CN219042587U - Portable anti-slip sole - Google Patents

Portable anti-slip sole Download PDF

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Publication number
CN219042587U
CN219042587U CN202223127390.8U CN202223127390U CN219042587U CN 219042587 U CN219042587 U CN 219042587U CN 202223127390 U CN202223127390 U CN 202223127390U CN 219042587 U CN219042587 U CN 219042587U
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China
Prior art keywords
sole
skid
slip
liquid discharge
discharge groove
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CN202223127390.8U
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Chinese (zh)
Inventor
吴荣照
林秀欣
袁雄文
钟素丹
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Hongxingerke Shangqiu Industrial Co ltd
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Hongxingerke Shangqiu Industrial Co ltd
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Priority to CN202223127390.8U priority Critical patent/CN219042587U/en
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Abstract

The utility model provides a portable anti-slip sole, which comprises a body, wherein side grooves along the length direction of the sole are formed in two sides of a front sole of the body, and anti-spraining blocks are arranged on the side grooves; the front sole of the body is provided with an adjusting area capable of adjusting friction force, and the adjusting area is uniformly distributed with spikes which can extend out of the sole due to different strain forces of the sole; the heel position of the body is uniformly distributed with anti-skid structures; the body embeds there is the carbon board, this sole, its preceding sole is provided with the spike that can extend the sole according to the stress variation, consequently even when there is the gliding road surface of water, the sole also can keep good antiskid function, and the heel is provided with a plurality of antiskid structures, and the annular vibrating block in antiskid dish and the antiskid boss in the antiskid structure is slidable each other, when the sole receives the vibration, the vibration force that every annular vibrating block received is different, so can produce the relative slip in the vertical direction, and produce the echelonment, further increase sole to the friction on ground in order to realize antiskid function.

