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Assembly type building heat insulation and sound insulation wallboard pipeline separation construction method
The invention provides a pipeline separation construction method for a heat-insulation and sound-insulation wallboard of a fabricated building. According to the assembly type building heat and sound insulation wallboard pipeline separation construction method, a light wallboard is included, structural floor slabs are fixedly connected to the lower surface of the light wallboard, the structural floor slabs are distributed up and down, U-shaped fixing channel steel is fixedly connected to the lower surface of the structural floor slab on the upper side, the light wallboard is arranged in the U-shaped fixing channel steel, and the light wallboard is fixedly connected to the lower surface of the structural floor slab on the lower side. And a foaming sealing layer is arranged between the light wall plate and the U-shaped fixed channel steel. In the actual construction and application process, the pipelines in the wall body do not need to be cut and slotted on site for laying strong and weak electricity and water supply pipelines, much construction waste and dust are not generated, weak spots on the wall body are not generated, the requirements of green buildings are met, the hollow design is good in sound insulation, indoor space cannot be occupied, and the construction cost is reduced. According to the assembly type building heat insulation and sound insulation wallboard pipeline separation construction method, pipeline construction cannot be affected, and construction convenience is improved.
本发明提供一种装配式建筑隔热隔声墙板管线分离施工方法。该装配式建筑隔热隔声墙板管线分离施工方法,包括轻质体墙板,所述轻质体墙板的下表面设置有结构楼板固定连接,所述结构楼板上下分布,上侧所述结构楼板的下表面固定连接有U型固定槽钢,所述U型固定槽钢的内部设置有轻质体墙板,所述轻质体墙板与U型固定槽钢之间设置有发泡密封层。在实际施工及应用过程中,墙体内的管线无需现场切割开槽用于敷设强弱电及给水管线,不会产生较多的建筑垃圾和粉尘,不会在墙体上产生薄弱点,满足绿色建筑的要求,中空的设计隔声好,且不会侵占室内空间,该装配式建筑隔热隔声墙板管线分离施工方法,不会对管线施工产生影响,增加施工的便利性。
Assembly type building heat insulation and sound insulation wallboard pipeline separation construction method
The invention provides a pipeline separation construction method for a heat-insulation and sound-insulation wallboard of a fabricated building. According to the assembly type building heat and sound insulation wallboard pipeline separation construction method, a light wallboard is included, structural floor slabs are fixedly connected to the lower surface of the light wallboard, the structural floor slabs are distributed up and down, U-shaped fixing channel steel is fixedly connected to the lower surface of the structural floor slab on the upper side, the light wallboard is arranged in the U-shaped fixing channel steel, and the light wallboard is fixedly connected to the lower surface of the structural floor slab on the lower side. And a foaming sealing layer is arranged between the light wall plate and the U-shaped fixed channel steel. In the actual construction and application process, the pipelines in the wall body do not need to be cut and slotted on site for laying strong and weak electricity and water supply pipelines, much construction waste and dust are not generated, weak spots on the wall body are not generated, the requirements of green buildings are met, the hollow design is good in sound insulation, indoor space cannot be occupied, and the construction cost is reduced. According to the assembly type building heat insulation and sound insulation wallboard pipeline separation construction method, pipeline construction cannot be affected, and construction convenience is improved.
本发明提供一种装配式建筑隔热隔声墙板管线分离施工方法。该装配式建筑隔热隔声墙板管线分离施工方法,包括轻质体墙板,所述轻质体墙板的下表面设置有结构楼板固定连接,所述结构楼板上下分布,上侧所述结构楼板的下表面固定连接有U型固定槽钢,所述U型固定槽钢的内部设置有轻质体墙板,所述轻质体墙板与U型固定槽钢之间设置有发泡密封层。在实际施工及应用过程中,墙体内的管线无需现场切割开槽用于敷设强弱电及给水管线,不会产生较多的建筑垃圾和粉尘,不会在墙体上产生薄弱点,满足绿色建筑的要求,中空的设计隔声好,且不会侵占室内空间,该装配式建筑隔热隔声墙板管线分离施工方法,不会对管线施工产生影响,增加施工的便利性。
Assembly type building heat insulation and sound insulation wallboard pipeline separation construction method
一种装配式建筑隔热隔声墙板管线分离施工方法
LI JUNJUN (Autor:in) / LI JIAN (Autor:in) / GUO QINGLIANG (Autor:in) / NIE WENYA (Autor:in) / CHANG QINGSHAN (Autor:in) / ZHANG JINBO (Autor:in) / YIN DAKAI (Autor:in) / WANG PENG (Autor:in) / MA YUNJIAN (Autor:in) / FU PENG (Autor:in)
19.08.2022
Patent
Elektronische Ressource
Chinesisch
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