Exoskeleton with function of assisting in jumping through energy storage of springs
A technology of exoskeleton and energy storage spring, which is applied in the field of exoskeleton to achieve the effect of increasing the jumping height, ingenious structural design, and enhancing explosive power
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specific Embodiment approach 1
[0017] Specific implementation mode one: combine Figure 1-Figure 10 Illustrate, the spring storage energy bouncing exoskeleton of present embodiment comprises left leg, right leg and back 7; Left leg and right leg comprise thigh 14, calf 15, foot 26, hip joint, knee joint and ankle joint 25 respectively; 1. The thigh 14 is rotationally connected through the hip joint, the thigh 14 is rotationally connected with the lower leg 15 through the knee joint, and the lower leg 15 is rotationally connected with the foot 26 through the ankle joint 25;
[0018] It also includes drive motor 2, lead screw pair 4, energy storage spring traction plate 5, energy storage spring release plate 9, pull ring 11, stay cord 12, connecting plate 20, auxiliary stage clip mechanism 27, return stroke poke bar 6, two A hook 10, two guide rails 16, two energy storage springs 17, two reset springs 18, two first traction driving wire ropes 19, two second traction driving wire ropes 28, two auxiliary pulley...
specific Embodiment approach 2
[0025] Specific implementation mode two: combination figure 1 and Figure 5 Explain that the connecting plate 20 of this embodiment is a T-shaped connecting plate, two connecting rods 29 are hinged to the two ends of the transverse arm of the T-shaped connecting plate, and the stay cord 12 is connected to the vertical arm of the T-shaped connecting plate. Such setting meets the design requirements and actual needs. Others are the same as in the first embodiment.
specific Embodiment approach 3
[0026] Specific implementation mode three: combination figure 1 and Figure 5 To illustrate, the drive motor 2 of this embodiment is a servo motor. With such arrangement, the structure is simple, the operation is stable and reliable, and the precision is high. Others are the same as in the first or second embodiment.
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