A mechanical arm electric lock structure and a climbing device
A technology of electric locks and mechanical arms, which is applied in the direction of hoisting devices, lifting equipment safety devices, etc., can solve the problems of increased labor intensity of workers, increased construction costs, and reduced construction efficiency
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Embodiment 1
[0028] refer to Figure 1-3 The electric lock structure of the manipulator in the first embodiment mainly includes: a manipulator body 1, an electric lock structure 2 installed on the manipulator body 1, and an electric control structure (not shown) arranged on the climbing device. .
[0029] Wherein, the electric lock structure 2 can be horizontally expanded and contracted under the signal drive of the electric control structure, when the electric lock structure 2 extends to the first position, the electric lock structure 2 is in a locked state, so When the electric lock structure 2 shrinks to the second position, the electric lock structure 2 is in an unlocked state. When the electric lock structure 2 is in the locked state, the mechanical arm body 1 can be locked with the building, and when the electric lock structure 2 is in the unlocked state, the mechanical arm body 1 can be released from the building. locking.
[0030] Specifically, refer to figure 2 The electric l...
Embodiment 2
[0036] refer to Figure 5 , Embodiment 2 discloses a climbing device, which includes a first guide rail 31 and a second guide rail 32 that are fitted with sliding sleeves. The first guide rail 31 or the second guide rail 32 can be fixedly connected to the construction platform. The first guide rail 31 and the second guide rail 32 are provided with at least one mechanical arm electric lock structure respectively. All mechanical arm electric lock structures on the same guide rail can realize synchronous locking and synchronous unlocking under the control of the electric control structure.
[0037] When crawling, one of the guide rails such as the electric lock structure 2 in the mechanical arm body 1 of the first guide rail 31 can be controlled by the electric control structure to be in a locked state, and the electric lock structure 2 in the mechanical arm body 1 of the second guide rail 32 can be controlled to be in a locked state. unlocked state, and slide the second guide r...
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