CN207803509U - The physical efficiency clothes that can be breathed - Google Patents

The physical efficiency clothes that can be breathed Download PDF

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Publication number
CN207803509U
CN207803509U CN201820612960.7U CN201820612960U CN207803509U CN 207803509 U CN207803509 U CN 207803509U CN 201820612960 U CN201820612960 U CN 201820612960U CN 207803509 U CN207803509 U CN 207803509U
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China
Prior art keywords
partition
breathing catheter
air guide
physical efficiency
breathing
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Expired - Fee Related
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CN201820612960.7U
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Chinese (zh)
Inventor
雷永锋
孙莉莉
刘磊
刘伟
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Engineering and Technical College of Chengdu University of Technology
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Engineering and Technical College of Chengdu University of Technology
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Priority to CN201820612960.7U priority Critical patent/CN207803509U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model is related to a kind of physical efficiency clothes that can be breathed.It solves the technical problem that existing physical efficiency takes heat dissipation effect difference.Ontology, face layer, inner layer, accommodating cavity, breathing catheter are taken including physical efficiency, air guide cavity configuration and drain cavity configuration axially extending along breathing catheter and in closed are respectively provided in breathing catheter, the air guide cavity configuration is located at breathing catheter close to face layer outside, the liquid guiding cavity structure is located at breathing catheter on the inside of inner layer, and the air guide cavity configuration and the setting of drain cavity configuration mutual dislocation, it is equipped in breathing catheter from breathing flow-guiding structure.Advantage is:New-type physical efficiency clothes are designed with the special conductive channel of its conduit, good air guide hot function is realized by conduit, fighter's whole body is set to keep " ventilated " state, good heat dissipation effect, various operational environments can largely be adapted to, using the elasticity and resiliency of silastic material, to reduce the injury that external impact is brought.

Description

The physical efficiency clothes that can be breathed
Technical field
The utility model belongs to clothes manufacturing technology field, is related to a kind of physical efficiency clothes, can be breathed more particularly, to a kind of Physical efficiency takes.
Background technology
The center of gravity researched and developed in individual equipment at this stage is externally to mount standby research and development, its purpose is that improving information-based item The fight capability and efficiency of individual soldier under part.So it is very few to the physical efficiency clothes research worn substantially, still with 07 simple and practical formula body Based on capable of taking.Since existing physical efficiency takes, function is more single, cannot be satisfied the specific demand of individual combat, is primarily due to:In portion It during the Training And Operations of team, needs personnel under the premise of ensureing that basic dressing is complete, also to bear necessary fight dress It is standby, while being also possible to bear a heavy burden march or lasting operation.Due to the particular/special requirement of army, it is possible to can face super negative for a long time Lotus, violent movement, physical efficiency clothes will be subjected to various frictions, be susceptible to various disrepair phenomenons.Meanwhile being equipped at this stage Physical efficiency clothes do not have good air guide perspiration functions in personnel's " full clothes arms ", the heat that can not rapidly generate body Amount distributes, and comfort is poor, and it is extremely uncomfortable to easily cause wearer in this way, cannot be satisfied army's high intensity, efficient operation It is required that.
Of the existing technology in order to solve the problems, such as, people have carried out long-term exploration, it is proposed that various solutions Scheme.For example, Chinese patent literature discloses a kind of ground force's all-season field operation air conditioning shoes, garment and cap [application number: 01118998.3], ground force's all-season field operation air conditioning shoes, garment and cap be it is a kind of by air-conditioning system setting caliga, underwear, underpants, On the helmet, have air conditioning function, can arbitrarily adjust the carry-on patch air conditioner of body temperature.It is characterized in that this pastes with oneself air conditioner is By modularization diamond shape radian solar energy glass curtain plate --- silicon photoelectric converter, " X " back belt type water pocket, Miniature centrifugal water pump, Electrochromism plastic pipe, the plastic whorl mouth electromagnetic induction one-way cock on plastic pipe, nut, plug screw, electrochromism plastic pipe Automatically controlled visible light regulator, heat preservation refrigeration cassette etc. components constitute.
