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Principles of a new generation of simplified and accurate watt balances

机译:新一代简化和精确的瓦特平衡原理

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摘要

It has been known for some time that the watt balance, which is based on the virtual work principle, is insensitive to some misalignments which would, at first sight, be expected to produce significant errors. In this paper we show that, in particular circumstances, this insensitivity applies to a whole range of misalignments. This effect can be exploited to design a watt balance, with a constrained coil motion, which offers advantages over conventional designs. We present three such new designs: one is based on a conventional balance and the other two are based on strip hinges, which are known to have excellent properties when measuring small force differences and with the production of precise linear movements having little motion in the other five degrees of freedom. A constrained design of this kind would have advantages for reproducing the forthcoming SI definition of mass in the range from milligrams to kilograms, whenever and wherever desired, and might well do so with improved accuracy.
机译:一段时间以来,人们已经知道,基于虚拟功原理的瓦特平衡对某些不对准不敏感,这些不对准乍一看会产生很大的误差。在本文中,我们表明,在特定情况下,这种不敏感性适用于整个未对准范围。可以利用这种效果来设计具有受限制的线圈运动的瓦特平衡,这比常规设计具有优势。我们提出了三种这样的新设计:一种基于常规摆轮,另一种基于条形铰链,众所周知,这种条形铰链在测量较小的力差并产生精确的线性运动而运动很少时具有出色的性能。五个自由度。这种受约束的设计将有利于随时随地再现即将出现的从毫克到千克的SI质量定义,并且可能会提高精度。

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