Lifting Mechanism Driver with Block Stop Function
A lifting mechanism that stops when encountering obstacles is applied in the field of the driver of the lifting mechanism with the function of stopping when encountering obstacles. It can solve the problems of increasing installation steps and increasing the cost of use, and achieves the effect of reducing injuries.
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Embodiment 1
[0032] Embodiment one, see Figure 1 to Figure 5 As shown, a lifting mechanism driver with the function of stopping in case of resistance includes a driving motor 1, a deceleration transmission pair and a power output mechanism. , the power output end is connected with the power output mechanism through a slipping mechanism in case of resistance. The slipping mechanism in case of resistance includes a clutch wheel 5 and an elastic return member. The second clutch surface 61, the elastic reset member is arranged between the first clutch surface 52 and the power output mechanism.
[0033] The power output mechanism includes a transmission sleeve 3, the clutch wheel 5 is linearly slidably arranged on the transmission sleeve 3, the first clutch surface 52 is arranged on an end surface of the clutch wheel 5, and the surface of the transmission sleeve 3 is provided with a limit baffle 32, the The elastic return part of the slipping mechanism in case of resistance is a compression s...
Embodiment 2
[0044] Embodiment two, the difference with embodiment one is: see Figure 6 to Figure 10 As shown, the power output mechanism includes a driven shaft and a transmission sleeve 3 that are connected to each other, the clutch wheel 5 is fixed outside the driven shaft, and the first clutch surface 52 is arranged on the outer periphery of the clutch wheel 5; the clutch wheel 5 The outer periphery is provided with a plurality of arc-shaped elastic blades 53, one end of the arc-shaped elastic blades 53 is connected with the outer periphery of the clutch wheel 5, the other end of the arc-shaped elastic blades 53 is suspended in the air, and the arc-shaped elastic blades 53 form the elastic reset member, and the arc-shaped elastic blades 53 The outer surface forms the first clutch surface 52, and the inner side of the arc-shaped elastic blade 53 forms an elastic deformation cavity; the power output end is provided with a power output gear, and the power output gear is provided with a ca...
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