CN204081339U - A kind of anti-condensation metal radiant panel - Google Patents

A kind of anti-condensation metal radiant panel Download PDF

Info

Publication number
CN204081339U
CN204081339U CN201420190034.7U CN201420190034U CN204081339U CN 204081339 U CN204081339 U CN 204081339U CN 201420190034 U CN201420190034 U CN 201420190034U CN 204081339 U CN204081339 U CN 204081339U
Authority
CN
China
Prior art keywords
radiant panel
metal
super
condensation
hydrophobic
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 - Lifetime
Application number
CN201420190034.7U
Other languages
Chinese (zh)
Inventor
宋波
李艳杰
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.)
National Security (beijing) Technology Co Ltd
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 Individual filed Critical Individual
Priority to CN201420190034.7U priority Critical patent/CN204081339U/en
Application granted granted Critical
Publication of CN204081339U publication Critical patent/CN204081339U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Abstract

The utility model discloses a kind of anti-condensation metal radiation panel assembly.The method adopts super hydrophobic surface manufacturing technology, metal sheet is carried out super-hydrophobic process, metal sheet surface is made to present super-hydrophobic state, again capillary network or bronze pan tube are arranged on super-hydrophobic metal radiant panel, middle aluminium foil of laying makes capillary network or bronze pan tube and super-hydrophobic metal radiant panel close contact, and capillary network or bronze pan tube upper surface install isolation layer, then cover with overlay, installed by the fastening combination of securing member, composition has the metal radiant panel of radiant panel for cooling and heating function.This radiant panel can be placed and the superhydrophobic characteristic of radiating surface under keeping it for a long time in atmosphere, thus when can make metal radiant panel in for radiation cooling air-conditioning system, in any moisture laden air, surface all there will not be dew condensation phenomenon.This invents the problem thoroughly solved by easy condensation during radiant panel radiation cooling.

