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首页> 外文期刊>Measurement Science & Technology >Designing tolerance for the misalignment of inner and outer yoke centers in the permanent magnet for watt or joule balance
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Designing tolerance for the misalignment of inner and outer yoke centers in the permanent magnet for watt or joule balance

机译:设计永磁体内部和外部磁轭中心未对准的公差,以实现瓦特或焦耳平衡

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摘要

A permanent magnet with soft magnetic yokes has been widely adopted in the watt or joule balance for precisely measuring the Planck constant. A circularly symmetric structure is conducive to the alignment of the coil but is also an enormous challenge for machining and assembly. In this paper, we mathematically prove that one of the mechanical requirements-the misalignment of the inner and outer yoke centers-can be compensated by horizontally moving the coil in a 2D magnetic plane and the compensating displacement is analytically calculated. There is a strong linear relationship between the compensating displacement and misalignment of yoke centers. The scaling factor is obtained by reasonable simplification. Then, the method for designing the tolerance for the misalignment of yoke centers is proposed. Although a new equilibrium position can be found when the inner and outer yokes are not concentrically aligned, torque is generated when the coil radially expands with heat and the torque is proportional to the increment of the radius of the coil and the misalignment of the yoke centers.
机译:带有软磁轭的永磁体已被广泛用于瓦特或焦耳平衡中,以精确测量普朗克常数。圆形对称结构有利于线圈的对准,但是对于机械加工和组装也是巨大的挑战。在本文中,我们通过数学方法证明了,机械要求之一(内和外轭铁中心的不对准)可以通过在2D磁平面中水平移动线圈来补偿,并且可以通过分析计算出补偿位移。补偿位移和轭中心未对准之间存在很强的线性关系。通过合理简化获得比例因子。然后,提出了一种设计磁轭中心偏心公差的方法。尽管当内磁轭和外磁轭没有同心对齐时可以找到一个新的平衡位置,但是当线圈受热径向膨胀时,会产生转矩,并且该转矩与线圈半径的增量和磁轭中心的未对准成比例。 。

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