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Adjacent oblique crossing grid steel cylinder and construction method thereof
The invention relates to the technical field of long-strip-shaped structural members for bearing, and discloses an adjacent type oblique crossing grid steel cylinder which is used as a core cylinder of a building of a frame-core cylinder structure, and at least two rigid angle cylinders aligned with the upper end and the lower end of the oblique crossing grid steel cylinder are arranged on the side face of the oblique crossing grid steel cylinder. The rigid angle cylinders are of a vertically-arranged rigid structure, gaps are reserved between the rigid angle cylinders, and the rigid angle cylinders are fixedly connected with the oblique crossing grid steel cylinder. According to the invention, the two vertical edges of the skew grid steel cylinder are fixed by using the rigid angle cylinders, so that the bending resistance and torsional rigidity of the skew grid steel cylinder are improved, and the skew grid steel cylinder can be used as a core cylinder of a building, thereby bringing the advantages of improving the visual field in the building, reducing the dead weight of the building and shortening the construction period; according to the invention, as the floor slab of the building is outwards expanded by taking the skew grid steel cylinder as the center, the rigid angle cylinder is mainly used for improving the rigidity of the skew grid steel cylinder, and the requirement on the cross section is small, so that the building can be quickly built by using integrated creeping formwork construction equipment.
本发明涉及用于承重的长条形结构构件技术领域,公开了一种毗邻式斜交网格钢筒,用于作为框架‑核心筒结构的建筑的核心筒,斜交网格钢筒侧面设置有至少两个与斜交网格钢筒上下两端对齐的刚性角筒,刚性角筒为竖直设置的刚性结构,各刚性角筒之间留有间距并分别与斜交网格钢筒固定连接。本发明中,通过在斜交网格钢筒的两个竖向棱上使用刚性角筒进行固定,改善了其抗弯及抗扭刚度,使之能够作为建筑的核心筒使用,从而带来了改善建筑内视野、减轻建筑自重、缩短施工工期三方面的好处;本发明中,由于建筑的楼板是以斜交网格钢筒为中心向外拓展的,刚性角筒主要用于改善斜交网格钢筒的刚度,横截面需求小,因此可以使用一体式爬模施工设备快速修建。
Adjacent oblique crossing grid steel cylinder and construction method thereof
The invention relates to the technical field of long-strip-shaped structural members for bearing, and discloses an adjacent type oblique crossing grid steel cylinder which is used as a core cylinder of a building of a frame-core cylinder structure, and at least two rigid angle cylinders aligned with the upper end and the lower end of the oblique crossing grid steel cylinder are arranged on the side face of the oblique crossing grid steel cylinder. The rigid angle cylinders are of a vertically-arranged rigid structure, gaps are reserved between the rigid angle cylinders, and the rigid angle cylinders are fixedly connected with the oblique crossing grid steel cylinder. According to the invention, the two vertical edges of the skew grid steel cylinder are fixed by using the rigid angle cylinders, so that the bending resistance and torsional rigidity of the skew grid steel cylinder are improved, and the skew grid steel cylinder can be used as a core cylinder of a building, thereby bringing the advantages of improving the visual field in the building, reducing the dead weight of the building and shortening the construction period; according to the invention, as the floor slab of the building is outwards expanded by taking the skew grid steel cylinder as the center, the rigid angle cylinder is mainly used for improving the rigidity of the skew grid steel cylinder, and the requirement on the cross section is small, so that the building can be quickly built by using integrated creeping formwork construction equipment.
本发明涉及用于承重的长条形结构构件技术领域,公开了一种毗邻式斜交网格钢筒,用于作为框架‑核心筒结构的建筑的核心筒,斜交网格钢筒侧面设置有至少两个与斜交网格钢筒上下两端对齐的刚性角筒,刚性角筒为竖直设置的刚性结构,各刚性角筒之间留有间距并分别与斜交网格钢筒固定连接。本发明中,通过在斜交网格钢筒的两个竖向棱上使用刚性角筒进行固定,改善了其抗弯及抗扭刚度,使之能够作为建筑的核心筒使用,从而带来了改善建筑内视野、减轻建筑自重、缩短施工工期三方面的好处;本发明中,由于建筑的楼板是以斜交网格钢筒为中心向外拓展的,刚性角筒主要用于改善斜交网格钢筒的刚度,横截面需求小,因此可以使用一体式爬模施工设备快速修建。
Adjacent oblique crossing grid steel cylinder and construction method thereof
一种毗邻式斜交网格钢筒及其施工方法
LIN TIANYU (Autor:in) / SHAO GUANGHUI (Autor:in) / YAN ZHONGSHAN (Autor:in) / TAO JIN (Autor:in) / LIU LEI (Autor:in) / ZHAO YING (Autor:in) / SONG RUILIN (Autor:in) / HUA XUESONG (Autor:in) / YANG YANG (Autor:in) / LI XINFENG (Autor:in)
03.02.2023
Patent
Elektronische Ressource
Chinesisch
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