CN108451093B - Fencing shoe product with asymmetric front and rear feet - Google Patents
Fencing shoe product with asymmetric front and rear feet Download PDFInfo
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- CN108451093B CN108451093B CN201710096678.8A CN201710096678A CN108451093B CN 108451093 B CN108451093 B CN 108451093B CN 201710096678 A CN201710096678 A CN 201710096678A CN 108451093 B CN108451093 B CN 108451093B
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- forefoot
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B13/00—Soles; Sole-and-heel integral units
- A43B13/38—Built-in insoles joined to uppers during the manufacturing process, e.g. structural insoles; Insoles glued to shoes during the manufacturing process
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B5/00—Footwear for sporting purposes
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B1/00—Footwear characterised by the material
- A43B1/14—Footwear characterised by the material made of plastics
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B3/00—Footwear characterised by the shape or the use
- A43B3/0036—Footwear characterised by the shape or the use characterised by a special shape or design
- A43B3/0094—Footwear characterised by the shape or the use characterised by a special shape or design with means to differentiate between right and left shoe
Abstract
The invention discloses a fencing shoe product with asymmetric front and back feet, which comprises: forefoot shoes and heel shoes, forefoot shoes include: a forefoot upper, a forefoot sole, and a forefoot insole, the rearfoot shoe comprising: the shoe comprises a rear foot vamp, a rear foot sole and a rear foot inner insole, wherein the front foot vamp and the rear foot vamp are designed asymmetrically, the front foot sole and the rear foot sole are designed asymmetrically, and the front foot inner insole and the rear foot inner insole are designed asymmetrically. According to the fencing shoe product prepared by the asymmetrically designed front shoes and rear shoes, compared with the traditional fencing shoe, the fencing shoe product can respectively meet different action requirements of front and rear feet of a fencing athlete; the problem of traditional symmetry fencing shoes are used by both feet in asymmetric mode, and local damage is serious is solved, and this fencing shoes product compares the life-span longer with traditional fencing shoes, reduces extravagantly, can carry out streamlined production when satisfying sportsman's individualized demand better.
Description
Technical Field
The invention relates to the technical field of fencing shoe design, in particular to a fencing shoe product with asymmetric front and back feet.
Background
Conventional shoes are generally designed to have a structure in which left and right feet are completely symmetrical, however, in real life, the shape of the feet of a person is not necessarily absolutely symmetrical, and even the size of the feet is not necessarily completely the same. Especially, in some sports, the limitation of the symmetrical shoes is particularly prominent under the influence of different actions of the feet of the athletes. Such as fencing, tennis, badminton, and golf, players have different assignments of their feet, and in such sports, symmetrically designed shoes do not fully satisfy the different needs of their feet, or because they use a pair of shoes in an asymmetrical manner for a long time, they are locally damaged severely and the life of the sports shoes is shortened.
Fencing is a typical movement with inconsistent motion of the feet. The left and right feet are called the front foot (or called the active foot) and the rear foot (or called the support foot) respectively according to different sports habits of athletes. In the basic foot motions of a fencing player, the motion of the front foot (namely, the driving foot) is to lift forward and then land on the ground with the heel, and the motion of the rear foot (namely, the supporting foot) is mainly to cooperate with the driving foot to slide or drag on the ground and keep balance to complete a series of motions. In the process of the sport, the athlete has different requirements on the buffering, stabilizing, balancing and abrasion resistance of the front and the rear shoes. Therefore, the symmetrical design of the traditional shoes can not respectively meet different requirements of the two feet in the fencing sport.
Disclosure of Invention
In order to solve the problems in the prior art, the embodiment of the invention provides a fencing shoe product with asymmetric front and back feet. The technical scheme is as follows:
in one aspect, an embodiment of the present invention provides a fencing shoe product with asymmetric front and back feet, including: forefoot shoes and rearfoot shoes, the forefoot shoes include: a forefoot upper, a forefoot sole connected to the forefoot upper, and a forefoot insole removably mounted in the shoe, the rearfoot shoe comprising: the rear foot insole comprises a rear foot vamp, a rear foot sole connected with the rear foot vamp and a rear foot inner insole detachably arranged in the shoe;
the front foot vamp and the rear foot vamp are designed asymmetrically, the front foot sole and the rear foot sole are designed asymmetrically, and the front foot inner insole and the rear foot inner insole are designed asymmetrically;
the area of the rear foot reinforcing part at the toe cap of the rear foot vamp is larger than that of the front foot reinforcing part at the toe cap of the front foot vamp, or the wear resistance of the material used for the rear foot reinforcing part at the toe cap of the rear foot vamp is better than that of the material used for the front foot reinforcing part at the toe cap of the front foot vamp.
