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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Optimizing Variable-Axial Fiber-Reinforced Composite Laminates: The Direct Fiber Path Optimization Concept
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Optimizing Variable-Axial Fiber-Reinforced Composite Laminates: The Direct Fiber Path Optimization Concept

机译:优化可变轴向纤维增强复合层压板:直接光纤路径优化概念

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The concept of aligning reinforcing fibers in arbitrary directions offers a new perception of exploiting the anisotropic characteristic of the carbon fiber-reinforced polymer (CFRP) composites. Complementary to the design concept of multiaxial composites, a laminate reinforced with curvilinear fibers is called variable-axial (also known as variable stiffness and variable angle tow). The Tailored Fiber Placement (TFP) technology is well capable of manufacturing textile preforming with a variable-axial fiber design by using adapted embroidery machines. This work introduces a novel concept for simulation and optimization of curvilinear fiber-reinforced composites, where the novelty relies on the local optimization of both fiber angle and intrinsic thickness build-up concomitantly. This framework is called Direct Fiber Path Optimization (DFPO). Besides the description of DFPO, its capabilities are exemplified by optimizing a CFRP open-hole tensile specimen. Key results show a clear improvement compared to the current often used approach of applying principal stress trajectories for a variable-axial reinforcement pattern.
机译:在任意方向上对准加强纤维的概念提供了利用碳纤维增强聚合物(CFRP)复合材料的各向异性特性的新感知。与多轴复合材料的设计概念互补,用曲线纤维增强的层压材料称为可变轴(也称为可变刚度和可变角度丝束)。定制的纤维放置(TFP)技术能够通过使用适应的绣花机,通过可变轴向光纤设计制造纺织品预成型。这项工作介绍了一种新颖的曲线纤维增强复合材料的模拟和优化概念,其中新颖性依次依次依赖于纤维角和固有厚度堆积的局部优化。该框架称为直接光纤路径优化(DFPO)。除了DFPO的描述之外,还通过优化CFRP开孔拉伸试样来举例说明其能力。与当前经常使用的施加可变轴向加强图案的主要应力轨迹的使用方法相比,关键结果表明了明显的改进。

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