CN212088396U - Novel slipper structure - Google Patents

Novel slipper structure Download PDF

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Publication number
CN212088396U
CN212088396U CN202020719826.4U CN202020719826U CN212088396U CN 212088396 U CN212088396 U CN 212088396U CN 202020719826 U CN202020719826 U CN 202020719826U CN 212088396 U CN212088396 U CN 212088396U
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sole
slipper structure
arch
novel slipper
convex strip
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CN202020719826.4U
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Chinese (zh)
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沈春心
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Individual
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Individual
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Abstract

The utility model provides a novel slipper structure, including sole and upper of a shoe face, the sole divide into sole and lower sole the front portion and the rear portion of sole go up the sole and the shape of sole down is the same, lower sole is in the arch of foot portion of sole narrows, makes go up the sole and be in the arch of foot portion of sole is greater than lower sole. The upper sole and the lower sole of the utility model form a size difference at the arch part of the sole, so that the sole leans outwards when landing, and the walking posture is corrected; the arch part is provided with a bulge, so that the arch of the sole of the foot is supported, and the flat foot can be corrected.

Description

Novel slipper structure
Technical Field
The utility model belongs to the technical field of shoes technique and specifically relates to a novel slippers structure.
Background
The slipper is one of shoes, the heel is completely empty, only the front surface is provided with a vamp, the slipper is mostly flat, and the material is generally quite soft leather, plastic, cloth and the like. In daily life, slippers are often worn by people under the most relaxed and comfortable conditions.
Disclosure of Invention
An object of the utility model is to provide a novel slippers structure.
In order to achieve the above object, the present invention provides a technical solution: a novel slipper structure comprises a sole and an upper surface, wherein the sole is divided into an upper sole and a lower sole, the upper sole and the lower sole are in the same shape at the front part and the rear part of the sole, and the lower sole is narrowed at the arch part of the sole, so that the arch part of the upper sole is larger than that of the lower sole.
Preferably, the medial foot side of the lower sole is narrowed to a greater extent in the arch portion of the sole than in the lateral foot side.
Further, the arch portion of the upper sole forms a protrusion, and the front and rear portions of the upper sole form a recess.
Furthermore, the front part and the rear part of the sole are both tilted upwards, and the tilting radian of the front part and the rear part of the sole is the same as that of the recess.
Preferably, granular massage grains are distributed on the upper surface of the upper sole, and the diameter of the massage grains is 1.5 mm.
Furthermore, an inverted T-shaped convex strip is arranged on the upper surface of the front part of the sole of the upper sole, a D-shaped convex strip is arranged on the upper surface of the arch part of the upper sole, an I-shaped convex strip is arranged outside a recess of the rear part of the sole of the upper sole, and the inverted T-shaped convex strip, the D-shaped convex strip and the I-shaped convex strip are inserted into the massage grains.
Preferably, the lower surface of the lower sole consists of an upper part, a middle part and a lower part, the upper part and the lower part are transverse raised stripes, the middle part is provided with a plurality of grooves formed by triangles with different sizes, triangular bulges are formed on the grooves, and inverted pyramid-shaped small particles are fully distributed on the surfaces of the triangular bulges.
Further, the sipes form a plurality of cross-shaped grooves along a centerline of the lower sole.
Preferably, the sole and the upper are both made of EVA materials, and silver ion antibacterial agents are added to the upper surface of the upper sole and the lower surface of the upper.
Preferably, the sole and the upper are both made of EVA materials, and silver ion antibacterial agents are added into the EVA materials.
Compared with the prior art, the scheme (1) leads the sole to incline outwards when landing by forming the size difference between the upper sole and the lower sole at the arch part of the sole, and corrects the walking posture; (2) the upper sole of the arch part forms a bulge to support the arch of foot, correct flat foot and massage and stimulate Yongquan acupoint; (3) the front part and the rear part of the sole are provided with the depressions, so that the upper sole is more attached to the sole of a foot, and more comfortable foot feeling is provided; (4) the front part and the rear part of the sole are tilted upwards, so that the bearing capacity of a human body is concentrated on the front sole and the rear heel when the human body walks, and the stress of the lower leg is reduced, thereby relieving the nervous tension of the lower leg and relieving the symptom of venous relaxation; (5) the whole upper sole is covered with massage particles to massage the whole sole, and the friction force between the upper sole and the sole is enhanced to prevent slipping in wet water.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic side view of the overall structure of the present invention;