Although above structure solves the problems, such as that existing military clothes heat dissipation effect is poor to a certain extent, due to this It needs, by components such as water pump, solar panels, water pockets, to increase the heavy burden of individual soldier first, while complicated and changeable in scheme In wild environment, such as night, lack sunlight environment under can not normal use, so as to cause cannot achieve its heat dissipation effect.
Invention content
The purpose of this utility model is to realize the meeting of high efficiency and heat radiation in view of the above-mentioned problems, provide a kind of simple and reasonable The physical efficiency of breathing takes.
In order to achieve the above objectives, the utility model uses following technical proposal:This physical efficiency that can be breathed takes, including physical efficiency Take ontology, the physical efficiency takes ontology surface layer and inner layer made of flexible ventilating material and sews, the face layer and it is inner Form accommodating cavity between layer, be equipped in accommodating cavity it is several elasticity can breathing catheter made of shape-changing material, the breathing Air guide cavity configuration and drain cavity configuration axially extending along breathing catheter and in closed, the air guide are respectively provided in conduit Cavity configuration is located at breathing catheter close to face layer outside, and the liquid guiding cavity structure is located at breathing catheter on the inside of inner layer, and institute Air guide cavity configuration and drain cavity configuration the mutual dislocation setting stated, are equipped in breathing catheter and are under pressure on the outside of breathing catheter Air guide cavity configuration can take ontology inner layer towards physical efficiency and generate expiration and can will be led when breathing catheter restores deformation when generating deformation Gas guides to air guide cavity configuration to form negative pressure in drain cavity configuration and take in ontology close to physical efficiency in sap cavity structure Layer side generates the breathing flow-guiding structure certainly of negative-pressure sucking.
When individual soldier, which wears physical efficiency, takes ontology movement, face layer is under the action of human body and breathing catheter contact makes breathing catheter Generation slight deformation in outside enables air guide cavity configuration to take ontology inner layer generation expiration towards physical efficiency and work as and exhales from breathing flow-guiding structure Conduit is inhaled to restore gas in drain cavity configuration can be guided when deformation to air guide cavity configuration to be formed in drain cavity configuration negative It presses and simultaneously generates negative-pressure sucking taking ontology inner layer side close to physical efficiency, realize " one exhales a suction ", i.e. satellite meter pressure during exercise Change in using the air pressure principle of physics constantly realizes the absorption of gas exchanges and sweat.And it is realized by conduit loop structure Gas exchanges realize high efficiency and heat radiation.
In the physical efficiency clothes that above-mentioned meeting breathes, the breathing catheter is in flat tubular structure, the breathing catheter It is interior to be equipped with the isolation structure that breathing catheter inner cavity be divided into air guide cavity configuration and drain cavity configuration, the air guide cavity configuration Including the air-pressure chamber being separately positioned on inside breathing catheter close to face floor side and air guide room, the drain cavity configuration includes setting The drain room close to inner layer side inside breathing catheter is set, the drain room is correspondingly arranged with air-pressure chamber, and described leads Liquid chamber and air guide room shift to install.
In the physical efficiency clothes that above-mentioned meeting breathes, the isolation structure includes along breathing catheter close to inner layer side axial direction Extended opening is respectively equipped with the first partition and second along the axially extending setting of breathing catheter in the breathing catheter Partition board, the first partition and the cross-shaped distribution of second partition, the first partition is along opening laterally setting and first Partition board both sides are connected with breathing catheter inner wall respectively, and the air guide cavity configuration is formed in first partition side, the drain Room is located at the first partition other side, and the air-pressure chamber and air guide room are located at second partition both sides, and described second every Plate side is connected with breathing catheter inner wall, and the other side extends to opening, is equipped in breathing catheter parallel with first partition Third partition board, and the third partition board side is connected with second partition, and the other side is connected with breathing catheter inner wall, described Above-mentioned drain room is formed between third partition board and first partition.
