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Wind-resistant fence for civil construction and use method of wind-resistant fence
The invention belongs to the technical field of building fences, and particularly discloses a wind-resistant fence for civil construction and a using method of the wind-resistant fence. Third cavities are symmetrically formed in the two sides of the back face of a fence body of the fence, screws are arranged in the third cavities, first limiting grooves are formed in the surfaces of the screws, the screws are in threaded connection with adjusting nuts, and the positions, on the two sides of the fence body, of the screws are sleeved with stepped shaft barrels and transmission sleeves which are in sliding fit with the first limiting grooves. The end face of the adjusting nut abuts against the stepped shaft barrel and the transmission sleeve, a switching mechanism is arranged on the stand column, one side of the stepped shaft barrel is rotationally connected with the switching mechanism driving the stepped shaft barrel to rotate, and one side of the transmission sleeve is rotationally connected with the switching mechanism on the corresponding side. A first rotation driving unit of the switching mechanism and a wind meter at the top end of the stand column are electrically connected with a control system in the stand column. The method comprises the steps of stand column installation, body driving side installation, body driven side installation and wind resistance adjustment. The system has the characteristics of modular structure, automatic control, convenient and reliable connection and good wind resistance.
本发明属于建筑围挡技术领域,具体公开一种土建施工用抗风围挡及其使用方法。该围挡的围挡本体背面两侧对称设有第三腔体,第三腔体内设有螺杆,螺杆表面开设有第一限位槽且螺纹连接有调节螺母,围挡本体两侧的螺杆上套设有与第一限位槽滑动配合的阶梯轴筒、传动套筒,调节螺母端面分别与阶梯轴筒及传动套筒抵接,立柱上设有转接机构,阶梯轴筒一侧转动连接有驱动其转动的转接机构,传动套筒一侧与对应侧转接机构转动连接;转接机构的第一回转驱动单元及立柱顶端的测风仪与立柱内的控制系统电性连接。所述方法包括立柱安装、本体驱动侧安装、本体从动侧安装、抗风调整步骤。本发明具有模块化结构、自动控制、连接便捷可靠、抗风性好的特点。
Wind-resistant fence for civil construction and use method of wind-resistant fence
The invention belongs to the technical field of building fences, and particularly discloses a wind-resistant fence for civil construction and a using method of the wind-resistant fence. Third cavities are symmetrically formed in the two sides of the back face of a fence body of the fence, screws are arranged in the third cavities, first limiting grooves are formed in the surfaces of the screws, the screws are in threaded connection with adjusting nuts, and the positions, on the two sides of the fence body, of the screws are sleeved with stepped shaft barrels and transmission sleeves which are in sliding fit with the first limiting grooves. The end face of the adjusting nut abuts against the stepped shaft barrel and the transmission sleeve, a switching mechanism is arranged on the stand column, one side of the stepped shaft barrel is rotationally connected with the switching mechanism driving the stepped shaft barrel to rotate, and one side of the transmission sleeve is rotationally connected with the switching mechanism on the corresponding side. A first rotation driving unit of the switching mechanism and a wind meter at the top end of the stand column are electrically connected with a control system in the stand column. The method comprises the steps of stand column installation, body driving side installation, body driven side installation and wind resistance adjustment. The system has the characteristics of modular structure, automatic control, convenient and reliable connection and good wind resistance.
本发明属于建筑围挡技术领域,具体公开一种土建施工用抗风围挡及其使用方法。该围挡的围挡本体背面两侧对称设有第三腔体,第三腔体内设有螺杆,螺杆表面开设有第一限位槽且螺纹连接有调节螺母,围挡本体两侧的螺杆上套设有与第一限位槽滑动配合的阶梯轴筒、传动套筒,调节螺母端面分别与阶梯轴筒及传动套筒抵接,立柱上设有转接机构,阶梯轴筒一侧转动连接有驱动其转动的转接机构,传动套筒一侧与对应侧转接机构转动连接;转接机构的第一回转驱动单元及立柱顶端的测风仪与立柱内的控制系统电性连接。所述方法包括立柱安装、本体驱动侧安装、本体从动侧安装、抗风调整步骤。本发明具有模块化结构、自动控制、连接便捷可靠、抗风性好的特点。
Wind-resistant fence for civil construction and use method of wind-resistant fence
一种土建施工用抗风围挡及其使用方法
HU LONG (author) / YANG GUOXIANG (author) / ZHU HAO (author) / WANG CHAO (author) / ZHAO TAO (author) / YANG ZHIXIANG (author) / HUAI XIANGYING (author) / XU DEYU (author) / QIU JIANBIN (author) / HACHIDA ISAMU (author)
2024-10-29
Patent
Electronic Resource
Chinese
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