用于振动分析教学的开源数据采集平台

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Luis G. Trujillo-Franco, Hugo F. Abundis-Fong, Juan C. Marin-Soriano
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引用次数: 0

摘要

实际的开放源码硬件和软件工具为开发教学工具提供了丰富的选择,可以改善工程学各个领域的教学过程。利用低成本传感器和免费的软件开发工具,可以创建教学界面和平台,提供非常可接受的性能和精度,帮助学生熟悉专业设备的基本原理。在这项工作中,我们提出了一种低成本数据采集系统,专门用于改善实验力学的学习体验。为实现这一目的,我们使用开源软件和硬件工具创建了一个可完全配置不同传感器的教学设备。我们介绍了两个案例研究的实验结果:使用加速度信号对转子轴承系统进行振动分析,以及使用木琴和低成本麦克风进行自由振动研究。所提议的平台可帮助作者补充为机械工程专业学生开设的为期 4 个月的 "振动 "课程。参与研究的学生对振动理论和使用有限元技术进行模态分析的理解能力有所提高。学生们的反馈表明,84% 的参与者都有很强的动力去学习更多有关振动和实验力学的知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An open-source data acquisition platform for teaching vibration analysis

The actual open-source hardware and software tools offer a rich set of options for developing didactic tools to improve the teaching–learning process of various areas of engineering. Using low-cost sensors, in conjunction with free software development tools, allows the creation of educational interfaces and platforms offering very acceptable performance and precision that help the student to become familiar with the basic principles that govern professional equipment. In this work, we propose a low-cost system for data acquisition specially designed to improve the learning experience of experimental mechanics. To achieve this purpose, we use open-source software and hardware tools to create a piece of educational equipment that is fully configurable for different sensors. We present the experimental results of two case studies: the vibration analysis of a rotor-bearing system using acceleration signals and a free-vibration study using a xylophone and a low-cost microphone. The proposed platform helps authors to complement a 4-month course named Vibration, intended for mechanical engineering students. The students who participated in the study demonstrated an improvement in their comprehension of vibration theory and modal analysis using the finite element technique. The feedback from students indicates that 84% of the participants are highly motivated to learn more about vibrations and experimental mechanics.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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