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Construction slag slow-speed energy-consumption vertical conveying pipeline structure and construction slag vertical conveying method
The invention discloses a building slag slow-speed energy-consumption vertical conveying pipeline structure and a building slag vertical conveying method. The structure comprises a plurality of vertical pipe joints which are arranged at intervals in the vertical direction; the connecting pipe is connected to the two adjacent vertical pipe joints, the inner diameter of the middle of the connecting pipe is larger than that of the two ends of the connecting pipe, guide holes are formed in the two opposite side walls of the connecting pipe, inserting rods are arranged in the guide holes in a sliding mode, one end of each inserting rod extends into the connecting pipe and is connected with a buffering cushion block, and elastic pieces are installed between the buffering cushion blocks and the side walls. The side, away from the side wall, of the buffering cushion block forms a bearing slope, the upper portion of the bearing slope is arranged obliquely upwards and outwards, and the bearing slope is arranged opposite to an upper end opening of the connecting pipe; the spraying device is mounted at the upper part of the connecting pipe; the sensor is mounted in the middle of the connecting pipe; the controller is connected to the spraying device and the sensor, and the controller is connected with an alarm device. The vertical construction slag conveying pipeline solves the problems that an existing vertical construction slag conveying pipeline is high in speed and large in flying dust when construction slag falls.
本发明公开了一种建渣缓速耗能垂直输送管道结构及建渣垂直运输方法,该结构包括:沿竖直方向间隔设置的多个竖向管节;连接管,连接于相邻的两个竖向管节,连接管的中部的内径大于连接管的两端的内径,连接管相对的两侧壁开设有导向孔,导向孔中滑设有插杆,插杆的一端伸至连接管的内部且连接有缓冲垫块,缓冲垫块与侧壁之间安装有弹性件,缓冲垫块的远离侧壁的一侧形成承接斜面,承接斜面的上部斜向上向外设置,承接斜面与连接管的上端口相对设置;喷淋装置,安装于连接管的上部;传感器,安装于连接管的中部;控制器,连接于喷淋装置和传感器,控制器连接有报警装置。本发明解决了现有垂直建渣输送管道在建渣下落时,速度较快,且扬尘大的问题。
Construction slag slow-speed energy-consumption vertical conveying pipeline structure and construction slag vertical conveying method
The invention discloses a building slag slow-speed energy-consumption vertical conveying pipeline structure and a building slag vertical conveying method. The structure comprises a plurality of vertical pipe joints which are arranged at intervals in the vertical direction; the connecting pipe is connected to the two adjacent vertical pipe joints, the inner diameter of the middle of the connecting pipe is larger than that of the two ends of the connecting pipe, guide holes are formed in the two opposite side walls of the connecting pipe, inserting rods are arranged in the guide holes in a sliding mode, one end of each inserting rod extends into the connecting pipe and is connected with a buffering cushion block, and elastic pieces are installed between the buffering cushion blocks and the side walls. The side, away from the side wall, of the buffering cushion block forms a bearing slope, the upper portion of the bearing slope is arranged obliquely upwards and outwards, and the bearing slope is arranged opposite to an upper end opening of the connecting pipe; the spraying device is mounted at the upper part of the connecting pipe; the sensor is mounted in the middle of the connecting pipe; the controller is connected to the spraying device and the sensor, and the controller is connected with an alarm device. The vertical construction slag conveying pipeline solves the problems that an existing vertical construction slag conveying pipeline is high in speed and large in flying dust when construction slag falls.
本发明公开了一种建渣缓速耗能垂直输送管道结构及建渣垂直运输方法,该结构包括:沿竖直方向间隔设置的多个竖向管节;连接管,连接于相邻的两个竖向管节,连接管的中部的内径大于连接管的两端的内径,连接管相对的两侧壁开设有导向孔,导向孔中滑设有插杆,插杆的一端伸至连接管的内部且连接有缓冲垫块,缓冲垫块与侧壁之间安装有弹性件,缓冲垫块的远离侧壁的一侧形成承接斜面,承接斜面的上部斜向上向外设置,承接斜面与连接管的上端口相对设置;喷淋装置,安装于连接管的上部;传感器,安装于连接管的中部;控制器,连接于喷淋装置和传感器,控制器连接有报警装置。本发明解决了现有垂直建渣输送管道在建渣下落时,速度较快,且扬尘大的问题。
Construction slag slow-speed energy-consumption vertical conveying pipeline structure and construction slag vertical conveying method
建渣缓速耗能垂直输送管道结构及建渣垂直运输方法
GU LI (Autor:in) / HUANG GUI (Autor:in) / MA JUN (Autor:in) / PAN HONGYING (Autor:in) / JIN ZHUANG (Autor:in) / WANG LEI (Autor:in)
07.03.2023
Patent
Elektronische Ressource
Chinesisch
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