side of the bearing part is correspondingly set as the side of the forefoot part of the sole, the two bearing parts of the sole pad are provided with the groove corresponding to the arc of the sole, the upper surface of the protruding bearing part of the sole pad is provided with the setting groove matched with the shape of the sliding component or the shape of the upper surface of the bearing part is matched with the shape of the sliding component, the front end and the rear end of the anti -skid component are provided with the transverse part, so that the shape of the anti -skid component forms the H-shaped type or the I-shaped type, and the transverse part of the anti -skid component extends to the edge of the sole, and the shape of the longitudinal part of the anti -skid component is matched with the shape of the groove of the sole pad.
[0014] The utility model has the beneficial technical effect:
[0015] The utility model discloses a sole pad block that can be processed and manufactured separately, a sliding component for sliding and an anti-skid component, and the three components can be processed into a combined component, or the sole pad and the sole pad block can be combined with any other component to form a combined component, and the combined component can be assembled with the sole having a forefoot mounting area to form a sole, thereby forming a sole suitable for dragging, and the anti-skid component is the main stress area when supporting, and the sliding component protrudes to reduce the friction force when dragging. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 A schematic view of components of each sole mounted on the sole;
[0017] Figure 2 A left view schematic view of Figure 1
[0018] Figure 3 A schematic view of a combined component;
[0019] Figure 4 A schematic view of a one-way anti-skid structure;
[0020] Figure 5 A schematic view of an anti-skid component.
[0021] The reference signs are as follows: 1, sole; 2, forefoot part; 3, heel part; 4, mounting area; 5, pad block; 501, groove; 502, elastic body; 6, sliding component; 7, anti-skid component; 701, transverse part; 702, longitudinal part; 8, one-way anti-skid pattern. DETAILED DESCRIPTION
[0022] To further illustrate the technical means and effects adopted by the utility model to achieve the predetermined utility model purposes, the specific embodiments, structures, features and effects according to the utility model are described in detail as follows in combination with the drawings and the preferred embodiments.
[0023] Referring to Fig. 1, Figure 1 Fig. 1 shows a sole 1 suitable for dragging formed after each sole component is mounted on the forefoot part 2 of the sole 1, and the sole 1 includes the forefoot part 2 and the heel part 3 when being formed, the forefoot part 2 is provided with a mounting area 4, and in this embodiment, a rectangular area is left empty at the forefoot position of the sole 1 to extend from one side of the sole 1 to the other side for mounting, the toe (the front of the combined component) and the rear side of the combined component are provided with stepped surfaces (for fixing the anti-skid component). The combined component mounted on the mounting area 4 mainly includes three components, which can be independently processed and fixed by gluing, or the sole pad block 5 and the other one or two components can be formed into a combined component by one or two times of forming and then glued to the sole 1 or fixed with the other components, and each component is described below.
[0024] The shoe sole pad 5 is used to be fixed in the mounting area 4 of the forefoot area 2 of the shoe sole, and has the ability of elastic deformation. The sliding member is arranged on the lower side of the shoe sole pad. The shoe sole pad constitutes the rear part of the shoe sole, and in the natural state, the sliding member protrudes out of the non-slip surface of the shoe sole. When the elastic deformation of the sliding member exceeds a certain value, the non-slip member touches the ground. Refer to Figures 1 to 4 In the embodiment, the shoe sole pad 5 can be integrally formed by an elastic material, or the bottom part is made of a common shoe sole material, and only the protruding load-bearing part or part of the load-bearing part is made of a high-elasticity material to form an elastic body 502. The sliding member 6 is fixed on the load-bearing part, and the sliding member 6 protrudes out of the surface of the non-slip member of the shoe sole 1. The elastic deformation ability of the elastic body 502 is such that when the forefoot area 2 of the shoe sole 1 is used as a support, the surface of the sliding member 6 is retracted to be flush with or below the surface of the shoe sole. At this time, the non-slip member 7 needs to be in contact with the ground and serve as the main force area. The load-bearing part of the shoe sole pad 5 is arranged on the side of the forefoot area 2 of the shoe sole 1, and a groove 501 corresponding to the curvature of the forefoot area of the shoe sole is formed between the two arms of the shoe sole pad 5, which is suitable for installing the non-slip member. The thickness of the two arms of the shoe sole pad 5 continuously decreases in the length direction of the shoe sole 1. This structure is mainly used to adapt to the curvature of the forefoot area 2 of the shoe sole, and can simplify the manufacturing difficulty of the non-slip member 7, so that the thickness of the non-slip member 7 remains consistent, and the decreasing rule of the thickness is also related to the degree of force concentration of the forefoot area of the shoe sole 1.
[0025] The sliding member 6, refer to Figures 1 to 4 In the embodiment, the shape of the sliding member 6 is a snowshoe plate shape, which is strip-shaped in the length direction of the shoe sole 1 and sheet-shaped in the height direction. The load-bearing part of the shoe sole pad 5 can be provided with a mounting groove, and the shape of the sliding member 6 corresponds to the shape of the surface of the load-bearing part, and the sliding member 6 is fixed in the mounting groove or on the surface of the load-bearing part. Generally, the thickness of the load-bearing part is greater than the thickness of the sliding member 6, and the size of the sliding member 6 does not completely correspond to the shape of the surface of the load-bearing part, and can be slightly larger or smaller. Figure 4 The surface of the sliding member 6 can also be provided with a one-way anti-skid pattern 8, which is used for anti-skid towards the rear side or the side of the shoe sole 1. The anti-skid pattern of the embodiment is in the shape of a chevron or an arrow, and the direction of the anti-skid pattern can provide greater anti-skid performance only when moving towards the rear side of the shoe. Of course, other one-way anti-skid structures in the prior art can also be used in the present application. The one-way anti-skid pattern is arranged to avoid sliding in other directions and thus causing a fall.