In the physical efficiency clothes that above-mentioned meeting breathes, described includes being successively set on air-pressure chamber and leading from flow-guiding structure is breathed Unidirectional expiration component between gas chamber, between air guide room and opening, leads between the opening and drain room equipped with unidirectional air guide Component is flowed, and is equipped with anti-reflux one way component between drain room and air-pressure chamber.
In the physical efficiency clothes that above-mentioned meeting breathes, the unidirectional expiration component includes being arranged on second partition and can be by Between air-pressure chamber and air guide room one-way conduction and be arranged in first partition and can by air guide room with opening one-way conduction the One one-way conduction structure;The unidirectional air guide guiding subassembly includes being arranged in first partition and capable of being open single with drain room To the second one-way conduction structure of conducting, the anti-reflux one way component includes being arranged in first partition and can be by drain room With the third one-way conduction structure of air-pressure chamber one-way conduction, and the first one-way conduction structure, the second one-way conduction structure It is self-closing one-way conduction structure with third one-way conduction structure.
In the physical efficiency clothes that above-mentioned meeting breathes, the self-closing one-way conduction structure include be separately positioned on first every Bellmouth on plate, second partition and third partition board, and the bellmouth bottom has grooving.
In the physical efficiency clothes that above-mentioned meeting breathes, the grooving is in cross, and the stub end of the bellmouth and Gas flow direction is opposite.
In the physical efficiency clothes that above-mentioned meeting breathes, the breathing catheter is made of silastic material through 3D printing method; The surface layer and inner layer is Corterra fabric linings.
In the physical efficiency clothes that above-mentioned meeting breathes, the breathing catheter is successively set in vertical direction or inclined direction In accommodating cavity, and each breathing catheter upper end or lower end are sequentially connected at least one breathing catheter in logical, described breathing catheter Lower end is equipped with the keying valve being connected with air guide cavity configuration and/or drain cavity configuration.
In the physical efficiency clothes that above-mentioned meeting breathes, it is any one in jacket, trousers and protector that the physical efficiency, which takes ontology, Kind or multiple combinations.
Compared with prior art, the advantages of this physical efficiency that can be breathed takes is:
1, new-type physical efficiency clothes are designed with the special conductive channel of its conduit, in different knot valves due to caused by air pressure change Deformation function realizes good air guide hot function by conduit, and fighter's whole body is made to keep " ventilated " state, can larger journey The various operational environments of adaptation of degree, reach basic " cool in summer and warm in winter ".
2, in latent operational environment, personnel activity is smaller.Using the overlay structure of body surface conduit, by operation conduit end The keying valve of design forms heat preservation.
3, the coated type ana conduit arrangement of physical efficiency clothes design forms one layer using the elasticity and resiliency of silastic material The protective layer of internal layer, to reduce the injury that external impact is brought.
4, catheter design is detachable structure, easy to clean can be exchanged with maintenance, and the whole board design of physical efficiency clothes is Adjustable contour structures are applicable to different personnel's builds, and the combined type material composition of its design can reduce other equipments Wearing.
