Hoisting mechanism for installation of mine electromechanical equipment
A technology for equipment installation, mine electromechanical, applied in the direction of cranes, transportation and packaging, trolley cranes, etc., can solve the problem of inconvenient movement of lifting parts
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Embodiment 1
[0046] Such as Figure 1-5 As shown, a hoisting mechanism for mine electromechanical installation includes a beam 1, a third groove 20 is opened on the lower surface of the beam 1, and a second inner cavity 18 is opened at one end of the third groove 20. , the inside of the second inner cavity 18 is installed with a third motor 19, the output shaft of the third motor 19 is connected with a third screw 21 through a coupling, and one end of the third screw 21 runs through the second One side of the inner cavity 18 is rotationally connected with the other end of the third groove 20 through the third bearing 22, and the third screw rod 21 is threaded with a third sliding block 23, which will be driven by the rotation of the third motor 19. The 3rd sliding block 23 moves, and is convenient to move the second cross bar 6 to the vicinity of the top where the electromechanical machine needs to be installed; The first rotating shaft 5 is connected by a coupling, and the lower end of t...
Embodiment 2
[0063] A hoisting mechanism for mine electromechanical installation, comprising a beam 1, a third groove 20 is opened on the lower surface of the beam 1, and a second inner cavity 18 is opened at one end of the third groove 20, the A third motor 19 is installed inside the second inner cavity 18 , the output shaft of the third motor 19 is connected with a third screw 21 through a coupling, and one end of the third screw 21 runs through the second inner cavity 18 One side of one side is rotationally connected with the other end inside the third groove 20 through the third bearing 22, and the third sliding block 23 is screwed on the third screw rod 21, and the third sliding block 23 will be driven by the rotation of the third motor 19. The block 23 moves to facilitate the second cross bar 6 to move to the vicinity of the top where the electromechanical needs to be installed; the lower surface of the third sliding block 23 is equipped with the fifth motor 4, and the output shaft of...
Embodiment 3
[0073] A hoisting mechanism for mine electromechanical installation, comprising a beam 1, a third groove 20 is opened on the lower surface of the beam 1, and a second inner cavity 18 is opened at one end of the third groove 20, the A third motor 19 is installed inside the second inner cavity 18 , the output shaft of the third motor 19 is connected with a third screw 21 through a coupling, and one end of the third screw 21 runs through the second inner cavity 18 One side of one side is rotationally connected with the other end inside the third groove 20 through the third bearing 22, and the third sliding block 23 is screwed on the third screw rod 21, and the third sliding block 23 will be driven by the rotation of the third motor 19. The block 23 moves to facilitate the second cross bar 6 to move to the vicinity of the top where the electromechanical needs to be installed; the lower surface of the third sliding block 23 is equipped with the fifth motor 4, and the output shaft of...
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