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Finite Element Analysis of Diaphragm-type Air Springs with Fiber-reinforced Rubber Composites

机译:纤维增强橡胶复合材料膜片式空气弹簧的有限元分析

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This apper is concerned with deformation analysis of diaphragm-type air springs, especially an air bag which consists of nylon fiber-reinforced rubber, composite rubber linings and steel wire bead parts. The analysis has been carried out with a finite element code developed to consider the orthotropic properties of fiber-reinforced rubber lamina, geometric nonlinearity by large deformation, and contact between an air bag and a bead ring. Five different models have been considered in the design optimization procedure in order to investigate the effect of design variables with the variation of the cord angle of an air bag. The analysis provides the hoop and the longitudinal strain distributions in an air bag as well as the variation of the outer diameter, the fold height and the vertical force with respect to the internal pressure.
机译:该研究人员主要从事隔膜式空气弹簧的变形分析,特别是气囊,气囊由尼龙纤维增强橡胶,复合橡胶衬里和钢丝胎圈部件组成。该分析已通过开发有限元代码进行,以考虑纤维增强橡胶薄片的正交各向异性特性,大变形引起的几何非线性以及气囊与胎圈之间的接触。在设计优化过程中考虑了五个不同的模型,以研究设计变量随气囊帘线角度变化的影响。该分析提供了安全气囊中的环向和纵向应变分布,以及外径,折叠高度和垂直力相对于内部压力的变化。

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