CN218861893U - Capillary network A-level fireproof cooling and heating radiation decoration integrated board - Google Patents
Capillary network A-level fireproof cooling and heating radiation decoration integrated board Download PDFInfo
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- CN218861893U CN218861893U CN202223007843.3U CN202223007843U CN218861893U CN 218861893 U CN218861893 U CN 218861893U CN 202223007843 U CN202223007843 U CN 202223007843U CN 218861893 U CN218861893 U CN 218861893U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
Abstract
The utility model discloses a capillary network A level fire prevention changes in temperature radiation decorates intergral template, including A level fire prevention panel and A level fire prevention backplate, capillary network has been laid in the A level fire prevention panel, A level fire prevention panel with be equipped with A level fire prevention heat preservation between the A level fire prevention backplate. The utility model adopts the capillary network 3 to replace the conventional heat exchange tube, and the vertical heat transfer performance and the horizontal soaking performance are better; the radiation plate has the A-level fireproof performance integrally by arranging the A-level fireproof panel and the A-level fireproof back plate, and the A-level fireproof heat-insulating layer plays a role in heat insulation and heat preservation, so that the energy consumption and the weight are reduced; the effects of good heat conductivity and heat uniformity, high fireproof performance, high overall strength and firm structure are achieved.
Description
Technical Field
The utility model relates to a heating refrigeration technology field, concretely relates to capillary network A level fire prevention changes in temperature radiation decorates intergral template.
Background
Along with the continuous development of socioeconomic, people are constantly improving to the requirement of indoor comfort level, and radiation air conditioning system receives people's favor more and more, and the air conditioner heat transfer is terminal as the device with indoor comfort level direct correlation, receives people's attention more and more.
The integration of air conditioner heat transfer end is a common form for furred ceiling board, but refrigeration heating decorative board generally is formed by decoration panel, heat conduction sandwich layer and heat preservation complex, and wherein the heat conduction sandwich layer is combustible material or high heat conduction material usually, and the heat preservation is polystyrene foam board usually, and the two is A level fire prevention insulation material neither, therefore refrigeration heating decorative board also does not belong to A level fire prevention ornamental material, can not use in some occasions that the protection requirement is high.
Patent document 202111029894.3 discloses a capillary cooling and heating decorative board, adopts capillary network to replace conventional 10mm heat exchange tube, and vertical heat transfer is all better with horizontal soaking performance, consequently need not setting up special graphite sandwich layer, and consequently fire behavior is terminal better than traditional air conditioner heat transfer, nevertheless can't reach the requirement of A1 level fire behavior.
SUMMERY OF THE UTILITY MODEL
In order to improve the terminal fire behavior of air conditioner heat transfer to improve its range of application, the utility model provides a capillary network A level fire prevention changes in temperature radiation decorates intergral template.
The utility model adopts the technical scheme as follows: the integrated board comprises an A-level fireproof panel and an A-level fireproof back plate, wherein a capillary network is laid in the A-level fireproof panel, and an A-level fireproof heat preservation layer is arranged between the A-level fireproof panel and the A-level fireproof back plate.
Preferably, A level fire prevention panel is A level fire prevention gypsum board, and the surface is seted up flutedly, the capillary network is inlayed in the recess.
Preferably, the grade A fireproof back plate is a grade A fireproof hard cement plate.
Preferably, the pipe diameter of the capillary network is 3-5mm, and the distance is 15-20mm.
Preferably, the grade A fireproof heat-insulating layer is aluminum silicate heat-insulating cotton.
Preferably, the A-level fireproof panel is of a double-layer structure and is respectively a hard surface layer and a curing radiation layer wrapping the capillary network.
Preferably, the hard surface layer is a class A fireproof hard cement board.
Preferably, the radiation layer is a cured layer formed of any one of cement, gypsum, and epoxy.
The utility model discloses following beneficial effect has: the utility model adopts the capillary network 3 to replace the conventional heat exchange tube, and the vertical heat transfer performance and the horizontal soaking performance are better; the radiation plate has the A-level fireproof performance integrally by arranging the A-level fireproof panel and the A-level fireproof back plate, and the A-level fireproof heat-insulating layer plays a role in heat insulation and heat preservation, so that the energy consumption and the weight are reduced; the effects of good heat conductivity and heat uniformity, high fireproof performance, high overall strength and firm structure are achieved.
Drawings
Fig. 1 is a schematic cross-sectional view of an embodiment of the present invention.
Fig. 2 is a schematic cross-sectional view of a second embodiment of the present invention.
A-level fireproof panel 1, an A-level fireproof back plate 2, a capillary network 3, an A-level fireproof heat-insulating layer 4, a hard surface layer 101 and a curing radiation layer 102.
Detailed Description
The present invention will be further explained with reference to the following embodiments and accompanying drawings.
