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Device and method for measuring clear distance of sounding pipe of foundation pile
The invention relates to the technical field of foundation pile detection, in particular to a foundation pile sounding pipe clear distance measuring device and method.The foundation pile sounding pipe clear distance measuring device comprises a measuring ruler body and a telescopic ruler body which are mutually connected, the end, away from the telescopic ruler body, of the measuring ruler body is connected with a first arc-shaped clamping plate, and the end, away from the measuring ruler body, of the telescopic ruler body is connected with a second arc-shaped clamping plate; the first arc-shaped clamping plate and the second arc-shaped clamping plate are symmetrically arranged, a laser range finder is arranged on the measuring ruler body, and a horizontal bubble is arranged on the telescopic ruler body. Laser probes are arranged on the two sides of the laser range finder, a longitudinal center plane is arranged on the center connecting line of the first arc-shaped clamping plate and the second arc-shaped clamping plate, the longitudinal center plane is perpendicular to the first arc-shaped clamping plate, the laser probes are located on the longitudinal center plane, and the vertical height of the laser probes exceeds the measuring ruler body, the telescopic ruler body and the horizontal bubble. The length of the measuring device is controlled by extending the ruler body, use at different intervals is met, the levelness of the ruler body is controlled through the horizontal bubble, and the clear distance of the sounding pipe is measured through the laser range finder.
本发明涉及基桩检测技术领域,特别涉及一种基桩声测管净距测量装置及测量方法,包括相互连接的测量尺身和伸缩尺身,测量尺身远离伸缩尺身的一端连接有第一弧形卡板,伸缩尺身远离测量尺身的一端连接有第二弧形卡板,第一弧形卡板和第二弧形卡板对称设置,测量尺身上设置有激光测距仪,伸缩尺身上设置有水平气泡;激光测距仪两侧均具有激光探头,第一弧形卡板和第二弧形卡板的中心连线上具有纵向中心面,纵向中心面与第一弧形卡板相垂直,激光探头位于纵向中心面上,且激光探头竖向高度超出测量尺身、伸缩尺身和水平气泡。通过伸缩尺身控制测量装置的长度,满足不同间距使用,通过水平气泡靠控制尺身水平度,通过激光测距仪进行声测管净距测量。
Device and method for measuring clear distance of sounding pipe of foundation pile
The invention relates to the technical field of foundation pile detection, in particular to a foundation pile sounding pipe clear distance measuring device and method.The foundation pile sounding pipe clear distance measuring device comprises a measuring ruler body and a telescopic ruler body which are mutually connected, the end, away from the telescopic ruler body, of the measuring ruler body is connected with a first arc-shaped clamping plate, and the end, away from the measuring ruler body, of the telescopic ruler body is connected with a second arc-shaped clamping plate; the first arc-shaped clamping plate and the second arc-shaped clamping plate are symmetrically arranged, a laser range finder is arranged on the measuring ruler body, and a horizontal bubble is arranged on the telescopic ruler body. Laser probes are arranged on the two sides of the laser range finder, a longitudinal center plane is arranged on the center connecting line of the first arc-shaped clamping plate and the second arc-shaped clamping plate, the longitudinal center plane is perpendicular to the first arc-shaped clamping plate, the laser probes are located on the longitudinal center plane, and the vertical height of the laser probes exceeds the measuring ruler body, the telescopic ruler body and the horizontal bubble. The length of the measuring device is controlled by extending the ruler body, use at different intervals is met, the levelness of the ruler body is controlled through the horizontal bubble, and the clear distance of the sounding pipe is measured through the laser range finder.
本发明涉及基桩检测技术领域,特别涉及一种基桩声测管净距测量装置及测量方法,包括相互连接的测量尺身和伸缩尺身,测量尺身远离伸缩尺身的一端连接有第一弧形卡板,伸缩尺身远离测量尺身的一端连接有第二弧形卡板,第一弧形卡板和第二弧形卡板对称设置,测量尺身上设置有激光测距仪,伸缩尺身上设置有水平气泡;激光测距仪两侧均具有激光探头,第一弧形卡板和第二弧形卡板的中心连线上具有纵向中心面,纵向中心面与第一弧形卡板相垂直,激光探头位于纵向中心面上,且激光探头竖向高度超出测量尺身、伸缩尺身和水平气泡。通过伸缩尺身控制测量装置的长度,满足不同间距使用,通过水平气泡靠控制尺身水平度,通过激光测距仪进行声测管净距测量。
Device and method for measuring clear distance of sounding pipe of foundation pile
一种基桩声测管净距测量装置及测量方法
XIA SENLIN (author) / GONG XINGYAO (author) / YIN QUANYONG (author)
2023-12-22
Patent
Electronic Resource
Chinese
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