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Heat insulation method for achieving low energy consumption of building
The invention relates to a heat insulation method for achieving low energy consumption of a building. The heat insulation method comprises the following steps that S1, horizontal steel bars are laid on the two sides of a concrete base layer, connecting pieces are arranged on the two sides of the concrete base layer in a penetrating mode, and holes are drilled in the concrete base layer to pre-bury heat preservation nails; S2, a positioning line is popped up on a heat preservation plate through a theodolite, and a groove is cut in the heat preservation plate; S3, concrete flows into the groove, and a lock catch structure is formed between the heat preservation plate and the concrete base layer; S4, the heat preservation plate is coated with a bonding mortar leveling layer, and the heat preservation nails penetrate through the heat preservation plate to be fixed; S5, a heat storage plate is laid on the outer side face of a metal net according to the same method as the steps S1-S4; S6, maintenance is conducted; and S7, alkali-resistant glass fiber gridding cloth is laid on the outer side of the bonding mortar leveling layer on the outer side of the heat preservation plate. According to the heat insulation method, through comprehensive design of the heat preservation plate, the concrete base layer and the heat storage plate, the thermal inertia value of a wall is increased, the heat preservation plate plays a compensation role in the thermal stability of the wall, and the purposes of high construction speed, good energy saving effect and the like are achieved.
本发明涉及一种实现建筑低能耗的隔热方法,包括如下步骤:S1在混凝土基层的两侧铺设水平钢筋并穿设连接件,在混凝土基层内钻孔预埋保温钉,S2利用经纬仪在保温板上弹出定位线,并在保温板上切割出凹槽,S3混凝土流入凹槽内,在保温板和混凝土基层之间形成锁扣结构,S4、在保温板上涂抹黏结砂浆找平层,保温钉穿过保温板固定,S5在金属网的外侧面按照与S1‑S4同样的方法铺设储热板,S6养护,S7在保温板外侧的黏结砂浆找平层外侧铺设耐碱玻纤网格布;本发明提供的隔热方法,通过保温板、混凝土基层和储热板的综合设计,使墙体的热惰性值增大,保温板对墙体热稳定性起到补偿作用,实现建造速度快、节能效果好等目的。
Heat insulation method for achieving low energy consumption of building
The invention relates to a heat insulation method for achieving low energy consumption of a building. The heat insulation method comprises the following steps that S1, horizontal steel bars are laid on the two sides of a concrete base layer, connecting pieces are arranged on the two sides of the concrete base layer in a penetrating mode, and holes are drilled in the concrete base layer to pre-bury heat preservation nails; S2, a positioning line is popped up on a heat preservation plate through a theodolite, and a groove is cut in the heat preservation plate; S3, concrete flows into the groove, and a lock catch structure is formed between the heat preservation plate and the concrete base layer; S4, the heat preservation plate is coated with a bonding mortar leveling layer, and the heat preservation nails penetrate through the heat preservation plate to be fixed; S5, a heat storage plate is laid on the outer side face of a metal net according to the same method as the steps S1-S4; S6, maintenance is conducted; and S7, alkali-resistant glass fiber gridding cloth is laid on the outer side of the bonding mortar leveling layer on the outer side of the heat preservation plate. According to the heat insulation method, through comprehensive design of the heat preservation plate, the concrete base layer and the heat storage plate, the thermal inertia value of a wall is increased, the heat preservation plate plays a compensation role in the thermal stability of the wall, and the purposes of high construction speed, good energy saving effect and the like are achieved.
本发明涉及一种实现建筑低能耗的隔热方法,包括如下步骤:S1在混凝土基层的两侧铺设水平钢筋并穿设连接件,在混凝土基层内钻孔预埋保温钉,S2利用经纬仪在保温板上弹出定位线,并在保温板上切割出凹槽,S3混凝土流入凹槽内,在保温板和混凝土基层之间形成锁扣结构,S4、在保温板上涂抹黏结砂浆找平层,保温钉穿过保温板固定,S5在金属网的外侧面按照与S1‑S4同样的方法铺设储热板,S6养护,S7在保温板外侧的黏结砂浆找平层外侧铺设耐碱玻纤网格布;本发明提供的隔热方法,通过保温板、混凝土基层和储热板的综合设计,使墙体的热惰性值增大,保温板对墙体热稳定性起到补偿作用,实现建造速度快、节能效果好等目的。
Heat insulation method for achieving low energy consumption of building
一种实现建筑低能耗的隔热方法
XU YONGHONG (Autor:in) / LIU XIAOFENG (Autor:in) / HE FENG (Autor:in) / ZHAO PENGHAO (Autor:in) / CAO YUAN (Autor:in) / GUO YULIANG (Autor:in) / CHENG SHENGJIE (Autor:in)
30.04.2021
Patent
Elektronische Ressource
Chinesisch
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