Optimized Design for Vibration Reduction in a Residual Film Recovery Machine Frame Based on Modal Analysis

Xinzhong Wang, Tianyu Hong, Weiquan Fang, Xingye Chen
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Abstract

The technology of plastic film mulching is widely applied in Xinjiang, but it also brings about serious issues of residual film pollution. Currently, the 1MSF-2.0 residual film recovery machine can effectively address the problem. However, it faces challenges such as high overall machine weight and noticeable frame vibrations, which affect the stability of the entire machine operation. The frame, as the installation foundation, needs to bear loads and impact. Therefore, the reliability of the frame is crucial for the stability of the entire machine. Improving the frame’s vibration is of great importance. In response to the significant vibration issues during the operation of the 1MSF-2.0 residual film recovery machine, this paper utilized Workbench 2020 R2 to establish a finite element model of the machine frame and conducted static analysis to obtain strength information, thereby initially understanding the optimization space of the frame. Building upon this, Mechanical was employed to solve the first 14 natural frequencies and mode shapes of the frame, and the accuracy of the theoretical analysis was verified through modal testing. After analyzing the frequency characteristics of external excitation forces, it was found that the fourth-order natural frequency of the frame fell within the frequency range of the excitation force of the shaft of the straw grinder, causing resonance in the frame and necessitating structural optimization. The optimal results indicated that the optimized frame increased in mass by 4.41%, reduced the maximum stress value by 2.56 MPa, and increased the fourth-order natural frequency to 22.7 Hz, avoiding the frequency range of the excitation force of the shaft of the straw grinder, thus improving the resonance issue. This paper provides a reference for optimizing the design of the frame of the residual film recovery machine.
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基于模态分析的残膜回收机机架减振优化设计
塑料薄膜地膜覆盖技术在新疆应用广泛,但也带来了严重的残膜污染问题。目前,1MSF-2.0 型残膜回收机可有效解决这一问题。但它面临着整机重量大、机架振动明显等难题,影响了整机运行的稳定性。机架作为安装基础,需要承受载荷和冲击。因此,机架的可靠性对整个设备的稳定性至关重要。因此,改善机架的振动性能就显得尤为重要。针对 1MSF-2.0 残膜回收机运行过程中出现的严重振动问题,本文利用 Workbench 2020 R2 建立了机器框架的有限元模型,并进行了静态分析以获取强度信息,从而初步了解了框架的优化空间。在此基础上,使用 Mechanical 求解了机架的前 14 个固有频率和模态振型,并通过模态测试验证了理论分析的准确性。分析外部激振力的频率特性后发现,框架的四阶固有频率位于秸秆粉碎机轴激振力的频率范围内,导致框架产生共振,因此有必要进行结构优化。优化结果表明,优化后的框架质量增加了 4.41%,最大应力值降低了 2.56 兆帕,四阶固有频率提高到 22.7 赫兹,避开了秸秆粉碎机轴激振力的频率范围,从而改善了共振问题。本文为残膜回收机机架的优化设计提供了参考。
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