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Fabricated building supporting seat
The invention belongs to the technical field of fabricated buildings, and particularly relates to a fabricated building supporting seat which comprises a supporting seat body. The base comprises a circular truncated cone; a containing groove is formed in the inner wall of the circular truncated cone and located at the center point of the circular truncated cone, and a servo motor is installed in the containing groove. A lead screw is fixedly mounted on an output shaft of the servo motor; a mounting groove is formed in the lower surface of the supporting seat; a circular groove is formed in the inner wall of the supporting seat above the mounting groove; the lead screw penetrates through the mounting groove and the circular groove and extends into the inner wall of the supporting seat; the end faces, facing the same direction, of every two adjacent supporting seats are each rotationally connected with a round rod through a pin shaft. A cylinder body is arranged between the two opposite round rods; a ball body is arranged in the cylinder body; a groove is formed in the position, located in the cylinder body, of the center line of the cylinder body. The method is mainly used for solving the problem that when the heights of the supporting seats are adjusted, whether the heights of all the supporting seats are within an allowable error range or not cannot be judged, and therefore adjustment needs to be conducted after repeated manual measurement.
本发明属于装配建筑技术领域,具体的说是一种装配式建筑支撑座,包括支撑座;所述底座包括圆台;所述圆台内壁中,位于圆台中心点位置开设有放置槽,且放置槽内安装有伺服电机;所述伺服电机的输出轴上固定安装有丝杠;所述撑座下表面开设有安装槽;所述安装槽上方位于撑座内壁中开设有圆槽;所述丝杠穿过安装槽和圆槽延伸至撑座内壁中;相邻的两个所述撑座朝向相同方向的端面,均通过销轴转动连接有圆杆;相对的两个所述圆杆之间设有筒体;所述筒体内设有球体;所述筒体中线位置,位于筒体内开设有凹槽;本发明主要用于解决在调整支撑座的高度时,无法判断所有支撑座的高度是否在允许的误差范围内,因此需要人工多次测量再进行调整。
Fabricated building supporting seat
The invention belongs to the technical field of fabricated buildings, and particularly relates to a fabricated building supporting seat which comprises a supporting seat body. The base comprises a circular truncated cone; a containing groove is formed in the inner wall of the circular truncated cone and located at the center point of the circular truncated cone, and a servo motor is installed in the containing groove. A lead screw is fixedly mounted on an output shaft of the servo motor; a mounting groove is formed in the lower surface of the supporting seat; a circular groove is formed in the inner wall of the supporting seat above the mounting groove; the lead screw penetrates through the mounting groove and the circular groove and extends into the inner wall of the supporting seat; the end faces, facing the same direction, of every two adjacent supporting seats are each rotationally connected with a round rod through a pin shaft. A cylinder body is arranged between the two opposite round rods; a ball body is arranged in the cylinder body; a groove is formed in the position, located in the cylinder body, of the center line of the cylinder body. The method is mainly used for solving the problem that when the heights of the supporting seats are adjusted, whether the heights of all the supporting seats are within an allowable error range or not cannot be judged, and therefore adjustment needs to be conducted after repeated manual measurement.
本发明属于装配建筑技术领域,具体的说是一种装配式建筑支撑座,包括支撑座;所述底座包括圆台;所述圆台内壁中,位于圆台中心点位置开设有放置槽,且放置槽内安装有伺服电机;所述伺服电机的输出轴上固定安装有丝杠;所述撑座下表面开设有安装槽;所述安装槽上方位于撑座内壁中开设有圆槽;所述丝杠穿过安装槽和圆槽延伸至撑座内壁中;相邻的两个所述撑座朝向相同方向的端面,均通过销轴转动连接有圆杆;相对的两个所述圆杆之间设有筒体;所述筒体内设有球体;所述筒体中线位置,位于筒体内开设有凹槽;本发明主要用于解决在调整支撑座的高度时,无法判断所有支撑座的高度是否在允许的误差范围内,因此需要人工多次测量再进行调整。
Fabricated building supporting seat
一种装配式建筑支撑座
ZHANG PING (author) / QIAN JUNJIE (author) / GAN QIAN (author)
2023-05-02
Patent
Electronic Resource
Chinese
IPC:
E02D
FOUNDATIONS
,
Gründungen