A gravity balancing assistant arm design in 3-D for rehabilitation of stroke patients

A gravity balancing assistant arm design in 3-D is a mechanical mechanism consisted of springs, rigid rods, joints and sliders, which can be modified to the geometry and inertia of the arm of stroke patients. This mechanism is designed without any controllers and motors, based solely on mechanical p...

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Main Authors: Shu Jianbo, Tang Xuehua, Niu Fan, Xia Changchun, Shi Congcong
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:MATEC Web of Conferences
Subjects:
3-d
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2021/05/matecconf_cscns20_02016.pdf
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spelling doaj-f4ec496a706b438697f2919a88bccad62021-02-18T10:45:17ZengEDP SciencesMATEC Web of Conferences2261-236X2021-01-013360201610.1051/matecconf/202133602016matecconf_cscns20_02016A gravity balancing assistant arm design in 3-D for rehabilitation of stroke patientsShu Jianbo0Tang Xuehua1Niu Fan2Xia Changchun3Shi Congcong4Mechanics Institute, Shanghai dianji universitySchool of design and art, Shanghai dianji universityMechanics Institute, Shanghai dianji universitySchool of Business, Shanghai Dianji UniversityMechanics Institute, Shanghai dianji universityA gravity balancing assistant arm design in 3-D is a mechanical mechanism consisted of springs, rigid rods, joints and sliders, which can be modified to the geometry and inertia of the arm of stroke patients. This mechanism is designed without any controllers and motors, based solely on mechanical principles, to achieve a relative balance of gravitational potential energy and elastic potential energy, thereby reducing the burden on the arm of a stroke patient to facilitate rehabilitation. To achieve this function, first, the center of gravity of the patient’s arm will be positioned, and then the mounting position of the spring on the assistant arm will be determined. In this paper, the following objectives will be achieved: (i) the calculation of the gravitational potential energy and the elastic potential energy in the mechanism (ii) the simplification of the potential energy equation and the elimination of the coefficient of the items related to the angle. (iii) The comparison between 2-D and 3-D cases of the mechanism. (iv) The motion process of simulating the mechanism using MATLAB (v) Using MATLAB to create the energy plots (vi) Using SolidWorks to construct the prototype of the mechanism (vii) Describe the practical application and future extensions of this mechanism.https://www.matec-conferences.org/articles/matecconf/pdf/2021/05/matecconf_cscns20_02016.pdfgravity balancingassistant arm3-dmechanical mechanism
collection DOAJ
language English
format Article
sources DOAJ
author Shu Jianbo
Tang Xuehua
Niu Fan
Xia Changchun
Shi Congcong
spellingShingle Shu Jianbo
Tang Xuehua
Niu Fan
Xia Changchun
Shi Congcong
A gravity balancing assistant arm design in 3-D for rehabilitation of stroke patients
MATEC Web of Conferences
gravity balancing
assistant arm
3-d
mechanical mechanism
author_facet Shu Jianbo
Tang Xuehua
Niu Fan
Xia Changchun
Shi Congcong
author_sort Shu Jianbo
title A gravity balancing assistant arm design in 3-D for rehabilitation of stroke patients
title_short A gravity balancing assistant arm design in 3-D for rehabilitation of stroke patients
title_full A gravity balancing assistant arm design in 3-D for rehabilitation of stroke patients
title_fullStr A gravity balancing assistant arm design in 3-D for rehabilitation of stroke patients
title_full_unstemmed A gravity balancing assistant arm design in 3-D for rehabilitation of stroke patients
title_sort gravity balancing assistant arm design in 3-d for rehabilitation of stroke patients
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2021-01-01
description A gravity balancing assistant arm design in 3-D is a mechanical mechanism consisted of springs, rigid rods, joints and sliders, which can be modified to the geometry and inertia of the arm of stroke patients. This mechanism is designed without any controllers and motors, based solely on mechanical principles, to achieve a relative balance of gravitational potential energy and elastic potential energy, thereby reducing the burden on the arm of a stroke patient to facilitate rehabilitation. To achieve this function, first, the center of gravity of the patient’s arm will be positioned, and then the mounting position of the spring on the assistant arm will be determined. In this paper, the following objectives will be achieved: (i) the calculation of the gravitational potential energy and the elastic potential energy in the mechanism (ii) the simplification of the potential energy equation and the elimination of the coefficient of the items related to the angle. (iii) The comparison between 2-D and 3-D cases of the mechanism. (iv) The motion process of simulating the mechanism using MATLAB (v) Using MATLAB to create the energy plots (vi) Using SolidWorks to construct the prototype of the mechanism (vii) Describe the practical application and future extensions of this mechanism.
topic gravity balancing
assistant arm
3-d
mechanical mechanism
url https://www.matec-conferences.org/articles/matecconf/pdf/2021/05/matecconf_cscns20_02016.pdf
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