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首页> 外文期刊>Journal of Micromechanics and Microengineering >Force-controlled automatic microassembly of tissue engineering scaffolds
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Force-controlled automatic microassembly of tissue engineering scaffolds

机译:力控制组织工程支架的自动微装配

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摘要

This paper presents an automated system for 3D assembly of tissue engineering (TE) scaffolds made from biocompatible microscopic building blocks with relatively large fabrication error. It focuses on the pin-into-hole force control developed for this demanding microassembly task. A beam-like gripper with integrated force sensing at a 3 mN resolution with a 500 mN measuring range is designed, and is used to implement an admittance force-controlled insertion using commercial precision stages. Visual-based alignment followed by an insertion is complemented by a haptic exploration strategy using force and position information. The system demonstrates fully automated construction of TE scaffolds with 50 microparts whose dimension error is larger than 5%.
机译:本文提出了一种由3D组装的组织工程(TE)支架的自动化系统,该支架由具有较大制造误差的生物相容性微观构件制成。它着重于为完成这项艰巨的微型装配任务而开发的销入孔力控制。设计了一种具有3 mN分辨率,测量范围为500 mN的集成力感测的梁状夹持器,该夹持器用于通过商用精密平台实现导纳力控制的插入。基于视觉的对齐方式,然后进行插入,并通过使用力和位置信息的触觉探索策略进行补充。该系统演示了具有50个微零件的TE支架的全自动构造,其尺寸误差大于5%。

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