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首页> 外文期刊>Journal of Composite Materials >A novel system of parametric analytical modeling techniques for transversely loaded fibre reinforced polymer structural members of variable material properties and cross-sectional geometry
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A novel system of parametric analytical modeling techniques for transversely loaded fibre reinforced polymer structural members of variable material properties and cross-sectional geometry

机译:用于可变材料特性和横截面几何形状的横向加载的纤维增强聚合物结构构件的新型参数分析建模技术系统

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摘要

A broad class of structural problems has been recognized as being non-conducive to the use of conventional state-of-the-art structural analysis techniques involving the finite element method. This class of problems includes long fibre reinforced polymer structural members having non-uniform, continuously variable material properties and cross-sectional geometry. A novel composite leaf spring is being developed (Thunder Composite Technologies, Ltd.), which will likely prove to be superior to the conventional leaf springs that it aims to replace. However, this new spring belongs to the aforementioned class of problems and will therefore necessitate unconventional and highly complex design and analysis techniques due to the anisotropy and non-homogeneity of its constituents. As such, a design and analysis software tool was developed to be capable of collecting user stipulated parameters and performance specifications, generating a design that is capable of meeting these requirements and performing a high-fidelity structural analysis on the resulting design in order to verify its performance. The following paper summarizes the engineering science and programming methodologies employed by this design tool and discusses how similar methodologies could be employed in the design and analysis of other structural members that reside within this class of problems.
机译:人们已经认识到各种各样的结构问题不利于使用涉及有限元方法的传统的最新结构分析技术。这类问题包括具有不均匀,连续变化的材料特性和截面几何形状的长纤维增强聚合物结构构件。正在开发一种新型的复合板簧(Thunder Composite Technologies,Ltd.),该复合板簧可能会证明优于其打算替代的传统板簧。但是,这个新弹簧属于上述问题类别,因此,由于其组成要素的各向异性和非均质性,因此需要非常规且高度复杂的设计和分析技术。因此,开发了一种设计和分析软件工具,能够收集用户规定的参数和性能规格,生成能够满足这些要求的设计,并对生成的设计进行高保真结构分析,以验证其设计。性能。下面的文章总结了此设计工具所采用的工程科学和编程方法,并讨论了如何在此类问题内的其他结构构件的设计和分析中采用相似的方法。

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