Microassembly using a cluster of paramagnetic microparticles

I. Khalil, F. Brink, O. Sardan, S. Misra
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引用次数: 23

Abstract

We use a cluster of paramagnetic microparticles to carry out a wireless two-dimensional microassembly operation. A magnetic-based manipulation system is used to control the motion of the cluster under the influence of the applied magnetic fields. Wireless motion control of the cluster is implemented at an average velocity and maximum position tracking error of 144 μm/s and 50 μm, respectively. This control is used to achieve point-to-point positioning of the cluster, manipulation of microobjects, and assembly of microobjects into a microstructure. The control system achieves stable positioning of the cluster, while simultaneously compensating for the planar drag forces on the cluster and the microobject. The presented magnetic-based microassembly technique allows for the selective pushing and pulling of microobjects with specific geometries towards their destinations inside a microstructure in an execution time of 18 s, within a workspace of 1.8 mm × 2.4 mm.
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使用顺磁性微粒团的微组装
我们使用一组顺磁微粒来进行无线二维微组装操作。在外加磁场的作用下,采用基于磁的操纵系统控制团簇的运动。集群无线运动控制的平均速度和最大位置跟踪误差分别为144 μm/s和50 μm。这种控制被用来实现集群的点对点定位,微物体的操纵,以及将微物体组装成微观结构。控制系统实现了集群的稳定定位,同时补偿了集群和微目标的平面阻力。所提出的基于磁性的微组装技术允许在1.8 mm × 2.4 mm的工作空间内,在18 s的执行时间内,将具有特定几何形状的微物体选择性地推向其微观结构内的目的地。
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