A wall-climbing robot with a spring-buffered V-shaped permanent magnet link
A wall-climbing robot and spring buffering technology are applied in the field of wall-climbing robots, which can solve the problems of inflexibility of the robot's movement and climbing, and achieve the effects of increasing the scope of application, simple structure, and convenient and quick use.
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specific Embodiment approach 1
[0019] Specific implementation mode one: combine Figure 1 to Figure 5 Describe this embodiment, this embodiment includes connector 1, spring buffer connection mechanism 15, two connecting rods 2, two main frame bodies 3, two driving wheel fixing frames 4, two driven wheel fixing frames 5, two Drive shaft 6, two driven bevel gears 7, two driving bevel gears 8, two drive motors 9, two driving trapezoidal pulleys 10, two driven shafts 11, two driven trapezoidal pulleys 12, two Trapezoidal timing belt 13, two probe support mechanisms 14, two first pins 19, four fixing parts 16, four second pins 20, several V-shaped brackets 17 and several magnetic blocks 18, two connecting rods 2 Arranged in parallel, each connecting rod 2 is installed on its corresponding main frame body 3, and the two main frame bodies 3 are connected by a connecting piece 1, and one end of each connecting rod 2 is fixedly equipped with a driving wheel fixing frame 4, each The other end of the connecting rod 2...
specific Embodiment approach 2
[0020] Specific implementation mode two: combination figure 2 The present embodiment will be described. The drive motor 9 of the present embodiment is a DC servo motor. Other components and connections are the same as those in the first embodiment.
specific Embodiment approach 3
[0021] Specific implementation mode three: combination Figure 6 Describe this embodiment, the V-shaped bracket 17 of this embodiment includes a bottom plate 17-1 and two side plates 17-2, and the two side plates 17-2 are V-shaped and arranged at both ends of the bottom plate 17-1, and the bottom plate 17-1 1 and two side panels 17-2 are made into one. Other components and connections are the same as those in the first embodiment.
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