使用高度柔性电介质的3D打印电容剪切和法向力传感器

Martijn Schouten, C. Spaan, D. Kosmas, R. Sanders, G. Krijnen
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引用次数: 5

摘要

我们研究了一种完全3D打印的电容式传感器。使用4个可变电容器的组合,它可以同时测量剪切力和法向力。为了指导设计和分析,采用有限元模拟和解析模型对传感器的行为进行了建模。传感器在机械测试装置中通过线性执行器进行测试,从不同角度加载传感器的力。该传感器显示,它能够测量法向和剪切力分量,最大本底噪声为1.5 N。
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3D printed capacitive shear and normal force sensor using a highly flexible dielectric
We have investigated an entirely 3D printed capacitive sensor. Using a combination of 4 variable capacitors it allows to simultaneously measure shear and normal forces. To guide the design and analysis the behavior of the sensor has been modeled using both finite element method (FEM) simulations and an analytical model. The sensor was tested in a mechanical test setup by means of a linear actuator, loading the sensor with a force from various angles. The sensor showed it was able to measure both the normal and shear force components with a maximum noise floor of 1.5 N.
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