Description of the drawings
Fig. 1 is the structural schematic diagram that physical efficiency takes ontology in the utility model embodiment one;
Fig. 2 is the structure sectional view that physical efficiency takes ontology in the utility model embodiment one;
Fig. 3 is the structural schematic diagram of breathing catheter in the utility model embodiment one;
Fig. 4 is the partial structural diagram of breathing catheter in the utility model embodiment one;
Fig. 5 is the structure sectional view of breathing catheter in the utility model embodiment one;
Fig. 6 is in the utility model embodiment one from the schematic diagram for breathing flow-guiding structure;
Fig. 7 is the structural schematic diagram that physical efficiency takes ontology in the utility model embodiment two;
In figure, physical efficiency takes ontology 1, face layer 11, inner layer 12, accommodating cavity 13, breathing catheter 2, air guide cavity configuration 21, air-pressure chamber 211, air guide room 212, drain cavity configuration 22, drain room 221, certainly breathing flow-guiding structure 3, unidirectional expiration component 31, unidirectional air guide Guiding subassembly 32, anti-reflux one way component 33, self-closing one-way conduction structure 34, bellmouth 341, grooving 342, the first bellmouth 343, the first cross grooving 344, the second bellmouth 345, the second cross grooving 346, third bellmouth 347, third cross grooving 348, hole 35, isolation structure 4, opening 41, first partition 42, second partition 43, third partition board 44, keying valve 5, sleeve 6.
Specific implementation mode
The utility model is described in more detail with reference to the accompanying drawings and detailed description.
Embodiment one
As shown in Figs 1-4, this physical efficiency that can be breathed takes, including physical efficiency takes ontology 1, for example, physical efficiency here takes ontology 1 is Short sleeved blouse, face layer 11 and inner layer 12 made of flexible ventilating material sew, and are formed between face layer 11 and inner layer 12 Accommodating cavity 13, be equipped in the accommodating cavity 13 it is several elasticity can breathing catheter 2 made of shape-changing material, which can be with It sets gradually, while each breathing catheter 2 can be independently arranged, each breathing can also be led in vertical direction or inclined direction 2 upper end of pipe or lower end are sequentially connected logical, to form bulk loop by the way that breathing catheter is together in series, breathing catheter 2 here can Be directly anchored to face layer 11 and inner layer 12 between, can also by face layer 11 and inner layer 12 between several quilting lines are set, from And form multiple filled cavities in accommodating cavity 13 and plug breathing catheter 2 and set in filled cavity, such breathing catheter 2 is set It is calculated as detachable structure, easy to clean can be exchanged with maintenance, and the whole board design of physical efficiency clothes is adjustable contour structures, it can To combine the realizations such as binding yarn adjustment physical efficiency to take the size of ontology 1, to be suitable for different personnel's builds, wherein breathing catheter 2 Inside it is respectively provided with air guide cavity configuration 21 and drain cavity configuration 22 axially extending along breathing catheter 2 and in closed, air guide chamber knot Structure 21 is located at breathing catheter 2 close to 11 outside of face layer, and drain cavity configuration 22 is located at breathing catheter 2 close to 12 inside of inner layer, and leads Air cavity structure 21 and the setting of 22 mutual dislocation of drain cavity configuration are equipped in breathing catheter 2 when 2 outside of breathing catheter is pressed Air guide cavity configuration 21 can take 1 inner layer 12 of ontology towards physical efficiency and generate expiration and when breathing catheter 2 restores deformation when power generates deformation When gas in drain cavity configuration 22 can be guided to air guide cavity configuration 21 to formed in the drain cavity configuration 22 negative pressure and by Nearly physical efficiency takes the breathing flow-guiding structure 3 certainly that 1 inner layer of ontology, 12 side generates negative-pressure sucking.By the interval conduit for being covered in body surface In be designed as it is two-way it is vertical exhale side by side and perspire channel, using the flow conductivity lightweight silicon rubber of air pressure principle and unidirectional air guide, When silicon rubber compresses, deformation is filled with gas, carries out body surface gas exchanges;When restoring deformation, air-breathing absorbing sweat heat extraction simultaneously is taken away Sweat and body surface heat, can reach theoretic respiration.
