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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >A Novel Passive Quasi-Zero Stiffness Isolator for Ultra-Precision Measurement Systems
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A Novel Passive Quasi-Zero Stiffness Isolator for Ultra-Precision Measurement Systems

机译:用于超精密测量系统的新型无源准零刚度隔离器

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摘要

In the paper, a novel passive vibration isolator is proposed for an ultra-precision sensing system, utilizing a quasi-zero stiffness (QZS) mechanism. The QZS mechanism implements the high static low dynamic stiffness, which effectively reduces the dynamic force transmission while minimizing the static deflection under the natural frequency of conventional passive isolator. Furthermore, it does not need any electric components; the mechanism is suitable for the ultra-precision sensing systems measuring extremely weak electromagnetic fields. However, nonlinear stiffness and hysteresis caused from the negative stiffness elements degrade the system performance. A vertical spring with a pre-tension and eight horizontal plate springs with nonlinear buckling characteristics constitute the proposed system to solve these problems. The mathematical model compares the negative stiffness design with previous QZS research. The buckled plate spring with ball joint design reduces stiffness variation. Transmissibility of the proposed system for low frequency range is investigated experimentally.
机译:本文提出了一种用于超精密感测系统的新型无源隔振器,利用准零刚度(QZS)机构。 QZS机构实现高静态的低动态刚度,这有效地降低了动态力传输,同时最小化了传统被动隔离器的固有频率下的静态偏转。此外,它不需要任何电气部件;该机构适用于测量极弱电磁场的超精密感测系统。然而,由负刚度元素引起的非线性刚度和滞后降低了系统性能。具有预张力的垂直弹簧和具有非线性屈曲特性的八个水平板簧构成了解决这些问题的所提出的系统。数学模型将负刚度设计与先前的QZS研究进行比较。带有球形接头设计的弯曲板簧会减少刚度变化。实验研究了低频范围的所提出的系统的传感性。

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