首页> 外文期刊>International Journal of Pressure Vessels and Piping >Three-dimensional finite element analysis of O-ring metal seals considering varying material properties and different seal diameters
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Three-dimensional finite element analysis of O-ring metal seals considering varying material properties and different seal diameters

机译:考虑不同材料特性和不同密封直径的O形环金属密封件的三维有限元分析

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摘要

Metal seals of O-ring form are often used in lid-systems of transport and storage casks for radioactive waste in Germany. To investigate their mechanical behaviour, three dimensional (3D) finite element (FE) models were created using solid elements for all of the seal components. The material behaviour of each component is described with a unified static elastic-plastic material model. The total strain is defined as the sum of linear elastic strain and plastic strain with power-law hardening. The model was carefully validated by comparison of simulation results with experimental results. The influence of material fluctuation of each seal component due to varying properties and the sensitivity of different seal diameters on the seal force are analysed and discussed. The results show that the material properties of helical spring have major influence on seal force and that the influence of seal diameters is negligible small in the studied range. This is very important to use the test results from seals with small diameter for the assessment of seal behaviour with larger diameter as used in transport and storage cask.
机译:O形圈形式的金属密封件通常用于德国放射性废物的运输​​和储物桶的盖子系统中。为了研究其力学行为,使用固体元素为所有密封部件创建三维(3D)有限元(FE)模型。用统一的静态弹性塑料材料模型描述了每个部件的材料行为。总应变被定义为具有动力法硬化的线性弹性应变和塑性应变之和。通过对实验结果的模拟结果进行仔细验证该模型。分析并讨论了由于变化的性能和不同密封直径的各密封部件的材料波动的影响和讨论。结果表明,螺旋弹簧的材料特性对密封力具有重大影响,并且密封直径的影响在研究范围内忽略不计。这对于使用具有小直径的密封件的密封件来评估具有较大直径的密封行为,这是非常重要的。

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