As in Figure 3-5, wherein the breathing catheter 2 here is in flat tubular structure, is equipped in breathing catheter 2 2 inner cavity of breathing catheter can be divided into the isolation structure 4 of air guide cavity configuration 21 and drain cavity configuration 22, air guide cavity configuration 21 to wrap Include the air-pressure chamber 211 and air guide room 212 for being separately positioned on 2 inside of breathing catheter close to 11 side of face floor, the packet of drain cavity configuration 22 It including and is arranged in 2 inside of breathing catheter close to the drain room 221 of 12 side of inner layer, drain room 221 is correspondingly arranged with air-pressure chamber 211, And drain room 221 and air guide room 212 shift to install.In the present embodiment, move in breathing catheter 2 under at least one breathing catheter 2 End is equipped with the keying valve 5 being connected with air guide cavity configuration 21 and/or drain cavity configuration 22.When individual soldier is in latent operational environment, Personnel activity is smaller.Using the overlay structure of body surface conduit, the keying valve 5 of conduit end design will be opened, form heat preservation.
Preferably, isolation structure 4 here includes opening close to the inner layer axially extending setting in 12 side along breathing catheter 2 Mouthfuls 41, it is respectively equipped with first partition 42 and second partition 43 along 2 axially extending setting of breathing catheter in breathing catheter 2, first The 43 cross-shaped distribution of partition board 42 and second partition, first partition 42 is laterally arranged along opening 41 and 42 both sides of first partition are distinguished It is connected with 2 inner wall of breathing catheter, air guide cavity configuration 21 is formed in 42 side of first partition, and drain room 221 is located at first partition 42 The other side, air-pressure chamber 211 and air guide room 212 are located at 43 both sides of second partition, and 43 side of second partition and breathing catheter 2 inner walls are connected, and the other side extends at opening 41, are equipped with and the parallel third partition board of first partition 42 in breathing catheter 2 44, it is preferable that several holes are also provided in first partition 42, second partition 43 and third partition board 44, consequently facilitating generating Deformation, and 44 side of third partition board is connected with second partition 43, the other side is connected with 2 inner wall of breathing catheter, 44 He of third partition board Above-mentioned drain room 221 is formed between first partition 42,41 both sides of opening here can be arranged directly on inner layer 12, in this way So that forming the first gap between first partition 42 and inner layer 12, the second gap is formed between third partition board 44 and inner layer 12, the One gap is less than the second gap.
Further, here from breathing flow-guiding structure 3 include be successively set on air-pressure chamber 211 and air guide room 212 it Between, air guide room 212 and opening 41 between unidirectional expiration component 31, opening 41 and drain room 221 between led equipped with unidirectional air guide Component 32 is flowed, and is equipped with anti-reflux one way component 33 between drain room 221 and air-pressure chamber 211.Preferably, here unidirectional exhales Pneumatic module 31 includes being arranged on second partition 43 and can be by one-way conduction and setting between air-pressure chamber 211 and air guide room 212 And it can be by the first one-way conduction structure of air guide room 212 and 41 one-way conductions of opening in first partition 42;Unidirectional air guide water conservancy diversion Component 32 include be arranged in first partition 42 and can by opening 41 and 221 one-way conduction of drain room the second one-way conduction knot Structure, anti-reflux one way component 33 include being arranged in first partition 42 and can be by 211 one-way conduction of drain room 221 and air-pressure chamber Third one-way conduction structure, and the first one-way conduction structure, the second one-way conduction structure and third one-way conduction structure are certainly Enclosed one-way conduction structure 34.
Further, self-closing one-way conduction structure 34 here include be separately positioned on first partition 42, second every Bellmouth 341 on plate 43 and third partition board 44, and 341 bottom of bellmouth has grooving 342, wherein grooving 342 is in cross Shape, and the stub end of bellmouth 341 and gas flow direction are opposite.The round taper hole for utilizing cross cone slot cutting, abundant Using can realize that air-liquid cycle can also be carried simultaneously using the cushioning principle of elastic material under the premise of the superiority of silicone rubber material For protection.
Specifically, the first one-way conduction structure includes several be arranged in first partition 42 and second partition 43 One bellmouth 343,343 bottom of the first bellmouth have the first cross grooving 344, and the first bellmouth on second partition 43 343 stub end is towards air-pressure chamber 211, and the stub end of the first bellmouth 343 in first partition 42 is towards air guide room 212.
