Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
The invention relates to a graphene far infrared floor heating brick. The graphene far infrared floor heating brick comprises brick units and connecting pieces installed between adjacent brick units.Each brick unit comprises a bottom brick body and a face board from bottom to top, wherein the bottom brick body comprises a bottom frame and a graphene heat conduction component. A heating film is arranged in each graphene heat conduction component. Each face board comprises a surface layer, wherein a groove is formed in the bottom face of the surface layer, and a heat conduction brick layer is bonded in the groove. The two side edges of each bottom brick body are inclined edges inclined inwards from top to bottom, the two sides of each face board extend outwards to form linking parts, the bottoms of the linking parts indent inwards to form concave connectors, inserting ports are formed in the side edges of each bottom brick body, and the interiors of the inserting ports are connected with the corresponding heating film through guide wires. Each connecting piece is of a strip structure with a trapezoidal cross section, trapezoidal slopes arranged on the two side edges of each connecting piece are matched with the corresponding inclined edges, joints matched with the concave connectors are arranged at the two ends of the upper surface of each trapezoidal slope, inserting blocks matched with the inserting ports are arranged on the lower portions of the trapezoidal slopes, and the inserting blocks on the two sides are made of connected copper bars. The floor heating brick is goodin heat dissipating effect, easy in laying splicing operation and high in safety.
本发明涉及一种石墨烯远红外地暖砖,包括砖单元以及安装于相邻的砖单元之间的连接件;砖单元由下至上包括底砖和面板,底砖包括底框和石墨烯导热组件;石墨烯导热组件内设有发热膜;面板包括表面层,表面层的底面设有凹槽,凹槽内粘接有热导砖层;底砖的两侧边为由上至下向内倾斜的斜边,面板两侧向外延伸设为衔接部,衔接部的底部内凹形成凹接口,底砖的侧边设有插口,插口内通过导线连接发热膜;连接件为具有梯形横截面的条状构造,其两侧边设有的梯形斜面与斜边相配合,梯形斜面上表面两端设有与凹接口相配合的接头,梯形斜面下部设有与插口相配合的插块,两侧插块为相连接的铜条制成。该地暖砖散热效果好,铺设拼接操作简单且安全性高。
The invention relates to a graphene far infrared floor heating brick. The graphene far infrared floor heating brick comprises brick units and connecting pieces installed between adjacent brick units.Each brick unit comprises a bottom brick body and a face board from bottom to top, wherein the bottom brick body comprises a bottom frame and a graphene heat conduction component. A heating film is arranged in each graphene heat conduction component. Each face board comprises a surface layer, wherein a groove is formed in the bottom face of the surface layer, and a heat conduction brick layer is bonded in the groove. The two side edges of each bottom brick body are inclined edges inclined inwards from top to bottom, the two sides of each face board extend outwards to form linking parts, the bottoms of the linking parts indent inwards to form concave connectors, inserting ports are formed in the side edges of each bottom brick body, and the interiors of the inserting ports are connected with the corresponding heating film through guide wires. Each connecting piece is of a strip structure with a trapezoidal cross section, trapezoidal slopes arranged on the two side edges of each connecting piece are matched with the corresponding inclined edges, joints matched with the concave connectors are arranged at the two ends of the upper surface of each trapezoidal slope, inserting blocks matched with the inserting ports are arranged on the lower portions of the trapezoidal slopes, and the inserting blocks on the two sides are made of connected copper bars. The floor heating brick is goodin heat dissipating effect, easy in laying splicing operation and high in safety.
本发明涉及一种石墨烯远红外地暖砖,包括砖单元以及安装于相邻的砖单元之间的连接件;砖单元由下至上包括底砖和面板,底砖包括底框和石墨烯导热组件;石墨烯导热组件内设有发热膜;面板包括表面层,表面层的底面设有凹槽,凹槽内粘接有热导砖层;底砖的两侧边为由上至下向内倾斜的斜边,面板两侧向外延伸设为衔接部,衔接部的底部内凹形成凹接口,底砖的侧边设有插口,插口内通过导线连接发热膜;连接件为具有梯形横截面的条状构造,其两侧边设有的梯形斜面与斜边相配合,梯形斜面上表面两端设有与凹接口相配合的接头,梯形斜面下部设有与插口相配合的插块,两侧插块为相连接的铜条制成。该地暖砖散热效果好,铺设拼接操作简单且安全性高。
Graphene far infrared floor heating brick
石墨烯远红外地暖砖
DAI MING (Autor:in)
21.04.2020
Patent
Elektronische Ressource
Chinesisch
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