Stable supporting device with function of automatically keeping horizontal for geotechnical engineering investigation
A technology of maintaining level and geotechnical engineering, applied in the field of surveying and mapping, it can solve the problems of maintaining the level of the surveying instrument and the inaccuracy of geological surveying and mapping, and achieve the effect of avoiding inaccurate precision.
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Embodiment 1
[0035] A stable supporter with automatic leveling function for geotechnical engineering investigation, such as Figure 1-3As shown, it includes a housing 1, a tripod 2, a balance mechanism 3 and a locking and fixing mechanism 4. The lower surface of the housing 1 is provided with a tripod 2, and the housing 1 is provided with a balance mechanism 3. The balance mechanism 3 It is used to keep the surveying instrument 5 in a horizontal state. The balancing mechanism 3 is provided with a locking and fixing mechanism 4. The locking and fixing mechanism 4 is used to fix the surveying and mapping instrument 5, which is convenient for subsequent use for geological surveying and mapping. The upper part of the balancing mechanism 3 A detachable plotter 5 is provided.
[0036] When the device needs to be used, the user installs the surveying instrument 5 on the balance mechanism 3 and places the device at a designated position. When the position of the device is tilted, the surveying ins...
Embodiment 2
[0038] On the basis of Example 1, such as Figure 3-5 As shown, the balance mechanism 3 includes a rotating block 301, a fixed frame 302, a sliding frame 303, a first annular plate 304, a first sleeve 305, a first shaft 306, a second shaft 307, a first fixed frame 308, The first swinging frame 309, the first weight block 310, the hollow sphere 311 and the mounting frame 312, the rotating block 301 is provided with two, and the two rotating blocks 301 are installed in the left and right sides of the inner surface of the housing 1 in a rotating manner respectively. The inner surface of the side rotating block 301 is equipped with a fixed frame 302, the fixed frame 302 is provided with a sliding frame 303, and the circumferential wall of the first annular plate 304 is embedded with four first axle sleeves 305 evenly spaced, and the first axle sleeves 305 on the front and rear sides are evenly spaced. A first shaft 306 is rotatably installed between the first shaft sleeves 305, a ...
Embodiment 3
[0042] On the basis of Example 2, such as Figure 8-12 As shown, it also includes a second toothed plate 7, a special-shaped block 8, a second annular plate 9, a second bushing 10, a third shaft 13, a fourth shaft 14, a second fixed frame 15, a second missing gear 16. The second guide 17, the second sliding block 18, the second clamping block 19, the second spring 20, the second pull cord 21, the second swing frame 22, the clamping block 23 and the second weight block 24, the second The middle part of the lower surface of a weight block 310 is provided with a draw-in groove 6, and the lower surface of the connecting plate 409 is equipped with a second toothed plate 7, and the lower surface of the second toothed plate 7 is provided with a special-shaped block 8, which is stepped. The circumferential wall of the second annular plate 9 is provided with four second axle sleeves 10 in the circumferential direction, and a third axle rod 13 is arranged in rotation between the adjacen...
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