Similarly, the second one-way conduction structure includes several the second bellmouths 345 being arranged on third partition board 44, and second 345 bottom of bellmouth has the second cross grooving 346, and the stub end of the second bellmouth 345, towards opening 41, third is unidirectionally led Logical structure includes at least one third bellmouth 347 being arranged in first partition 42, and 347 bottom of third bellmouth has the Three cross groovings 348, and the stub end of the third bellmouth 347 is towards drain room 221, in order to improve anti-return effect, The liquid in drain room 221 is avoided to enter air-pressure chamber 211, the first partition 42 in drain room 221 can be thickeied, Thickness is more than 42 remainder of first partition.
As shown in fig. 6, being from breathing flow-guiding structure concrete principle in the present embodiment:When individual soldier wears physical efficiency clothes movement When, face layer 11 is under the action of human body and the contact of breathing catheter 2 makes 2 outside of breathing catheter generate slight deformation, air-pressure chamber 211 Air-flow air guide room 212 is entered by the first bellmouth 343 on second partition 43, the air-flow in right rear air guiding chamber 212 passes through The first bellmouth 343 in first partition 42 starts to exhale to opening 41, when breathing catheter 2 restores deformation, in drain room 221 Air-flow air-pressure chamber 211 is entered by third bellmouth 347, certain negative pressure is formed in drain room 221, physical efficiency takes 1 inner layer of ontology The gas and liquid of 12 sides enter drain room 221 by the second bellmouth 345, and liquid runs down drain room 221 flows downward.It realizes " one exhales a suction ", i.e., each gas chamber realizes that individual event is passed through in simple tapered opening, and changing in satellite meter pressure during exercise Constantly realize that gas exchanges are absorbed with sweat using the air pressure principle of physics in change.Realize that gas is handed over by conduit loop structure It changes, has pressure that can carry out " breathing ", realize high efficiency and heat radiation.
Breathing catheter 2 in the present embodiment is made of silastic material through 3D printing method, is carried out using 3D printing technique The making of core silicone tube can reach functional characteristic for the details making of internal structure.For the physical characteristic of silastic material Utilization, silastic material here, it is preferred to use methyl vinyl silicone rubber, also referred to as vinyl methyl silicon rubber, full name It is Polymethyl methacrylate rubber, density is small, will not increase individual soldier's load weight, good heat resistance, the permanent change of compression Shape, chemical resistance, vibration absorbing performance, bending fatigue resistance and flexible are soft, are best suited for moulding with practice work( " air guide " and " breathing " conduit of energy is the core content equipped.
Face layer 11 and inner layer 12 are Corterra fabric linings.The double-layer structure of textile cloth, by poly terephthalic acid Corterra fibers made of propylene glycol ester ptt fiber are known as " following elastomer ", have intrinsic comfort, soft Soft, fluffy, easy dyeing, bright colors and the characteristics such as durable, are mainly used in thick and heavy or shirt woven fabric and knitted clothing, inhale For wet rapid-curing cutback cool fiber-by carrying out physics and chemically to polyester fiber, study it has absorbing sweat, soon in athletic equipment The advantages that dry comfort, fabric is frivolous, with excellent capillary core sucting action, tool is worn under the high humid and warm environments such as summer There is washable cooling feeling, quick-drying, non-ironing.
Embodiment two
As shown in fig. 7, the structure of the present embodiment, principle and its specific steps are similar with embodiment one, different places exists When it is short sleeved blouse that, the physical efficiency in the present embodiment, which takes ontology 1, short sleeved blouse can with detachably connected sleeve 6, for example, It uses velcro that quickly short sleeved blouse can be connected with sleeve 6, one similar structures of embodiment, while sleeve 6 is also used in sleeve 6 Interior breathing catheter 2 can be connected with the breathing catheter 2 in short sleeved blouse.