Description

A kind of anti-condensation metal radiant panel
Technical field
The utility model relates to air-conditioning technical field, particularly relates to a kind of anti-condensation metal radiant panel.
Background technology
The patent No.: the Chinese utility model patent of 201020275113 discloses a kind of metal cold ceiling: the utility model relates to a kind of metal cold ceiling, comprise metal frame (1), capillary tube (2) and capillary house steward (3), described capillary tube (2) and capillary house steward (3) communicate, and described capillary tube (2) and capillary house steward (3) are all fixed on metal frame (1).The mutual interstice coverage of described capillary tube (2) is: 10mm-30mm.
The metal cold ceiling beneficial effect that the utility model provides is: (1). high degree of comfort; (2). the most quietly air-conditioning system; (3). there is no condense water disk, not bacteria breed source; (4). energy-saving effect is remarkable; (5). stronger cold-storage/heat storage capacity; (6). stronger self-adjusting balance ability; (7). it is little that capillary end takies building headroom, saves architectural space; (8). capillary tube flexible arrangement, easy construction; (9). be particularly suitable for same earth source heat pump with the use of, reach more energy-conservation effect.
The defect existed: the metal radiant panel of radiant panel for cooling and heating or cold furred ceiling, cold emission face is there is in system cloud gray model, because the surface temperature in cold emission face is often lower than the dewpoint temperature in air, therefore easily there is the phenomenon of condensation, in order to solve the generation of condensation, usual employing configures special dehumidification system, simultaneously in order to prevent condensation, necessary strict control system inflow temperature, this method not only increases the cost of investment of special dehumidification equipment, also the safety of robot control system(RCS) is brought challenges, wayward due to condensation, cannot window in the room having installed radiation-type air conditioner system, dehumidification system cannot normally run once the air-conditioning system that breaks down, special dehumidifying VMC increases the problems such as system cloud gray model energy consumption.
Summary of the invention
In order to overcome above-mentioned the deficiencies in the prior art, the utility model provides a kind of anti-condensation metal radiant panel, when the arrangement achieves air-conditioning system cooling, system does not need configure dedicated dehumidification system, lower temperature can be adopted when no longer there is condensation, radiation cooling during radiation cooling, cannot to window when solving radiation cooling ventilation, during radiation cooling dehumidification system break down after system cannot normally run, the new wind that must configure during radiation cooling and then the problem causing system energy consumption too high.
For achieving the above object, the utility model adopts following technical scheme
An anti-condensation metal radiant panel, comprising:
Super-hydrophobic metal sheet (5): made by super hydrophobic surface manufacturing technology, at moisture laden air not condensation;
Aluminium foil (4): described pipe network (3) is combined closely with described super-hydrophobic metal sheet (5), increases the heat dissipation capacity of described pipe network (3), and make heat radiation evenly;
Pipe network (3): logical hot and cold water in pipe, and the heat in water is passed to super-hydrophobic metal sheet (5) by described aluminium foil (4);
Isolation layer (2): described pipe network (3) and top layer overlay are isolated, prevents heat from upwards transmitting and cause hot loss of energy;
Overlay (6): cover described isolation layer (2) upper surface, becomes described metal radiant panel with other all component combinations;
Securing member (1): fastening described super-hydrophobic metal sheet (5) and common metal plate, form described metal radiant panel;
It is characterized in that, described super-hydrophobic metal sheet (5) and described aluminium foil (4) close adhesion, described aluminium foil (4) and described pipe network (3) close adhesion, described pipe network (3) and described isolation layer (2) close adhesion, described isolation layer (2) and described overlay (6) close adhesion, described close adhesion is realized by described securing member (1).
Preferably, described super-hydrophobic metal sheet (5) adopts aluminium sheet, steel plate, copper coin or other metal alloy plates to be base material, super-hydrophobic manufacture craft is adopted to carry out super-hydrophobic process to described super-hydrophobic metal sheet (5) plate surface, the contact angle of plate surface is made to be greater than 150 °, roll angle is less than 10 °, the super-hydrophobic state of surface presentation, in wet environment, low temperature cold surface there will not be dew condensation phenomenon.
In above-mentioned either a program preferably, described aluminium foil (4) adopts thickness to be less than the rectangular and homogeneous extruded aluminum product in 0.20mm, cross section.
In above-mentioned either a program preferably, described pipe network (3) comprises capillary network and bronze pan tube.
In above-mentioned either a program preferably, in described pipe network (3), described capillary tube caliber is 4.3mm or 3.4mm, and supervisor's caliber is 20mm, and spacing is 10mm-40mm, usually adopts the U-shaped or I type capillary network of spacing 20mm.
