Balanced lifting disc capable of locking
A lifting plate and balanced technology, applied in the field of three-dimensional parking garage, can solve the problems of vehicle bumping, uneven pressure bearing, unbalanced output motor output power, etc., and achieve the effect of preventing bumping, strong practicability, and avoiding unbalanced motor output
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Embodiment 1
[0020] Such as figure 1 As shown, a lockable balanced lifting plate includes a lifting plate connected with a three-dimensional garage lifting frame 21, and the lifting plate includes an upper lifting plate 7 and a lower lifting plate 1, and the upper lifting plate 7 and the lower lifting plate 1 are set There is a balance device, and an automatic locking device is arranged above the upper lifting plate 7 .
[0021] By dividing the lifting plate into the upper lifting plate 7 and the lower lifting plate 1, a balance device is installed between the two lifting plates, so that the force on the lifting plate is balanced, avoiding the uneven output of the motor caused by uneven force, and protecting the motor and the lifting The frame 21 will not be damaged due to uneven force; an automatic locking device is provided to automatically lock the tires 27 of the vehicle when the vehicle is parked on the upper lifting plate 7 to prevent the vehicle from moving due to the instability of...
Embodiment 2
[0023] As a special example of Embodiment 1, the balance device described in Embodiment 1 is arranged on the hydraulic cylinder a14 and hydraulic cylinder b15 below the upper lifting plate 7, and the hydraulic cylinder a14 and hydraulic cylinder b15 are connected to the lower lifting plate 1 through the bracket 2, The hydraulic cylinder a14 includes an upper hydraulic cylinder a12, a connecting rod a11 and a lower hydraulic cylinder a13 in turn, and the hydraulic cylinder b15 includes an upper hydraulic cylinder b9, a connecting rod b5 and a lower hydraulic cylinder b4 in turn, and the upper lifting plate 7 is provided with The pressure conversion device a8 and the pressure conversion device b10, the pressure conversion device a8 is connected to the upper hydraulic cylinder a12 and the lower hydraulic cylinder b4 through the oil pipe 6, and the pressure conversion device b10 is connected to the upper hydraulic cylinder b9 and the lower hydraulic cylinder a13 through the oil pipe...
Embodiment 3
[0026] Such as figure 2 As shown, the pressure conversion device a8 and the pressure conversion device b10 both include a cavity 16, the cavity 16 is provided with a piston 17 and a baffle 18, and the two sides of the piston 17 are respectively provided with an automatic return device 20 and a Two inlets 19 on both sides of the baffle 18 .
[0027] In this embodiment, if the pressure of the upper hydraulic cylinder a12 is greater than that of the lower hydraulic cylinder b4, the pressure of the lower hydraulic cylinder a13 is also greater than the pressure of the upper hydraulic cylinder b9. At this time, the liquid in the upper hydraulic cylinder a12 and the lower hydraulic cylinder a13 Pressed into the pressure conversion device a8 and pressure conversion device b10 respectively, pushing the piston 17 to compress the automatic return device 20. Because of the baffle plate 18, the piston 17 will generate a negative pressure when moving, absorbing the upper hydraulic cylinder...
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