fig. 3 is a schematic structural view of embodiment 3 of the present invention;
FIG. 4 is a schematic structural view of embodiments 4 and 5 of the present invention
Fig. 5 is a first schematic structural diagram of embodiment 6 of the present invention;
fig. 6 is a schematic structural diagram of embodiment 6 of the present invention.
Detailed Description
The invention will be further described with reference to the following specific embodiments:
example 1:
as shown in figures 1-2, the novel slipper structure of the present invention comprises a sole 1 and a vamp 2, wherein the sole 1 is divided into an upper sole 11 and a lower sole 12, the front part 1a and the rear part 1b of the sole 1
The shape of the upper sole 11 is the same as that of the lower sole 12, the lower sole 12 is narrowed at the arch part of the sole 1, so that the arch part of the upper sole 11 at the sole 1 is larger than that of the lower sole 12, when the sole lands, the sole makes the upper sole 11 press and bend at the inner side and the outer side of the arch part, on one hand, the sole and the upper sole 11 can be more comfortable, on the other hand, the press and bend structure makes the contact feedback of the sole and the sole 1 more flexible, and the foot feel is more soft and comfortable.
Example 2:
the difference from example 1 is that: the inner side of the sole is more flexible relative to the outer side of the foot, the outer side of the sole bears larger supporting force relative to the inner side of the foot, the narrowing range of the inner side of the lower sole 12 in the arch part of the sole 1 is larger than that of the outer side of the foot, so that the inner side of the upper sole 11 has larger pressing bending range, is more flexible, comfortable and fit with the sole, and the outer side of the upper sole 11 can be both flexible and support.
Example 3:
the difference from example 2 is that: as shown in fig. 2-3, the arch part of the upper sole 11 forms a bulge 13 which can stimulate the Yongquan point of the sole, and the front part 1a and the rear part 1b of the sole 1 of the upper sole 11 form a recess 14 which can enable the sole to be sunk into the recess and be more fit with the upper sole 11; the front part 1a and the rear part 1b of the sole 1 are both tilted upwards, the tilting radian of the front part 1a and the tilting radian of the rear part 1b of the sole 1 are the same as that of the recess 14, so that the tension of the nerves of the lower leg can be relieved, and the relaxation of veins can be relieved.
Example 4:
the difference from example 1 is that: as shown in fig. 4, the upper surface of the upper sole 11 is covered with granular massage particles 15, the diameter of the massage particles 15 is 1.5mm, and the massage particles 15 can stimulate sole acupuncture points, achieve the anti-skid function, and also can remove sweat and moisture.
Example 5:
the difference from example 4 is that: as shown in fig. 4, an inverted T-shaped protrusion 111 is disposed on the upper surface of the front portion 1a of the sole 1 of the upper sole 11 for supporting a concave position between the front sole and the toes, a D-shaped protrusion 112 is disposed on the upper surface of the arch portion of the upper sole 11 for blocking direct friction between the arch portion and the massage particles 15 to a certain degree, an I-shaped protrusion 113 is disposed outside the recess 14 of the rear portion 1b of the sole 1 of the upper sole 11 for blocking friction between the heel and the massage particles 15 to a certain degree, and the inverted T-shaped protrusion 111, the D-shaped protrusion 112, and the I-shaped protrusion 113 are inserted into the massage particles 15.
Example 6:
the difference from example 1 is that: as shown in fig. 5-6, the lower surface of the lower sole 12 is composed of an upper portion, a middle portion and a lower portion, and the upper portion and the lower portion are provided with transverse raised stripes 16 which play an effective anti-slip role; the middle part is provided with a plurality of grooves 17 formed by triangles with different sizes, so that sand grains are effectively prevented from entering; triangular protrusions 171 are also formed on the grooves 17, and inverted pyramid-shaped small particles are fully distributed on the surfaces of the triangular protrusions 171, so that the anti-skid effect is achieved; the grooves 17 form a plurality of grooves shaped like a Chinese character 'mi' along the center line of the lower sole 12, thereby playing a role of effective drainage.
Example 7:
the difference from example 1 is that: the sole 1 and the upper 2 are both made of EVA materials, and silver ion antibacterial agents are added on the upper surface of the upper sole 11 and the lower surface of the upper 2 for resisting bacteria.
Example 8:
the difference from example 1 is that: the sole 1 and the upper 2 are both made of EVA materials, and silver ion antibacterial agents are added into the EVA materials for antibiosis.

