首页> 外文会议>International Conference on GRAPHICS ENGINEERING “The Digital Transformation in the Graphic Engineering” >A Proposed Methodology for Calculating the Rigid Body Natural Frequencies of EPDM Rubber Fixed Supports with the Finite Element Method (FEM)
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A Proposed Methodology for Calculating the Rigid Body Natural Frequencies of EPDM Rubber Fixed Supports with the Finite Element Method (FEM)

机译:用于计算EPDM橡胶固定支架的刚体固定频率的提出方法,用有限元方法(FEM)

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This paper proposed a methodology for calculating the rigid body natural mode shape and frequencies of a piping system that are formed by a compressor and rubber supports with the aim to improve its reliability and durability. The rubber supports are manufactured by Ethylene Propylene Diene Monomer (EPDM) hyperelastic material. The methodology combines the Finite Element Method (FEM), experimental modal analysis (EMA) and ANSYS Workbench parameter evaluation software. First and using SpaceClaim Software, the geometry of the EPDM support was generated and imported in the ANSYS Workbench Finite Element Analysis Software. Then, a 3D parameterized finite element model was created in ANSYS Workbench considering tetrahedral elements with linear formulation. An experimental modal analysis was performed on said rubber supports, and using Bruel & Kjaer BK Connect Modal Analysis and BK Connect Geometry Software, the rigid body natural mode shape and frequencies were obtained. Subsequently, these natural mode shapes and frequencies obtained experimentally were compared with those obtained from the ANSYS Workbench Finite Element simulation varying Young's Modulus of rubber supports. An agreement between the natural mode shapes and frequencies obtained from the experimental analysis and the FEM demonstrates that the proposed methodology could be valid for improve the design process of these type of products.
机译:本文提出了一种用于计算由压缩机和橡胶支撑件形成的管道系统的刚体自然模式形状和频率,其目的是提高其可靠性和耐用性。橡胶支撑件由乙烯丙烯二烯单体(EPDM)的超弹性材料制造。该方法结合了有限元方法(FEM),实验模态分析(EMA)和ANSYS Workbench参数评估软件。首先使用SpaceClaim软件,在ANSYS Workbench有限元分析软件中生成和导入EPDM支持的几何图形。然后,在ansys工作台中创建3D参数化有限元模型,考虑具有线性配方的四面体元素。在所述橡胶支架上进行实验模态分析,并使用Bruel&Kjaer BK Connect模态分析和BK连接几何软件,获得刚体自然模式形状和频率。随后,将这些自然模式和实验所获得的频率与从Ansys工作台有限元模拟改变的橡胶支撑件的模量改变而获得的自然模式和频率。从实验分析和FEM获得的自然模式形状和频率之间的协议表明,所提出的方法可能有效地改善这些产品的设计过程。

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