A six-degree-of-freedom simulator air flotation pulley system
A technology of simulators and degrees of freedom, applied in simulators, simulators of space navigation conditions, instruments, etc., can solve the problems that simulators cannot meet, and achieve the effects of improving accuracy, reducing friction, and improving simulation accuracy
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specific Embodiment approach 1
[0018] Embodiment 1: Combining figure 1 Illustrating this embodiment, a six-degree-of-freedom simulator air flotation pulley system described in this embodiment includes an upper frame body assembly, a lower frame body assembly, a mounting plate 1, a plurality of fixed pulleys 2 and ropes 3, the lower frame body The assembly is sleeved on the outer side of the upper frame assembly, the upper frame assembly and the lower frame assembly are both connected to the mounting plate 1, and a plurality of fixed pulleys 2 are evenly installed on the upper surface of the mounting plate 1 along the circumferential direction, and each fixed pulley 2 There is a rope 3 on the top, one end of the rope 3 is connected with the upper frame body assembly, and the other end of the rope 3 is connected with the lower frame body assembly.
[0019] Both the upper frame assembly and the lower frame assembly are fixed by the mounting plate 1, the fixed pulley 2 is installed on the mounting plate 1, and ...
specific Embodiment approach 2
[0020] Specific implementation mode 2: Combining figure 1 Illustrating this embodiment, the upper frame assembly described in this embodiment includes an upper disc body 4, a first annular body 5, a second annular body 6, a third annular body 7, a plurality of first guide rods 8 and A plurality of first air flotation guide seats 9, the upper disc body 4, the first annular body 5, the second annular body 6 and the third annular body 7 are arranged in order from top to bottom, and a plurality of first air flotation guide The seats 9 are evenly installed on the upper surface of the mounting plate 1 along the circumferential direction; the lower surface of the first annular body 5 and the upper surface of the second annular body 6 are connected by columns, and the first guide rods 8 are evenly arranged along the circumferential direction. , the upper end of each first guide rod 8 is fixedly connected with the lower surface of the second annular body 6, and the lower end of each fi...
specific Embodiment approach 3
[0022] Specific implementation three: combination figure 1 Describing this embodiment, the lower frame assembly described in this embodiment includes an upper annular body 10, a lower annular body 11, a plurality of second guide rods 12 and a plurality of second air flotation guide seats 13, a plurality of second air The floating guide seats 13 are evenly installed on the upper surface of the mounting plate 1 along the circumferential direction, and each second air floating guide seat 13 is located between the two first air floating guide seats 9, and the upper ring body 10 is located in the second Between the ring body 6 and the mounting plate 1 , the upper end of each second guide rod 12 is fixedly connected with the lower surface of the upper ring body 10 , and the lower end of each second guide rod 13 passes through the second air-floating guide seat 13 in turn. It is connected to the upper surface of the lower annular body 11 after being connected to the mounting plate 1 ...
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