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CN101507539A - Warm shoes - Google Patents

Warm shoes
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Publication number
CN101507539A
CN101507539ACNA2009100057827ACN200910005782ACN101507539ACN 101507539 ACN101507539 ACN 101507539ACN A2009100057827 ACNA2009100057827 ACN A2009100057827ACN 200910005782 ACN200910005782 ACN 200910005782ACN 101507539 ACN101507539 ACN 101507539A
Authority
CN
China
Prior art keywords
radiator
footwear
hydraulic pressure
evaporimeter
pressure bag
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.)
Pending
Application number
CNA2009100057827A
Other languages
Chinese (zh)
Inventor
林智勇
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.)
Individual
Original Assignee
Individual
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 IndividualfiledCriticalIndividual
Priority to CNA2009100057827ApriorityCriticalpatent/CN101507539A/en
Publication of CN101507539ApublicationCriticalpatent/CN101507539A/en
Pendinglegal-statusCriticalCurrent

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Abstract

A warm shoe consists of a shoe, a hydraulic bag, a radiator, a throttling device, an evaporator and a refrigerant. The evaporator is positioned outside a heat insulating layer, a shoe upper is positioned outside the evaporator, a shoe inner face is positioned inside the radiator, and the heat insulating layer is arranged between the radiator and the evaporator. The warm shoe utilizes walking power of human body to compress the hydraulic bag unceasingly, the refrigerant in the hydraulic bag is unceasingly pressed into the radiator through a liquid outlet one-way valve, the refrigerant with improved pressure in the radiator is throttled by the throttling device and then enters the evaporator to absorb heat, simultaneously the radiator radiates for supplying heat to the shoe, and the refrigerant of which the heat is absorbed by the evaporator returns to the hydraulic bag through a liquid return one-way valve. The warm shoe converts mechanical energy generated by walking and gravity of the human body into heat energy in the shoe, so the warm shoe not only provides warm for feet of a user, but also saves energy and protects the environment.

