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Bochao Song

2 accepted papers

2026

A Dual-Adhesion-Enhanced Soft Gripper with Microwedge Adhesives and SMA-Driven Microspines

ICRA 2026poster

,软握把因其适应性和安全性而备受推崇,但 它们固有的柔软性常常导致在重物下抓握失败 很多。大多数增强附着力的握把依赖单一附着 针对光滑或粗糙表面量身定制的策略。蜥蜴, 但在非结构化环境中,有效导航时,通过以下方式 基于 地表状况。灵感来自混合粘附策略 壁虎和变色龙,本研究展示了一种仿生的软抓握器 它集成了微楔干胶和SMA驱动的微棘。 微楔胶提供可控的附着力,保证平滑 而SMA驱动的微棘则延伸用于粗糙表面 粘附和回放以避免干扰。优化模型为 开发目的是确定最优链路维度,提升抓取能力 性能方面,力和半径。实验结果 各种表面验证了其有效

Cited by 0SourceScholar
2025

A Dual-Adhesion-Enhanced Soft Gripper With Microwedge Adhesives and SMA-Driven Microspines

RA-L 2025

Soft grippers are highly valued for their adaptability and safety, but their inherent softness often leads to grasping failure under heavy loads. Most adhesion-enhanced grippers rely on single-adhesion strategies tailored for either smooth or rough surfaces. Lizards, however, effectively navigate in

Cited by 0SourceScholar