CN209898404U - Human microcirculation sole health shoes - Google Patents

Human microcirculation sole health shoes Download PDF

Info

Publication number
CN209898404U
CN209898404U CN201920312247.5U CN201920312247U CN209898404U CN 209898404 U CN209898404 U CN 209898404U CN 201920312247 U CN201920312247 U CN 201920312247U CN 209898404 U CN209898404 U CN 209898404U
Authority
CN
China
Prior art keywords
sole
layer
microcirculation
human
energy module
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201920312247.5U
Other languages
Chinese (zh)
Inventor
姜春红
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shandong Zhengyi Biotechnology Co Ltd
Original Assignee
Shandong Zhengyi Biotechnology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shandong Zhengyi Biotechnology Co Ltd filed Critical Shandong Zhengyi Biotechnology Co Ltd
Priority to CN201920312247.5U priority Critical patent/CN209898404U/en
Application granted granted Critical
Publication of CN209898404U publication Critical patent/CN209898404U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)

Abstract

The utility model relates to the health field, in particular to a human body microcirculation plantar health shoe, which comprises a vamp and a sole, wherein a shock absorption layer is arranged between the vamp and the sole, and the shock absorption layer is provided with an energy module and a massage unit; the energy module is arranged at the front sole position corresponding to the shock absorption layer, and the shock absorption layer is provided with a groove for installing the energy module; the massage unit is including setting up first arch and the second arch on the shock absorber layer surface, first arch sets up around the recess, the protruding distribution of second sets up the back heel position that corresponds at the shock absorber layer. The utility model has the advantages of reasonable design, utilize energy module collocation massage unit, can get through human microcirculation from the sole, improve sole blood circulation ability, and then improve human blood circulation, be beneficial to the human body.

