基于智能手机的教育实践作品:以机械振动实践作品为例

Abdelbaset Ait Ben Ahmed, A. Touache, A. El Hakimi, A. Chamat
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引用次数: 2

摘要

本文介绍了三个使用智能手机进行机械振动操作的案例,旨在将智能手机应用到实际教育工作中。在这篇贡献中,我们专注于使用集成到智能手机中的加速度传感器来捕捉振动现象的振动信号,如摆,梁振动,旋转机器。在第一种情况下,单摆试验的主要目标是确定振荡周期(T),然后确定由重力引起的加速度(g)。在第二个案例研究中,梁振动试验的目标是确定从对数衰减(δ)的阻尼比(ζ),然后是固有频率(ωn)两种不同的梁具有不同的刚度(铝和黄铜梁)。最后,最后一项研究的目的是基于振动信号的幅值和相移来识别旋转机械不平衡缺陷的振动特征。实验结果表明,与理论结果相比,智能手机呈现出可接受的结果,这支持了在教育中使用智能手机实施各种实验工作的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smartphones-based in educational practice works: a case study of mechanical vibration practical works
This paper presents three case studies of mechanical vibration manipulation using the smartphone, in purpose to exploit the smartphones in practical educational works. In this contribution, we focus on the use of the acceleration sensor integrated into the smartphones to capture the vibration signal of the vibratory phenomena such as the pendulum, beam vibration, rotating machines. In the first case, the main objective of the simple pendulum test is to determine the oscillation period (T), then the determination of the acceleration due by gravity (g). In the second case study, the objective of the beam vibration test is to determine the damping ratio (ζ) from the logarithmic decay (δ), then the natural frequency (ωn) of two different beams with different stiffness (aluminum, and brass beam). In the end, the purpose of the last study is to identify the vibration signature of the unbalance defect in rotating machinery, based on the amplitude and the phase shift of the vibration signal. The experimental results indicate that the smartphone presents acceptable results compared to the theoretical results, which support the validity of using smartphones in education to implement various experimental works.
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