Claims (10)

1. A novel slipper structure comprises a sole and an upper surface, and is characterized in that: the sole is divided into an upper sole and a lower sole, the upper sole and the lower sole are in the same shape at the front part and the rear part of the sole, and the lower sole is narrowed at the arch part of the sole, so that the arch part of the upper sole at the sole is larger than that of the lower sole.
2. The novel slipper structure of claim 1, wherein: the foot inner side of the lower sole has a greater narrowing in the arch portion of the sole than the foot outer side.
3. A novel slipper structure as claimed in claim 2, wherein: the arch part of the upper sole forms a protrusion, and the front part and the rear part of the sole of the upper sole form a recess.
4. A novel slipper structure as claimed in claim 3, wherein: the front part and the rear part of the sole are both tilted upwards, and the tilting radian of the front part and the rear part of the sole is the same as that of the concave part.
5. The novel slipper structure of claim 1, wherein: granular massage grains are distributed on the upper surface of the upper sole, and the diameter of each massage grain is 1.5 mm.
6. The novel slipper structure of claim 5, wherein: the upper sole is characterized in that an inverted T-shaped convex strip is arranged on the upper surface of the front part of the sole of the upper sole, a D-shaped convex strip is arranged on the upper surface of the arch part of the upper sole, an I-shaped convex strip is arranged outside a recess in the rear part of the sole of the upper sole, and the inverted T-shaped convex strip, the D-shaped convex strip and the I-shaped convex strip are inserted into the massage grains.
7. The novel slipper structure of claim 1, wherein: the lower surface of the lower sole is composed of an upper portion, a middle portion and a lower portion, the upper portion and the lower portion are provided with transverse protruding stripes, the middle portion is provided with grooves formed by a plurality of triangles different in size, triangular protrusions are formed on the grooves, and inverted pyramid-shaped small particles are formed on the surfaces of the triangular protrusions in a full distribution mode.
8. The novel slipper structure of claim 7, wherein: the flutes form a plurality of cross-shaped grooves along a midline of the lower sole.
9. The novel slipper structure of claim 1, wherein: the sole and the upper surface are both made of EVA materials, and silver ion antibacterial agents are added to the upper surface of the upper sole and the lower surface of the upper surface.
10. The novel slipper structure of claim 1, wherein: the sole and the upper are both made of EVA materials, and silver ion antibacterial agents are added into the EVA materials.
CN202020719826.4U 2020-05-06 2020-05-06 Novel slipper structure Active CN212088396U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020719826.4U CN212088396U (en) 2020-05-06 2020-05-06 Novel slipper structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020719826.4U CN212088396U (en) 2020-05-06 2020-05-06 Novel slipper structure

Publications (1)

Publication Number Publication Date
CN212088396U true CN212088396U (en) 2020-12-08

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CN202020719826.4U Active CN212088396U (en) 2020-05-06 2020-05-06 Novel slipper structure

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114947280A (en) * 2022-06-21 2022-08-30 广东足迹鞋业有限公司 Child is with correcting slippers

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114947280A (en) * 2022-06-21 2022-08-30 广东足迹鞋业有限公司 Child is with correcting slippers

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