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Deflection modeling of permanent magnet spherical chains in the presence of external magnetic fields

机译:外部磁场作用下永磁球形链的变形建模

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摘要

This work examines the interaction of permanently magnetised spheres in the presence of external magnetic fields at the millimetre scale. Static chain formation and deflection models are described for N spheres in the presence of an external magnetic field. Analytical models are presented for the two sphere case by neglecting the effects of magnetocrystalline anisotropy while details of a numerical approach to solve a chain of N spheres are shown. The model is experimentally validated using chain deflections in 4.5 mm diameter spheres in groups of 2, 3 and 4 magnets in the presence of uniform magnetic fields, neglecting gravitational effects, with good agreement between the theoretical model and experimental results. This spherical chain structure could be used as an end effector for catheters as a deflection mechanism for magnetic guidance. The spherical point contacts result in large deflections for navigation around tight corners in endoluminal minimally invasive clinical applications.
机译:这项工作研究了存在毫米级外部磁场时永久磁化球的相互作用。描述了在存在外部磁场的情况下针对N个球的静态链形成和偏转模型。通过忽略磁晶各向异性的影响,给出了两个球体情况的分析模型,同时显示了求解N个球体链的数值方法的细节。该模型通过在2个,3个和4个磁体组中直径为4.5 mm的球体中存在均匀磁场,忽略引力效应的情况下使用链挠度在实验中进行了验证,理论模型与实验结果之间具有很好的一致性。这种球形链结构可以用作导管的末端执行器,作为磁导的偏转机构。在腔内微创临床应用中,球形点接触会导致较大的偏转,以便在狭窄的角附近导航。

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