Description

Human microcirculation sole health shoes
Technical Field
The utility model relates to the field of health, especially human microcirculation plantar health shoes.
Background
In recent years, people pay more and more attention to health, foot massage service industries such as pedicure and the like are rapidly developed, in addition, shoe manufacturers are inspired from foot massage, various massage structures are designed on soles, a large number of shoes with foot massage functions appear in the market, and people can play a role in foot massage when wearing the shoes, so that blood circulation is improved, metabolism is accelerated, and the shoes have great benefits to human bodies; however, with the progress of technology, the improvement of the human body by sole foot massage has objective limitation, more improvements are put into the shoes, and the shoes with better effect of improving the health of the human body are needed in the market at present.
SUMMERY OF THE UTILITY MODEL
The utility model provides a human microcirculation sole health shoes, its structural design is reasonable, utilizes energy module collocation massage unit, can get through human microcirculation from the sole, improves sole blood circulation ability, and then improves human blood circulation, and is beneficial to the human body, has solved the problem that exists among the prior art.
The utility model discloses a solve the technical scheme that above-mentioned technical problem adopted and be: a human body microcirculation sole health shoe comprises a vamp and a sole,
a damping layer is arranged between the vamp and the sole and is provided with an energy module and a massage unit;
the energy module is arranged at the position of the sole corresponding to the shock absorption layer, and the shock absorption layer is provided with a groove for installing the energy module;
the massage unit is including setting up first arch and the second arch on shock attenuation layer surface, first arch sets up around the recess, the protruding distribution of second sets up the heel position that corresponds at the shock attenuation layer.
Preferably, the inner wall of the circumference in the groove is provided with an elastic lug, and the elastic lug is abutted with the energy module.
Preferably, the relative height of the first protrusion from the surface of the shock absorption layer is greater than the relative height of the second protrusion from the surface of the shock absorption layer.
Preferably, the energy module is a terahertz energy wave generator.
Preferably, a high-elasticity sponge layer and an environment-friendly high-polymer sponge layer are further arranged between the shock absorption layer and the vamp.
Preferably, the environment-friendly high polymer cotton layer is connected with the vamp, and the upper surface of the environment-friendly high polymer cotton layer is provided with the nanometer cloth.
Preferably, the shock-absorbing layer is an EVA shock-absorbing layer.
Preferably, the sole is a rubber and plastic sole.
Preferably, the vamp is a microfiber vamp.
Preferably, a lining cloth is arranged in the vamp, and a heat storage warm feeling finishing agent is added to the lining cloth.
The utility model adopts the above structure beneficial effect is that, its structural design is reasonable, utilizes energy module collocation massage unit, can get through human microcirculation from the sole, improves sole blood circulation ability, and then improves human blood circulation, is beneficial to the human body.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the shock-absorbing sole of the present invention.
In the drawing, 1, a shoe upper; 2. a sole; 3. a shock-absorbing layer; 4. an energy module; 5. a groove; 6. a first protrusion; 7. a second protrusion; 8. an elastic bump; 9. a high elastic sponge layer; 10. an environment-friendly high-polymer cotton layer; 11. nano cloth; 12. and (7) lining.
Detailed Description
In order to clearly illustrate the technical features of the present invention, the present invention is explained in detail by the following embodiments in combination with the accompanying drawings.
As shown in fig. 1-2, the human body microcirculation sole health shoes comprise a vamp 1 and a sole 2, a shock absorption layer 3 is arranged between the vamp 1 and the sole 2, and the shock absorption layer 3 is provided with an energy module 4 and a massage unit; the energy module 4 is arranged at the position of the sole corresponding to the shock absorption layer 3, and the shock absorption layer 3 is provided with a groove 5 for installing the energy module 4; the massage unit is including setting up at the first arch 6 and the protruding 7 of second on buffer layer 3 surface, and first arch 6 sets up all around along recess 5, and the protruding 7 distribution of second sets up in the heel position that buffer layer 3 corresponds. The scheme utilizes the energy module 4 and the massage unit, can get through the human microcirculation from the pelma, improves the blood circulation capability of the pelma, further improves the blood circulation of the human body, and is beneficial to the human body.
The design of recess 5 is for making things convenient for the installation of energy module 4, and the connection stability after considering energy module 4 installation, and the circumference inner wall in the recess 5 is equipped with elastic lug 8, and elastic lug 8 and energy module 4 looks butt set, and after energy module 4 installed recess 5, elastic lug 8 in the recess 5 was in the extruded state, played the effect of stable position to elastic module 8.
After the damping layer 3 is provided with the groove 5, the energy module 4 is arranged in the groove 5, and the elastic capacity and the damping effect of the position of the groove 5 are reduced compared with those of other positions, so that the relative height of the first bulge 6 from the surface of the damping layer 3 is greater than that of the second bulge 7 from the surface of the damping layer 3, the first bulge 6 can play an elastic reinforcing role in the position of the groove 5, the elastic reduction capacity of the position of the groove 5 can be substantially eliminated, and the whole damping layer 3 can substantially maintain stable elastic buffering capacity; in particular, the grooves 5 are arranged according to the shape of the energy module 4, for example: the energy module 4 can be designed in a square or round shape, with a corresponding adjustment of the shape of the recess 5.
