WO2011132902A2 - Semelle de chaussure fonctionnelle - Google Patents
Semelle de chaussure fonctionnelle Download PDFInfo
- Publication number
- WO2011132902A2 WO2011132902A2 PCT/KR2011/002760 KR2011002760W WO2011132902A2 WO 2011132902 A2 WO2011132902 A2 WO 2011132902A2 KR 2011002760 W KR2011002760 W KR 2011002760W WO 2011132902 A2 WO2011132902 A2 WO 2011132902A2
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- WO
- WIPO (PCT)
- Prior art keywords
- insole
- magnetic pole
- shoe insole
- chip
- shoe
- Prior art date
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C45/00—Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
- B29C45/14—Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor incorporating preformed parts or layers, e.g. injection moulding around inserts or for coating articles
- B29C45/14778—Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor incorporating preformed parts or layers, e.g. injection moulding around inserts or for coating articles the article consisting of a material with particular properties, e.g. porous, brittle
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B1/00—Footwear characterised by the material
- A43B1/0009—Footwear characterised by the material made at least partially of alveolar or honeycomb material
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B17/00—Insoles for insertion, e.g. footbeds or inlays, for attachment to the shoe after the upper has been joined
- A43B17/02—Insoles for insertion, e.g. footbeds or inlays, for attachment to the shoe after the upper has been joined wedge-like or resilient
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B7/00—Footwear with health or hygienic arrangements
- A43B7/14—Footwear with health or hygienic arrangements with foot-supporting parts
- A43B7/1405—Footwear with health or hygienic arrangements with foot-supporting parts with pads or holes on one or more locations, or having an anatomical or curved form
- A43B7/1455—Footwear with health or hygienic arrangements with foot-supporting parts with pads or holes on one or more locations, or having an anatomical or curved form with special properties
- A43B7/146—Footwear with health or hygienic arrangements with foot-supporting parts with pads or holes on one or more locations, or having an anatomical or curved form with special properties provided with acupressure points or means for foot massage
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B7/00—Footwear with health or hygienic arrangements
- A43B7/14—Footwear with health or hygienic arrangements with foot-supporting parts
- A43B7/1405—Footwear with health or hygienic arrangements with foot-supporting parts with pads or holes on one or more locations, or having an anatomical or curved form
- A43B7/1455—Footwear with health or hygienic arrangements with foot-supporting parts with pads or holes on one or more locations, or having an anatomical or curved form with special properties
- A43B7/1464—Footwear with health or hygienic arrangements with foot-supporting parts with pads or holes on one or more locations, or having an anatomical or curved form with special properties with adjustable pads to allow custom fit
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C45/00—Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
- B29C45/16—Making multilayered or multicoloured articles
- B29C45/1671—Making multilayered or multicoloured articles with an insert
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29K—INDEXING SCHEME ASSOCIATED WITH SUBCLASSES B29B, B29C OR B29D, RELATING TO MOULDING MATERIALS OR TO MATERIALS FOR MOULDS, REINFORCEMENTS, FILLERS OR PREFORMED PARTS, e.g. INSERTS
- B29K2021/00—Use of unspecified rubbers as moulding material
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29L—INDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
- B29L2031/00—Other particular articles
- B29L2031/48—Wearing apparel
- B29L2031/50—Footwear, e.g. shoes or parts thereof
- B29L2031/507—Insoles
Definitions
- the present invention relates to a shoe insole, and more particularly, it can be applied to the inner bottom surface of the shoe to perform the role of a cushion for shock absorption, etc., can perform growth plate stimulation for the size of the key, foot reflex stimulation by the individual needs So it is about one shoe insole.
- the foot is a human body for walking and is an important part of the human body supporting the body by touching the ground when walking or exercising, and always wear shoes to protect the foot outdoors.
- the inner sole surface is usually provided with an insole that serves as a height adjustment or cushion for absorbing shock.
- the function of the shoe is limited to simply protecting the foot from the outside, if the insole is not applied, the sole of the foot directly touches the bottom of the shoe, and the fit is reduced. The impact is transmitted through the sole as it comes in contact with the foot, making the foot tired easily. Also, if the shoe has no insole, sweat from the feet can cause odors in the shoe.
- insoles with various functions such as fatigue recovery, health promotion function, special treatment function, odor removal, etc. are provided in addition to basic functions such as height adjustment and shock absorption.
- functional insoles with various functions such as fatigue recovery, health promotion function, special treatment function, odor removal, etc.
- basic functions such as height adjustment and shock absorption.
- protrusions or magnetic poles on the upper surface of the specific site to press the sole of the foot, or forming holes to impart breathability to reduce the occurrence of odor to a minimum.
- the structure of the insole which is formed to form a protrusion to pressure the specific part of the sole, is greatly effective in terms of fatigue recovery, health promotion, and special treatment functions.
- the wearer should purchase and use it for a specific purpose, and look at the purpose of the product in consideration of the effect that he wants to obtain, and then purchase a new product to obtain another effect.
- the wearer may not be able to arbitrarily adjust the position of the shiatsu may be rather uncomfortable when worn. That is, even if protrusions are formed at the same position, the protrusion may stimulate unnecessary parts of the sole according to the shape or size of the wearer, or the protrusion at a specific position among various protrusions may cause pain by pressing the sole of the sole. Moreover, considering that the insole should be worn for a long time while pressing the sole, if there is any discomfort or pain when wearing, there is no choice but to stop or replace it.
- insoles are recently provided to form a honeycomb structure to absorb shocks.
- hexagonal holes are formed in the insole made of impact-absorbing material so that the wall between the holes forms a honeycomb structure.
- An insole having a buffer part of a hexagonal multicell having a honeycomb structure is used. .
- the shock absorbing layer is formed in the air-filled space inside the honeycomb structure, that is, inside the cell, and the wall of the honeycomb structure in direct contact with the sole is formed. The effect of dispersing the impact is exerted.
- a honeycomb structure may be formed or partially formed in the entire area of the insole.
- a structure in which an additional insole made of an impact absorbing material is further laminated and fixed on the insole of the honeycomb structure is also provided, and such a structure is also laminated with a separate upper insole on the lower insole of the honeycomb structure.
- the air filled in the inside absorbs the shock, and the walls of the honeycomb structure between the upper and lower insoles disperse the impact.
- a plurality of holes may be formed in the upper insole.
- the present invention has been invented to solve the above problems, to improve the problems of the conventional insole fixed to the position of the projections or stimulation, foot plate stimulation for height and stimulation of foot reflexes according to individual physical symptoms While having the function, the user can easily change the stimulation part of the sole according to the effect and the use desired, and provides a functional shoe insole that can improve the wearing comfort while relieving problems such as pain caused by easily changing the location of the stimulus.
- the user can easily change the stimulation part of the sole according to the effect and the use desired, and provides a functional shoe insole that can improve the wearing comfort while relieving problems such as pain caused by easily changing the location of the stimulus.
