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According to the foundation pile detection fixing device for engineering detection, a second rotating shaft, a second sleeve, a third sleeve and a fourth sleeve are rotationally arranged in each fixing rod, and the four sleeves are in one-to-one correspondence; each second rotating shaft is in transmission fit with the corresponding second sleeve, third sleeve and fourth sleeve; a second screw rod is in threaded connection with the interior of each second sleeve, a third screw rod is in threaded connection with the interior of each third sleeve, and a fourth screw rod is in threaded connection with the interior of each fourth sleeve; a first hinge block is rotationally arranged at one end of each second screw rod, and a second hinge block is rotationally arranged at one end of each third screw rod and one end of each fourth screw rod; an arc-shaped rod is fixedly arranged at the other end of each first hinge block, and a second sliding groove is formed in the outer wall of each arc-shaped rod. The second hinge blocks connected with the third lead screw and the fourth lead screw which are located on the same fixing rod are arranged in the second sliding grooves opposite to the fixing rods in a limiting and sliding mode. And the arc-shaped rod can be automatically adjusted in the sliding process of the lead screw.
本发明提供了一种工程检测用基桩检测固定装置,每个固定杆内均转动设置第二转动轴、第二套筒、第三套筒以及第四套筒,四者一一对应;每个第二转动轴均与对应的第二套筒、第三套筒、第四套筒传动配合;每个第二套筒内均螺纹连接第二丝杆,每个第三套筒内均螺纹连接第三丝杆,每个第四套筒内均螺纹连接第四丝杆;每个第二丝杆一端均转动设置第一铰接块,每个第三丝杆、第四丝杆的一端均转动设置第二铰接块;每个第一铰接块的另一端均固定设置弧形杆,每个弧形杆的外壁均开设第二滑槽;位于同一固定杆上的第三丝杆、第四丝杆所连接的第二铰接块均限位滑动设置在与该固定杆相对的第二滑槽内。丝杆的滑动的过程中会自动对弧形杆进行调配。
According to the foundation pile detection fixing device for engineering detection, a second rotating shaft, a second sleeve, a third sleeve and a fourth sleeve are rotationally arranged in each fixing rod, and the four sleeves are in one-to-one correspondence; each second rotating shaft is in transmission fit with the corresponding second sleeve, third sleeve and fourth sleeve; a second screw rod is in threaded connection with the interior of each second sleeve, a third screw rod is in threaded connection with the interior of each third sleeve, and a fourth screw rod is in threaded connection with the interior of each fourth sleeve; a first hinge block is rotationally arranged at one end of each second screw rod, and a second hinge block is rotationally arranged at one end of each third screw rod and one end of each fourth screw rod; an arc-shaped rod is fixedly arranged at the other end of each first hinge block, and a second sliding groove is formed in the outer wall of each arc-shaped rod. The second hinge blocks connected with the third lead screw and the fourth lead screw which are located on the same fixing rod are arranged in the second sliding grooves opposite to the fixing rods in a limiting and sliding mode. And the arc-shaped rod can be automatically adjusted in the sliding process of the lead screw.
本发明提供了一种工程检测用基桩检测固定装置,每个固定杆内均转动设置第二转动轴、第二套筒、第三套筒以及第四套筒,四者一一对应;每个第二转动轴均与对应的第二套筒、第三套筒、第四套筒传动配合;每个第二套筒内均螺纹连接第二丝杆,每个第三套筒内均螺纹连接第三丝杆,每个第四套筒内均螺纹连接第四丝杆;每个第二丝杆一端均转动设置第一铰接块,每个第三丝杆、第四丝杆的一端均转动设置第二铰接块;每个第一铰接块的另一端均固定设置弧形杆,每个弧形杆的外壁均开设第二滑槽;位于同一固定杆上的第三丝杆、第四丝杆所连接的第二铰接块均限位滑动设置在与该固定杆相对的第二滑槽内。丝杆的滑动的过程中会自动对弧形杆进行调配。
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