In above-mentioned either a program preferably, in described pipe network (3), described bronze pan tube diameter is 3mm-20mm, and tube pitch is 10mm-100mm, usually adopts diameter 10mm, the bronze pan tube of tube pitch 40mm.
In above-mentioned either a program preferably, described isolation layer (2) employing polystyrene foam plate (EPS), extruded sheet (XPS), polyurethane thermal insulation board, rock wool heat-preservation or phenolic-aldehyde heat-insulation board or wherein any combination.
In above-mentioned either a program preferably, described overlay (6) adopts aluminium sheet or steel plate or copper coin or plastic plate or gypsum plank or other metal alloy plates.
In above-mentioned either a program preferably, described securing member (1) comprises rivet, screw.
The utility model also provides a kind of preparation method of anti-condensation metal radiant panel, it is characterized in that, the preparation method of described anti-condensation metal radiant panel comprises first carries out electrochemical treatments by metal sheet, then applies low-surface-energy material, obtains the metal sheet of super two thin characteristic.
Preferably, the surface of described metal sheet is dripped for the various fluid except fluorine-containing liquid and is all showed excess of export and dredge characteristic, and roll angle is generally all less than 10 °.
In above-mentioned either a program preferably, the surface of described metal sheet can also be placed in atmosphere for a long time and still can keep its super two thin characteristic, and the super-double-hydrophobic surface of described metal sheet can be steady in a long-term, after mechanical bend, distortion, still have good super thin characteristic.
In above-mentioned either a program preferably, the super-double-hydrophobic surface of described metal sheet can the molten solution of super thin paraffin, polyethylene glycol under heating drip, and has Wax proofing character.
In above-mentioned either a program preferably, the thickness of described bulk metal radiant panel is 2cm-10cm.
In above-mentioned either a program preferably, described bulk metal radiant panel adopts installation of ceiling, and in pipe network, the water temperature of logical cold water radiation cooling controls at 7-20 DEG C, is generally 16 DEG C, in described pipe network, the water temperature of logical hot-water radiant's heat supply controls at 25-60 DEG C, usually adopts 35 DEG C.
In above-mentioned either a program preferably, installation between described metal radiant panel and metal radiant panel adopts hot melt or welding method or flexible pipe, clip connecting method, namely first described pipe network supervisor is connected, then connected by the draw-in groove on described metal radiant panel or screw.
When the utility model achieves air-conditioning system cooling, system does not need configure dedicated dehumidification system, lower temperature can be adopted when no longer there is condensation, radiation cooling during radiation cooling, cannot to window when solving radiation cooling ventilation, during radiation cooling dehumidification system break down after system cannot normally run, the new wind that must configure during radiation cooling and then the problem causing system energy consumption too high.
Application of the present utility model is the major transformation to radiation-type air conditioner system, is also a major transformation of field of air conditioning.Not only increase heat radiation end-wise manner new in a kind of air-conditioning system, overcome the significant problem must carrying out humid control that same category of device has simultaneously.
Accompanying drawing explanation
Fig. 1 is top view and the A-A sectional view of the super-hydrophobic metal radiant panel of a preferred embodiment according to a kind of anti-condensation metal radiant panel of the utility model;
Fig. 2 is the A-A sectional view of the preferred embodiment Fig. 1 according to a kind of anti-condensation metal radiant panel of the utility model;
Fig. 3 be according to the anti-condensation metal radiant panel of preferred embodiment Fig. 1 for a kind of anti-condensation metal radiant panel of the utility model between the mode schematic diagram that is flexible coupling;
Fig. 4 be according to the anti-condensation metal radiant panel of preferred embodiment Fig. 1 for a kind of anti-condensation metal radiant panel of the utility model between hard connecting mode schematic diagram.
Detailed description of the invention
In order to understand the utility model patent better, below in conjunction with specific embodiment, the utility model patent is described in detail.But, obviously can carry out different modification and remodeling to patent of invention and not exceed the wider spirit and scope of the utility model that claim limits.Therefore, following examples have exemplary and hard-core implication.
Below in conjunction with accompanying drawing, the technical solution of the utility model is described in detail:
Embodiment one:
Be illustrated in figure 1 top view and the A-A sectional view of the super-hydrophobic metal radiant panel of the preferred embodiment according to a kind of anti-condensation metal radiant panel of the utility model; a kind of anti-condensation metal radiant panel comprises: super-hydrophobic metal sheet (5): made by super hydrophobic surface manufacturing technology, at moisture laden air not condensation;
Aluminium foil (4): described pipe network (3) is combined closely with described super-hydrophobic metal sheet (5), increases the heat dissipation capacity of described pipe network (3), and make heat radiation evenly;
Pipe network (3): logical hot and cold water in pipe, and the heat in water is passed to super-hydrophobic metal sheet (5) by described aluminium foil (4);