The energy module 4 adopts a terahertz energy wave generator. A terahertz energy wave generator can be directly purchased as a commercial product, and is characterized in that on the basis of a microelectronic technology, a complex electronic circuit is concentrated into a small generator through acousto-optic electromagnetic activation, a radio antenna of the small generator is received and shared, biological light waves received from an earth magnetic field are used as a power supply of the generator, the biological light waves act on a human body to restore a biological electric field of the body, and the converted energy field is transmitted through frequency conversion so as to generate resonance with the biological electric field of the human body.
A high elastic sponge layer 9 and an environment-friendly high polymer sponge layer 10 are also arranged between the shock absorption layer 3 and the vamp 1. The environment-friendly high polymer cotton layer 10 has the characteristics of air permeability, moisture absorption, antibiosis, deodorization, buffering, shock absorption, environment protection and light weight.
The environment-friendly high polymer cotton layer 10 is connected with the vamp 1, and the upper surface of the environment-friendly high polymer cotton layer 10 is provided with the nanometer cloth 11.
It is worth mentioning that the inside of the vamp 1 is also made of a nano-cloth material, the rare earth ore is ground to the nano level by adopting a front edge grinding technology, and the rare earth ore is woven in cloth by adopting a high-end textile technology to form the nano-cloth, so that the shoe has far infrared and anion functions and can play a very good antibacterial role.
The damping layer 3 is an EVA damping layer. The EVA sole is made of EVA materials. The EVA sole has high resilience and tensile strength, high toughness, good shock resistance and buffering performance, excellent heat preservation, cold resistance and low temperature performance, good sound insulation effect, closed cell structure, no water absorption, moisture resistance, good water resistance, seawater corrosion resistance, oil corrosion resistance, acid corrosion resistance, alkali corrosion resistance and the like, and is antibacterial, nontoxic, tasteless and pollution-free.
The sole 2 is made of rubber and plastic. The rubber and plastic are produced through three processes of plastication, mixing and extrusion, and the rubber and plastic has the advantages of light weight, small heat conductivity coefficient, no moisture permeability, low water absorption, no combustion, no mildew, high mechanical strength, corrosion resistance, no toxicity, stable performance and good heat preservation effect.
The vamp 1 is made of microfiber. The microfiber leather is a regenerated leather, belongs to a newly developed high-grade leather in synthetic leather, is softer than leather in hand feeling, and has the advantages of wear resistance, cold resistance, ventilation, aging resistance, soft texture, environmental protection and the like.
The vamp 1 is internally provided with lining cloth 12, and the lining cloth 12 is added with heat storage warm finishing agent. The HOT heat storage warm feeling finishing agent mainly comprises extracts of Capsici fructus and tourmaline, is light milk orange liquid, has non-ionic property and pH of 6-7, and can be dispersed in warm water at any ratio. The application process is usually a padding process, and can be used alone or in combination with a softener and a resin. The lining cloth 12 added with the heat-storage warm-feeling finishing agent forms a heat-storage warm-feeling fabric, can increase the temperature sensed by a human body, has good hand feeling and excellent washing fastness, and has the effects of releasing far infrared rays and negative ions, the far infrared rays have strong permeability and radiation force, and have obvious temperature control effect and resonance effect, and the far infrared rays are easily absorbed by an object and are converted into internal energy of the object. Therefore, after the far infrared rays are absorbed by human bodies, water molecules in the bodies can resonate, the water molecules are activated, the intermolecular binding force of the water molecules is enhanced, and therefore biological macromolecules such as proteins are activated, and the biological cells are at the highest vibration energy level. The biological cells generate resonance effect, so far infrared heat energy can be transferred to the subcutaneous deeper part of human body, the temperature of the lower deep layer rises, the generated heat is emitted from inside to outside, and the action strength makes human body capillary dilate, promotes blood circulation, strengthens metabolism among tissues, increases regeneration capacity of the tissues, improves the immunity of the organism, regulates the abnormal excitation state of spirit, thereby playing the role of medical care.
The heat storage warm feeling finishing agent is added into the lining cloth 12 by adopting a padding process and a printing process, and can be specifically processed by adopting the following processes:
the padding process comprises the following steps:
the formula is as follows: the HOT content of the heat storage warm feeling finishing agent is 20-50g/l, and the SLT content of the fixing agent is 10-30 g/l;
the process comprises the following steps: fabric → padding (mangle ratio 60-70%) → drying (80-120 ℃ x 2-3 min) → high temperature tentering (180-;
the printing process comprises the following steps:
the formula is as follows: the HOT content of the heat storage warm feeling finishing agent is 5-10%, the color paste content is X%, the content of the self-crosslinking type adhesive SP is 10-30%, the content of the thickening agent FAG is 1.5-2%, and the water content is X%;
the process comprises the following steps: fabric → printing → drying (80-100 ℃) → high temperature tentering (180-.
The above-mentioned specific embodiments can not be regarded as the restriction to the scope of protection of the utility model, to technical personnel in this technical field, it is right the utility model discloses any replacement improvement or transform that embodiment made all fall within the scope of protection of the utility model.
The parts of the present invention not described in detail are the known techniques of those skilled in the art.

