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Vacuum composite material fluoride-gas-added heat storage insulation board capable of heating
The invention relates to a vacuum composite material fluoride-gas-added heat storage insulation board capable of heating, and aims to solve the problems that the current insulation board cannot efficiently discharge internal heat due to a relatively low heat dissipation area and effect, so that the environment temperature in a greenhouse is relatively low in rise, and the service life of the greenhouse is prolonged. The vacuum composite heat storage panel comprises a vacuum composite heat storage panel body and a heat preservation core plate arranged on the back of the vacuum composite heat storage panel body, an S-shaped mounting groove is formed in the top in the vacuum composite heat storage panel body, and a C-shaped mounting groove is formed in the bottom in the vacuum composite heat storage panel body. Inner heating assemblies used for heating the vacuum composite heat storage panel are installed in the S-shaped installation groove and the C-shaped installation groove, and a plurality of outer heating assemblies used for heat dissipation are arranged on the side, away from the heat preservation core plate, of the vacuum composite heat storage panel at equal intervals. The effect of increasing the environment temperature in the greenhouse is greatly improved, and the requirement of overwinter crops for the environment can be met.
本发明涉及一种可发热的真空复合材料加氟气蓄热保温板,旨在解决当前保温板通过较低的散热面积与效果,导致其无法高效的完成对于内部热量的排出,从而导致大棚内环境温度的提升较低,无法保障越冬作物对环境的需求的技术问题,包括真空复合蓄热面板以及设置于真空复合蓄热面板背部的保温芯板,真空复合蓄热面板内顶部开设有S形安装槽,且真空复合蓄热面板内底部开设有C形安装槽,S形安装槽与C形安装槽内通过安装有用于加热真空复合蓄热面板的内发热组件,且真空复合蓄热面板远离保温芯板的一侧等距设置有多个用于散热的外发热组件,本发明,提高了散热面积与散热的效果,高效的完成对于内部热量的排出,大大提高了对于大棚内环境温度的提升效果,可保障越冬作物对环境的需求。
Vacuum composite material fluoride-gas-added heat storage insulation board capable of heating
The invention relates to a vacuum composite material fluoride-gas-added heat storage insulation board capable of heating, and aims to solve the problems that the current insulation board cannot efficiently discharge internal heat due to a relatively low heat dissipation area and effect, so that the environment temperature in a greenhouse is relatively low in rise, and the service life of the greenhouse is prolonged. The vacuum composite heat storage panel comprises a vacuum composite heat storage panel body and a heat preservation core plate arranged on the back of the vacuum composite heat storage panel body, an S-shaped mounting groove is formed in the top in the vacuum composite heat storage panel body, and a C-shaped mounting groove is formed in the bottom in the vacuum composite heat storage panel body. Inner heating assemblies used for heating the vacuum composite heat storage panel are installed in the S-shaped installation groove and the C-shaped installation groove, and a plurality of outer heating assemblies used for heat dissipation are arranged on the side, away from the heat preservation core plate, of the vacuum composite heat storage panel at equal intervals. The effect of increasing the environment temperature in the greenhouse is greatly improved, and the requirement of overwinter crops for the environment can be met.
本发明涉及一种可发热的真空复合材料加氟气蓄热保温板,旨在解决当前保温板通过较低的散热面积与效果,导致其无法高效的完成对于内部热量的排出,从而导致大棚内环境温度的提升较低,无法保障越冬作物对环境的需求的技术问题,包括真空复合蓄热面板以及设置于真空复合蓄热面板背部的保温芯板,真空复合蓄热面板内顶部开设有S形安装槽,且真空复合蓄热面板内底部开设有C形安装槽,S形安装槽与C形安装槽内通过安装有用于加热真空复合蓄热面板的内发热组件,且真空复合蓄热面板远离保温芯板的一侧等距设置有多个用于散热的外发热组件,本发明,提高了散热面积与散热的效果,高效的完成对于内部热量的排出,大大提高了对于大棚内环境温度的提升效果,可保障越冬作物对环境的需求。
Vacuum composite material fluoride-gas-added heat storage insulation board capable of heating
一种可发热的真空复合材料加氟气蓄热保温板
DUAN JIANGJIANG (author) / LYU FUZAI (author) / TIAN RUIRONG (author) / LIU LIANGJUN (author) / XIAO CHANGCHUN (author) / ZHAO LIANG (author) / LU JINMIN (author) / KOH LI MIN (author) / SUN QIANG (author) / FAN RUITING (author)
2024-05-03
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
A01G
Gartenbau
,
HORTICULTURE
/
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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