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Spring stiffnesses of composite circular springs with extended flat contact surfaces under unidirectional line-loading and surface-loading configurations

机译:单向线荷载和面荷载配置下具有扩展平面接触面的复合圆形弹簧的弹簧刚度

摘要

Theoretical expressions based on the principle of minimum potential energy are presented which describe the stiffnesses of mid-surface symmetric, woven composite circular springs with extended flat contact surfaces subject to unidirectional line and surface-loading configurations. Three-dimensional finite element analysis has been employed to study the transverse shearing effects. Eighteen woven fibre/epoxy composite circular springs with extended flat contact surfaces in different radii and thicknesses were fabricated and tested. Comparison studies of the results obtained from both the analytical and numerical models are made with experimental data, and the results are found to be satisfactory. The semi-included angle of the flat contact surface is vital parameter to spring stiffnesses of the composite spring.
机译:提出了基于最小势能原理的理论表达式,该表达式描述了具有单接触线和表面载荷配置且接触面扩展的中表面对称编织复合圆形弹簧的刚度。三维有限元分析已被用来研究横向剪切效应。制作并测试了十八个编织纤维/环氧树脂复合圆形弹簧,这些圆形弹簧具有不同半径和厚度的扩展平坦接触表面。利用实验数据对从解析模型和数值模型获得的结果进行了比较研究,结果令人满意。平坦接触表面的半夹角对于复合弹簧的弹簧刚度至关重要。

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