- the present invention is effective in stimulating the specific plantar areas associated with growth plate blood flow stimulation and pituitary growth hormone secretion stimulation for height size without pain and effective impact dispersion and alleviation while effective in the growth of children or adult health and
- the object of the present invention is to provide a shoe insole that can be used for a long time without pain due to improved fit compared to an irritant insole.
- the present invention provides a shoe insole for inserting the inside of the shoe, the insole body having a plurality of insertion holes; It is inserted into the plurality of insertion holes to stimulate the soles of the user in the insole body; provides a functional shoe insole, characterized in that it comprises a.
- the magnetic pole chip is detachably inserted into each insertion hole so that the user can adjust the position of the magnetic pole of the sole of the foot, so that the user can change the insertion hole into which the magnetic pole chip is inserted among the plurality of insertion holes. It is characterized by.
- the magnetic pole chip may be formed in a hexagonal shape
- the respective insertion holes are preferably formed in a hexagonal shape is arranged to form a honeycomb structure as a whole in the insole body.
- the magnetic pole chip may be composed of an outer frame that is inserted into the insertion hole to stimulate the soles of the sole, and the elastic body is filled in the inner frame and fixed integrally.
- the magnetic pole chip has an inner region partitioned into a plurality of regions by a wall and is inserted into the insertion hole to stimulate the sole of the foot, and filled in each region of the outer frame partitioned by the wall and fixed integrally. It may be composed of an elastic body.
- the stimulation chip may be inserted into the insertion hole of the position that can stimulate the growth plate of the plurality of insertion holes in the insole body, or may be inserted into the insertion hole selected by the user according to his physical symptoms.
- a separate filling member is inserted into the insertion hole into which the magnetic pole chip is not inserted, and the outer frame of the insole body, the charging member, and the magnetic pole chip is preferably made of biodegradable resin.
- the present invention in the shoe insole to be used to insert the inside of the shoe, the insole body is formed with an insertion hole and the magnetic pole is inserted into the insertion hole to stimulate the sole of the user in the insole body, the magnetic pole
- the chip provides a shoe insole, characterized in that it comprises a stimulus formed with a protrusion to stimulate the sole on the upper surface, and a molding formed to surround the stimulus to distribute and absorb the impact.
- the magnetic pole and the molding portion may be made of a rubber material having elasticity.
- a structure reinforcement for maintaining rigidity is inserted into the magnetic pole body, and the structure reinforcement body may be one having a mesh network structure, and more preferably, a fiberglass mesh coated with a resin on a surface thereof may be used. have.
- the lower surface of the magnetic pole body is characterized in that a plurality of protrusions for projecting the load distributed to the inner bottom surface of the shoe.
- the stimulating chip is characterized in that it is installed in the insole to stimulate any one or two or more of the plantar portion associated with the pituitary gland, the plantar portion associated with the growth plate blood flow, and the other plantar portion associated with the foot reflex ball.
- the present invention provides a method for manufacturing an elastic stimulation chip that is inserted into an insertion hole of a shoe insole to be inserted into an inside of a shoe to stimulate a sole of a user, wherein a protrusion for stimulating the sole is formed on an upper surface of the shoe.
- Molding a magnetic pole body having a plate-shaped structural reinforcement formed therein and having a protrusion formed on a lower surface thereof using a resin It provides a method of manufacturing a shoe insole stimulating chip comprising a; forming a molding unit for molding the resin to surround the magnetic pole body to distribute and absorb the impact.
- the forming of the magnetic pole body may include forming an impact dispersion unit having a protrusion formed on a lower surface by using a first lower mold and a first upper mold; Raising the structural reinforcement on the impact dispersion formed in the first lower mold; Combining the second upper mold with the first lower mold to have a space in which the structural reinforcement body is positioned and to form the magnetic pole part; Shaping the magnetic pole portion to the upper side of the structural reinforcing body in the state where the first lower mold and the second upper mold are combined; and proceeding to molding the magnetic pole portion, the structural reinforcing body and the impact dispersing unit. It is characterized by.
- the molding of the molding unit may include forming a lower cap having a recess by using a second lower mold and a third upper mold; Assembling the magnetic pole body so that the protrusion is inserted into the groove in the lower cap formed in the second lower mold; Combining the fourth upper mold with the second lower mold for forming the upper cap; Forming the upper cap in the state in which the second lower mold and the fourth upper mold are combined; Proceeds to, characterized in that to form a molding unit integral with the upper cap and the lower cap surrounding the magnetic pole.
- the functional shoe insole of the present invention to improve the problem of the conventional insole fixed to the position of the projections or stimulation portion, while having a foot reflex stimulation function according to growth plate stimulation and individual physical symptoms for height
- the user can easily change the position of the stimulation chip according to the desired effect and use, and according to the use of the growth plate stimulation or the user's own physical symptoms, it is possible to obtain various effects by simply changing the position of the stimulation chip.
- the position of the stimulus can be changed by the user at will, and in particular, the position of the stimulation chip can be easily used in consideration of the position of the foot reflex ball suitable for them, so that problems such as the pain caused by the conventional insole are eliminated.
- the position of the stimulation chip can be easily used in consideration of the position of the foot reflex ball suitable for them, so that problems such as the pain caused by the conventional insole are eliminated.
- the shoe insole of the present invention can be used at low cost, such as shoes, walking shoes, jogging shoes, various sneakers, various shoes There is an advantage that you can achieve the desired effect by fitting to almost any shoe without limitation.
- each part such as the insole body, filling member, and outer frame of the magnetic pole chip is made of biodegradable resin that is harmless to the human body, which is beneficial to the health of the feet and the human health resulting from the foot. As it is completely degraded by microorganisms, it does not adversely affect the environment.
- the shoe insole of the present invention by using a stimulation chip formed with a stimulus for forming a stimulus protrusion, and a molding portion for enclosing the shock distribution and absorption transmitted from the sole of the foot, thereby stimulating the growth plate blood flow for height It also stimulates the pituitary hormone secretion and other areas of the foot associated with foot reflexes, and is effective in improving the growth of children and the health of adults.
- the stimulus chip provides an advantage that can be used for a long period of time without the appropriate stimulation and effective impact distribution and mitigation.
- FIG. 1 and 2 is a view showing a shoe insole according to an embodiment of the present invention.
- 3 and 4 is a view showing a small stimulation chip used in the shoe insole according to an embodiment of the present invention.
- FIG 5 is a view illustrating the position of the stimulation chip according to the use in using the shoe insole according to an embodiment of the present invention.
- FIG. 6 is a diagram illustrating a stimulation site according to symptoms in using a shoe insole according to an embodiment of the present invention.
- FIG. 7 and 8 are views showing a shoe insole according to another embodiment of the present invention.
- FIGS. 9 and 10 are views showing a large stimulation chip used in the shoe insole according to another embodiment of the present invention.
- FIG. 11 is a view illustrating the position of the magnetic pole chip according to the use in using the shoe insole according to another embodiment of the present invention.
- FIG. 12 is a view illustrating a stimulation site according to symptoms in using a shoe insole according to another embodiment of the present invention.
- FIG. 13 and 14 is a view showing a shoe insole according to another embodiment of the present invention.
