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A nonlinear, data-driven model applied in the design process of disc-spring valve systems used in hydraulic dampers

机译:非线性数据驱动模型,用于液压阻尼器的碟形弹簧阀系统的设计过程中

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摘要

This paper proposes an analytical tool that supports the design process of a disc-spring valve system used in hydraulic dampers. Such a valve is representative of a broader family of valve systems used in many industrial applications. The tool will speed up the valve-system design process.The paper considers a valve system that combines a number of circular metal plates, referred to further in the paper as 'a stack of plates'. The proposed analytical tool obtains a key design characteristic of a valve, the flow rate, and the corresponding maximum stress level in the stack of plates as a function of pressure load. The stress level enables the ranking of valve settings in terms of durability. The calculation process is based on the response of a nonlinear, data-driven model that approximates the a priori simulated cases, to cover the complete range of input design parameters, namely the number of plates, their thickness and their diameter. The cases are produced by a first-principle model using a Finite Element (FE) approach. The model was calibrated based on experimental results to provide accurate results in the entire range of input parameters. The advantage of the analytical tool is its ability to immediately provide the pressure-stress-flow characteristic of a valve instead of repeating time-consuming calculations for each new setting of input parameters. The objectives of the paper are as follows: to (a) adapt the model to a three-plate stack by applying large strain theory, (b) select and rank the Artificial Neural Networks used in order to approximate simulation data, and (c) demonstrate validation and application results obtained with the Approximation Tool.
机译:本文提出了一种分析工具,该工具可支持液压缓冲器中使用的碟形弹簧阀系统的设计过程。这种阀代表了许多工业应用中使用的更广泛的阀系统系列。该工具将加快阀门系统的设计过程。本文考虑了一种阀门系统,该系统结合了许多圆形金属板,在本文中进一步称为“板叠”。所提出的分析工具获得了阀的关键设计特征,流量以及板叠中相应压力应力的最大应力水平。应力水平可以使阀门设置在耐用性方面排名。计算过程是基于非线性的,数据驱动的模型的响应,该模型近似于先验的模拟情况,以覆盖输入设计参数的完整范围,即板的数量,板的厚度和直径。这些案例是通过使用有限元(FE)方法的第一原理模型生成的。根据实验结果对模型进行校准,以在整个输入参数范围内提供准确的结果。该分析工具的优势在于它能够立即提供阀门的压力-压力-流量特性,而不必为每个新的输入参数设置重复耗时的计算。本文的目的如下:(a)通过应用大应变理论使模型适应三板叠层;(b)选择和排序所使用的人工神经网络,以近似仿真数据;以及(c)演示使用近似工具获得的验证和应用结果。

著录项

  • 来源
    《Simulation》 |2013年第3期|419-431|共13页
  • 作者单位

    Institute of Engineering Processes Automation and Integrated Manufacturing Systems Silesian University of Technology Gliwice, Poland;

    Institute of Engineering Processes Automation and Integrated Manufacturing Systems Silesian University of Technology Gliwice, Poland;

    Institute of Engineering Processes Automation and Integrated Manufacturing Systems Silesian University of Technology Gliwice, Poland;

    Institute of Engineering Processes Automation and Integrated Manufacturing Systems Silesian University of Technology Gliwice, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hydraulic damper; disc valve; neural network; fuzzy inference system; finite elements model;

    机译:液压缓冲器碟形阀神经网络;模糊推理系统;有限元模型;
  • 入库时间 2022-08-18 02:50:30

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