软性锥形机械手可自适应不同容器,高效舀取粉末材料
SCU-Hand: Soft Conical Universal Robotic Hand for Scooping Granular Media from Containers of Various Sizes
- 采用柔性锥形结构通过形变适配多种容器
- 在67-110mm容器中舀取成功率超95%,效率比商用工具高20%
- 无需复杂传感或算法,适合实验室自动化场景
小规模材料科学实验的自动化面临实验装置异质性强的挑战。本研究提出SCU-Hand(软性锥形通用机械手),一种新型末端执行器,可借助机械臂自动从不同尺寸容器中舀取粉末样品。该装置采用柔性锥形结构,通过形变自适应不同容器几何形状,无需复杂力传感或基于机器学习的控制方法即可保持稳定接触。其可重构机制支持尺寸调节,实现对多种容器类型的高效舀取。结合软体机器人原理与片材变形设计,该末端执行器兼具高灵活性与足够刚性以有效操控粉末。文中详细阐述了设计原理、制造流程及实验验证结果。实验表明,该装置舀取容量比商用工具高出约20%,在67–110 mm容器范围内舀取性能超过95%。本研究为实验室自动化提供了低成本、易部署的解决方案,适用于材料合成与表征等任务。
原文摘要 · Abstract (English)
Automating small-scale experiments in materials science presents challenges due to the heterogeneous nature of experimental setups. This study introduces the SCU-Hand (Soft Conical Universal Robot Hand), a novel end-effector designed to automate the task of scooping powdered samples from various container sizes using a robotic arm. The SCU-Hand employs a flexible, conical structure that adapts to different container geometries through deformation, maintaining consistent contact without complex force sensing or machine learning-based control methods. Its reconfigurable mechanism allows for size adjustment, enabling efficient scooping from diverse container types. By combining soft robotics principles with a sheet-morphing design, our end-effector achieves high flexibility while retaining the necessary stiffness for effective powder manipulation. We detail the design principles, fabrication process, and experimental validation of the SCU-Hand. Experimental validation showed that the scooping capacity is about 20% higher than that of a commercial tool, with a scooping performance of more than 95% for containers of sizes between 67 mm to 110 mm. This research contributes to laboratory automation by offering a cost-effective, easily implementable solution for automating tasks such as materials synthesis and characterization processes.
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