Description

Portable anti-slip sole
Technical Field
The utility model relates to the technical field of soles, in particular to a portable anti-slip sole.
Background
The sole is generally divided into an insole, a midsole and an outsole, wherein the insole is in direct contact with the instep, the midsole has the shock absorption effect, the outsole is in contact with the ground, the anti-skid and wear-resistant effects can be achieved, the insole, the midsole and the outsole are matched with each other in the past, the existing sole is anti-skid through reinforcing sole patterns, such as diamond patterns, cross patterns, sucker patterns and the like, but the sole is not ideal in anti-skid effect under the condition that the pavement is water, and no sole capable of automatically changing friction coefficient according to the stress change of the sole exists.
Disclosure of Invention
The utility model aims to provide a portable anti-slip sole, which solves the problems in the background technology.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the utility model provides a light limited slip sole, includes the body, the both sides of the preceding sole of body are provided with along sole length direction's side groove, be provided with on the side groove and prevent the piece of spraining; the front sole of the body is provided with an adjusting area capable of adjusting friction force, and spikes which can extend out of the sole due to different strain forces are uniformly distributed in the adjusting area; the anti-skid structures are uniformly distributed at the heel position of the body; the body is internally provided with a carbon plate for providing supporting force.
Furthermore, the anti-spraining blocks are distributed at equal intervals along the length direction of the body, and the height of the outer side of the anti-spraining blocks is larger than that of the inner side of the anti-spraining blocks.
Further, the direction that the spikes extend out of the sole faces towards the heel, and the edge of the spikes extending out of the sole is in a sector shape or a triangle shape.
Further, the angle of the spikes extending out of the sole is 0-30 degrees.
Further, the anti-slip structure comprises an anti-slip disc and at least 2 annular anti-slip blocks arranged around the anti-slip disc, and the annular anti-slip blocks comprise a plurality of anti-slip bosses which are arranged at intervals.
Further, the anti-skid boss and the anti-skid disc are provided with a plurality of annular vibrating blocks which can slide mutually.
Further, a first liquid discharge groove is formed between the anti-skid structures, a second liquid discharge groove is formed between the annular anti-skid blocks, a third liquid discharge groove is formed between the anti-skid bosses, the first liquid discharge groove is communicated with the third liquid discharge groove, and the third liquid discharge groove is communicated with the second liquid discharge groove.
Further, the size of the anti-skid boss gradually increases from the direction close to the anti-skid disc to the direction far away from the anti-skid disc.
After the technical scheme is adopted, the utility model has the following beneficial effects:
the light anti-slip sole is characterized in that the front sole is provided with the spikes which can extend out of the sole according to the change of stress, so that the sole can keep good anti-slip function even in a slippery road surface with water, the heel is provided with a plurality of anti-slip structures, an anti-slip disc in the anti-slip structures and annular vibration blocks in the anti-slip bosses can mutually slide, namely, when a human body moves, certain vibration can be generated on the sole, and when the sole is vibrated, the vibration force received by each annular vibration block is different, the sole can relatively slide in the vertical direction, and a ladder shape is generated, so that the friction of the sole to the ground is further increased to realize the anti-slip function.
Drawings
FIG. 1 is a bottom view of a sole according to an embodiment of the utility model;
FIG. 2 is a side view of a sole according to an embodiment of the utility model;
FIG. 3 is an enlarged view of an anti-skid structure according to an embodiment of the present utility model;
FIG. 4 is a schematic view of a configuration of a scalloped spike in accordance with an embodiment of the present utility model;
fig. 5 is a schematic view of the structure of a triangular stud according to an embodiment of the present utility model.
In the figure:
the novel shoe comprises a body-1, side grooves-2, a anti-breaking block-3, spikes-4, a carbon plate-5, an anti-slip structure-6, an anti-slip disk-7, an annular anti-slip block-8, an anti-slip boss-9, an annular vibrating block-10, a first liquid discharge groove-11, a second liquid discharge groove-12 and a third liquid discharge groove-13.
Detailed Description
In order to further explain the technical scheme of the utility model, the specific embodiments are explained in detail below through the attached drawings.
Referring to fig. 1-5, the utility model provides a portable anti-slip sole, which comprises a body 1, wherein both sides of a front sole of the body 1 are provided with side grooves 2 along the length direction of the sole, the side grooves 2 are provided with anti-spraining blocks 3, the anti-spraining blocks 3 are equidistantly distributed along the length direction of the body 1, the outer side height is larger than the inner side height, the sole can be kept in a stable state through the anti-spraining blocks 3 at both sides of the sole, and sideslip is not easy to occur to hurt feet; the front sole of the body 1 is provided with an adjusting area capable of adjusting friction force, the adjusting area is uniformly provided with spikes 4 which can extend out of the sole due to different strain forces, and the friction adjusting effect is realized according to the part of the spikes 4 extending out of the sole; the anti-skid structures 6 are uniformly distributed at the heel position of the body 1, and the anti-skid structures 6 at the heel can play a role in anti-skid cooperation; the body 1 is internally provided with a carbon plate 5 for providing supporting force, the area of the carbon plate 5 covers the sole, the upper surface of the sole can be more closely attached to the sole, and the sole has certain elasticity, so that the sole can play a role in assisting force.
Further, the direction in which the spike 4 extends out of the sole is toward the heel, the edge of the spike 4 extending out of the sole is in a fan shape or a triangle shape, when the stress of the sole changes, the spike 4 protrudes out of the sole, the formed section is toward the heel, the edge of the fan-shaped spike 4 is in an arc shape, and the friction force of the edge of the fan-shaped spike 4 is smaller than that of the triangle-shaped spike 4.
Further, the angle of the spike 4 extending out of the sole is 0-30 degrees, and the spike 4 within the range is not easy to wear due to the height of the spike 4 extending out of the sole while playing a role of preventing sliding.
Further, the anti-slip structure 6 comprises an anti-slip disc 7 and an annular anti-slip block 8 arranged around the anti-slip disc 7, the annular anti-slip block 8 comprises a plurality of anti-slip bosses 9 which are arranged at intervals, the anti-slip bosses 9 and the anti-slip disc 7 are provided with a plurality of annular vibrating blocks 10 which can slide mutually, when a human body moves, certain vibration can be generated on soles, when the soles are vibrated, vibration force received by each annular vibrating block 10 is different, relative sliding can be generated, stepped is generated, and friction of the soles to the ground is further increased to realize an anti-slip function.
Further, a first liquid discharge groove 11 is formed between the anti-skid structures 6, a second liquid discharge groove 12 is formed between the annular anti-skid blocks 8, a third liquid discharge groove 13 is formed between the anti-skid bosses 9, the first liquid discharge groove 11 is communicated with the third liquid discharge groove 13, the third liquid discharge groove 13 is communicated with the second liquid discharge groove 12, the mutual communication of the liquid discharge grooves can prevent the water stains from accumulating in the sole when the sole is on the water-stained ground, and the water stains are discharged from the first liquid discharge groove 11 through extrusion treading of the sole.
Further, the size of the anti-skid boss 9 gradually increases along the direction from the position close to the anti-skid plate 7 to the position far away from the anti-skid plate 7, and the anti-skid boss 9 can play a corresponding anti-skid role.
In the practical implementation process, when a human body moves, the human body leans forward, so that when the heel is lifted, the front sole is still in contact with the ground, and at the moment, the sole generates strain force along the length direction of the sole, so that the spikes 4 of the sole extend out of the surface of the sole according to the strain force, at the moment, even if the ground is wet and slippery, the sole extending out of the surface of the sole has the function of increasing friction and skid resistance, and in addition, due to the difference of the weight of the human body, the friction force on the sole is different; in addition, when the whole sole is grounded, a plurality of anti-slip structures 6 are arranged at the heels, the anti-slip discs 7 in the anti-slip structures 6 and the annular vibration blocks 10 in the anti-slip bosses 9 can slide mutually, namely, when a human body moves, certain vibration can be generated on the soles, when the soles are vibrated, the vibration force received by each annular vibration block 10 is different, so that micro relative sliding in the vertical direction can be generated, a step shape is generated, and the friction of the soles to the ground is further increased to realize the anti-slip function.
The form of the present utility model is not limited to the illustrations and examples, and any person who performs a similar idea of the present utility model should be regarded as not departing from the scope of the patent of the utility model.

