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On the Sensitivity of Mechanical Properties of Woven-Fabrics to the Draping Process: Static and Dynamic Assessment Through a CAE-Based Approach

机译:机织织物机械特性对悬垂过程的敏感性:基于CAE的静态和动态评估

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摘要

Manufacturing processes are often considered the final stage of the design. As a matter of fact, it is during the manufacturing that material properties are ultimately determined. This is especially true for composite materials, whose manufacturing processes are often lowly automated and thus subject to the low repeatability of manual operations. Manufacturing simulations tools are becoming available to support the definition of the manufacturing process and assess the manufacturability of composite parts. The present paper proposes a reversed approach to the laminate design process which starts from the manufacturing simulation in order to quantify the impact of the process on the mechanical properties of the as-produced part. An automotive component is chosen and different woven-fabrics structures are considered to determine their sensitivity to the shearing phenomenon. Homogenization of material properties is performed on a local basis, depending on the local geometry modifications undergone by the reinforcement. Stiffness is then predicted through both static and dynamic analysis. In order to prove the effectiveness of the approach, the obtained results are compared to classic laminate modelling.
机译:制造过程通常被认为是设计的最后阶段。事实上,最终是在制造过程中确定材料性能。对于复合材料来说尤其如此,其制造过程通常自动化程度较低,因此手工操作的重复性较低。制造仿真工具正变得可用以支持制造过程的定义和评估复合零件的可制造性。本文提出了一种针对层压板设计过程的逆向方法,该方法从制造模拟开始,以便量化该过程对所生产零件的机械性能的影响。选择了汽车部件,并考虑了不同的机织织物结构来确定其对剪切现象的敏感性。材料特性的均质化是在局部进行的,具体取决于钢筋所经历的局部几何形状变化。然后通过静态和动态分析来预测刚度。为了证明该方法的有效性,将获得的结果与经典的层压板建模进行了比较。

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