期刊論文
學年 | 109 |
---|---|
學期 | 1 |
出版(發表)日期 | 2020-10-14 |
作品名稱 | Contact Force Analysis on Two-Fingered Robot Grasping |
作品名稱(其他語言) | |
著者 | Jiun-Ru Chen; Wei-En Chen; CH Liu; Yin-Tien Wang; CB Lin; Guan-Chen Chen |
單位 | |
出版者 | |
著錄名稱、卷期、頁數 | Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-Body Dynamics 235(2) |
摘要 | A procedure for inverse kinetic analysis on two hard fingers grasping a hard sphere is proposed in this study. Contact forces may be found for given linear and angular accelerations of a spherical body. Elastic force-displacement relations predicted by Hertz contact theory are used to remove the indeterminancy produced by rigid body modelling. Two types of inverse kinetic analysis may be dealt with. Firstly, as the fingers impose a given tightening displacement on the body, and carry it to move with known accelerations, corresponding grasping forces may be determined by a numerical procedure. In this procedure one contact force may be chosen as the principal unknown, and all other contact forces are expressed in terms of this force. The numerical procedure is hence very efficient since it deals with a problem with only one unknown. The solution procedure eliminates slipping thus only nonslip solutions, if they exist, are found. Secondly, when the body is moving with known accelerations, if the grasping direction of the two fingers is also known, then the minimum tightening displacement required for non-sliding grasping may be obtained in closed form. In short, the proposed technique deals with a grasping system that has accelerations, and in this study the authors show that indeterminancy may be used to reduce the complexity of the problem. |
關鍵字 | Contact force analysis;inverse kinetics;tightening displacement;Coulomb’s law of friction;mechanics of manipulators |
語言 | en |
ISSN | 2041-3068 |
期刊性質 | 國外 |
收錄於 | SCI EI |
產學合作 | |
通訊作者 | C.H. Liu |
審稿制度 | 是 |
國別 | GBR |
公開徵稿 | |
出版型式 | ,電子版 |
相關連結 |
機構典藏連結 ( http://tkuir.lib.tku.edu.tw:8080/dspace/handle/987654321/121777 ) |