Claims (8)

1. A portable anti-slip sole, which is characterized in that: the sole comprises a body, wherein side grooves along the length direction of the sole are formed in two sides of the front sole of the body, and a anti-bending block is arranged on each side groove; the front sole of the body is provided with an adjusting area capable of adjusting friction force, and spikes which can extend out of the sole due to different strain forces are uniformly distributed in the adjusting area; the anti-skid structures are uniformly distributed at the heel position of the body; the body is internally provided with a carbon plate for providing supporting force.
2. The lightweight anti-slip sole as claimed in claim 1, wherein: the anti-spraining blocks are distributed at equal intervals along the length direction of the body, and the height of the outer side of the anti-spraining blocks is larger than that of the inner side of the anti-spraining blocks.
3. The lightweight anti-slip sole as claimed in claim 1, wherein: the direction that the spikes extend out of the sole faces towards the heel, and the edge of the spikes extending out of the sole is fan-shaped or triangular.
4. The lightweight anti-slip sole as claimed in claim 1, wherein: the angle of the spikes extending out of the sole is 0-30 degrees.
5. The lightweight anti-slip sole as claimed in claim 1, wherein: the anti-skid structure comprises an anti-skid disc and at least 2 annular anti-skid blocks arranged around the anti-skid disc, wherein each annular anti-skid block comprises a plurality of anti-skid bosses which are arranged at intervals.
6. The lightweight anti-slip sole as claimed in claim 5, wherein: the anti-skid boss and the anti-skid disc are provided with a plurality of annular vibrating blocks which can slide mutually.
7. The lightweight anti-slip sole as claimed in claim 1, wherein: a first liquid discharge groove is formed between the anti-skid structures, a second liquid discharge groove is formed between the annular anti-skid blocks, a third liquid discharge groove is formed between the anti-skid bosses, the first liquid discharge groove is communicated with the third liquid discharge groove, and the third liquid discharge groove is communicated with the second liquid discharge groove.
8. The lightweight anti-slip sole as claimed in claim 5, wherein: the size of the anti-skid boss gradually increases along the direction from the anti-skid disc to the anti-skid disc.
CN202223127390.8U 2022-11-24 2022-11-24 Portable anti-slip sole Active CN219042587U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223127390.8U CN219042587U (en) 2022-11-24 2022-11-24 Portable anti-slip sole

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223127390.8U CN219042587U (en) 2022-11-24 2022-11-24 Portable anti-slip sole

Publications (1)

Publication Number Publication Date
CN219042587U true CN219042587U (en) 2023-05-19

Family

ID=86321473

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223127390.8U Active CN219042587U (en) 2022-11-24 2022-11-24 Portable anti-slip sole

Country Status (1)

Country Link
CN (1) CN219042587U (en)

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