In the fencing shoe product according to the embodiment of the invention, the rear foot reinforcing part and the front foot reinforcing part are both made of polyurethane which is a light wear-resistant material and has a certain surface structure.
In the fencing shoe product according to the embodiment of the invention, when the fencing shoe product is used for a double-sword competition project, a forefoot protection area for puncture prevention is added at the toe cap of the forefoot vamp.
In the fencing shoe product described above in an embodiment of the present invention, the forefoot sole includes: a forefoot outsole in contact with the ground, a forefoot midsole in contact with the forefoot insole, and a forefoot cushion embedded in a heel portion of the forefoot midsole;
the rearfoot sole includes: the shoe comprises a rear foot outer sole contacted with the ground, a rear foot insole contacted with a rear foot inner insole, a rear foot iron core embedded in the middle of the upper surface of the rear foot insole, and a rear foot waist covering and embedded in the arch part area of the lower surface of the rear foot insole.
In the fencing shoe product according to the embodiment of the invention, the edges of the two sides of the rear instep are bent upwards to form an arch shape and wrap the two sides of the rear insole, and the rear instep is made of a polyurethane material.
In the fencing shoe product according to the embodiment of the invention, the forefoot inner insole is provided with forefoot reinforcing and cushioning areas at the first metatarsophalangeal joint, the forefoot and the heel area, respectively, and the rear foot inner insole is provided with rear foot reinforcing and cushioning areas at the first metatarsophalangeal joint and the forefoot area, respectively.
In the fencing shoe product according to the embodiment of the invention, the front foot inner insole is provided with a front foot arch support plate at the arch, and the rear foot inner insole is provided with a rear foot arch support plate at the arch.
In the fencing shoe product provided by the embodiment of the invention, the contact surface of the insole in the front foot and the sole of the front foot is provided with the texture which is fully distributed with the grooves; the contact surface of the insole in the rear foot and the sole of the rear foot is provided with grains which are fully distributed with grooves.
In the fencing shoe product according to the embodiment of the invention, the forefoot vamp, the forefoot sole, the forefoot insole, the rearfoot vamp, the rearfoot sole and the rearfoot insole are all of a multi-layer composite structure and are all produced in a modular manner.
The technical scheme provided by the embodiment of the invention has the following beneficial effects:
the fencing shoe product is prepared by the front foot shoes and the rear foot shoes which are designed asymmetrically, and compared with the traditional fencing shoe, the fencing shoe product can respectively meet the different action requirements of the front feet and the rear feet of a fencing athlete; the problem of traditional symmetry fencing shoes are used by both feet in asymmetric mode, and local damage is serious is solved, and this fencing shoes product compares the life-span longer with traditional fencing shoes, reduces extravagantly, can carry out streamlined production when satisfying sportsman's individualized demand better.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a schematic structural view of an upper of an asymmetric fencing shoe product with front and back feet provided by an embodiment of the invention;
FIG. 2 is a schematic view of a lateral structure of a rearfoot shoe according to an embodiment of the present invention;
FIG. 3 is a schematic view of the medial side of a rearfoot shoe according to one embodiment of the present invention;
FIG. 4 is a schematic view of the sole structure of an asymmetric front and back foot fencing shoe product provided by an embodiment of the invention;
FIG. 5 is a schematic structural view of a hindfoot sole according to an embodiment of the present invention;
fig. 6 is a schematic structural view of an inner insole of a fencing shoe product with asymmetric front and back feet provided by an embodiment of the invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
Example one
An embodiment of the present invention provides a fencing shoe product with asymmetric front and back feet, and referring to fig. 1, the fencing shoe product may include: the front foot is generally a right foot but can also be a left foot, and correspondingly, the rear foot is generally a left foot but can also be a right foot, fig. 1 is an illustration that the front foot is a right foot and the rear foot is a left foot, and the shoe can be customized according to the requirements of the athlete in practical application without the limitation of the left foot and the right foot.