Claims (10)

1. The human body microcirculation sole health shoes comprise vamps and soles and are characterized in that,
a damping layer is arranged between the vamp and the sole and is provided with an energy module and a massage unit;
the energy module is arranged at the position of the sole corresponding to the shock absorption layer, and the shock absorption layer is provided with a groove for installing the energy module;
the massage unit is including setting up first arch and the second arch on shock attenuation layer surface, first arch sets up around the recess, the protruding distribution of second sets up the heel position that corresponds at the shock attenuation layer.
2. The human body microcirculation plantar health shoe as claimed in claim 1, wherein the inner circumferential wall of the groove is provided with an elastic projection, and the elastic projection is abutted against the energy module.
3. The human microcirculation plantar health shoe of claim 2, wherein the relative height of the first protrusion from the surface of the shock absorbing layer is greater than the relative height of the second protrusion from the surface of the shock absorbing layer.
4. The human body microcirculation sole health shoes according to any one of claims 1 to 3, wherein the energy module is a terahertz energy wave generator.
5. The human microcirculation plantar health shoes of claim 4, wherein a high elastic sponge layer and an environment-friendly high polymer sponge layer are further arranged between the shock absorption layer and the shoe upper.
6. The human microcirculation plantar health shoe of claim 5, wherein the environment-friendly high polymer cotton layer is connected with the shoe upper, and the upper surface of the environment-friendly high polymer cotton layer is provided with nano-cloth.
7. The human microcirculation sole health shoes of claim 5 or 6, wherein the shock absorbing layer is EVA shock absorbing layer.
8. The human microcirculation sole health shoes of claim 7, wherein the sole is a rubber and plastic sole.
9. The human microcirculation plantar health shoe of claim 8, wherein the uppers are made of microfiber uppers.
10. The human microcirculation sole health shoes of claim 8 or 9, wherein the vamp is provided with lining cloth, and the lining cloth is added with heat storage warm feeling finishing agent.
CN201920312247.5U 2019-03-12 2019-03-12 Human microcirculation sole health shoes Expired - Fee Related CN209898404U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920312247.5U CN209898404U (en) 2019-03-12 2019-03-12 Human microcirculation sole health shoes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920312247.5U CN209898404U (en) 2019-03-12 2019-03-12 Human microcirculation sole health shoes

Publications (1)

Publication Number Publication Date
CN209898404U true CN209898404U (en) 2020-01-07

Family

ID=69032554

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920312247.5U Expired - Fee Related CN209898404U (en) 2019-03-12 2019-03-12 Human microcirculation sole health shoes

Country Status (1)

Country Link
CN (1) CN209898404U (en)

Similar Documents

Publication Publication Date Title
KR101556411B1 (en) Complex functional fabric
CN209898404U (en) Human microcirculation sole health shoes
CN109700120B (en) Graphene antibacterial insole and preparation method thereof
CN105437698A (en) Preparation method of one-way water-permeable and breathable type fibrosis fiberboard
CN201640681U (en) TCM health-care insole based on retinervus luffae fructus
CN207054955U (en) A kind of ventilating massage shoes
CN104352024A (en) Odor-resistant shock-absorbing foot massage healthcare shoe pad
CN213663943U (en) Non-slip shoes capable of heating
CN204426888U (en) A kind of deodorizing damping foot road health insoles
CN212488754U (en) Aerogel winter protection warming shoes
CN210148849U (en) Ventilative type superfine fiber composite cloth
CN211222305U (en) Shark skin-imitated textile fabric
CN209391173U (en) A kind of functional insole of ventilated bacterium-suppressing massage
CN207803785U (en) Health care bed mattress and bed accessory
CN218025910U (en) Waterborne foaming direct-coating drying waterborne polyurethane synthetic leather
CN220262270U (en) High-performance spunlaced non-woven fabric base sports shoe leather
CN220832101U (en) Comfortable and durable sole
CN214509745U (en) Simple and comfortable soft breathable slipper
CN213281511U (en) Comfortable functional sock with far infrared negative ion functional structure
CN219182955U (en) Vamp structure of waterproof breathable shoes
CN205214220U (en) Shock attenuation socks
CN217986833U (en) Wear-resisting sponge shoe-pad
CN214449023U (en) Novel high-elastic super-strong moisture absorption composite polyester fabric structure
CN218571524U (en) Deodorant antibacterial rubber sole
CN219044204U (en) Wear-resistant waterproof nylon cloth

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200107