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基于機器學(xué)習的液壓擺缸葉片密封性能預測模型
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四川工業(yè)科技學(xué)院 電子信息與計算機工程學(xué)院

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Machine learning based prediction model for sealing performance of hydraulic swing cylinder blades
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    摘要:

    液壓擺缸運行時(shí)若液壓油從葉片與缸體的間隙泄露,會(huì )導致壓力下降,減少輸出扭矩,無(wú)法實(shí)現預期操作效果。由此,提出一種基于機器學(xué)習的液壓擺缸葉片密封性能預測模型。利用敏感性與疲勞性指標組建葉片密封性能指標體系,收集密封性能相關(guān)指標的樣本數據,計算密封泄漏率與密封環(huán)熱量,利用雷諾方程計算油膜厚度與密封間隙油膜壓力的耦合關(guān)系;基于機器學(xué)習方法中的BP人工神經(jīng)網(wǎng)絡(luò )訓練數據,將連續S型函數轉化成神經(jīng)元激活函數,全局誤差低于設定的極小值,即可獲得密封性能預測結果。實(shí)驗結果表明:所建模型液壓擺缸葉片密封性能預測精度高、效率快,為相關(guān)領(lǐng)域機械設計工作提供可靠參考。

    Abstract:

    If hydraulic oil leaks from the gap between the blades and the cylinder during the operation of the hydraulic swing cylinder, it will lead to a decrease in pressure, reduce output torque, and fail to achieve the expected operating effect. Therefore, a machine learning based prediction model for the sealing performance of hydraulic swing cylinder blades is proposed. Establish a blade sealing performance index system using sensitivity and fatigue indicators, collect sealing performance sample data, calculate sealing leakage rate and sealing ring heat, and use Reynolds equation to calculate the coupling relationship between oil film thickness and sealing gap oil film pressure; Based on the training data of BP artificial neural network in the machine learning method, the continuous S-type function is converted into the neuron activation function, and the global error is lower than the set minimum value, then the sealing performance prediction results can be obtained. The experimental results show that the built model has high prediction accuracy and fast efficiency for the sealing performance of hydraulic swing cylinder blades, providing reliable reference for mechanical design work in related fields.

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陳華,陳榮,鮑春波.基于機器學(xué)習的液壓擺缸葉片密封性能預測模型計算機測量與控制[J].,2023,31(9):77-82.

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歷史
  • 收稿日期:2023-05-11
  • 最后修改日期:2023-05-22
  • 錄用日期:2023-05-22
  • 在線(xiàn)發(fā)布日期: 2023-09-18
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