Referring to fig. 1, 4, 6, the forefoot shoe 1 may comprise: a forefoot upper 11, a forefoot sole 12 connected to the forefoot upper 11, and a forefoot insole 13 removably mounted in the shoe, the rearfoot shoe 2 may include: the shoe comprises a rear foot vamp 21, a rear foot sole 22 connected with the rear foot vamp 21 and a rear foot inner insole 23 detachably mounted in the shoe, wherein the front foot vamp 11 and the rear foot vamp 21 are designed asymmetrically, the front foot sole 12 and the rear foot sole 22 are designed asymmetrically, and the front foot inner insole 13 and the rear foot inner insole 23 are designed asymmetrically.
In this embodiment, the action of the fore foot (i.e. the active foot) of the fencing player is to lift forward and then land with the heel first, and the action of the rear foot (i.e. the supporting foot) is mainly to cooperate with the active foot to slide or drag on the ground and keep balance to complete a series of actions. In the process of the sport, the athlete has different requirements on the buffering, stabilizing, balancing and abrasion resistance of the front and the rear shoes. Therefore, the front shoe 1 and the rear shoe 2 are made to meet the requirements of fencing more closely by adopting an asymmetric design.
Specifically, since the toe cap of the rear vamp 21 is subjected to more friction (friction with the ground) than the toe cap of the front vamp 11 during fencing, the toe cap of the rear vamp 21 is more easily worn than the front vamp 11, and therefore, referring to fig. 1, the area of the rear foot reinforcement part 211 at the toe cap of the rear vamp 21 is larger than the area of the front foot reinforcement part 111 at the toe cap of the front vamp 11, or the wear resistance of the material used for the rear foot reinforcement part 211 at the toe cap of the rear vamp 21 is better than the material used for the front foot reinforcement part 111 at the toe cap of the front vamp 11.
Alternatively, the heel reinforcement part 211 and the forefoot reinforcement part 111 may be made of Polyurethane (TPU) which is a lightweight wear-resistant material with a certain surface structure, and the area of the heel reinforcement part 211 is increased correspondingly.
Optionally, referring to fig. 1, when the fencing shoe product is used for a double fencing event, forefoot protection area 110 for puncture resistance is added at the toe cap of forefoot upper 11.
In practical application, because the attack range is large in double-sword sports (one of fencing sports), the attack area comprises the foot (mainly the front foot), so the front foot protection area 110 made of anti-puncture and friction-resistant materials is required to be additionally arranged in the toe cap area of the vamp of the front foot (driving foot), and the front foot protection area 110 can be made of artificial synthetic leather materials.
Further, both the forefoot upper 11 and the rearfoot upper 21 may be made of a multi-layer composite structure and may be produced in a modular manner. Referring to fig. 2 and 3, the rearfoot upper 21 of the rearfoot shoe 2 is illustrated, and the rearfoot upper 21 may include: a heel base layer 212, a heel structure support layer 213, and a heel reinforcement 211 (correspondingly, the forefoot upper also includes a forefoot base layer, a forefoot structure support layer, and a forefoot reinforcement, with the exception that the reinforcement is designed differently and the forefoot upper may also have a forefoot protection zone).
The rearfoot base layer 212 fits around the user's foot and is attached to the rearfoot sole 22 by various means, such as with adhesives and stitching. Preferably, a lightweight three-dimensional mesh structure material is selected to provide a comfortable and breathable wearing environment while reducing the weight of the footwear body.
A rear foot structure supporting layer 213 and a rear foot reinforcing part 211 are covered on the rear foot base layer 212, wherein the rear foot structure supporting layer 213 is distributed in a sheet and strip shape including a front half area covering the inner side of the upper (a triangle area covering the middle of the toe cap, the lacing system and the arch position), a strip area extending from the lacing system to the heel direction, and a heel area. The material is provided as a material that is wear resistant and has a certain hardness, preferably light-weight wear resistant leather or synthetic leather is used.