Embodiment three
The structure, principle and its specific steps of the present embodiment are similar with embodiment one, and different places are, the present embodiment In physical efficiency to take ontology 1 can also be trousers, such as structure that trousers, shorts and its shorts are detachably connected with trouser legs, meanwhile, Physical efficiency, which takes ontology 1, can also use the widgets individual equipments such as protector, can equally obtain the effect of rapid cooling.
The specific embodiments described herein are merely examples of the spirit of the present invention.The utility model institute Belonging to those skilled in the art can make various modifications or additions to the described embodiments or using similar Mode substitute, but without departing from the spirit of the present application or beyond the scope of the appended claims.
Although physical efficiency, which is used more herein, takes ontology 1, face layer 11, inner layer 12, accommodating cavity 13, breathing catheter 2, air guide Cavity configuration 21, air-pressure chamber 211, air guide room 212, drain cavity configuration 22, drain room 221, certainly breathing flow-guiding structure 3, unidirectional expiration Component 31, anti-reflux one way component 33, self-closing one-way conduction structure 34, bellmouth 341, is cut unidirectional air guide guiding subassembly 32 Slot 342, the first bellmouth 343, the first cross grooving 344, the second bellmouth 345, the second cross grooving 346, third bellmouth 347, third cross grooving 348, hole 35, isolation structure 4, opening 41, first partition 42, second partition 43, third partition board 44, The terms such as valve 5, sleeve 6 are opened and closed, but it does not preclude the possibility of using other terms.The use of these items is only for more square Just the essence of the utility model is described and explained;It is construed as any one of the additional limitations all and is and the utility model What spirit was disagreed.

Claims (10)

1. a kind of physical efficiency clothes that can be breathed, including physical efficiency take ontology (1), the physical efficiency takes ontology (1) by flexible ventilating material Manufactured face layer (11) and inner layer (12) sew, which is characterized in that are formed between the face layer (11) and inner layer (12) Accommodating cavity (13), be equipped in the accommodating cavity (13) it is several elasticity can breathing catheter (2) made of shape-changing material, the breathing Air guide cavity configuration (21) and drain cavity configuration axially extending along breathing catheter (2) and in closed are respectively provided in conduit (2) (22), the air guide cavity configuration (21) is located at breathing catheter (2) on the outside of face layer (11), the drain cavity configuration (22) Positioned at breathing catheter (2) on the inside of inner layer (12), and the air guide cavity configuration (21) and drain cavity configuration (22) is mutually wrong Position setting is equipped in breathing catheter (2) from breathing flow-guiding structure (3).
2. the physical efficiency clothes according to claim 1 that can be breathed, which is characterized in that the breathing catheter (2) is in flat tube Breathing catheter (2) inner cavity can be divided into air guide cavity configuration (21) and liquid guiding cavity by shape structure, interior be equipped with of the breathing catheter (2) The isolation structure (4) of structure (22), the air guide cavity configuration (21) include being separately positioned on the internal close face of breathing catheter (2) The air-pressure chamber (211) of floor (11) side and air guide room (212), the drain cavity configuration (22) include being arranged in breathing catheter (2) the internal drain room (221) close to inner layer (12) side, the drain room (221) are correspondingly arranged with air-pressure chamber (211), And the drain room (221) and air guide room (212) shifts to install.