In the embodiment, as shown in fig. 1, the integrated plate for a capillary network a-level fireproof cooling and heating radiation decoration comprises an a-level fireproof panel 1 and an a-level fireproof back plate 2, a capillary network 3 is laid in the a-level fireproof panel 1, and an a-level fireproof insulating layer 4 is arranged between the a-level fireproof panel 1 and the a-level fireproof back plate 2. The A-level fireproof panel 1 is an A-level fireproof gypsum board, a groove is formed in the surface of the A-level fireproof gypsum board, and the capillary network 3 is embedded in the groove; the A-grade fireproof back plate 2 is an A-grade fireproof hard cement plate; the pipe diameter of the capillary network 3 is 3-5mm, and the distance is 15-20mm; the A-level fireproof heat-insulating layer 4 is made of aluminum silicate heat-insulating cotton.
This embodiment adopts capillary network 3 to replace conventional heat exchange tube, and vertical heat transfer is better with horizontal soaking performance, consequently can save graphite radiation board to improve fire behavior, also can reduce whole board thickness. Make the whole A level fire behavior that has of radiant panel through setting up A level fire prevention panel 1 and A level fire prevention backplate 2, A level fire prevention heat preservation 4 has played thermal-insulated heat preservation effect moreover, has reduced energy consumption and weight, and this kind of both sides hardboard sandwich relatively soft heat preservation cotton structure can also improve holistic toughness moreover. The embodiment has reached the effect that heat conductivity, soaking are good on the whole, and fire behavior is high, and bulk strength is high and sound construction.
In a second embodiment, as shown in fig. 2, the class a fire-proof panel 1 has a two-layer structure, which is a hard surface layer 101 and a cured radiation layer 102 wrapping the capillary network 3, respectively, where the hard surface layer 101 is a class a fire-proof hard cement board, and the radiation layer 102 is a cured layer formed by any one of cement, gypsum and epoxy. Compared with the first embodiment, the front and back surfaces of the radiation plate are provided with the A-grade fireproof hard cement plates, so that the radiation plate has better fireproof performance and structural strength and has better heat storage performance.
It is obvious that the above embodiments of the present invention are only examples for illustrating the present invention, and are not intended to limit the embodiments of the present invention. Other obvious changes and modifications which are obvious from the spirit of the present invention are also within the scope of the present invention.
Claims (8)
1. The utility model provides a capillary network A level fire prevention changes in temperature radiation decorates intergral template which characterized in that, includes A level fire prevention panel (1) and A level fire prevention backplate (2), laid capillary network (3) in A level fire prevention panel (1), be equipped with A level fire prevention heat preservation (4) between A level fire prevention panel (1) and A level fire prevention backplate (2).
2. The integrated board of a-level fireproof cooling and heating radiation decoration of a capillary network according to claim 1, wherein the a-level fireproof panel (1) is a-level fireproof gypsum board, a groove is formed in the surface of the a-level fireproof gypsum board, and the capillary network (3) is embedded in the groove.
3. The capillary network A-level fireproof cooling and heating radiation decoration integrated board as claimed in claim 1, wherein the A-level fireproof back board (2) is an A-level fireproof hard cement board.
4. A class A fireproof integrated board with cold and warm radiation decoration according to claim 1, wherein the diameter of the capillary network (3) is 3-5mm, and the distance is 15-20mm.
5. A capillary network A-level fireproof cooling and heating radiation decoration integrated board according to claim 1, wherein the A-level fireproof heat insulation layer (4) is aluminum silicate heat insulation cotton.
6. Capillary network class-A fireproof cooling and heating radiation decoration integrated board according to claim 1, wherein the class-A fireproof panel (1) is of a double-layer structure, namely a hard surface layer (101) and a curing radiation layer (102) wrapping the capillary network (3).
7. A capillary network class A fireproof cooling and heating radiation decoration integrated board according to claim 6, wherein the hard surface layer (101) is a class A fireproof hard cement board.
8. A capillary network class A fireproof cooling and heating radiation decorative integrated board according to claim 6, wherein the radiation layer (102) is a cured layer formed by any one of cement, plaster and epoxy.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223007843.3U CN218861893U (en) | 2022-11-11 | 2022-11-11 | Capillary network A-level fireproof cooling and heating radiation decoration integrated board |
Applications Claiming Priority (1)
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CN202223007843.3U CN218861893U (en) | 2022-11-11 | 2022-11-11 | Capillary network A-level fireproof cooling and heating radiation decoration integrated board |
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CN218861893U true CN218861893U (en) | 2023-04-14 |
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CN202223007843.3U Active CN218861893U (en) | 2022-11-11 | 2022-11-11 | Capillary network A-level fireproof cooling and heating radiation decoration integrated board |
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2022
- 2022-11-11 CN CN202223007843.3U patent/CN218861893U/en active Active
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