首页> 外文期刊>International Journal of Mechanical Engineering Education >Detection of higher harmonics in a slider crank mechanism of variable obliquity ratio and its use in the determination of displacement transmissibility
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Detection of higher harmonics in a slider crank mechanism of variable obliquity ratio and its use in the determination of displacement transmissibility

机译:可变倾角比滑块曲柄机构中的高次谐波检测及其在确定位移传递率中的应用

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摘要

The present paper deals with the design and manufacture of a slider crank mechanism with a variable obliquity ratio. It uses a double eccentric to serve this purpose. The slider crank mechanism can be operated at various speeds and different obliquity ratios. An accelerometer attached to the slider helps obtain its acceleration. The presence of higher harmonics is detected using fast Fourier transforms. The experimentally obtained values are compared with standard theoretical results. Further, a cantilever can be fixed to the slider under displacement excitation. Accelerations measured at the root and tip of the cantilever are used to calculate displacement transmissibility. The experimentally obtained values are compared with those obtained using finite elements. It is expected that such an approach will boost the interest of the students as it bridges theory with experimental work, which is so vital for engineering education.
机译:本文涉及具有可变倾角比的滑块曲柄机构的设计和制造。它使用双偏心轮来实现此目的。曲柄滑块机构可以以各种速度和不同的倾斜比操作。附在滑块上的加速度计有助于获得其加速度。使用快速傅立叶变换可以检测到更高次谐波的存在。将实验获得的值与标准理论结果进行比较。此外,可以在位移激励下将悬臂固定到滑块。在悬臂的根部和尖端测得的加速度用于计算位移的传递率。将实验获得的值与使用有限元获得的值进行比较。可以预计,这种方法将理论与实验工作联系起来,将会激发学生的兴趣,这对工程教育至关重要。

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