- FIG. 15 is a plan view illustrating a magnetic pole chip in the example of FIG. 13.
- 16 is a view showing a shoe insole according to another embodiment of the present invention.
- 17 is a bottom view of a shoe insole according to a preferred embodiment of the present invention.
- FIG. 18 is an exploded perspective view for explaining the configuration of a shoe insole according to a preferred embodiment of the present invention.
- FIG. 19 is an exploded perspective view of a magnetic pole chip according to an embodiment of the present invention.
- 20 is a view showing another embodiment of the present invention, a perspective view of a shoe insole manufactured for shoes.
- 22 is a process chart showing a process of manufacturing a stimulation chip in the present invention.
- the present invention relates to a functional shoe insole, in particular having a growth plate stimulation for height and foot reflex stimulation function according to the individual physical symptoms, while the user can easily adjust the position of the stimulation according to the desired effect and use of the stimulation shoe insole It is about.
- FIG. 1 and 2 is a view showing a shoe insole according to an embodiment of the present invention
- Figure 1 is an exploded perspective view
- Figure 2 is a plan view
- 3 and 4 is a view showing a small magnetic pole chip used in the shoe insole according to an embodiment of the present invention
- Figure 3 is a perspective view showing the outer frame and the elastic body separated
- Figure 4 is a magnetic pole chip Top view.
- 5 is a view illustrating the position of the stimulation chip according to the use (growth plate stimulation / basic stimulus) in using the shoe insole according to an embodiment of the present invention
- Figure 6 is a shoe according to an embodiment of the present invention
- In the use of the insole is a diagram illustrating a stimulation site according to the symptoms (body state of the user).
- the shoe insole 1 of the present invention is inserted into the insole body 10 is formed with a plurality of insertion holes 11, the selected insertion hole of the plurality of insertion holes 11 and the insole body 10 Is configured to include a stimulation chip (12a) to stimulate the sole of the user.
- the insole body 10 is made of a soft and somewhat elastic material It is preferred, and known materials currently used for the manufacture of insoles can be used. More preferably, a known biodegradable resin may be used as a material of the insole main body 10.
- a conventional biodegradable resin is known to be free of environmental hormones and harmless to a human body. When biodegradable resin is used, it is possible to prevent harmful substances from being inherently released from the insole body, thereby benefiting the health of the feet and the human health derived from the feet.
- the biodegradable resin since the biodegradable resin has a property of completely decomposed by microorganisms at the time of landfill disposal, there is an advantage that does not adversely affect the environment.
- the insole 1 of the present invention is provided with a plurality of stimulation chips 12a capable of stimulating the sole, the stimulation in the insole body 10 so that the user can adjust the position of the stimulation according to the desired effect and purpose
- the position of the chip 12a can be arbitrarily adjusted.
- the insole body 10 of the present invention is formed with a plurality of insertion holes 11 over approximately the entire area, the plurality of magnetic pole chips 12a that can be inserted into the desired insertion hole 11 to stimulate the soles of the user ), Each magnetic pole chip 12a is fitted detachably in each insertion hole 11 so that the user can adjust the position of the magnetic pole.
- the insertion hole 11 may be formed in the same shape having a predetermined size, and is preferably formed in a hexagonal shape in the insole body 10 as illustrated in FIGS. 1 to 2. In this case, the hexagonal insertion holes 11 may be arranged to form a honeycomb structure over the entire area of the insole body 10.
- the magnetic pole chip 12a is a kind of functional insert (inserting stimulus and shock absorbing function) inserted into the insertion hole 11, and is provided in plural in one insole 1, and in the insertion hole 11. Since it is used in a fixed state of being fitted is produced and provided in a shape corresponding to the shape of the insertion hole. That is, if the shape of the insertion hole 11 has a hexagonal shape, the magnetic pole chip 12a is also manufactured in a hexagonal shape. 3 to 4, each of the magnetic pole chips 12a may have a structure in which an elastic body 14 is filled in the hexagonal outer frame 13 and fixed integrally therewith.
- the magnetic pole chip 12a and the insertion hole 11 of the insole main body 10 into which the magnetic pole chip 12a is inserted are formed in a hexagonal structure. In this case, deformation or damage during use can be prevented, and long-term use becomes possible.
- the hexagonal outer frame 13 serves as a component for stimulating the sole of the foot, and delivers only a moderate shock that can stimulate the sole at the installed site.
- the outer frame 13 is made of an incompressible hard material to stimulate the sole, unlike the material of the insole body 10 and the elastic body 14 is compressed when the sole is pressed, preferably like the insole material It can be made from known biodegradable resins which are free of environmental hormones and are harmless to humans (using hard, incompressible biodegradable resins).
- the elastic body 14 is a component that serves to absorb shock in the outer frame 13, a known high elastic material such as silica may be used as the material of the elastic body 14.
- the magnetic pole chip 12a of this configuration can be easily detached and inserted into the insertion hole 11 of the insole body 10, when deformation or damage occurs, the user can easily remove it from the insertion hole 11 and replace it with a new one. And, the user can easily adjust the position of the magnetic pole chip 12a to the desired position. In other words, by removing the magnetic pole chip 12a from the existing insertion hole 11 and inserting it into another insertion hole, the position can be adjusted, and the plurality of magnetic pole chips 12a can be arranged and used in a desired arrangement at a desired position. .
- the magnetic pole chip 12a is a member that is inserted into the insertion hole 11 of the insole main body 10 to stimulate the sole of the foot and simultaneously absorb shock, and the insertion hole 11 of the insole main body 10 is provided.
- Simply inserted into the insole is used in a state attached to the main body 10, in which a separate charging member 15 is inserted into the remaining insertion hole 11 is not inserted into the pole chip (12a).
- the filling member 15 is to block the unused insertion hole 11, it can be made of the same material as the insole body 10, preferably is a known biodegradable resin harmless to the human body Can be used.
- the filling member 15 As the material of the filling member 15, it is possible to use a heterogeneous material having elasticity and shock absorption, not a material of the insole body 10. Since the filling member 15 is inserted into the insertion hole 11 and used in a fixed state like the magnetic pole chip 12a, the filling member 15 is manufactured to have a shape corresponding to the shape of the insertion hole 11, and the shape of the insertion hole 11. If it has a hexagonal shape, the filling member 15 is also manufactured in a hexagonal shape.
- the magnetic pole chip 12a and the charging member 15 are provided to allow the user to freely insert and remove the insertion hole 11, but the insertion of the predetermined insole body 10 except for replacement and movement of the position. It is desirable to keep the inserted state stably in the hole 11, it is preferable to slightly increase the size of the magnetic pole chip (12a) and the charging member 15 compared to the size of the insertion hole 11, the magnetic pole chip ( 12a) and the filling member 15 to be kept in a press-fitted state that does not easily fall into the insertion hole (11).