Description

Warm footwear
Affiliated technical field
The present invention relates to a kind of shoes, particularly a kind ofly can make warm warm footwear.
Background technology
The function that existing shoes are all warm less than system, special winter, movable out of doors frostbite pin easily a kind ofly can be made warm footwear, had become the needs of people's work and life.
Summary of the invention
The objective of the invention is to overcome the deficiencies in the prior art, a kind of warm footwear are provided, the mechanical energy of utilizing human body walking and human body gravity to produce is converted to the heat energy in the footwear, satisfies people's work and living needs.
The technical solution used in the present invention is: warm footwear, include sole and vamp, and warm footwear are made of footwear, hydraulic pressure bag, radiator, flow controller, evaporimeter and cold-producing medium.The sole of warm footwear is provided with the hydraulic pressure bag, sealing is provided with cold-producing medium in the hydraulic pressure bag, the liquid outlet of hydraulic pressure bag is communicated with fluid check valve input port, the delivery outlet of fluid check valve is communicated with the input port of radiator, the delivery outlet of radiator is communicated with the input port of flow controller, the delivery outlet of flow controller is communicated with the input port of evaporimeter, the delivery outlet of evaporimeter is communicated with the input port of returning the liquid check valve, the delivery outlet that returns the liquid check valve is communicated with the liquid return hole of hydraulic pressure bag, be provided with thermal insulation layer between radiator and the evaporimeter, radiator is positioned at the inside of thermal insulation layer, and evaporimeter is positioned at the outside of thermal insulation layer, vamp is positioned at the outside of evaporimeter, and the footwear inner face is positioned at the inside of radiator.
The warm principle of the system of warm footwear is: utilize the power of human body walking constantly to compress the hydraulic pressure bag, cold-producing medium in the hydraulic pressure bag constantly is pressed into radiator through the fluid check valve, the cold-producing medium that is enhanced pressure in the radiator enters evaporimeter and absorbs heat after the flow controller throttling, radiator heat-dissipation provides heat for footwear simultaneously, cold-producing medium after the evaporimeter heat absorption is got back to the hydraulic pressure bag through returning the liquid check valve, and the mechanical energy of utilizing human body walking and human body gravity to produce is converted to the heat energy in the footwear.
The invention has the beneficial effects as follows: the mechanical energy that warm footwear utilize human body walking and human body gravity to produce is converted to the heat energy in the footwear, and not only the pin for the user provides warm, simultaneously also energy-conserving and environment-protective.
Description of drawings
Fig. 1 is warm footwear structure schematic diagram.
The specific embodiment
With specific embodiment the present invention is further detailed with reference to the accompanying drawings below:
Warm footwear structure schematic diagram shown in Figure 1, warm footwear include sole 8 andvamp 7, and warm footwear are made of footwear,hydraulic pressure bag 12,radiator 5,flow controller 2,evaporimeter 4 and cold-producing medium 13.The sole 8 of warm footwear is provided withhydraulic pressure bag 12, sealing is provided with cold-producingmedium 13 in thehydraulic pressure bag 12, theliquid outlet 11 ofhydraulic pressure bag 12 is communicated withfluid check valve 10 input ports, the delivery outlet offluid check valve 10 is communicated with theinput port 9 ofradiator 5, thedelivery outlet 3 ofradiator 5 is communicated with the input port offlow controller 2, the delivery outlet offlow controller 2 is communicated with the input port 1 ofevaporimeter 4, thedelivery outlet 15 ofevaporimeter 4 is communicated with the input port of returningliquid check valve 14, the delivery outlet that returnsliquid check valve 14 is communicated with theliquid return hole 17 ofhydraulic pressure bag 12, be provided withthermal insulation layer 6 betweenradiator 5 and theevaporimeter 4,radiator 5 is positioned at the inside ofthermal insulation layer 6,evaporimeter 4 is positioned at the outside ofthermal insulation layer 6,vamp 7 is positioned at the outside ofevaporimeter 4, and footwearinner face 16 is positioned at the inside of radiator 5.Describedflow controller 2 includes capillary and choke valve.
Describedradiator 5 is made of the hot channel of series connection, and the hot channel of series connection is distributed between footwear interior the footwearinner face 16 andthermal insulation layer 6, and footwearinner face 16 is by the Heat Conduction Material manufacturing.The hot channel ofevaporimeter 4 series connection constitutes, and the hot channel of series connection is distributed betweenvamp 7 and thethermal insulation layer 6, andvamp 7 is by the Heat ConductionMaterial manufacturing.Evaporimeter 4 andradiator 5 are by soft Heat Conduction Material manufacturing, and soft Heat Conduction Material includes aluminum foil composite.
Describedhydraulic pressure bag 12 is positioned at theheel 20 of sole 8, is provided withpressing plate 18 above thehydraulic pressure bag 12, and pressingplate 18 is positioned at the position of heel, is provided with shoe-pad 19 above the pressing plate 18.Hydraulic pressure bag 12 is by the elastomeric material manufacturing, and elastomeric material includes rubber, silica gel and plastics.
The direction that the installation direction of describedfluid check valve 10 flows toradiator 5 by the delivery outlet ofhydraulic pressure bag 12 be for can lead to direction, otherwise is obstructed direction;Liquid return hole 17 directions that the installation direction that returnsliquid check valve 14 flows tohydraulic pressure bag 12 by the delivery outlet ofevaporimeter 4 be for can lead to direction, otherwise are obstructed direction.
The above only is preferred embodiment of the present invention, is not structure of the present invention is done how pro forma restriction;Hydraulic pressure bag 12 can also be positioned at other positions of sole except the heel position that is positioned at sole;Hydraulic pressure bag 12 also can replace with hydraulic cylinder, and cold-producing medium is equipped with in sealing in the hydraulic cylinder; Every according to technical spirit of the present invention to any simple modification, equivalent variations and modification that above embodiment did, all be scope in technical scheme of the present invention.