In practical application, the structure of the structure supporting layer is designed asymmetrically according to different action characteristics of two feet in fencing movement, and the asymmetric design is mainly embodied on the inner sides of a front foot (driving foot) and a rear foot (supporting foot). In fencing, the inner side of a rear foot (supporting foot) of an athlete has more dragging and rotating actions, and a structure supporting layer on the inner side of the rear foot (supporting foot) completely covers the front half area (a triangular area formed by connecting lines of a toe cap, a lacing system and an arch position) on the inner side of a rear foot vamp so as to obtain enough reinforcing effect and prolong the service life of the shoe; meanwhile, the structure supporting layer at the corresponding position is in an inverted triangle strip shape on the inner side of the foreleg (active foot) and on the outer sides of the two shoes, so that stable supporting force is provided for the front section of the shoe body, the resistance generated when the athlete bends the shoe body when jumping and landing is reduced, and the effects of flexibility and ventilation are achieved. In addition, the strip-shaped structure supporting strips extending from the lacing system to the heel direction are respectively arranged at the inner side and the outer side of the two shoes to stably support the middle section of the vamp, and the design is pairwise symmetrical; the structure supporting layer for covering the heel part is designed by double-layer structure layers, the heel part is stable in shape, and the front foot and the rear foot of the shoe are symmetrically designed.
In practical applications, the reinforcement portions (including the front foot reinforcement portion 111 and the rear foot reinforcement portion 211) are not only disposed at the toe-cap of the shoe upper, but also disposed at the heel and the eyelets on the inner side of the shoe upper (corresponding to the medial aspect of the foot) (i.e., the area on the inner side of the shoe upper not covered by the structural support layer, for example, 214 in fig. 3 is the eyelet on the inner side of the shoe upper of the rear foot), and the reinforcement portions at the heel are covered on the structural support layer, so as to further stabilize the heel structure and prevent wear of the reinforcement surface; the reinforcing part at the toe cap part and the reinforcing part at the eyelet part on the vamp of the rear foot are matched with the action characteristic that the inside of the vamp of the rear foot contacts the ground in fencing movement, so that the shoe product can obtain enough reinforcing effect, and the service life of the product is prolonged.
In addition, in the fencing shoe product, the tongue is made of breathable fabric, and a light three-dimensional mesh structure material with the same base is preferably used. The inner sides of the upper of the left foot and the right foot are provided with thickened cushion pads for protecting ankles and reducing the probability of sprain. The lacing system is designed to prevent accidental danger caused by the unraveling of the shoelace during fencing, and preferably uses the unraveling prevention shoelace.
Specifically, referring to fig. 4, the forefoot sole 12 may include: a forefoot outsole (not shown in the drawings) that contacts the ground, a forefoot midsole 122 that contacts the forefoot insole 13, and a forefoot cushion 123 embedded in the heel portion of the forefoot midsole 122.
In this embodiment, two forefoot cushions 123 are provided, and are respectively embedded from the upper and lower surfaces of the forefoot midsole 122, and the forefoot cushion 123 is added to the forefoot sole 12, so as to satisfy the requirement of the forefoot (active foot) on the cushioning performance of the fencing shoe.
Referring to fig. 5, the rearfoot sole 22 may include: a rear outsole 221 contacting the ground, a rear midsole 222 contacting the rear insole 23, a rear iron core 223 embedded in the middle of the upper surface of the rear midsole 222, and a rear quarter 224 covering and embedded in the arch region of the lower surface of the rear midsole 222.
In the present embodiment, the rear foot core 223 is disposed at the middle of the upper surface of the rear foot midsole 222, embedded in the rear foot midsole 222, preferably using a nylon material; the rear foot waist 224 covers and is embedded in the arch region of the lower surface of the rear foot midsole 222, preferably made of polyurethane, and two side edges of the rear foot waist 224 are bent upwards to wrap two sides of the rear foot midsole 222 and present a slight arch shape; the rear foot iron core 223 and the rear foot shoe waist 224 are used for improving the stability of the fencing shoe product and preventing the sole from twisting to hurt the athletes in the fierce and rapid fencing sports.
Further, referring to fig. 5, both side edges of the rear quarter 224 are bent upward in an arch shape and wrap both sides of the rear midsole 222, and the rear quarter 224 is made of a polyurethane material.
Further, both the forefoot sole 12 and the rearfoot sole 22 may be made of a multi-layer composite structure and may be produced in a modular fashion. In this embodiment, taking the hindfoot sole 22 as an example, and referring to FIG. 5, the hindfoot outsole 221 is a smooth, round, abrasion resistant, resilient material, preferably a lightweight, low density natural rubber. The rear outsole 221 is thickened in the heel area and is in a three-dimensional arc shape, and is wrapped on the outer layer of the heel part of the rear midsole 222; the region of the rear outsole 221 extending outside the upper of the forefoot is rounded and smooth; the surface of the rear outsole 221 contacting the ground has a ravine-shaped texture design and is provided with a suction cup to obtain better frictional resistance. The hindfoot midsole 222 is preferably formed using a low density ethylene-vinyl acetate copolymer ("EVA"). The heel area is thickened into a three-dimensional circular arc shape and is wrapped on the outer layer of the vamp material.
