Bifurcation points in unsymmetric laminates and their influence on lay-up design for 4D printing of composites

IF 5.3 Q2 MATERIALS SCIENCE, COMPOSITES Composites Part C Open Access Pub Date : 2024-04-12 DOI:10.1016/j.jcomc.2024.100457
Emad Fakhimi, Suong Van Hoa
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Abstract

4D printing of composites (4DPC) is a technique that can make composite structures with curved geometry without the need to use a curved mold (only a flat mold is used). This technique has been used to make composite springs and cones, where not only the shape is obtained but the mechanical properties are equivalent to those made using conventional technique (where a curved mold is used). The principle of operation of 4DPC utilized anisotropy in unsymmetric laminates as the mechanism for the shape transformation. However it is not always straightforward that a certain unsymmetric lay-up of composite layers will provide a certain shape. Hyer [1,2] observed that laminate theory is accurate to predict the shape of the [0/90] laminate only in some cases, but not in all cases. He attributed this to the assumption of linear relation between the strains and displacements. He then used the non-linear relation between strains and displacements and assumed some functional forms for them. This approach was able to predict the shape of square thin laminates such as those made of [0/90] and [02/902] lay sequences, but not for rectangular laminates or laminates of other shapes. Finite element method was also used for this prediction. This method worked only with some twikking of the modeling procedure. As such work of previous researchers in the past more than 40 years only show success in ad-hoc situations. The reason for this is due to the lack of an explanation for why there are so many different shapes in different situations. The work in this paper provides an explanation as to why there are different shapes for different situations. This understanding provides a direction for the development of a new finite element procedure that can determine the shape of the laminates in different situations. The new understanding is used to explain the behavior of many cases. This new finite element procedure is then used to generate guidelines on the effect of different parameters such as the effect of geometric dimensions, and material properties on the final shape. These guidelines are useful for the selection of lay-up sequences to make structures in the technique of 4D printing of composites.

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非对称层压板中的分岔点及其对复合材料 4D 印刷铺层设计的影响
复合材料 4D 打印(4DPC)是一种无需使用曲面模具(只需使用平面模具)即可制造具有曲面几何形状的复合材料结构的技术。这种技术已被用于制造复合材料弹簧和锥体,不仅获得了形状,而且其机械性能与使用传统技术(使用曲面模具)制造的产品相当。4DPC 的工作原理是利用非对称层压板中的各向异性作为形状转换的机制。然而,复合材料层的非对称铺层并不总是能直接提供某种形状。海尔[1,2]观察到,层压板理论仅在某些情况下能准确预测[0/90]层压板的形状,而不是在所有情况下。他将此归因于应变和位移之间的线性关系假设。随后,他使用了应变和位移之间的非线性关系,并为它们假定了一些函数形式。这种方法能够预测正方形薄层板的形状,例如由 [0/90] 和 [02/902] 层序制成的薄层板,但不能预测矩形薄层板或其他形状的薄层板。有限元法也被用于这种预测。这种方法只有在对建模程序进行一些调整后才能奏效。因此,过去 40 多年来,前辈们的工作只在特殊情况下取得了成功。究其原因,是因为没有解释为什么在不同情况下会出现如此多不同的形状。本文的研究工作解释了为什么在不同情况下会有不同的形状。这种理解为开发一种新的有限元程序提供了方向,该程序可以确定不同情况下层压板的形状。新的理解用于解释许多情况下的行为。然后,这种新的有限元程序可用于生成不同参数影响的指导原则,如几何尺寸和材料特性对最终形状的影响。这些指导原则有助于选择铺层顺序,以便在复合材料 4D 打印技术中制造结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Composites Part C Open Access
Composites Part C Open Access Engineering-Mechanical Engineering
CiteScore
8.60
自引率
2.40%
发文量
96
审稿时长
55 days
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