Vibration Response of Metal Plate and Shell Structure under Multi-Source Excitation with Welding and Bolt Connection

Zhexuan Ding, Zhong Tang, Ben Zhang, Zhao Ding
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Abstract

There are many excitation sources and complex vibration environments in combine harvesters. The coupling and superposition of different vibration signals on the plate and shell seriously affect the working parts of the body. This also reduces the reliability of the whole machine. At present, domestic and foreign research on existing harvesters mainly focuses on harvesting performance, with less research on vibration characteristics. Therefore, in this paper, the vibration response of the metal plate–shell under the two connection modes of bolt connection and welding is studied, in order to optimize the design and structure of the plate–shell structure of the combine harvester and improve the overall performance. First, the welded and bolted plates are numerically modeled using Hypermesh pre-processing functions. Then, the boundary conditions are simulated by continuous variable stiffness elastic constraint experiments. Finally, the intrinsic vibration dynamic model of the four-sided simply supported plate and four-sided solidly supported plate is established using the modal superposition method. By analyzing the modal frequencies and vibration patterns, the following results are obtained. The connection method between the plate and the frame has a significant impact on the inherent vibration characteristics of the plate. The bolt connection will make the plate’s intrinsic vibration frequency higher than that of the welding method, but the effect on the plate’s intrinsic vibration pattern is more minor. At the same time, in order to verify the accuracy of the model, the actual modal vibration patterns and frequencies of the same proportion of plates in the modal test are compared with the results of modal vibration patterns and frequencies obtained by Ansys. The errors of the two dynamic model analytical methods are within 1% and 3%, respectively. This result verifies the accuracy of the dynamic model of the metal plate and shell structure under different connection methods.
带焊接和螺栓连接的金属板和壳体结构在多源激励下的振动响应
联合收割机的激振源多,振动环境复杂。不同振动信号在板和壳上的耦合和叠加严重影响了机身的工作部件。这也降低了整机的可靠性。目前,国内外对现有收割机的研究主要集中在收割性能方面,对振动特性的研究较少。因此,本文研究了金属板壳在螺栓连接和焊接两种连接方式下的振动响应,以期优化联合收割机板壳结构的设计和构造,提高整机性能。首先,使用 Hypermesh 预处理功能对焊接板和螺栓连接板进行数值建模。然后,通过连续变刚度弹性约束实验模拟边界条件。最后,利用模态叠加法建立了四面简支撑板和四面实支撑板的本征振动动力学模型。通过分析模态频率和振型,得出以下结果。板与框架之间的连接方式对板的固有振动特性有很大影响。螺栓连接会使钢板的固有振动频率高于焊接方法,但对钢板固有振动模式的影响较小。同时,为了验证模型的准确性,将模态试验中同比例板材的实际模态振型和频率与 Ansys 得到的模态振型和频率结果进行了比较。两种动态模型分析方法的误差分别在 1%和 3%以内。这一结果验证了不同连接方法下金属板壳结构动态模型的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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