- the shoe insole 1 is configured by assembling the detachable structure of the stimulation chip 12a for stimulating the sole to the user's desired position, and smoothly absorbs shock when walking or running
- the insertion hole 11 is formed in a honeycomb structure so that the hexagonal magnetic pole chip 12a is inserted into the insertion hole 11, and the magnetic pole chip 12a protects the honeycomb structure while providing an appropriate level of magnetic pole to the sole of the foot.
- the high elasticity of the elastic body 14 to distribute the pressure applied to the sole to facilitate the shock absorption.
- the stimulation chip 12a is formed by filling the highly elastic elastic body 14 in the outer frame 13 of the hexagonal structure so that the elastic force and the outer frame 13 of the elastic body 14 stimulate the foot reflexes, thereby developing growth or health. It can provide a beneficial effect on promotion.
- the user can freely move and assemble the position according to the desired magnetic pole portion of the sole of the foot, compared to the structure in which the protrusion or magnetic pole is fixed at a specific position in the conventional insole, it can be used for a variety of uses You will get the effect.
- even if damage or deformation of the magnetic pole chip 12a occurs by long-term use there is an advantage that can be easily replaced with a new magnetic pole chip 12a.
- the stimulation site of the foot reflexion varies from person to person depending on the state of health and the like, and also depends on the degree of physical development such as children, especially adolescents, middle-aged and elderly. Growing children and adolescents should stimulate the growth plate to promote the growth hormone secretion, when using the shoe insole (1) of the present invention the stimulation applied by the stimulation chip (12a) is raised above the body knee or By stimulating the ankle joint, the growth hormone secretion is promoted, and through the basic stimulation of the foot reflex, it stimulates the autonomic nervous system at every corner of the body and also helps the growth development. .
- the areas that require stimulation are also different, such as basic stimulation sites and physical conditions, such as hypertension, hypotension, dryness, obesity, back pain, neck and shoulder jams, fatigue, hangovers, gastritis, Different irritants are caused by various symptoms such as liver disease, diarrhea, constipation, cold, menstrual pain, glucose, difficulty urinating, insomnia, autonomic dysfunction, and decreased energy.
- the user can freely adjust the position and number of the stimulation chip (12a) according to the necessary stimulation site to stimulate the foot reflex according to the symptoms of the body, thereby improving various symptoms It can be advantageously used, and the position of the magnetic pole chip 12a can be changed in consideration of the position of the foot reflector suitable for itself.
- the insole body 10 and a plurality of stimulation chips (12a) once purchased a product consisting of a set has the advantage that it is possible to use economically while adjusting the position of the stimulation site according to the symptoms, day by day their physical symptoms
- According to the various types of foot reflex stimulation insole can be configured by itself is very efficient.
- the shoe insole (1) is divided into several areas to stimulate the necessary stimulation site to adjust the position of the stimulation chip (12a) according to the location of the stimulation foot reflex, thereby promoting the growth hormone secretion necessary for growth development or specific symptoms It can help you improve your health and maintain your health.
- FIG 5 and 6 are views showing an example of the magnetic pole portion
- Figure 5 is an example in which the magnetic pole chip 12a is installed in a position that can stimulate the growth plate, and the magnetic pole in the position that can stimulate the basic magnetic pole ( Figure 12a) shows an example of installation.
- Figure 6 is a view showing the position of the stimulation site according to each symptom, when the stimulation chip (12a) is installed in accordance with the stimulation site can be obtained to improve the symptoms.
- Figure 7 and Figure 8 is a view showing a shoe insole according to another embodiment of the present invention
- Figure 7 is an exploded perspective view
- Figure 8 is a plan view
- 9 and 10 are views showing a large magnetic pole chip used in the shoe insole according to another embodiment of the present invention
- Figure 9 is a perspective view showing the outer frame and the elastic body separated
- Figure 10 is a view of the magnetic pole chip Top view
- 11 is a view illustrating the position of the stimulation chip according to the use in using a shoe insole according to another embodiment of the present invention
- Figure 12 is a symptom in using a shoe insole according to another embodiment of the present invention
- this embodiment uses a magnetic pole chip 12b having a relatively large dimension as compared with the embodiment of Figs. 1 to 6, each magnetic pole chip 12b is implemented in Figs.
- the overall appearance is manufactured to have a hexagonal shape.
- a wall 13a is formed inside the outer frame 13 to form a large magnetic pole chip 12b so that the inner area of the outer frame 13 is divided into several areas, and at this time,
- the elastic body 14 of a high elastic material is filled in each area and fixed integrally.
- the various areas inside the outer frame 13 may be formed in a honeycomb structure, and the entire area inside the outer frame 13 is divided into several areas by forming a wall 13a in a hexagonal shape inside the outer frame 13. It is formed into a structure having a hexagonal region.
- the material of the insole body 10, the material of the outer frame 13 and the elastic body 14, the material of the filling member 15 and the function of the magnetic pole chip 12b are shown in the embodiment of Figs. It can be carried out in the same manner.
- the inlet main body 10 is provided with an insertion hole 11 into which the magnetic pole chip 12b is inserted, the shape of the insertion hole 11 and the overall appearance of the magnetic pole chip 12b, and the magnetic pole chip 12b are fitted and assembled.
- Method detachable method
- the point that can freely move or replace the position of the magnetic pole chip 12b is the same as the embodiment of Figs.
- the stimulation chip 12b is installed at a position capable of stimulating the growth plate for growth and development, the basic stimulation site or the user's physical state, that is, each symptom.
- the magnetic pole chip 12b can be moved and installed in accordance with the corresponding magnetic pole portion determined according to the above, and the magnetic pole chip 12b is large in size.
- the wall 13a is formed inside and partitioned into various areas.
- FIG. 11 and 12 are views showing an example of using a large magnetic pole chip 12b
- Figure 11 is an example in which the magnetic pole chip 12b is installed in a position that can stimulate the growth plate, and the basic magnetic pole portion to stimulate The example in which the magnetic pole chip 12b is installed at the position where it can be shown is shown.
- Figure 12 is a view showing the position of the stimulation site according to each symptom, when the stimulation chip 12b is installed in accordance with the stimulation site can be obtained to improve the symptoms.
- FIG. 13 and 14 are views illustrating a shoe insole according to still another embodiment of the present invention.
- FIG. 13 is a plan view and
- FIG. 14 is a cross-sectional view taken along the line 'A-A' of FIG. 15 is a plan view illustrating a magnetic pole chip in the embodiment of FIG. 13.
- FIGS. 7 and 8 As shown, another large magnetic pole chip 12c having the same function and function as the magnetic pole chip 12b used in the embodiments of FIGS. 7 and 8 and a shoe insole 1 including the same are disclosed.
- each magnetic pole chip 12c includes an outer frame 13 formed in a honeycomb structure, and the outer frame 13 has a hexagonal wall formed therein. (13a).
- the inner region of the outer frame 13 is divided into a plurality of regions by the wall 13a.
- an elastic body 14 of a high elastic material hereinafter, internally
- Elastic body is filled and fixed integrally.
- the outer frame 13, which stimulates the sole of the foot has a hexagonal structure, thereby providing sufficient support for the stimulation of the sole of the foot.