Isolation layer (2): described pipe network (3) and top layer overlay are isolated, prevents heat from upwards transmitting and cause hot loss of energy;
Overlay (6): cover described isolation layer (2) upper surface, becomes described metal radiant panel with other all component combinations;
Securing member (1): fastening described super-hydrophobic metal sheet (5) and common metal plate, form described metal radiant panel;
Described super-hydrophobic metal sheet (5) and described aluminium foil (4) close adhesion, described aluminium foil (4) and described pipe network (3) close adhesion, described pipe network (3) and described isolation layer (2) close adhesion, described isolation layer (2) and described overlay (6) close adhesion, described close adhesion is realized by described securing member (1).
Described super-hydrophobic metal sheet (5) adopts aluminium sheet, steel plate, copper coin or other metal alloy plates to be base material, super-hydrophobic manufacture craft is adopted to carry out super-hydrophobic process to described super-hydrophobic metal sheet (5) plate surface, the contact angle of plate surface is made to be greater than 150 °, roll angle is less than 10 °, the super-hydrophobic state of surface presentation, in wet environment, low temperature cold surface there will not be dew condensation phenomenon.Described aluminium foil (4) adopts thickness to be less than the rectangular and homogeneous extruded aluminum product in 0.20mm, cross section.Described pipe network (3) comprises capillary network and bronze pan tube.In described pipe network (3), described capillary tube caliber is 4.3mm or 3.4mm, and supervisor's caliber is 20mm, and spacing is 10mm-40mm, usually adopts the U-shaped or I type capillary network of spacing 20mm.In described pipe network (3), described bronze pan tube diameter is 3mm-20mm, and tube pitch is 10mm-100mm, usually adopts diameter 10mm, the bronze pan tube of tube pitch 40mm.Described isolation layer (2) employing polystyrene foam plate (EPS), extruded sheet (XPS), polyurethane thermal insulation board, rock wool heat-preservation or phenolic-aldehyde heat-insulation board or wherein any combination.Described overlay (6) adopts aluminium sheet or steel plate or copper coin or plastic plate or gypsum plank or other metal alloy plates.Described securing member (1) comprises rivet, screw.
Embodiment two:
A preparation method for anti-condensation metal radiant panel, the preparation method of described anti-condensation metal radiant panel comprises first carries out electrochemical treatments by metal sheet, then applies low-surface-energy material, obtains the metal sheet of super two thin characteristic.The surface of described metal sheet is dripped for the various fluid except fluorine-containing liquid and is all showed excess of export and dredge characteristic, and roll angle is generally all less than 10 °.The surface of described metal sheet can also be placed in atmosphere for a long time and still can keep its super two thin characteristic, and the super-double-hydrophobic surface of described metal sheet can be steady in a long-term, after mechanical bend, distortion, still have good super thin characteristic.The super-double-hydrophobic surface of described metal sheet can comprise super thin paraffin under heating, the molten solution of polyethylene glycol drips, and has Wax proofing character.The thickness of described bulk metal radiant panel is 2cm-10cm.Described bulk metal radiant panel adopts installation of ceiling, and in pipe network, the water temperature of logical cold water radiation cooling controls at 7-20 DEG C, is generally 16 DEG C, and in described pipe network, the water temperature of logical hot-water radiant's heat supply controls at 25-60 DEG C, usually adopts 35 DEG C.Installation between described metal radiant panel and metal radiant panel adopts hot melt or welding method or flexible pipe, clip connecting method, namely first described pipe network supervisor is connected, then is connected by the draw-in groove on described metal radiant panel or screw.
Ultra-amphosphobic:
According to the infiltration degree of water at the surface of solids, solid can be divided into hydrophily and hydrophobicity, and so-called super-hydrophobic (hydrophobic) surface generally refers to and the surface that the contact angle of water is greater than 150 degree.For a hydrophobic surface of solids, when there is microspike on surface time, there are some air " to be closed to " between water and the surface of solids, cause globule major part to contact with air, greatly reduce on the contrary with solid direct contact surface is long-pending.Surface tension effects due to water makes water droplet in the shape of this rough surface close to spherical, and its contact angle can reach more than 150 degree, and the globule can very freely at surface scrolls.