Design and Trajectory Optimization of Traffic Cone Recovery Manipulator based on Groove Cam Joint

Based on a dual parallel four-bar mechanism and gear joint series-type traffic cone recovery manipulator, which has the problem of low recovery efficiency and difficult to achieve optimal motion trajectory of fixed gear ratio joints. The grooved cam joint is used for improving design. Firstly, based...

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Main Authors: Yushan Li, Hairong Guo, Xiangyuan Hu, Lü Antao
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2019-07-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2019.07.027
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author Yushan Li
Hairong Guo
Xiangyuan Hu
Lü Antao
author_facet Yushan Li
Hairong Guo
Xiangyuan Hu
Lü Antao
author_sort Yushan Li
collection DOAJ
description Based on a dual parallel four-bar mechanism and gear joint series-type traffic cone recovery manipulator, which has the problem of low recovery efficiency and difficult to achieve optimal motion trajectory of fixed gear ratio joints. The grooved cam joint is used for improving design. Firstly, based on the motion analysis of the manipulator, the minimum main arm angle is taken as the optimization target, the constraint condition is determined according to the traffic cone motion requirement, the motion trajectory optimization model is established, and the optimal motion trajectory of the manipulator is obtained. Then, according to the optimized motion trajectory, the theoretical contour of the grooved cam is solved by analytical method, and then the actual contour of the grooved cam is obtained. Finally, the simulation is verified by Adams. The results show that the main arm angle of the traffic cone recovery robot arm is reduced by 8.1%, the working stroke of the hydraulic cylinder is shortened, the force of the hydraulic cylinder is improved, and the working efficiency of the traffic cone recovery robot arm is improved.
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id doaj-art-a8a6b16ef9dc4ef6b4e9df969998ceac
institution Kabale University
issn 1004-2539
language zho
publishDate 2019-07-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-a8a6b16ef9dc4ef6b4e9df969998ceac2025-01-10T13:58:41ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392019-07-014315115530649092Design and Trajectory Optimization of Traffic Cone Recovery Manipulator based on Groove Cam JointYushan LiHairong GuoXiangyuan HuLü AntaoBased on a dual parallel four-bar mechanism and gear joint series-type traffic cone recovery manipulator, which has the problem of low recovery efficiency and difficult to achieve optimal motion trajectory of fixed gear ratio joints. The grooved cam joint is used for improving design. Firstly, based on the motion analysis of the manipulator, the minimum main arm angle is taken as the optimization target, the constraint condition is determined according to the traffic cone motion requirement, the motion trajectory optimization model is established, and the optimal motion trajectory of the manipulator is obtained. Then, according to the optimized motion trajectory, the theoretical contour of the grooved cam is solved by analytical method, and then the actual contour of the grooved cam is obtained. Finally, the simulation is verified by Adams. The results show that the main arm angle of the traffic cone recovery robot arm is reduced by 8.1%, the working stroke of the hydraulic cylinder is shortened, the force of the hydraulic cylinder is improved, and the working efficiency of the traffic cone recovery robot arm is improved.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2019.07.027Traffic cone recycling manipulatorKinematic analysisDesign of groove camTrajectory optimization
spellingShingle Yushan Li
Hairong Guo
Xiangyuan Hu
Lü Antao
Design and Trajectory Optimization of Traffic Cone Recovery Manipulator based on Groove Cam Joint
Jixie chuandong
Traffic cone recycling manipulator
Kinematic analysis
Design of groove cam
Trajectory optimization
title Design and Trajectory Optimization of Traffic Cone Recovery Manipulator based on Groove Cam Joint
title_full Design and Trajectory Optimization of Traffic Cone Recovery Manipulator based on Groove Cam Joint
title_fullStr Design and Trajectory Optimization of Traffic Cone Recovery Manipulator based on Groove Cam Joint
title_full_unstemmed Design and Trajectory Optimization of Traffic Cone Recovery Manipulator based on Groove Cam Joint
title_short Design and Trajectory Optimization of Traffic Cone Recovery Manipulator based on Groove Cam Joint
title_sort design and trajectory optimization of traffic cone recovery manipulator based on groove cam joint
topic Traffic cone recycling manipulator
Kinematic analysis
Design of groove cam
Trajectory optimization
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2019.07.027
work_keys_str_mv AT yushanli designandtrajectoryoptimizationoftrafficconerecoverymanipulatorbasedongroovecamjoint
AT hairongguo designandtrajectoryoptimizationoftrafficconerecoverymanipulatorbasedongroovecamjoint
AT xiangyuanhu designandtrajectoryoptimizationoftrafficconerecoverymanipulatorbasedongroovecamjoint
AT luantao designandtrajectoryoptimizationoftrafficconerecoverymanipulatorbasedongroovecamjoint