Fixing device for water conservancy and hydropower buried pipe and using method thereof
A water conservancy, hydropower, and fixing device technology, which is applied in hoisting devices, hoisting equipment braking devices, transportation and packaging, etc., can solve problems such as connection angle deviation, pipeline fixing and lowering troubles, and difficult pipeline straight installation, etc., to achieve movement The effect of stability, reducing direct drop, and convenient connection
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Embodiment 1
[0030] see Figure 1-6 , the present invention provides a technical solution:
[0031] A fixing device for water conservancy and hydropower buried pipes and its use method, comprising an outer frame 1, a winch 2, a steel wire rope 3 and an inner frame 4, the top of the outer frame 1 is fixedly connected with a winch 2, the inner side of the winch 2 is threaded with a steel wire rope 3, and the steel wire rope The bottom end of 3 is fixedly connected with inner frame 4, and this setting can realize the adjustment of the height of inner frame 4 through the winding of steel wire rope 3 by winch 2, and the inner side of the bottom end of inner frame 4 is provided with clamping lowering mechanism 5, clamping The lowering mechanism 5 includes a fixed seat 501, a first motor 502, a first screw rod 503, a push plate 504, a torsion spring 505, an L-shaped stop rod 506, a lower clamping arc plate 507 and a stop block 508, and the fixed seat 501 is fixedly connected On the left and righ...
Embodiment 2
[0035] see Figure 1-6 , the present invention provides a technical solution:
[0036] A fixing device for buried pipes of water conservancy and hydropower and its use method. The same parts as those in Embodiment 1 in Embodiment 2 will not be repeated in the present invention, and the difference lies in the working process.
[0037] Working process: During the use of the present invention, the electric telescopic rod 712 can be extended to drive the perforated plate 710 to move, and the perforated plate 710 will drive the alveolar sleeve 711 to slide until the alveolar sleeve The tooth grooves in the cylinder 711 are no longer meshed with the second transmission gear 709. At this time, the transmission rod 708 on the upper and lower sides will not drive the perforated plate 710 to rotate through the second transmission gear 709 after rotation, so that the transmission on the upper and lower sides The rod 708 can rotate asynchronously, and the third screw rod 703 is driven by...
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