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.
DenseTact-Mini: An Optical Tactile Sensor for Grasping Multi-Scale Objects From Flat Surfaces
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abstract
Dexterous manipulation, especially of small daily objects, continues to pose complex challenges in robotics. This paper introduces the DenseTact-Mini, an optical tactile sensor with a soft, rounded, smooth gel surface and compact design equipped with a synthetic fingernail. We propose three distinct grasping strategies: tap grasping using adhesion forces such as electrostatic and van der Waals, fingernail grasping leveraging rolling/sliding contact between the object and fingernail, and fingertip grasping with two soft fingertips. Through comprehensive evaluations, the DenseTact-Mini demonstrates a lifting success rate exceeding 90.2% when grasping various objects, spanning items from 1mm basil seeds and small paperclips to items nearly 15mm. This work demonstrates the potential of soft optical tactile sensors for dexterous manipulation and grasping.
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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.