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Study of Contact Stress and Extrusion of Vane Seals via Numerical Method

机译:叶片密封接触应力与挤压的数值方法研究

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Contact stress of vane seals is studied by using numerical and FEA method based on the linear elasticity theory. Results show that numerical model is appropriate to predict the distributing curve of contact stress when the maximum normal strain is lower than 10-15%. But, with sealed extrusion, finite element analysis (FEA) would be better due to the complexity of the material properties, local geometry and boundary conditions. Accordingly, nonlinear FEA analysis is adopted to study the effect of section shape and section structure on the extrusion process of vane seals. Results illustrate that extrusion occurs with elastomeric seals with rectangular section while a backup PTFE can minimize or eliminate the extrusion.
机译:基于线性弹性理论,采用数值和有限元分析方法研究了叶片密封件的接触应力。结果表明,当最大法向应变低于10-15%时,数值模型适合预测接触应力的分布曲线。但是,对于密封挤压,由于材料属性,局部几何形状和边界条件的复杂性,有限元分析(FEA)会更好。因此,采用非线性有限元分析来研究截面形状和截面结构对叶片密封件挤压过程的影响。结果表明,挤出是在矩形截面的弹性体密封件中发生的,而备用PTFE可以最大程度地减少或消除挤出。

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