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The Fractal Hand-II: Reviving a Classic Mechanism for Contemporary Grasping Challenges
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This paper, and its companion, propose a new fractal robotic gripper, drawing inspiration from the century-old Fractal Vise. The unusual synergistic properties allow it to passively conform to diverse objects using only one actuator. Designed to be easily integrated with prevailing parallel jaw grippers, it alleviates the complexities tied to perception and grasp planning, especially when dealing with unpredictable object poses and geometries. We build on the foundational principles of the Fractal Vise to a broader class of gripping mechanisms, and also address the limitations that had led to its obscurity. Two Fractal Fingers, coupled by a closing actuator, can form an adaptive and synergistic Fractal Hand. We articulate a design methodology for low cost, easy to fabricate, large workspace, and compliant Fractal Fingers. The companion paper delves into the kinematics and grasping properties of a specific class of Fractal Fingers and Hands.
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Cited by 1 Pith paper
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Lasso Gripper: A String Shooting-Retracting Mechanism for Shape-Adaptive Grasping
A motorized string launcher forms an adjustable lasso loop that can grasp large, fragile, and moving objects, and a fitted drag-tension model describes the loop shape and predicts an extended workspace for a robotic arm.
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