- the outer frame 13 is disposed on the support 16 that serves as a support from the lower side, and the elastic body of a high elastic material around the side of the support 16 and the outer frame 13 stacked thereon ( 14a) is molded and disposed to surround.
- the outer frame 13 and the support 16 are integrated by the outer elastic body 14a surrounding the periphery, and the lower surface of the support 16 may be exposed to the outside.
- the outer elastic body 14a surrounding the periphery of the outer frame 13 and the support 16 is formed in a substantially circular upper part as shown in FIG. 15, and the lower part (part enclosed by the surface material) protrudes laterally. It may be formed in an approximately oval shape so as to have a wing shape.
- the outer surface of the outer elastic body 14a is finished with a surface material 17, the surface material 17 may be a laminating material of a polymer resin commonly used in shoes or insoles.
- the surface member 17 is finished to surround the front and lower sides of the outer elastic body 14a, and the lower surface of the support 17, wherein the outer frame of the honeycomb structure as shown in FIG. 15 on the upper surface of the outer elastic body 14a. 13 and the inner elastic body 14 is closed in a circular enclosing form only at the edges to expose the whole.
- the upper edge of the outer elastic body 14a is formed with a protrusion 14b that protrudes laterally, which is along the entire circumference of the upper edge of the outer elastic body 14a. It may be a structure that protrudes continuously, which is also in a state surrounded by the surface material (17).
- the outer frame 13 of the honeycomb structure serves to stimulate the sole as in the other embodiments described above, and the inner filled region in each inner region of the honeycomb structure of the outer frame 13
- the elastic body 14 also serves to absorb the shock in the same way.
- the outer elastic body 14a also serves to absorb shock like the inner elastic body 14.
- the overall shape of the magnetic pole chip 12c has an elliptical shape in which the upper part is circular and the lower part is wing-shaped due to the shape of the outer elastic body 14a.
- the upper part is assembled to the insole body 10.
- the magnetic pole chip 13 is exposed to the upper surface in a circular shape as shown in FIG.
- the magnetic pole chip 12c is assembled into the insertion hole 11 formed in the insole main body 10 from the lower side to the upper side, and the insertion hole 11 is the outer shape of the magnetic pole chip 12c.
- the outer surface of the magnetic pole chip 12c is assembled to the inner surface of the insertion hole 11 after assembly.
- the lower portion of the blade chip of the magnetic pole chip 12c prevents the magnetic pole chip from slipping upward from the insertion hole 11 of the insole body 10, and the magnetic pole chip is completely inserted into the insertion hole.
- the protrusion 14b protruding along the upper edge of the magnetic pole chip in the state serves as a locking jaw to prevent the magnetic pole chip from falling downward.
- the upper end of the magnetic pole chip 12c has a structure protruding upward from the surface of the insole body 10 by a predetermined height.
- the material of the insole body 10, the material of the outer frame 13 and the elastic bodies 14 and 14a, the material of the filling member 15 and the function of the magnetic pole chip 12c are described above.
- the stimulation chip 12c is installed at a position capable of stimulating the growth plate for growth and development, the basic stimulation site or the user's physical condition, that is, moving the stimulation chip 12c according to the corresponding stimulation site determined according to each symptom. And the like which can be installed are the same as in the other embodiments described above.
- the magnetic pole chip 12c can be used by being attached to the insole body 10 by an adhesive means, as shown in FIG. At this time, the insertion hole of the insole main body 10 is unnecessary, except that the magnetic pole chip 12c is attached to the upper surface of the insole main body 10, the function and effect of the magnetic pole chip, the material of each component, etc. Same as the embodiment of FIG. 14.
- the stimulation chip 12c is attached to a position capable of stimulating the growth plate for growth development, or the stimulation chip 12c is positioned in accordance with the basic stimulation site or the user's physical condition, that is, the corresponding stimulation site determined according to each symptom. Can be attached to
- the present invention stimulates growth plate blood flow, stimulates pituitary hormone secretion, and other parts of the soles associated with foot reflexes, and is effective in promoting growth of children and health of adults. It provides a stimulating shoe insole that can be distributed and relieved and improved in fit for long-term pain-free use.
- Figure 17 is a bottom view showing a shoe insole according to a preferred embodiment of the present invention
- Figure 18 is an exploded perspective view for explaining the configuration of a shoe insole according to a preferred embodiment of the present invention
- Figure 19 is an embodiment of the present invention Is an exploded perspective view of the magnetic pole chip.
- 20 is a perspective view of a shoe insole manufactured for shoes as a view showing another embodiment of the present invention
- Figure 21 is a view showing an example of a known foot reflector.
- the shoe insole 1 is insole body 10 is formed with a plurality of insertion holes 15 in the lower surface, and made of an elastic material and fitted into each of the insertion holes 15 insole body It comprises a stimulation chip 20 to stimulate the sole of the user at (10).
- Figure 17 shows a shoe insole that can be used in children's sneakers or shoes as a preferred embodiment of the present invention, it illustrates a shoe insole that can directly help children grow. That is, the embodiment of Figure 17 is a stimulating chip 20 to stimulate the plantar portion associated with the pituitary growth hormone secretion, and the plantar region associated with growth plate blood flow in the insole body 10 forming the overall shape of the shoe insole 1 As an embodiment of determining the position of, the configuration of the magnetic pole chip 20 will be described in detail later. Referring to FIG. 17, it can be seen that a total of three stimulation chips 20 are installed in the insole body 10. First, in relation to the growth of the child, the first chip is the insole body so as to stimulate the sole part capable of transmitting stimuli to the pituitary gland. In 10, the big toe portion is installed at the contact area.
- This chip 1 stimulates the plantar area associated with the pituitary gland so that the stimulus is transmitted to the pituitary gland, thereby promoting the secretion of growth hormone from the pituitary gland, thereby contributing to the growth development of the wearer child.
- chip 2 is installed at the heel contact area of the insole ⁇ body (10) to stimulate the sole area associated with the growth plate stimulation, which stimulates the growth plate development of the child by stimulating the area related to growth plate blood flow when wearing shoes To act.
- Chip 1 and chip 2 stimulates the sole part of the growth associated with the growth, as well as contribute to the development of the growth, as described below, the stimulator 21 (producing a stimulus projections) and the molding portion (made of a rubber material) 25) (the material itself acts as a shock absorber to form impact dispersion and transmission protrusions) to disperse and effectively mitigate and reduce impact.
- Chips 1 and 2 appropriately stimulate the plantar area associated with growth to allow the stimulus to be delivered to the body, while at the same time shocking the feet. It serves to disperse and mitigate. Therefore, when the shoe insole 1 of the present invention is used, the stimulus applied by the stimulation chip 20 rises above the body to stimulate the knee or ankle joint where the growth plate is located to promote growth hormone secretion as well as the body. It stimulates the autonomic nervous system by delivering a stimulus to every corner, it can help a lot in growth development.
- Chip 3 is installed in the area where the lower part of the big toe in contact with the insole body 10, which serves as the main function to distribute, alleviate and reduce the impact transmitted to the foot.