Claims (10)

2. warm footwear according to claim 1, it is characterized in that: the sole of described warm footwear (8) is provided with hydraulic pressure bag (12), sealing is provided with cold-producing medium (13) in the hydraulic pressure bag (12), the liquid outlet (11) of hydraulic pressure bag (12) is communicated with fluid check valve (10) input port, the delivery outlet of fluid check valve (10) is communicated with the input port (9) of radiator (5), the delivery outlet (3) of radiator (5) is communicated with the input port of flow controller (2), the delivery outlet of flow controller (2) is communicated with the input port (1) of evaporimeter (4), the delivery outlet (15) of evaporimeter (4) is communicated with the input port of returning liquid check valve (14), the delivery outlet that returns liquid check valve (14) is communicated with the liquid return hole (17) of hydraulic pressure bag (12), be provided with thermal insulation layer (6) between radiator (5) and the evaporimeter (4), radiator (5) is positioned at the inside of thermal insulation layer (6), evaporimeter (4) is positioned at the outside of thermal insulation layer (6), vamp (7) is positioned at the outside of evaporimeter (4), and footwear inner face (16) is positioned at the inside of radiator (5).
9. warm footwear according to claim 1, it is characterized in that: the warm principle of the system of described warm footwear is: utilize the power of human body walking constantly to compress the hydraulic pressure bag, cold-producing medium in the hydraulic pressure bag constantly is pressed into radiator through the fluid check valve, after the flow controller throttling, entered evaporimeter by the cold-producing medium of pressure-raising in the radiator and absorb heat, radiator heat-dissipation provides heat for footwear simultaneously, cold-producing medium after the evaporimeter heat absorption is got back to the hydraulic pressure bag through returning the liquid check valve, and the mechanical energy of utilizing human body walking and human body gravity to produce is converted to the heat energy in the footwear.
CNA2009100057827A2009-02-042009-02-04Warm shoesPendingCN101507539A (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
CNA2009100057827ACN101507539A (en)2009-02-042009-02-04Warm shoes

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
CNA2009100057827ACN101507539A (en)2009-02-042009-02-04Warm shoes

Publications (1)

Publication NumberPublication Date
CN101507539Atrue CN101507539A (en)2009-08-19

Family

ID=41000227

Family Applications (1)

Application NumberTitlePriority DateFiling Date
CNA2009100057827APendingCN101507539A (en)2009-02-042009-02-04Warm shoes

Country Status (1)

CountryLink
CN (1)CN101507539A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
ITVI20100290A1 (en)*2010-10-292012-04-30Pietro Toniolo SHOE SOLE PERFECTED TO ALLOW THE HEAT EXCHANGE BETWEEN AT LEAST ONE FOOT AREA AND THE OUTSIDE ENVIRONMENT
CN103141995A (en)*2013-03-252013-06-12葛西禾Heating insoles
US10117652B2 (en)2011-04-292018-11-06Ethicon LlcEnd effector comprising a tissue thickness compensator and progressively released attachment members

Cited By (4)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
ITVI20100290A1 (en)*2010-10-292012-04-30Pietro Toniolo SHOE SOLE PERFECTED TO ALLOW THE HEAT EXCHANGE BETWEEN AT LEAST ONE FOOT AREA AND THE OUTSIDE ENVIRONMENT
WO2012056306A1 (en)*2010-10-292012-05-03Pietro TonioloImproved footwear sole suited to allow the heat exchange between at least one area of the foot resting on the sole and the external environment
US10117652B2 (en)2011-04-292018-11-06Ethicon LlcEnd effector comprising a tissue thickness compensator and progressively released attachment members
CN103141995A (en)*2013-03-252013-06-12葛西禾Heating insoles

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Legal Events

DateCodeTitleDescription
C06Publication
PB01Publication
C10Entry into substantive examination
SE01Entry into force of request for substantive examination
C02Deemed withdrawal of patent application after publication (patent law 2001)
WD01Invention patent application deemed withdrawn after publication

Open date:20090819


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