(surface of CA > 150 and less roll angle (SA<10) is only super hydrophobic surface truly only to have larger contact angle.So-called contact angle is exactly the angle that drop is held when the surface of solids forms thermodynamical equilibrium.Measure out by the terminal of globule curve and the contact point of the surface of solids in liquid-solid-gas abutment.Roll angle can be used as evaluates surface another index infiltrating, and the drop referring to certain mass starts the critical angle of rolling on inclined plane.Roll angle is less, and the hydrophobicity that the surface of solids shows is better.Because the Action of Gravity Field of the earth, water droplet has the trend of downslide at the surface of solids tilted.Along with the change at solid angle of slope is large, water droplet is along the downslide component of bevel direction also in continuous increase, and when angle of slope increases to a certain critical angle, water droplet can get off from surface of solids landing, and critical angle is at this moment exactly the roll angle of water at this kind of surface of solids.Roll angle is less, and the ultra-hydrophobicity of the surface of solids is better.Research shows, the surface energy of material and surface texture are the key factors affecting apparent contact angle size, and the simple limit that can obtain smooth surface contact angle by changing surface energy is 120 °, and therefore surperficial fine coarse structure is the key obtaining super hydrophobic surface.Along with the development of micro-nano science and technology, the controlled of super hydrophobic surface is processed into possibility, and due to the application prospect that it is wide, the wellability of super hydrophobic surface and application thereof become the focus of research.
We at ordinary times the most common lotus leaf arrived be exactly a kind of " ultra-amphosphobic boundary material ".The basic chemical composition of lotus leaf is the carbohydrate of the polysaccharides such as chlorophyll, cellulose, starch, has abundant hydroxyl (-OH), (-NH) isopolarity group, is easy to adsorption moisture or spot in natural environment.And lotus leaf blade face all has extremely strong hydrophobicity, the water be sprinkled upon on blade face can be gathered into the globule automatically, and the rolling of the globule is glued suction the dust mud dropped on blade face and rolled out blade face, makes blade face remain clean, Here it is famous " lotus leaf self-cleaning effect ".Through the long-term observation research of two Germany scientist, namely the early 1990s in last century has opened the profoundness on lotus leaf blade face finally.Lotus leaf blade face also exists very complicated multiple nanometer and micron-sized ultra microstructure.
The application of this patent is the major transformation to radiation-type air conditioner system, is also a major transformation of field of air conditioning.Not only increase heat radiation end-wise manner new in a kind of air-conditioning system, overcome the significant problem must carrying out humid control that same category of device has simultaneously.
Embodiment three:
Provide a connection method of the present utility model below.
Connected mode schematic diagram between being illustrated in figure 2 according to the anti-condensation metal radiant panel of preferred embodiment Fig. 1 for a kind of anti-condensation metal radiant panel of the utility model and preparation method thereof:
Connect by Hard link (usually adopting sweat soldering) mode between radiant panel and radiant panel, also can be flexible coupling by flexible pipe.
Embodiment four:
In order to important meaning of the present utility model is described, be described for case with the radiation-type air conditioner system of a house or public building configuration below.
In house or public building, if install radiation-type air conditioner system, traditional method must be equipped with special dehumidification equipment to dehumidify to each air-conditioned room, and then in control room, radiating surface does not produce condensation.The cost brought thus is the increase of special equipment initial cost and the high requirement of control precision.
If use anti-condensation radiant panel of the present utility model as end radiation cooling equipment, then in system without the need to more separately configure dedicated Fresh air handling units dehumidify, and carry out strict humid control in room.And only need conveniently air conditioning design requirement, configure common Fresh air handling units.Because anti-condensation radiant panel self can not produce condensation, therefore the safety of system improves greatly, and flexibility and the applicable scope of application increase greatly.
The such as office building project of a building area 1 Wan ㎡, if employing radiation-type air conditioner system, adopt conventional radiation end, in order to meet the needs of humid control, the Fresh air handling units of 3-6 ten thousand m3/h must be configured, and this Fresh air handling units must have reliable dehumidifying effect, need to configure very large air delivery duct and exhast duct simultaneously.If adopt anti-condensation radiant panel as radiation tail end, then can consider the risk because condensation brings, resh air requirement can be configured according to the needs of personnel, the general Fresh air handling units only needing configuration 1.5 ten thousand about m3/h, and this does not have particular/special requirement to the wet-out property of Fresh air handling units.
When the utility model achieves air-conditioning system cooling, system does not need configure dedicated dehumidification system, lower temperature can be adopted when no longer there is condensation, radiation cooling during radiation cooling, cannot to window when solving radiation cooling ventilation, during radiation cooling dehumidification system break down after system cannot normally run, the new wind that must configure during radiation cooling and then the problem causing system energy consumption too high.
Application of the present utility model is the major transformation to radiation-type air conditioner system, is also a major transformation of field of air conditioning.Not only increase heat radiation end-wise manner new in a kind of air-conditioning system, overcome the significant problem must carrying out humid control that same category of device has simultaneously.