- the stimulation chip 20 for absorbing and releasing shock and stimulating a specific part of the sole to transmit a stimulus to the body stimulates the sole part of the sole related to growth development as in the insole 1 illustrated in FIG. 17. It can be installed to, but in addition to the shoe insole provided for adult it is possible to be provided as an adult product is installed in a location that can stimulate a variety of specific areas. That is, the stimulation chip 20 is installed to stimulate a specific part of the sole associated with the foot reflex, so that the stimulus is transmitted to every corner of the body through the foot reflex stimulation when worn so that the effect of preventing or improving symptoms can be obtained. It is.
- the position of the stimulation chip 20 can be set as necessary so that these symptoms can be effectively prevented and improved when worn.
- the number of magnetic pole chips may also be variously changed.
- 21 is a view showing an example of a foot reflex ball, when the stimulation chip 20 is installed on the shoe insole 1 to stimulate a specific area of the foot reflex ball, the stimulation chip is stimulated a specific sole area when worn
- the symptoms associated with can be improved and may help to improve physical health.
- the shoe insole 1a which shows an example in which the magnetic pole chip 20 is installed on the heel portion.
- the overall shape of the shoe insole is not particularly limited, and by installing the stimulation chip on the shoe insole of various shapes, uses, and materials, the health promotion effect can be obtained.
- the shoe insole in which the magnetic pole chip 20 is installed may be the insole 1 for children's shoes (sneakers) shown in FIGS. 17 and 18 or the shoe insole 1a for the shoes as shown in FIG. It can be a shoe insole having various uses and shapes, materials, colors, and hardness.
- the configuration of the insole body 10 used in FIG. 17 with reference to FIG. 18 will be described in detail with respect to the magnetic pole chip 20 according to the present invention.
- the magnetic pole chip 20 in the insole body 10 consisting of a total of four layers to be composed of a total of five components 17 and 18, the stimulation position (chip 1) that can promote pituitary growth hormone secretion, the position to stimulate the growth plate blood flow (chip 2), for impact dispersion and mitigation If the stimulation chip 20 is installed on the position (chip 3), the insole for children's shoes (sneakers, etc.) may contribute to growth and development.
- the insole body is preferably made of a soft and somewhat elastic material. Known materials used in the manufacture of insoles can be used. Referring to FIG. 18, one example of the insole main body 10 may be composed of each component having a predetermined thickness. The cover member 11 stacked on the uppermost layer and the upper surface of the insole body 10 are molded into a structure in which the sole is stamped.
- the shape-memory type upper support member 12, the lower support member 13 which is molded at high hardness to prevent foot distortion, and serves as an overall skeleton, and is laminated on the lower rear part of the lower support member 13 It may be configured to include a rear support member 14 provided to support the heel portion of the foot.
- the cover member 11 may be made of a cloth material, preferably a nylon cloth, a cloth treated with a far infrared ray emitting material applied to the upper surface to remove odors and suppress bacterial growth using far infrared rays, It may be made of a cloth woven from silver nano thread.
- the upper support member 12 is made of a shape memory material that can be absorbed by elasticity and is restored to a circular shape, thereby reducing the fatigue of the user. EVA (Ethylene Vinyl Acetate) and PU (Polyurethane) Alternatively, it may be molded using a known insole material or EVA or PU containing a biodegradable resin.
- the lower support member 13 may be molded and manufactured to have a higher hardness than the upper support member 12. In this case, the lower support member 13 may be molded and manufactured using EVA.
- the hardness of the EVA applied to the upper support member 12 and the lower support member 13 is not particularly limited, but the lower support member 13 is molded and manufactured with higher hardness than the upper support member 12, and Since the support member 13 is molded and manufactured at high hardness, the foot shape is prevented from being crushed, thereby providing support for suppressing the warping of the foot during use, and also reducing the fatigue of the foot because it is made of an elastic material capable of absorbing shock. .
- the rear support member 14 may be made of biodegradable resin which is an environmentally friendly material, and preferably, may be manufactured using a polybutylene succinate (PBS) -based biodegradable polymer resin.
- the biodegradable polymer resin raw material that can be used to manufacture the rear support member 14 and the lower support member 13 may be the biodegradable resin composition disclosed in Korean Patent Nos. 959632 and 974639.
- Biodegradable resins are known to be free from environmental hormones and are harmless to the human body. When biodegradable resins are used, they can prevent harmful substances from the insole body. It will work.
- the biodegradable resin since the biodegradable resin has a property of completely decomposed by microorganisms at the time of landfill disposal, there is an advantage that does not adversely affect the environment.
- insole main body 10 As described above, an example of the insole main body 10 has been described with reference to FIG. 18.
- insole bodies having various shapes and configurations may be used, and the configuration of FIG. 18 may be used for shoes illustrated in FIG. 20.
- the insole can also be applied, it is possible to manufacture by injecting the above-described biodegradable resin or other known materials in the production of the insole body in a shoe insole.
- the cover member 11, the upper support member 12, the lower support member 13, and the rear support member 14 may be integrated by being bonded by an adhesive at the time of injection or after injection, and may also be integrated with the lower support member 13.
- the rear support member 14 is molded into a structure in which the insertion hole 15 is formed to enable the installation of the magnetic pole chip 20.
- a method of attaching the magnetic pole chip 20 to the insertion hole 15 a method such as a simple fitting type, an adhesive type, or an adhesive type may be applied.
- the magnetic pole chip 20 is formed to a predetermined thickness, and the magnetic pole body 21 in which a plurality of magnetic pole protrusions 22 protrude from the upper surface thereof.
- the molding part 25 is molded to surround the magnetic pole body 21.
- the magnetic pole body 21 and the molding part 25 are manufactured by injection molding a rubber material having elasticity, and the rubber material used is natural rubber (NR), butadiene rubber (BR), and thermoplastic.
- One or two or more kinds of mixed materials can be selected and used.
- the magnetic pole 21 and the molding portion 25 of the rubber material may be the same or different hardness, it is preferable that the Shore (A) Shore (A) is made to have a value of 30 to 90. If it is too soft outside the hardness range, it is advantageous for shock absorption, but cannot be used for support and stimulation. If too strong, support is possible, but shock absorption is not possible, and it may cause pain when using for a long time due to excessive foreign material on the sole while walking. have.
- a structure reinforcement body 24 may be inserted into the magnetic pole body 21 to maintain rigidity.
- a plate-shaped mesh network may be used as the structure reinforcement body 24. That is, the mesh net is inserted into the molding space of the mold for manufacturing the magnetic pole body 21, and then a rubber material is injected into the molding space to manufacture the mesh net integrally inserted into the magnetic pole body 21.
- the structural reinforcement 24 serves as a skeleton to prevent the stimulus 21 made of rubber material from being deformed in a continuous impact, preferably a fiberglass mesh, more preferably a resin coated on the surface thereof.
- the fiberglass mesh can be used, and as the resin, any one of teflon, phenol epoxy, urethane, acrylic, and silicone can be used.
