Balance evaluation device suitable for three-dimensional dynamic standing type training
A dynamic stand and balance technology, which can be used in training equipment for adjusting coordination, training equipment for adjusting cardiovascular system, gymnastics equipment, etc. Soft, improved comfort, damping dynamically variable and effective
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Embodiment 1
[0043] Such as Figure 1 ~ Figure 2 As shown, a balance evaluation device suitable for three-dimensional dynamic standing training includes a platform on which a dynamic training mechanism, a static training mechanism and a force detection mechanism are arranged, and the dynamic training mechanism is used to train the dynamic balance ability of the human body , the static training mechanism is used to train the standing ability of the human body, and the force detection mechanism is used to detect the pressure data of the platform under dynamic training and static training respectively;
[0044] A control module is arranged between the dynamic training mechanism and the static training mechanism, and the control module is used to switch between the dynamic training mechanism and the static training mechanism to work separately;
[0045]The control module is communicated with the force detection mechanism, the control module receives the pressure data detected by the force detecti
Embodiment 2
[0049] On the basis of embodiment 1, the static training mechanism is optimized, specifically:
[0050] Such as figure 2 As shown, the static training mechanism includes a cylinder 9, the cylinder 9 is evenly distributed between the support plate 16 and the base 2, the cylinder body of the cylinder 9 is fixed on the bottom surface of the support plate 16, and the piston rod 4 of the cylinder 9 runs through the support plate 16, and located on the upper side of the support plate 16, there is a gap between the piston rod 4 and the connecting plate 5;
[0051] There are at least 4 cylinders 9, and the 4 cylinders 9 are respectively located at the front, rear, left and right of the bottom surface of the support plate 16, and are in a circular equidistant array with the central axis of the support plate 16 as the center.
[0052] Such as image 3 As shown, as a possible implementation manner, a support mechanism is provided on the top surface of the support plate 16 , and the suppo
Embodiment 3
[0057] On the basis of above-mentioned embodiment, dynamic training mechanism is optimized, specifically:
[0058] Such as figure 2 As shown, the dynamic training mechanism includes an airbag 21 and an airbag baffle 7, the airbag 21 is sleeved outside the airbag baffle 7, the airbag 21 is an annular body with an inner ring opening and a cavity inside, and the airbag 21 The opening of the inner ring of the airbag is attached to the outer peripheral wall of the airbag baffle 7 to form a closed state;
[0059] The airbag baffle 7 is an annular columnar structure, the upper end surface of the airbag baffle 7 is provided with flanging, the inner surface of the airbag baffle 7 is sleeved on the outside of the support mechanism, and the lower end surface of the airbag baffle 7 is fixed to the support plate 16 by bolts .
[0060] As a possible implementation, the airbag 21 is provided with a stop ring 20 wrapped around the outer periphery of the airbag baffle 7, and the airbag 21 is s
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