Claims (11)

1. an anti-condensation metal radiant panel, comprising:
Super-hydrophobic metal sheet (5): made by super hydrophobic surface manufacturing technology, at moisture laden air not condensation;
Aluminium foil (4): pipe network (3) is combined closely with described super-hydrophobic metal sheet (5), increases the heat dissipation capacity of described pipe network (3), and make heat radiation evenly;
Pipe network (3): logical hot and cold water in pipe, and the heat in water is passed to super-hydrophobic metal sheet (5) by described aluminium foil (4);
Isolation layer (2): described pipe network (3) and top layer overlay are isolated, prevents heat from upwards transmitting and cause hot loss of energy;
Overlay (6): cover described isolation layer (2) upper surface, becomes described metal radiant panel with other all component combinations;
Securing member (1): fastening described super-hydrophobic metal sheet (5) and common metal plate, form described metal radiant panel;
It is characterized in that, described super-hydrophobic metal sheet (5) and described aluminium foil (4) close adhesion, described aluminium foil (4) and described pipe network (3) close adhesion, described pipe network (3) and described isolation layer (2) close adhesion, described isolation layer (2) and described overlay (6) close adhesion, described close adhesion is realized by described securing member (1).
2. anti-condensation metal radiant panel according to claim 1, it is characterized in that, described super-hydrophobic metal sheet (5) adopts aluminium sheet, steel plate, copper coin or other metal alloy plates to be base material, and the contact angle of plate surface is greater than 150 °, roll angle is less than 10 °, the super-hydrophobic state of surface presentation.
3. anti-condensation metal radiant panel according to claim 1, is characterized in that, described aluminium foil (4) adopts thickness to be less than the rectangular and homogeneous extruded aluminum product in 0.20mm, cross section.
4. anti-condensation metal radiant panel according to claim 1, is characterized in that, described pipe network (3) comprises capillary network and bronze pan tube.
5. anti-condensation metal radiant panel according to claim 4, is characterized in that, in described pipe network (3), described capillary tube caliber is 4.3mm or 3.4mm, and supervisor's caliber is 20mm, and spacing is 10mm-40mm, adopts the U-shaped or I type capillary network of spacing 20mm.
6. anti-condensation metal radiant panel according to claim 4, is characterized in that, in described pipe network (3), described bronze pan tube diameter is 3mm-20mm, and tube pitch is 10mm-100mm, adopts diameter 10mm, the bronze pan tube of tube pitch 40mm.
7. anti-condensation metal radiant panel according to claim 1, is characterized in that, described isolation layer (2) employing polystyrene foam plate (EPS), extruded sheet (XPS), polyurethane thermal insulation board, rock wool heat-preservation or phenolic-aldehyde heat-insulation board or wherein any combination.
8. anti-condensation metal radiant panel according to claim 1, is characterized in that, described overlay (6) adopts aluminium sheet or steel plate or copper coin or plastic plate or gypsum plank or other metal alloy plates.
9. anti-condensation metal radiant panel according to claim 1, is characterized in that, described securing member (1) comprises rivet, screw.
10. anti-condensation metal radiant panel according to claim 1, is characterized in that, the integral thickness of described metal sheet is 2cm-10cm.
11. anti-condensation metal radiant panels according to claim 10, it is characterized in that, described metal sheet entirety adopts installation of ceiling, and in pipe network, the water temperature of logical cold water radiation cooling controls at 7-20 DEG C, and in described pipe network, the water temperature of logical hot-water radiant's heat supply controls at 25-60 DEG C.
CN201420190034.7U 2014-01-07 2014-04-18 A kind of anti-condensation metal radiant panel Expired - Lifetime CN204081339U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420190034.7U CN204081339U (en) 2014-01-07 2014-04-18 A kind of anti-condensation metal radiant panel

