首页> 外国专利> SIMULATION TECHNIQUES FOR DETERMINING DEFORMATION PROFILES AND RESIDUAL STRESSES IN MOLDED PARTS HAVING COMPOSITE MATERIALS

SIMULATION TECHNIQUES FOR DETERMINING DEFORMATION PROFILES AND RESIDUAL STRESSES IN MOLDED PARTS HAVING COMPOSITE MATERIALS

机译:用于确定具有复合材料模塑部件的变形型材和残余应力的仿真技术

摘要

Conventional approaches of physical experiments for the effects of cure kinetics in composites materials may lack in capturing lower length scale effects at bulk level. The computational state of the art approaches has not focused on the issue of scale bridging between multiple length scales for manufacturing effects in composites. This limits its usability for specific materials or situations. Embodiments of the present disclosure provide systems and methods that implement a multiscale analysis for determining residual stress and deformation profiles in molded parts comprising composite material. More specifically, present disclosure implements the multiscale analysis wherein a thermal chemical analysis and thermal mechanical analysis are linked to achieve two-way coupling for curing effects at each node/point of molded parts having composite material to provide flexibility and versatility in terms of exploring multiple material combinations without major modification in the approach.
机译:用于固化动力学在复合材料中的物理实验的常规物理实验可能缺乏在散装水平捕获较低的长度尺度效应。 本领域方法的计算状态尚未集中于多个长度尺度之间的尺度桥接问题,以便在复合材料中制造效果。 这限制了其对特定材料或情况的可用性。 本公开的实施例提供了用于实现多尺度分析的系统和方法,用于确定包括复合材料的模制部件中的残留应力和变形型材。 更具体地,本公开实施了多尺度分析,其中热化学分析和热力力学分析连接以实现具有复合材料的模塑部件的每个节点/点的双向耦合,以便在探索多个方面提供灵活性和多功能性 材料组合无重大修改。

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