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Energy-saving thermal insulation wall structure
The invention discloses an energy-saving thermal insulation wall structure. A heat preservation assembly is connected between the two first connecting plates. The front side of the third connecting plate is connected with an energy-saving assembly. When the wind power generation wall is used in winter, cold air is shielded through the shielding plate and cannot flow to the heat insulation plates and the wall body, so that the cold air for wind power generation is prevented from bringing out heat on the wall body, the wall body is subjected to heat preservation through the tightly arranged heat insulation plates, and the service life of the wall body is prolonged. The problem that when an existing wall is used in winter, the heat preservation effect is poor in order to give consideration to wind power generation is solved, meanwhile, gaps between adjacent heat insulation plates are blocked through heat insulation strips so that the sealing performance can be improved, the heat preservation effect of the wall body can be improved, and when the wall is used in summer, first linkage plates are in linkage with the heat insulation plates to rotate by 90 degrees so that the heat preservation effect can be improved. Therefore, the plurality of heat insulation plates are separated from one another, the heat insulation effect on the wall body is stopped, and the heat dissipation effect of the wall body is improved.
本发明公开了一种节能型保温墙体结构;两个第一连接板之间连接有保温组件;第三连接板前侧连接有节能组件;在冬季使用时,通过遮挡板对冷空气进行遮挡,使冷空气并不会流向隔热板和墙体本体,从而避免用于风力发电的冷空气将墙体本体上的热量带出,且通过紧密排列的隔热板对墙体本体进行保温,避免了现有墙体在冬季使用时为了兼顾风力发电而导致的保温效果低下的问题,同时,通过隔热条对相邻的隔热板间隙处进行封堵,以提高密封性能,从而提高对墙体本体保温效果,夏季使用时,通过第一联动板联动隔热板旋转九十度,从而使得若干个隔热板相互间隔开,停止对墙体本体提供保温效果,从而提高墙体本体自身的散热效果。
Energy-saving thermal insulation wall structure
The invention discloses an energy-saving thermal insulation wall structure. A heat preservation assembly is connected between the two first connecting plates. The front side of the third connecting plate is connected with an energy-saving assembly. When the wind power generation wall is used in winter, cold air is shielded through the shielding plate and cannot flow to the heat insulation plates and the wall body, so that the cold air for wind power generation is prevented from bringing out heat on the wall body, the wall body is subjected to heat preservation through the tightly arranged heat insulation plates, and the service life of the wall body is prolonged. The problem that when an existing wall is used in winter, the heat preservation effect is poor in order to give consideration to wind power generation is solved, meanwhile, gaps between adjacent heat insulation plates are blocked through heat insulation strips so that the sealing performance can be improved, the heat preservation effect of the wall body can be improved, and when the wall is used in summer, first linkage plates are in linkage with the heat insulation plates to rotate by 90 degrees so that the heat preservation effect can be improved. Therefore, the plurality of heat insulation plates are separated from one another, the heat insulation effect on the wall body is stopped, and the heat dissipation effect of the wall body is improved.
本发明公开了一种节能型保温墙体结构;两个第一连接板之间连接有保温组件;第三连接板前侧连接有节能组件;在冬季使用时,通过遮挡板对冷空气进行遮挡,使冷空气并不会流向隔热板和墙体本体,从而避免用于风力发电的冷空气将墙体本体上的热量带出,且通过紧密排列的隔热板对墙体本体进行保温,避免了现有墙体在冬季使用时为了兼顾风力发电而导致的保温效果低下的问题,同时,通过隔热条对相邻的隔热板间隙处进行封堵,以提高密封性能,从而提高对墙体本体保温效果,夏季使用时,通过第一联动板联动隔热板旋转九十度,从而使得若干个隔热板相互间隔开,停止对墙体本体提供保温效果,从而提高墙体本体自身的散热效果。
Energy-saving thermal insulation wall structure
一种节能型保温墙体结构
JANG TAE YOUNG (author)
2023-04-04
Patent
Electronic Resource
Chinese
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