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Fabricated reinforced transverse-hole building block masonry structure and construction method thereof
The invention relates to an assembly type reinforced transverse hole building block masonry structure and a construction method thereof, and belongs to the technical field of assembly type buildings. The assembly type reinforced transverse hole building block masonry structure comprises a top plate and a bottom plate which are oppositely arranged, a first supporting wall and a second supporting wall which are oppositely arranged are arranged between the top plate and the bottom plate, two first clamping blocks are oppositely arranged on the bottom wall of the bottom plate, two second clamping blocks are oppositely arranged on the top wall of the top plate, and the assembly type reinforced transverse hole building block masonry structure further comprises a plurality of pressure bearing blocks. The multiple pressure bearing blocks are arranged in the first containing cavity at equal intervals in the horizontal direction. The first block body and the second block body in the pressure-bearing block share the load borne by the first supporting wall and the second supporting wall, so that the pressure-bearing capacity of the fabricated reinforced transverse-hole building block masonry structure is improved. The third block body can transmit loads on the first block body and the second block body to the bottom plate in a larger area mode, and then the pressure bearing capacity of the assembly type reinforced transverse hole building block masonry structure can be improved to a certain degree.
本公开涉及一种装配式配筋横孔砌块砌体结构及其施工方法,属于装配式建筑技术领域。其中,该装配式配筋横孔砌块砌体结构包括相对设置的顶板和底板,顶板和底板之间设置有相对设置的第一支撑壁和第二支撑壁,底板的底壁上相对设置的两个第一卡接块,顶板的顶壁上相对设置的两个第二卡接块,还包括多个承压块,多个承压块沿水平方向在第一容纳腔内等间距间隔设置。承压块中的第一块体和第二块体分担第一支撑壁和第二支撑壁承受的荷载,有利于提升装配式配筋横孔砌块砌体结构的承压能力。第三块体能够将第一块体和第二块体上的荷载以更大面积的形式传递给底板,进而也能够在一定程度上提升装配式配筋横孔砌块砌体结构的承压能力。
Fabricated reinforced transverse-hole building block masonry structure and construction method thereof
The invention relates to an assembly type reinforced transverse hole building block masonry structure and a construction method thereof, and belongs to the technical field of assembly type buildings. The assembly type reinforced transverse hole building block masonry structure comprises a top plate and a bottom plate which are oppositely arranged, a first supporting wall and a second supporting wall which are oppositely arranged are arranged between the top plate and the bottom plate, two first clamping blocks are oppositely arranged on the bottom wall of the bottom plate, two second clamping blocks are oppositely arranged on the top wall of the top plate, and the assembly type reinforced transverse hole building block masonry structure further comprises a plurality of pressure bearing blocks. The multiple pressure bearing blocks are arranged in the first containing cavity at equal intervals in the horizontal direction. The first block body and the second block body in the pressure-bearing block share the load borne by the first supporting wall and the second supporting wall, so that the pressure-bearing capacity of the fabricated reinforced transverse-hole building block masonry structure is improved. The third block body can transmit loads on the first block body and the second block body to the bottom plate in a larger area mode, and then the pressure bearing capacity of the assembly type reinforced transverse hole building block masonry structure can be improved to a certain degree.
本公开涉及一种装配式配筋横孔砌块砌体结构及其施工方法,属于装配式建筑技术领域。其中,该装配式配筋横孔砌块砌体结构包括相对设置的顶板和底板,顶板和底板之间设置有相对设置的第一支撑壁和第二支撑壁,底板的底壁上相对设置的两个第一卡接块,顶板的顶壁上相对设置的两个第二卡接块,还包括多个承压块,多个承压块沿水平方向在第一容纳腔内等间距间隔设置。承压块中的第一块体和第二块体分担第一支撑壁和第二支撑壁承受的荷载,有利于提升装配式配筋横孔砌块砌体结构的承压能力。第三块体能够将第一块体和第二块体上的荷载以更大面积的形式传递给底板,进而也能够在一定程度上提升装配式配筋横孔砌块砌体结构的承压能力。
Fabricated reinforced transverse-hole building block masonry structure and construction method thereof
一种装配式配筋横孔砌块砌体结构及其施工方法
CHEN LINGMEI (author) / CHEN BIBI (author) / ZHOU FENGZHONG (author) / SU LIJIE (author) / LI WEI (author) / WANG JIEMIN (author) / XIE ZILING (author) / XU LIANG (author) / YAN MINGJU (author) / HU FENGMEI (author)
2023-01-10
Patent
Electronic Resource
Chinese
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