- the resin any one of teflon, phenol epoxy, urethane, acrylic, and silicone can be used.
- the structural reinforcement member 24 into the magnetic pole body 21 to form a structure of a composite material, the overall structure of the magnetic pole body 21 can be made stronger, and the elasticity of the magnetic pole body 21 can be improved. You can strengthen it.
- the fiberglass mesh 24 may be shaped to be inserted in the middle of the magnetic pole body 21, with the top of the magnetic pole body 21 bordering the fiberglass mesh 24 inserted in the middle portion.
- the lower part serves as the impact distribution unit (indicated by reference numeral 21b), and the lower part serves as an impact distribution unit (identified by reference numeral 21a).
- the magnetic pole portion 21a, the impact dispersing portion 21b, and the structural reinforcement body 24 of the magnetic pole body 21 are shown separately, but the magnetic pole body 21 (primary) is inserted into the structural reinforcement body. It turns out that the magnetic pole part 21a and the impact dispersion part 21b of the injection molding) are integrally molded, and the whole is manufactured in one piece.
- the upper surface of the magnetic pole body 21 (upper surface of the magnetic pole portion) has a structure in which the magnetic pole projections 22 are integrally formed, and the plurality of magnetic pole protrusions 22 may be formed in a predetermined shape, for example, a hexagonal shape. have.
- the lower portion of the magnetic pole body 21, that is, the impact dispersion unit 21b absorbs the impact from the sole and serves to distribute the shoe midsole (midsole) and outsole (outsole), for this purpose, the magnetic pole body 21
- the lower surface (lower surface of the impact dispersion portion) of the protrusion 23 is formed to protrude to distribute the load to the outside.
- the protrusions 23 may have a plurality of horns, for example, cones or hexagonal cones.
- the lower end of each protrusion 23 may be provided with holes 28 at the bottom of the molding part 25. Can be exposed to the outside.
- the shoe insole 1 of the present invention when used in an assembled state with the shoe, the lower part of the protrusion 23 directly impacts the outer midsole and the outsole while being directly grounded to the inner bottom surface of the shoe (the upper midsole). It can be delivered.
- the molding part 25 is formed by injection molding a rubber material to surround the magnetic pole body 21, and in the state where the magnetic pole body 21 is inserted into the molding space of the mold, the rubber material is inserted into the molding space.
- the magnetic pole chip 20 in which the magnetic pole body 21 which is the primary injection molding and the molding part 25 which is the secondary injection molding can be manufactured.
- the molding portion 25 covers the upper cap 25a covering the magnetic pole portion 21a of the magnetic pole body 21, and the lower cap 25b covering the impact dispersing portion 21b of the magnetic pole body 21.
- the entire molding part 25 is integrally molded in a state in which the magnetic pole body 21 is accommodated therein, the magnetic pole body 21 and the structural reinforcing body 24 therein, and the magnetic poles.
- the moldings 25 in the state of sealing the periphery of the sieve 21 are all integrated to form one magnetic pole chip 20.
- a groove 26 into which the magnetic pole projection 22 of the magnetic pole body 21 is formed is formed, and the magnetic pole body is formed in the lower cap 25b of the molding part 25.
- a groove 27 into which the protrusion 23 of the 21 is inserted is formed, and a structure in which a hole 28 is formed at the bottom of the groove 27 of the lower cap 25b to expose the lower end of the protrusion 23 to the outside. do.
- the protrusions 23 and the holes 28 formed in the grooves 27 and the grooves 27 of the molding part 25 into which the protrusions 23 are inserted can be deleted.
- the external molding portion 25, such as the upper cap 25a and the lower cap 25b absorbs the impact from the outside, and the remaining impact is applied to the chip ( 20)
- the bar is delivered to the inner stimulus 21, the impact partially transmitted to the stimulus 21 is transmitted to the shoe midsole and the outsole by the impact dispersing portion 21b (lower portion of the stimulus).
- the stimulation portion 21a (upper part of the stimulus body) stimulates the plantar area associated with the pituitary gland and the growth plate blood flow by the stimulation protrusion 22, and the stimulation transmitted through the plantar area is the pituitary stimulation and the growth plate blood flow stimulation, etc. It will act to exert effects on physical health and height growth.
- the protrusion 22 is provided with a structure that is not exposed to the outside by the molding part 25, that is, a sealed structure, which is directly exposed to the sole when the protrusion 22 comes out. It's good to stimulate, but it can be painful.
- the magnetic pole chip 20 and the magnetic pole protrusion 22 may be formed in a hexagonal shape, but in addition to the hexagonal shape, it may be formed in various shapes such as circular or other squares, and the protrusion 23 may also have a cone, In addition to the hexagonal pyramid can be formed in various shapes such as other squares.
- FIG. 22 is a process chart showing a process of manufacturing a stimulation chip in the present invention.
- the magnetic pole body 21 into which the structural reinforcement body 24 is integrally formed is subjected to primary injection molding (processes of FIGS. 22A and 22B) using a raw material resin.
- the molding part 25 is manufactured by secondary injection molding (processes of FIGS. 22 (c) and (d)) so as to surround the entire magnetic pole body 21, and the magnetic pole body with the structural reinforcement body 24 inserted therein ( 21 is a primary injection, and the molding part 25 is a secondary injection.
- a transfer injection molding method in which an elastic resin (for example, a rubber resin), which is a raw material, is formed in a molding space (cavity) of a mold and molded by applying heat and pressure is applied.
- the magnetic pole body 21 may be divided into a magnetic pole portion 21a having a magnetic pole projection 22 formed around the structural reinforcement body 24 and an impact dispersing portion 21b having a protrusion 23 formed thereon.
- the process of manufacturing the stimulator 21, which is the primary injection molding is the process of forming the impact dispersion portion 21b and placing the structural reinforcement 24 on the impact dispersion portion 21b and then forming the magnetic pole portion 21b Is done.
- the impact dispersion portion 21b is first formed by using the first upper mold 102 and the first lower mold 101.
- FIG. 22B the first upper mold 102 is opened, and the structural reinforcement 24 is placed on the impact dispersing portion 21b formed in the first lower mold 101.
- the second upper mold 103 for forming the magnetic pole portion 21a is combined with the first lower mold 101 while having a space where the 24 is positioned. Thereafter, when the magnetic pole portion 21a is formed above the structural reinforcement body 24 while the first lower mold 101 and the second upper mold 103 are combined, the magnetic pole portion 21a and the impact dispersion are formed.
- the magnetic pole body 21 in which the portion 21b and the structural reinforcing body 24 positioned therebetween are integrated is completed (see FIG. 22B).
- the molding of the magnetic pole body 21 When the molding of the magnetic pole body 21 is completed, injection molding the lower cap 25b of the molding portion 25 in which the grooves 26 are formed using the raw material resin, and the magnetic pole body 21 on the molded lower cap 25b ) Is assembled and then injection molding the upper cap (25a) of the molding portion (25). That is, as shown in FIG. 22C, the molding part 25 is formed by using the second lower mold 104 and the third upper mold 105 for forming the lower cap 25b of the molding part 25. The lower cap 25b of the first is molded.
