Green power generation wearable fitness function integrated fitness equipment
A wearable, fitness equipment technology, applied in gymnastics equipment, electric components, electromechanical devices, etc., can solve the problems of mechanical energy waste, cost more money, single fitness function of fitness equipment, etc., to reduce the waste of resources and energy, reduce Emissions, waste reduction effect
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specific Embodiment approach 1
[0073] like figure 1 , figure 2 As shown, the green power generation wearable fitness function integrated fitness device includes a torso device 1, two arm exercise devices 2, and two leg exercise devices 3. The upper left end of the torso device 1 and the upper right end of the torso device 1 are connected with one The arm exercise device 2, two arm exercise devices 2 are symmetrically arranged on both sides of the torso device 1; a leg exercise device 3 is connected to each of the left lower end and the right lower end of the torso device, and the two leg exercise devices 3 are arranged symmetrically on both sides of the torso device 1;
[0074] like image 3 , Figure 4 , Figure 17 , Figure 18 , Figure 19 , Figure 20 , Figure 21 , Figure 22 , Figure 23 , Figure 24 , Figure 25As shown, the trunk device 1 is composed of a spine plate 4, a reinforcing rib plate 5, a shoulder splint 6, a shoulder curved plate 7, a waist frame 8, and a waist belt 9; the wai...
specific Embodiment approach 2
[0081] like Figure 13 As shown, the hip joint resistance torque adjustment device 23 consists of an upper installation platform 23-1, two torsion spring grooves 23-2, two torsion springs 23-3, two torsion spring locking sliders 23-4, and two torsion springs 23-4. The spring stop block 23-5, the upper fixing block 23-6, and the dovetail groove are formed; the upper installation platform 23-1 is arranged on the upper end of the thigh arm 19, and the upper installation platform 23-1 and the thigh arm 19 are integrally formed, and the upper installation platform 23-1 is an integral structure. Two torsion spring grooves 23-2 are set on one side of 23-1; the torsion spring stopper 23-5 is welded on the waist frame 8 and the upper end of the thigh arm 19; the two torsion springs 23-3 are sleeved in parallel On the axis V26, the lower ends of the two torsion springs 23-3 are inserted into the inner sides of the two torsion spring grooves 23-2; the upper ends of the two torsion spring...
specific Embodiment approach 3
[0083] like Figure 14 As shown, the knee joint resistance torque adjusting device 24 consists of a lower installation platform 24-1, two torsion spring grooves 24-2, two torsion springs 24-3, two torsion spring locking sliders 24-4, and two torsion springs 24-4. The spring stop block 24-5, the lower fixing block 24-6, and the dovetail groove 24-7 are formed; the lower installation platform 24-1 is arranged at the lower end of the thigh arm 19, and the lower installation platform 24-1 and the thigh arm 19 are integrated into a structure, Two torsion spring grooves 24-2 are arranged on one side of the lower installation platform 24-1; the torsion spring stopper 24-5 is welded on the lower leg arm 20 and the lower end of the thigh arm 19; the two torsion springs 24-3 It is sleeved on the shaft VI27 in parallel, the upper ends of the two torsion springs 24-3 are inserted into the inner sides of the two torsion spring grooves 24-2, and the lower ends of the two torsion springs 24-...
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