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Manufacturing method of high-thermal-conductivity cold and warm radiant panel and radiant panel
The invention belongs to the technical field of five-constant air conditioners, and particularly relates to a high-heat-conduction cold and warm radiant panel manufacturing method and a radiant panel. The manufacturing method of the high-heat-conduction cold and warm radiant panel comprises the steps that a radiant layer is poured on a prefabricated plate to form the radiant panel; the prefabricated plate is formed by assembling a heat conduction pipe, a soaking layer and a heat preservation layer. According to the manufacturing method of the high-thermal-conductivity cold and warm radiant panel, the high-thermal-conductivity gypsum slurry is directly cast in place on the basis that the heat conduction pipe, the soaking layer and the heat preservation layer are combined to form the integral high-thermal-conductivity radiant panel, so that the thermal conductivity of the radiant layer is greatly improved, and the loss of the panel in the aspect of thermal resistance is reduced; the cold and hot response time of the radiation layer is effectively shortened, and the radiation capability is improved; and the problem of combination among the radiation layer, the heat conduction pipe, the soaking layer and the heat preservation layer is effectively solved, and the section thermal resistance is reduced.
本发明属于五恒空调技术领域,具体涉及一种高导热冷暖辐射板制造方法及辐射板。本高导热冷暖辐射板制造方法包括:在预制板上浇筑辐射层以形成辐射板;其中所述预制板由导热管、均热层、保温层组装而成。本发明的高导热冷暖辐射板制造方法在导热管、均热层、保温层组合完成的基础上直接现场浇筑高导热石膏浆料成型为一块整体式高导热辐射板,极大提高了辐射层的导热性,减少板材热阻方面的损耗,有效的缩短了辐射层冷热的响应时间,提高了辐射能力;并且有效解决了辐射层和导热管、均热层、保温层之间结合问题,降低了截面热阻。
Manufacturing method of high-thermal-conductivity cold and warm radiant panel and radiant panel
The invention belongs to the technical field of five-constant air conditioners, and particularly relates to a high-heat-conduction cold and warm radiant panel manufacturing method and a radiant panel. The manufacturing method of the high-heat-conduction cold and warm radiant panel comprises the steps that a radiant layer is poured on a prefabricated plate to form the radiant panel; the prefabricated plate is formed by assembling a heat conduction pipe, a soaking layer and a heat preservation layer. According to the manufacturing method of the high-thermal-conductivity cold and warm radiant panel, the high-thermal-conductivity gypsum slurry is directly cast in place on the basis that the heat conduction pipe, the soaking layer and the heat preservation layer are combined to form the integral high-thermal-conductivity radiant panel, so that the thermal conductivity of the radiant layer is greatly improved, and the loss of the panel in the aspect of thermal resistance is reduced; the cold and hot response time of the radiation layer is effectively shortened, and the radiation capability is improved; and the problem of combination among the radiation layer, the heat conduction pipe, the soaking layer and the heat preservation layer is effectively solved, and the section thermal resistance is reduced.
本发明属于五恒空调技术领域,具体涉及一种高导热冷暖辐射板制造方法及辐射板。本高导热冷暖辐射板制造方法包括:在预制板上浇筑辐射层以形成辐射板;其中所述预制板由导热管、均热层、保温层组装而成。本发明的高导热冷暖辐射板制造方法在导热管、均热层、保温层组合完成的基础上直接现场浇筑高导热石膏浆料成型为一块整体式高导热辐射板,极大提高了辐射层的导热性,减少板材热阻方面的损耗,有效的缩短了辐射层冷热的响应时间,提高了辐射能力;并且有效解决了辐射层和导热管、均热层、保温层之间结合问题,降低了截面热阻。
Manufacturing method of high-thermal-conductivity cold and warm radiant panel and radiant panel
一种高导热冷暖辐射板制造方法及辐射板
XU SHIZHONG (author) / WANG SHENGWEI (author) / LI YU (author)
2023-01-31
Patent
Electronic Resource
Chinese
IPC:
F24F
Klimatisierung
,
AIR-CONDITIONING
/
C04B
Kalk
,
LIME
/
F28D
Wärmetauscher, soweit in keiner anderen Unterklasse vorgesehen, in denen die Wärmetauschmittel nicht in direkte Berührung miteinander kommen
,
HEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
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