- the magnetic pole body 21 is assembled to the upper side of the lower cap 25b formed by the second lower mold 104, and then the fourth cap for forming the upper cap 25a is formed.
- the upper mold 106 is combined with the second lower mold 104.
- the molding unit is formed while the upper cap 25a and the lower cap 25b are integrated. (25), the magnetic pole chip 20 in which the upper cap 25a, the magnetic pole body 21, and the lower cap 25b are integrated is completed (refer to FIG. 22 (d)).
- the impact dispersion unit 21b is formed, the structural reinforcement body 24 is installed, and the forming part of the magnetic pole unit 21a is performed step by step to insert the structural reinforcement body 24.
- the first magnetic pole 21 is first molded, and then the lower cap 25b is formed, the magnetic pole 21 is assembled, and the upper cap 25a is formed in steps to surround the magnetic pole 21. Is to mold the molding portion 25, it is possible to manufacture the magnetic pole chip 20 through this step forming process.
- the shoe insole 1 includes a magnetic pole body 21 having a magnetic pole projection 22 formed therein, and a molding portion 25 that is responsible for impact dispersion and absorption transmitted from the sole of the sole while surrounding it.
- the stimulation chip 20 made of this, it is possible to effectively stimulate specific areas of the soles associated with growth plate blood flow stimulation, pituitary hormone secretion stimulation, and other foot reflexes for height, and to promote the growth of children and health of adults It works.
- the stimulation chip 20 provides an advantage that can be used for a long time without pain because it is possible to effectively disperse and alleviate shock with an appropriate stimulus.
- stimulation chip 21 stimulator
- first lower mold 102 first upper mold
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- General Health & Medical Sciences (AREA)
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- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Mechanical Engineering (AREA)
- Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
Abstract
L'invention concerne une semelle de chaussure, soit une semelle de chaussure fonctionnelle dont les fonctions de stimulation de la plaque de croissance pour la hauteur et les fonctions de stimulation de zone réflex du pied en fonction des symptômes corporels de l'individu sont exécutées, et les parties stimulées de la semelle sont facilement modifiées en fonction des effets et des utilisations souhaités par l'utilisateur; il convient de résoudre les problèmes que pose la semelle actuelle où les positions des saillies ou des parties stimulées sont fixées; et les positions stimulées sont modifiées rapidement; on améliore ainsi les sensations de confort et on résout les inconvénients tels que douleurs et analogues. Afin d'atteindre ce but, l'invention concerne une semelle de chaussure fonctionnelle que l'on utilise en l'insérant à l'intérieur de la chaussure et qui comprend: un corps de semelle doté de plusieurs trous d'insertion; et des pastilles de stimulation introduites dans des trous choisis parmi lesdits trous d'insertion, stimulant la semelle de l'utilisateur sur le corps de semelle, lesdites pastilles de stimulation sont insérées détachables dans chaque trou d'insertion, ce qui permet à l'utilisateur de régler les positions stimulées, de modifier, s'il y a lieu, les trous d'insertion dans lesquels les pastilles de stimulation sont insérées parmi la pluralité de trous d'insertion. Lesdites pastilles de stimulation comprennent des cadres extérieurs qui ont des régions internes divisées en plusieurs régions par des parois, et stimulent la semelle en étant insérés à l'intérieur des trous d'insertion; les corps élastiques internes qui sont chargés à l'intérieur de chaque région des cadres extérieurs divisés par des parois et qui y sont fixés de manière solidaire; des supports qui portent les cadres extérieurs depuis le fond, et des corps élastiques extérieurs destinés à entourer de près les côtés des cadres extérieurs et des supports.
Applications Claiming Priority (4)
Application Number | Priority Date | Filing Date | Title |
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KR1020100035595A KR101033522B1 (ko) | 2010-04-19 | 2010-04-19 | 기능성 신발 깔창 |
KR10-2010-0035595 | 2010-04-19 | ||
KR10-2010-0112485 | 2010-11-12 | ||
KR1020100112485A KR101123748B1 (ko) | 2010-11-12 | 2010-11-12 | 탄성 자극칩을 갖는 신발 깔창 |
Publications (2)
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WO2011132902A2 true WO2011132902A2 (fr) | 2011-10-27 |
WO2011132902A3 WO2011132902A3 (fr) | 2012-03-01 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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PCT/KR2011/002760 WO2011132902A2 (fr) | 2010-04-19 | 2011-04-18 | Semelle de chaussure fonctionnelle |
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WO (1) | WO2011132902A2 (fr) |
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CN102860626A (zh) * | 2012-09-24 | 2013-01-09 | 吴江市信许塑料鞋用配套有限公司 | 一种绝缘鞋底材料 |
US10350851B2 (en) * | 2013-07-23 | 2019-07-16 | Anomaly Action Sports S.R.L. | Composite element for protection devices of parts of the human body |
CN115211637A (zh) * | 2022-07-21 | 2022-10-21 | 溧阳市中医医院 | 具有蜂窝拆卸组件的手足外科鞋垫结构 |
US20240324722A1 (en) * | 2023-03-31 | 2024-10-03 | Mark Powley | Customizable insole |
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US5235761A (en) * | 1991-10-03 | 1993-08-17 | Chang Che Yuan | Multiple-purpose elastic shoe |
KR20040042879A (ko) * | 2002-11-14 | 2004-05-20 | 홍재형 | 지압 신발 |
US20090038179A1 (en) * | 2007-08-06 | 2009-02-12 | Sung-Ho Chen | Massage Shoe Equipped With Germanium |
KR100949419B1 (ko) * | 2009-03-16 | 2010-03-24 | 권성범 | 신체 활력을 유도하는 개별 맞춤형 신발 깔창 |
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US5235761A (en) * | 1991-10-03 | 1993-08-17 | Chang Che Yuan | Multiple-purpose elastic shoe |
KR20040042879A (ko) * | 2002-11-14 | 2004-05-20 | 홍재형 | 지압 신발 |
US20090038179A1 (en) * | 2007-08-06 | 2009-02-12 | Sung-Ho Chen | Massage Shoe Equipped With Germanium |
KR100949419B1 (ko) * | 2009-03-16 | 2010-03-24 | 권성범 | 신체 활력을 유도하는 개별 맞춤형 신발 깔창 |
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CN102860626A (zh) * | 2012-09-24 | 2013-01-09 | 吴江市信许塑料鞋用配套有限公司 | 一种绝缘鞋底材料 |
US10350851B2 (en) * | 2013-07-23 | 2019-07-16 | Anomaly Action Sports S.R.L. | Composite element for protection devices of parts of the human body |
CN115211637A (zh) * | 2022-07-21 | 2022-10-21 | 溧阳市中医医院 | 具有蜂窝拆卸组件的手足外科鞋垫结构 |
US20240324722A1 (en) * | 2023-03-31 | 2024-10-03 | Mark Powley | Customizable insole |
Also Published As
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WO2011132902A3 (fr) | 2012-03-01 |
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