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
CN201410005580.3 2014-01-07
CN201410005580 2014-01-07
CN201420190034.7U CN204081339U (en) 2014-01-07 2014-04-18 A kind of anti-condensation metal radiant panel

Publications (1)

Publication Number Publication Date
CN204081339U true CN204081339U (en) 2015-01-07

Family

ID=51274164

Family Applications (2)

Application Number Title Priority Date Filing Date
CN201420190034.7U Expired - Lifetime CN204081339U (en) 2014-01-07 2014-04-18 A kind of anti-condensation metal radiant panel
CN201410156764.XA Pending CN103982017A (en) 2014-01-07 2014-04-18 Anti-condensation metal radiant panel and manufacturing method thereof

Family Applications After (1)

Application Number Title Priority Date Filing Date
CN201410156764.XA Pending CN103982017A (en) 2014-01-07 2014-04-18 Anti-condensation metal radiant panel and manufacturing method thereof

Country Status (1)

Country Link
CN (2) CN204081339U (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103982017A (en) * 2014-01-07 2014-08-13 宋波 Anti-condensation metal radiant panel and manufacturing method thereof
CN106051977A (en) * 2016-06-30 2016-10-26 苏州暖舍节能科技有限公司 Droplet-driven radiation air conditioner
CN108344147A (en) * 2017-01-23 2018-07-31 青岛海尔空调电子有限公司 A kind of anti-condensation air-conditioning panel
CN109099540A (en) * 2018-06-14 2018-12-28 东南大学 A kind of radiation appliance reducing indoor air humidity
CN114101915A (en) * 2021-12-07 2022-03-01 武汉锐科光纤激光技术股份有限公司 Laser preparation method and device for preventing laser from dewing

Families Citing this family (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104534566A (en) * 2015-01-16 2015-04-22 北京恒通绿建节能科技有限公司 Radiating terminal device for plane radiation air-conditioning system
CN104633775B (en) * 2015-02-04 2018-05-25 湖南大学 A kind of radiant panel of Anti-dew and preparation method thereof
CN105783575A (en) * 2016-05-17 2016-07-20 李国胜 Heat exchanging piece and indoor temperature adjusting system
CN107289557B (en) * 2017-06-07 2019-01-15 珠海格力电器股份有限公司 Radiation heat transfer structure and the radiator for applying it
CN107246688A (en) * 2017-07-11 2017-10-13 严继光 Using the heating and refrigerating air-conditioning of radiation heat transfer
CN107917569B (en) * 2017-11-21 2020-06-09 北京空间机电研究所 Method for preventing dewing and water drop infiltration on surface of electric connector in refrigeration assembly
CN109654615B (en) * 2018-11-13 2022-01-21 重庆海尔空调器有限公司 Apparatus for dehumidifying and control method thereof
CN110081736A (en) * 2019-04-22 2019-08-02 西安交通大学 A kind of folding capillary grid high-efficiency radiator based on metal foam
CN112261845B (en) * 2020-10-28 2022-06-28 武汉第二船舶设计研究所(中国船舶重工集团公司第七一九研究所) Prevent fine passageway liquid cooling system of condensation

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1710343A (en) * 2004-06-16 2005-12-21 严科 Energy-saving building heating system
CN101126524B (en) * 2007-09-30 2010-06-02 哈尔滨工业大学 Stereo decoration radiant panel
CN101423945B (en) * 2007-11-02 2010-10-27 中国科学院宁波材料技术与工程研究所 Method for preparing light metal super-hydrophobic surface
CN101748461B (en) * 2008-12-02 2011-10-19 中国科学院兰州化学物理研究所 Super-hydrophobic and super-oleophobic surface preparation technology
CN102051612A (en) * 2010-12-02 2011-05-11 西北工业大学 Method for preparing super-hydrophobic lubricant coating on surface of light metal
CN102345149B (en) * 2011-09-16 2014-05-14 东南大学 Preparation method of aluminium foil bionic nanostructured super-hydrophobic anti-condensation functional surface
CN102409379A (en) * 2011-11-08 2012-04-11 大连理工大学 Method for preparing super-hydrophobic surface of magnesium alloy matrix by using primary battery method
CN202938436U (en) * 2012-11-19 2013-05-15 珠海格力电器股份有限公司 Radiating heat exchange plate subassembly
CN203203144U (en) * 2013-01-16 2013-09-18 杭州市城市建设科学研究院 Combined radiant ceiling with independent temperature and humidity control function
CN204081339U (en) * 2014-01-07 2015-01-07 宋波 A kind of anti-condensation metal radiant panel

