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首页> 外文期刊>Journal of Composites Science >Analysis of Composite Structures in Curing Process for Shape Deformations and Shear Stress: Basis for Advanced Optimization
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Analysis of Composite Structures in Curing Process for Shape Deformations and Shear Stress: Basis for Advanced Optimization

机译:形状变形和剪切应力固化过程中复合结构的分析:先进优化的基础

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Identifying residual stresses and the distortions in composite structures during the curing process plays a vital role in coming up with necessary compensations in the dimensions of mold or prototypes and having precise and optimized parts for the manufacturing and assembly of composite structures. This paper presents an investigation into process-induced shape deformations in composite parts and structures, as well as a comparison of the analysis results to finalize design parameters with a minimum of deformation. A Latin hypercube sampling (LHS) method was used to generate the required random points of the input variables. These variables were then executed with the Ansys Composite Cure Simulation (ACCS) tool, which is an advanced tool used to find stress and distortion values using a three-step analysis, including Ansys Composite PrepPost, transient thermal analysis, and static structural analysis. The deformation results were further utilized to find an optimum design to manufacture a complex composite structure with the compensated dimensions. The simulation results of the ACCS tool are expected to be used by common optimization techniques to finalize a prototype design so that it can reduce common manufacturing errors like warpage, spring-in, and distortion.
机译:在固化过程中识别残留应力和复合结构中的扭曲在模具或原型的尺寸中具有必要的补偿,并且具有精确和优化的复合结构的优化部件。本文介绍了复合部件和结构中的过程诱导的形状变形的研究,以及分析结果的比较,以最小化变形来完成设计参数。拉丁超立体采样(LHS)方法用于生成输入变量所需的随机点。然后使用ANSYS复合固化仿真(ACC)工具执行这些变量,该工具是使用三步分析的高级工具,包括使用三步分析,包括ANSYS复合预备,瞬态热分析和静态结构分析。进一步利用变形结果来寻找最佳设计,以通过补偿尺寸制造复合复合结构。 ACCS工具的仿真结果预计将通过常见的优化技术使用,以最终确定原型设计,使其可以减少宏观,弹簧和失真等常见的制造错误。

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