3. the physical efficiency clothes according to claim 2 that can be breathed, which is characterized in that the isolation structure (4) includes that edge is exhaled Opening (41) of the conduit (2) close to the axially extending setting in inner layer (12) side is inhaled, edge is respectively equipped in the breathing catheter (2) The first partition (42) and second partition (43) of breathing catheter (2) axially extending setting, the first partition (42) and second Partition board (43) cross-shaped distribution, the first partition (42) is laterally arranged along opening (41) and first partition (42) both sides point It is not connected with breathing catheter (2) inner wall, the air guide cavity configuration (21) is formed in first partition (42) side, the drain Room (221) is located at first partition (42) other side, and the air-pressure chamber (211) and air guide room (212) are located at second partition (43) both sides, and second partition (43) side is connected with breathing catheter (2) inner wall, the other side extends to opening (41) Place, is equipped in the breathing catheter (2) and the parallel third partition board (44) of first partition (42), and the third partition board (44) Side is connected with second partition (43), and the other side is connected with breathing catheter (2) inner wall, the third partition board (44) and first every Above-mentioned drain room (221) is formed between plate (42).
4. the physical efficiency clothes according to claim 3 that can be breathed, which is characterized in that described wraps from breathing flow-guiding structure (3) Include be successively set between air-pressure chamber (211) and air guide room (212), air guide room (212) and opening (41) between unidirectional expiration Component (31) is equipped with unidirectional air guide guiding subassembly (32) between the opening (41) and drain room (221), and in drain room (221) anti-reflux one way component (33) is equipped between air-pressure chamber (211).
5. the physical efficiency clothes according to claim 4 that can be breathed, which is characterized in that the unidirectional expiration component (31) includes Setting is on second partition (43) and by one-way conduction between air-pressure chamber (211) and air guide room (212) and can be arranged first And it can be by the first one-way conduction structure of air guide room (212) and opening (41) one-way conduction on partition board (42);Described unidirectionally leads Gas guiding subassembly (32) includes being arranged in first partition (42) and can be by the of opening (41) and drain room (221) one-way conduction Two one-way conduction structures, the anti-reflux one way component (33) include being arranged in first partition (42) and can be by drain room (221) and the third one-way conduction structure of air-pressure chamber (211) one-way conduction, and the first one-way conduction structure, second single It is self-closing one-way conduction structure (34) to conducting structure and third one-way conduction structure.
6. the physical efficiency clothes according to claim 5 that can be breathed, which is characterized in that the self-closing one-way conduction structure (34) include the bellmouth (341) being separately positioned on first partition (42), second partition (43) and third partition board (44), and institute Bellmouth (341) bottom stated has grooving (342).
7. the physical efficiency clothes according to claim 6 that can be breathed, which is characterized in that the grooving (342) is in cross, and The stub end and gas flow direction of the bellmouth (341) are opposite.
8. the physical efficiency clothes according to any one of claims 1-7 that can be breathed, which is characterized in that the breathing catheter (2) it is made through 3D printing method of silastic material;The face layer (11) and inner layer (12) are Corterra fabric linings.
9. the physical efficiency clothes according to claim 1 that can be breathed, which is characterized in that the breathing catheter (2) is in vertical side To or inclined direction be successively set in accommodating cavity (13), and each breathing catheter (2) upper end or lower end be sequentially connected it is logical, it is described Breathing catheter (2) at least one breathing catheter (2) lower end be equipped with and air guide cavity configuration (21) and/or drain cavity configuration (22) The keying valve (5) being connected.
10. the physical efficiency clothes according to claim 1 that can be breathed, which is characterized in that it is upper that the physical efficiency, which takes ontology (1), Any one or more combination in clothing, trousers and protector.
CN201820612960.7U 2018-04-26 2018-04-26 The physical efficiency clothes that can be breathed Expired - Fee Related CN207803509U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108464541A (en) * 2018-04-26 2018-08-31 成都理工大学工程技术学院 The physical efficiency clothes that can be breathed
CN110200340A (en) * 2019-06-27 2019-09-06 金其 A kind of cooling device and shared cooling clothes of comfortable wearing

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108464541A (en) * 2018-04-26 2018-08-31 成都理工大学工程技术学院 The physical efficiency clothes that can be breathed
CN110200340A (en) * 2019-06-27 2019-09-06 金其 A kind of cooling device and shared cooling clothes of comfortable wearing

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