Unpowered walking assisting mechanical legs capable of realizing squatting rest

A mechanical leg and squatting technology, applied in the field of medical rehabilitation, can solve the problems of inability to use for a long time, expensive device, bulky volume, etc., and achieve the effects of simple and lightweight structure, reduced physical burden, and low cost.

Pending Publication Date: 2021-03-16
赵光华
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, with the development of science and technology, various exoskeleton robots and various types of exoskeleton mechanical legs that can solve the inconvenience of human walking are emerging, which can improve the motor function of the elderly or patients with leg diseases and improve people's quality of life. Although the current exoskeleton robots are powerful, they are complex in structure and bulky. They use various sensors, motors, levers, electric devices, and various mechanical conversion devices to be controlled by microcomputers. They need batteries as energy sources. Due to limitations, it cannot be used for a long time, and the overall device is expensive, so most of the situations are only for scientific research, and cannot meet and popularize the needs of the majority of people.

Method used

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  • Unpowered walking assisting mechanical legs capable of realizing squatting rest
  • Unpowered walking assisting mechanical legs capable of realizing squatting rest
  • Unpowered walking assisting mechanical legs capable of realizing squatting rest

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Experimental program
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Embodiment Construction

[0039] The present invention relates to a walking assist mechanical leg that can squat and rest without power. The specific implementation method is as follows:

[0040] When wearing it, you can open the nylon belt buckle on the seat, open the waist load-bearing live loop hinge, buckle the nylon belt around your waist, fasten the waist load-bearing live loop hanger in the appropriate hole, and step into the pedal bracket. Tighten the nylon straps on the thighs at the root of the thighs, tighten the nylon straps on the ankles of the calves, tie the nylon straps of the pedal brackets on the shoe uppers, wrap the nylon load-bearing straps around the hips, hang the hooks on the waist rings, and adjust Good tightness, the nylon strap can bear the weight of the seat when squatting down, and the wearing is completed. When standing up, the pedal rotating plate is stepped on flat, the ratchet is pulled by the traction wire rope to reset the ejector rod, and the ratchet is separated fro...

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PUM

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Abstract

The invention discloses unpowered walking assisting mechanical legs capable of achieving squatting rest. The legs are simple and light in structure, free of external power such as a battery, capable of being used for a long time, suitable for old people and people with leg diseases, capable of relieving the pressure of knee loads due to the fact that the mechanical legs have the supporting capacity when walking and going upstairs, and capable of achieving the assisting effect; a waistline bearing movable ring is provided with a triangular nylon pocket belt according to the hip shape to form the effect of a seat, so that people can squat and have a rest at any time in use; and the legs are also suitable for people needing to stand for a long time, such as automobile assembly line operatorsand medical staff standing on an operating table for a long time, and people can have a rest by means of supporting of the mechanical legs during standing, so that physical output is reduced, and working efficiency is greatly improved.

Description

Technical field: [0001] The invention belongs to the field of medical rehabilitation, and in particular relates to a walking-assisted mechanical leg that can squat and rest without power. Background technique: [0002] At present, with the development of science and technology, various exoskeleton robots and various types of exoskeleton mechanical legs that can solve the inconvenience of human walking are emerging, which can improve the motor function of the elderly or patients with leg diseases and improve people's quality of life. Although the current exoskeleton robots are powerful, they are complex in structure and bulky. They use various sensors, motors, levers, electric devices, and various mechanical conversion devices to be controlled by microcomputers. They need batteries as energy sources. Due to limitations, it cannot be used for a long time, and the overall device is expensive, so most of the situations are only used as scientific research, and cannot be satisfie...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B25J9/00B25J17/02
CPCB25J9/0006B25J17/0258
Inventor 赵光华
Owner 赵光华
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