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Design and Test of a New Inductive Force Sensor

机译:新型感应力传感器的设计与测试

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摘要

The currently accepted interval of weekly cast changes in the treatment of clubfeet seems unsubstantiated. A force sensor is needed to determine the adaptation rate of a clubfoot to establish what cast change interval would be most effective and efficient. We developed a force sensor based on the principle that the resonance frequency of an LC-tank changes when a metal target is brought in close proximity. A thin rubber ring between the LC-tank and the metal target transformed this proximity sensor into a force sensor. With a static load test and an incremental load test, the performance of the constructed force sensors was characterized. The custom-made sensor showed excellent sensitivity ((1.7 ± 0.8 × 105) counts/N), resolution ((0.15 ± 0.06) mN), and accuracy ((3.5 ± 3.0) %) for the application. The observed drift was (2.1 ± 0.7) %/log10(h), which is lower than other thin force sensors. Preliminary results of measurements in the treatment of Dupuytren fingers and clubfeet show good functioning for long-term force measurements.
机译:目前公认的俱乐部脚治疗的每周换班间隔似乎没有根据。需要一个力传感器来确定马蹄内翻足的适应率,以建立最有效和有效的石膏更换间隔。我们基于这样的原理开发了一种力传感器:当金属靶靠近时,LC储罐的共振频率会发生变化。 LC储罐和金属靶之间的薄橡胶圈将这个接近传感器转变为力传感器。通过静态载荷测试和增量载荷测试,对所构造的力传感器的性能进行了表征。定制传感器显示出极好的灵敏度((1.7±0.8×10 5 )计数/ N),分辨率((0.15±0.06)mN)和精度((3.5±3.0)%)应用程序。观察到的漂移为(2.1±0.7)%/ log10(h),低于其他薄力传感器。在Dupuytren手指和手足治疗中的初步测量结果显示,长期力测量具有良好的功能。

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