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103982017A (en) * 2014-01-07 2014-08-13 宋波 Anti-condensation metal radiant panel and manufacturing method thereof
CN106051977A (en) * 2016-06-30 2016-10-26 苏州暖舍节能科技有限公司 Droplet-driven radiation air conditioner
CN108344147A (en) * 2017-01-23 2018-07-31 青岛海尔空调电子有限公司 A kind of anti-condensation air-conditioning panel
CN109099540A (en) * 2018-06-14 2018-12-28 东南大学 A kind of radiation appliance reducing indoor air humidity
CN114101915A (en) * 2021-12-07 2022-03-01 武汉锐科光纤激光技术股份有限公司 Laser preparation method and device for preventing laser from dewing

Also Published As

Publication number Publication date
CN103982017A (en) 2014-08-13

Similar Documents

Publication Publication Date Title
CN204081339U (en) A kind of anti-condensation metal radiant panel
CN103256673A (en) Air conditioning energy saving system for strengthening natural ventilation
CN206176683U (en) Air -out device and furred ceiling radiation air conditioner
CN109595726A (en) A kind of cold emission suspended ceiling air-conditioner tail end equipment to dehumidify
CN202109617U (en) Radiation heat exchange plate capable of being used outdoors and corresponding plate type radiant air conditioner
CN108981120B (en) Narrow-annular-gap heat exchange air conditioner terminal device
CN202561904U (en) Combination type radiation suspended ceiling
CN102183069A (en) Plate box (tube) type radiating plate air conditioner
CN104006467B (en) The embedded dehumidifying heat exchange Multifunctional indoor environment adjustable plate of hollow-fibre membrane
CN103485457A (en) Energy-saving spraying and dual-cooling type double-skin glass curtain wall
CN103572924B (en) The detachable perforated sound-absorbing ceiling board of a kind of cooling and warming
CN102677809B (en) Efficient temperature control solar thermal utilization building curtain wall component
CN215412269U (en) Anti-condensation directional radiation cooling device
CN210320452U (en) Radiation refrigeration ceiling structure
CN204478352U (en) The radiant panel for cooling and heating plate of new wind can be connect
CN209445537U (en) A kind of cold emission suspended ceiling air-conditioner tail end equipment to dehumidify
CN208720465U (en) A kind of narrow annular space heat exchanging air conditioner end equipment
CN208296102U (en) A kind of capillary radiation heating cold supply system
CN211551918U (en) Radiation convection coupling air conditioner terminal and air conditioning system
CN202141135U (en) A ceiling radiation heat exchange air conditioner terminal realizing energy carrying through circulating air
CN202577623U (en) Interior wall body heat preservation room with high thermal resistance and thermostability
CN206905161U (en) Energy conduction integration refrigerating and heating systems
CN205444677U (en) A radiation heat dissipation wallboard for in clean environment
CN211695096U (en) Radiation roof structure
CN215166817U (en) Capillary dewing-proof structure on wall surface and house

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20150925

Address after: 100020, Beijing, Chaoyang District Kanto shop No. 1 North Street

Patentee after: CITIC Guoan Investment Company Limited

Patentee after: Xingguo science and Technology Co Ltd

Patentee after: Song Bo

Address before: 701 room 1, unit 90, three weft Road, Zhenxing District, Dandong, Liaoning, China

Patentee before: Song Bo

TR01 Transfer of patent right

Effective date of registration: 20180709

Address after: 100191 No. 6, No. 66, 66 Garden Road, Haidian District, Beijing 616

Patentee after: National Security (Beijing) Technology Co., Ltd.

Address before: 100020 North Street, No. 1, Guandong store, Chaoyang District, Beijing

Co-patentee before: Xingguo science and Technology Co., Ltd. Song Bo

Patentee before: CITIC Guoan Investment Company Limited

Co-patentee before: Song Bo