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机构地区:[1]华南理工大学,广州510640
出 处:《包装工程》2016年第5期124-129,共6页Packaging Engineering
基 金:广东省省部级产学研(2012B091000140);广东省省级科技计划(2013B010203016)
摘 要:目的分析单面瓦楞机卡闸机构振动产生的原因并对其进行减振优化。方法对单面瓦楞机的关键机构卡闸机构进行了动力学建模,上下瓦楞辊是变中心距啮合,然后在Ansys中作上下瓦楞辊的模态分析,并对单面瓦楞机进行了振动测试。结果将测试的结果与建立的数学模型、模态分析得到的固有频率对比,得到单面瓦楞机振动的根本原因是在频率为154,217 Hz等处发生共振,最后对卡闸机构进行减振优化,达到了减振效果。结论文中建立的动力学模型和仿真对研究单面瓦楞机振动特性的研究是有效的。The aim of this article was to analyze the causes for vibration of the cassette mechanism of the single-sided corrugating machine and the vibration reduction optimization was conducted. The dynamics model of the key cassette mechanism of the single-sided corrugating machine was established. The mesh center distance of the upper and lower corrugating roll was changing. Then the simulation of the modal analysis of the upper corrugating roll and lower corrugating roll was conducted in Ansys, and then a vibration test was conducted on the single-sided corrugating machine. Comparing the test results with the natural frequency obtained from the roller′s modal analysis and the dynamic model established for the cassette mechanism, the primary reason of single-sided corrugating machine′s vibration was found to be the resonance occurring at the frequency 154, 217 Hz, etc. Finally, the vibration reduction optimization of the cassette mechanism was conducted. All the above proved the effectiveness of studying the vibration characteristics of single-sided corrugating machine using the established dynamic model and simulation of Ansys.
分 类 号:TH132.4[机械工程—机械制造及自动化]
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