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Finite element method stiffness analysis of a novel telemanipulator for minimally invasive surgery

Roman Trochimczuk, Andrzej Łukaszewicz, Tadeusz Mikołajczyk, Francesco Aggogeri, Alberto Borboni

Year
2019
Citations
33

Abstract

This paper presents the concept of a novel telemanipulator for minimally invasive surgery, along with numerical analysis to validate the main system performance. The proposed kinematic structure consists of a passive and an active module. The passive module is similar to the Selective Compliance Assembly Robot Arm - SCARA robot. The active module is based on a parallelogram mechanism. The results of the numerical study are discussed, focusing on the influence of geometry parameters of the kinematic chain on the displacement accuracy of the end-effector. In particular, the paper deals with the identification of the main factors that impact the position accuracy of the robot.

Keywords

ParallelogramKinematicsSCARASimulationDisplacement (psychology)StiffnessEngineeringInvasive surgeryRobotControl theory (sociology)

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