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Force Sensor Characterization Under Sinusoidal Excitations

机译:正弦激励下的力传感器特性

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摘要

The aim in the current work is the development of a method to characterize force sensors under sinusoidal excitations using a primary standard as the source of traceability. During this work the influence factors have been studied and a method to minimise their contributions, as well as the corrections to be performed under dynamic conditions have been established. These results will allow the realization of an adequate characterization of force sensors under sinusoidal excitations, which will be essential for its further proper use under dynamic conditions. The traceability of the sensor characterization is based in the direct definition of force as mass multiplied by acceleration. To do so, the sensor is loaded with different calibrated loads and is maintained under different sinusoidal accelerations by means of a vibration shaker system that is able to generate accelerations up to 100 m/s2 with frequencies from 5 Hz up to 2400 Hz. The acceleration is measured by means of a laser vibrometer with traceability to the units of time and length. A multiple channel data acquisition system is also required to simultaneously acquire the electrical output signals of the involved instrument in real time.
机译:当前工作的目的是开发一种方法,该方法使用主要标准作为可追溯性源来表征正弦激励下的力传感器。在这项工作中,已经研究了影响因素,并建立了一种将影响最小化的方法,以及在动态条件下进行的校正。这些结果将使正弦激励下的力传感器具有足够的特性,这对于在动态条件下进一步正确使用至关重要。传感器特性的可追溯性是直接定义为力乘以质量乘以加速度。为此,传感器要加载不同的标定负载,并通过振动筛系统保持在不同的正弦加速度下,该振动筛系统能够以高达5的频率产生高达100 m / s 2 的加速度。 Hz高达2400 Hz。加速度通过激光振动计测量,可追溯到时间和长度的单位。还需要一个多通道数据采集系统来同时实时采集所涉及仪器的电输出信号。

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