In particular, since more cushioning protection is required at the heel of the forefoot during fencing activities, the forefoot insole 13 is provided with a forefoot stiffening and cushioning area 131 at the first metatarsophalangeal joint, the forefoot and heel area, respectively, and the rearfoot insole 23 is provided with a rearfoot stiffening and cushioning area 231 at the first metatarsophalangeal joint and the forefoot area, respectively, see fig. 6.
Further, the forefoot insole 13 is provided with a forefoot arch support plate 132 at the arch and the rearfoot insole 23 is provided with a rearfoot arch support plate 232 at the arch. In practice, the arch support plate is mainly arranged according to wearing habits of athletes and foot characteristics (such as flat feet which are more frequently found in fencing athletes) so as to improve the wearing comfort of the fencing shoe product.
Furthermore, the contact surface of the front inner insole 13 and the front sole 12 is provided with grains which are fully distributed with grooves; the contact surface of the heel inner insole 23 and the heel sole 22 is provided with texture which is fully distributed with grooves. Therefore, the friction force between the inner insole and the sole can be enhanced, and the detachable inner insole is prevented from slipping.
Further, both the forefoot insole 13 and the rearfoot insole 23 may be prepared using a multi-layer composite structure and may be produced in a modular manner. In this embodiment, the inner insole is detachably provided, and the main material is preferably professional insole material, such as: a polyurethane material. The upper surface of the inner insole is covered with a textile fabric having good non-slip properties to prevent relative slip between the foot and the inner insole during sports, preferably using a suede fabric. The lower surface of the inner insole is preferably provided with a forefoot cushioning pad (i.e. a reinforced cushioning area at the first metatarsophalangeal joint, at the ball of the foot) and a heel cushioning pad (i.e. a reinforced cushioning area at the heel). The arch area is provided with an arch support plate of hardness and material that can be chosen according to the wearing habits of the player and the characteristics of the foot (such as the flat foot that is more present in fencing players), preferably using EVA material. The palm buffering shock pad, the heel buffering shock pad and the arch support plate are all provided with texture designs which fill the grooves, so that friction force is increased, and relative movement between the lower surface of the inner shoe pad and the inner bottom surface of the shoe is reduced.
According to the embodiment of the invention, the fencing shoe product is prepared by the front foot shoes and the rear foot shoes which are designed asymmetrically, and compared with the traditional fencing shoe, the fencing shoe product can respectively meet different action requirements of front and rear feet of a fencing athlete; the problem of traditional symmetry fencing shoes are used by both feet in asymmetric mode, and local damage is serious is solved, and this fencing shoes product compares the life-span longer with traditional fencing shoes, reduces extravagantly, can carry out streamlined production when satisfying sportsman's individualized demand better.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.
Claims (7)
1. An asymmetric front and rear fencing shoe product, comprising: forefoot shoes (1) and rearfoot shoes (2), forefoot shoes (1) include: a forefoot upper (11), a forefoot sole (12) connected to the forefoot upper (11), and a forefoot insole (13) removably mounted in the shoe, said rearfoot shoe (2) comprising: a back foot vamp (21), a back foot sole (22) connected with the back foot vamp (21), and a back foot inner insole (23) which is detachably arranged in the shoe,
the front foot vamp (11) and the rear foot vamp (21) are designed asymmetrically, the front foot sole (12) and the rear foot sole (22) are designed asymmetrically, and the front foot inner insole (13) and the rear foot inner insole (23) are designed asymmetrically;
the rear foot vamp (21) comprises a rear foot base layer (212), a rear foot structure supporting layer (213) and a rear foot reinforcing part (211); the rear foot reinforcing part (211) is arranged at the toe cap, the heel and the eyelets at the inner side of the vamp of the rear foot (21); the rear foot structure supporting layer (213) and the rear foot reinforcing part (211) cover the surface of the rear foot base layer (212), the rear foot structure supporting layer (213) completely covers the front half part area of the inner side of the vamp of the rear foot shoe (2), and the front half part area is a triangular area formed by connecting lines of a toe cap, a lacing system and the arch position;
the forefoot vamp (11) comprises a forefoot base layer, a forefoot structure support layer, and a forefoot reinforcing part; the front foot reinforcing part is arranged at the toe cap, the heel and the eyelets at the inner side of the vamp of the front foot vamp (11); the abrasion resistance of the material used for the rear foot reinforcing part (211) at the toe cap of the rear foot vamp (21) is better than that of the material used for the front foot reinforcing part (111) at the toe cap of the front foot vamp (11); the forefoot sole (12) comprising: a forefoot outsole in contact with the ground, a forefoot midsole (122) in contact with the forefoot insole (13), and a forefoot cushion (123) embedded in the heel of the forefoot midsole (122);
the rearfoot sole (22) comprising: a rear foot outsole (221) contacted with the ground, a rear foot insole (222) contacted with the rear foot insole (23), a rear foot iron core (223) embedded in the middle of the upper surface of the rear foot insole (222), and a rear foot waist (224) covered and embedded in the arch part area of the lower surface of the rear foot insole (222).
