基于几何光学位移传感器的力传感器

Hagen Broistedt, M. Petz, R. Tutsch
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引用次数: 6

摘要

目前绝大多数力的测量方法都是通过确定弹性体的变形来测量有效力。在这个细分市场中,领先的传感器技术是电阻应变计。由于测量原理的原因,污损计存在一定的缺陷。例如,测量受到所谓的蠕变和弹性元件的局部弱化是必要的,以产生足够的局部应变。这也是该技术在动态负载测量方面受到限制的一个原因。为了克服这些局限性,本文提出了一种新型的非接触式工作几何光学位移传感器。利用光学杠杆原理达到测量弹性体力致变形所需的高位置分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Force transducer based on a geometric-optical displacement sensor
The vast majority of current force measurement methods determine the deformation of an elastic body to measure the effective force. The leading sensor technology in this market segment is the resistance strain gauge. Because of the measurement principle the stain gauge has some drawbacks. For instance, the measurement suffers from the so-called creeping and a local weakening of the elastic element is necessary to create sufficient local strains. This is also a reason for this technique being limited with respect to the measurement of dynamic loads. In order to overcome these limitations, in this paper a new contactless working geometric-optical displacement transducer is proposed. An optical lever principle is used to reach the required high position resolution to measure the force-induced deformation of an elastic body.
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