[0026] The non-slip member 7, refer to Figure 1 , Figure 2 and Figure 5The anti-skid member 7 is shown in cooperation with the sliding member 6 of the shoe sole and the shoe sole pad 5, and is used to be fixed in the forefoot part 2 of the shoe sole, and the position of the anti-skid member 7 is such that the corresponding sliding member 6 protrudes from the surface of the anti-skid member 7 during the dragging process, and the anti-skid member 7 is in contact with the ground when the corresponding shoe sole 1 supports the foot. The structure and position of the anti-skid member 7 in the forefoot can adopt the prior art, but the anti-skid member 7 in the embodiment includes a transverse part 701 and a longitudinal part 702, the transverse part 701 of the anti-skid member 7 is installed on the front side and / or rear side of the sliding member 6, and the longitudinal part 702 of the anti-skid member 7 is fixed in the groove 501 of the shoe sole pad 5. The anti-skid structure on the surface of the anti-skid member 7 can adopt the prior art, such as various anti-skid lines or structures. The anti-skid member 7 is in the form of a sheet, and the thickness is basically uniform. After the anti-skid member is fixed in cooperation with the stepped surface, the surface of the anti-skid member corresponds to the height of the surface of the shoe sole of the heel. The anti-skid member 7 is provided with a transverse part 701 at the front end and the rear end, so that the shape of the anti-skid member 7 is in the form of an I-shaped or T-shaped. The transverse part 701 of the anti-skid member 7 extends to the edge of the shoe sole 1 at both ends, and the shape of the longitudinal part 702 of the anti-skid member 7 cooperates with the shape of the groove 501 of the shoe sole pad 5.
[0027] Reference Figures 1 to 4 As shown above, the three components can be processed alone or combined into a combined component. Generally, the shoe sole pad 5 is combined with any other component or combined with another two components to form a part, and then the part is formed or glued into the forefoot mounting area 4 of the shoe sole 1. The connection relationship between the components has been described above, and will not be described again here.
[0028] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Although the present application has been disclosed as above with a preferred embodiment, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to the above disclosed technical content to obtain equivalent embodiments with equivalent changes, but as long as the changes do not deviate from the technical solution of the present application, any modification, equivalent change and modification of the above embodiment according to the technical essence of the present application are still within the scope of the technical solution of the present application.
Claims
1. A shoe insole adapted to be secured in a mounting area in the forefoot portion of a shoe sole, characterized by: The shoe sole pad has elastic deformation capacity, the sliding member is arranged on the lower side of the shoe sole pad, the shoe sole pad is combined with the shoe sole body, and the sliding member protrudes out of the non-slip surface of the shoe sole in a natural state.
2. The shoe insole of claim 1, wherein: The shoe sole pad is made of elastic material, and the sliding member carried by the shoe sole pad can be retracted or recovered with the elastic deformation of the shoe sole pad.
3. A shoe insole as defined in claim 2, wherein: The two sides of the shoe sole pad are provided with protruding load-bearing parts, the outer side edges of the load-bearing parts are arranged at positions corresponding to the side edges of the forefoot part of the shoe sole, a groove corresponding to the curvature of the shoe sole is arranged between the two load-bearing parts of the shoe sole pad, and the load-bearing parts of the shoe sole pad continuously decrease or do not decrease in thickness in the length direction of the shoe sole.
4. A sliding member for attachment to the insole block of claim 3, characterized by: The sliding member is used for being fixed on the load-bearing part, the sliding member protrudes out of the non-slip surface of the shoe sole, and the sliding member is combined with the shoe sole body and protrudes out of the non-slip surface of the shoe sole in a natural state.
5. A runner according to claim 4, wherein: The sliding member is in the shape of a ski board, is in the shape of a strip in the length direction of the shoe sole, and is in the shape of a sheet in the height direction.
6. A runner according to claim 5, wherein: The surface of the sliding member is provided with one-way anti-skid lines, and the one-way anti-skid lines are used for anti-skid towards the rear side or the lateral side of the shoe sole.
7. A slip-resistant member adapted to cooperate with the insole block of claim 3 and the gliding member of claim 5, characterized in that: The anti-skid member is used for being fixed on the forefoot part of the shoe sole, and the position of the anti-skid member is such that the sliding member protrudes out of the surface of the anti-skid member of the shoe sole in a natural state.
8. An anti-slip member according to claim 7, wherein: The anti-skid member includes a transverse part and a longitudinal part, the transverse part of the anti-skid member is arranged on the front side and / or the rear side of the sliding member, and the longitudinal part of the anti-skid member is fixed in the groove of the shoe sole pad.
9. A combination component, characterized by: The shoe sole pad, the sliding member and the anti-skid member are combined with the shoe sole body, the sliding member protrudes out of the non-slip surface of the shoe sole in a natural state, and the anti-skid member touches the ground when the sliding member is retracted by more than a set value.
10. A combination member according to claim 9, wherein: The two sides of the shoe sole pad are provided with protruding load-bearing parts, the outer side edges of the load-bearing parts are arranged at positions corresponding to the side edges of the forefoot part of the shoe sole, a groove corresponding to the curvature of the shoe sole is arranged between the two load-bearing parts of the shoe sole pad, and the upper surfaces of the protruding load-bearing parts of the shoe sole pad are provided with accommodation grooves matched with the shape of the sliding member or the upper surfaces of the load-bearing parts are matched with the shape of the sliding member. The front end and the rear end of the anti-skid member are provided with transverse parts, so that the shape of the anti-skid member is in the shape of an I or a T, the transverse parts of the anti-skid member extend to the edges of the shoe sole, and the longitudinal part of the anti-skid member is matched with the shape of the groove of the shoe sole pad.