2. The fencing shoe product of claim 1, wherein a forefoot protection zone (110) for puncture resistance is added at the toe of the forefoot upper (11) when the fencing shoe product is used for a double fencing event.
3. The fencing shoe product of claim 1, wherein the rear quarter (224) is bowed upward at both side edges and wraps around both sides of a rear midsole (222), the rear quarter (224) being made of a polyurethane material.
4. Fencing shoe product according to claim 1, wherein the forefoot insole (13) is provided with a forefoot stiffening buffer (131) at the first metatarsophalangeal joint, at the forefoot and at the heel area, respectively, and wherein the rearfoot insole (23) is provided with a rearfoot stiffening buffer (231) at the first metatarsophalangeal joint and at the forefoot area, respectively.
5. Fencing shoe product according to claim 4, wherein the forefoot insole (13) is provided with a forefoot arch support plate (132) at the arch and the rearfoot insole (23) is provided with a rearfoot arch support plate (232) at the arch.
6. The fencing shoe product according to claim 5, wherein the forefoot insole (13) and forefoot sole (12) contact surface is provided with a texture that is full of grooves; the contact surface of the inner insole (23) of the hind foot and the sole (22) of the hind foot is provided with grains which are fully distributed with grooves.
7. Fencing shoe product according to any one of claims 1-6, wherein the forefoot upper (11), the forefoot sole (12), the forefoot insole (13), the rearfoot upper (21), the rearfoot sole (22) and the rearfoot insole (23) are all of a multi-layer composite structure and are produced in a modular manner.
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
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CN201710096678.8A CN108451093B (en) | 2017-02-22 | 2017-02-22 | Fencing shoe product with asymmetric front and rear feet |
US16/487,449 US20200054094A1 (en) | 2017-02-22 | 2017-02-28 | Fencing Shoe Product with Asymmetric Front Foot Shoe and Rear Foot Shoe |
PCT/CN2017/075205 WO2018152856A1 (en) | 2017-02-22 | 2017-02-28 | Fencing shoe product with asymmetric front foot shoe and rear foot shoe |
Applications Claiming Priority (1)
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CN201710096678.8A CN108451093B (en) | 2017-02-22 | 2017-02-22 | Fencing shoe product with asymmetric front and rear feet |
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CN108451093A CN108451093A (en) | 2018-08-28 |
CN108451093B true CN108451093B (en) | 2021-08-17 |
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CN201710096678.8A Active CN108451093B (en) | 2017-02-22 | 2017-02-22 | Fencing shoe product with asymmetric front and rear feet |
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US (1) | US20200054094A1 (en) |
CN (1) | CN108451093B (en) |
WO (1) | WO2018152856A1 (en) |
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2017
- 2017-02-22 CN CN201710096678.8A patent/CN108451093B/en active Active
- 2017-02-28 WO PCT/CN2017/075205 patent/WO2018152856A1/en active Application Filing
- 2017-02-28 US US16/487,449 patent/US20200054094A1/en active Pending
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CN103284400A (en) * | 2012-03-02 | 2013-09-11 | 德尔惠股份有限公司 | Sports shoe sole provided with functions of damping and smooth protection |
CN202489291U (en) * | 2012-03-20 | 2012-10-17 | 德尔惠股份有限公司 | Compound type multifunctional shock-absorption sports shoe sole |
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Also Published As
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WO2018152856A1 (en) | 2018-08-30 |
US20200054094A1 (en) | 2020-02-20 |
CN108451093A (en) | 2018-08-28 |
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