Factors affecting the properties of composites made by 4D printing (moldless composites manufacturing)

IF 1.8 Q3 ENGINEERING, MANUFACTURING Advanced Manufacturing: Polymer & Composites Science Pub Date : 2017-07-03 DOI:10.1080/20550340.2017.1355519
S. Hoa
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引用次数: 20

Abstract

Abstract 3D printing is the process where layers of materials are deposited to make structures of complex geometries. 4D printing is a process that combines 3D printing with the application of some activating agent in order to change the shape of the manufactured part after the process, e.g. the flat structure will change its shape to take up the desired complicated shape such as “curved” or “S” shaped. As such the 3D printing process does not have to spend time to print the intricate parts, and the process can be faster. The requirement for 4D printing is that materials with special characteristics that are responsive to an activating agent need to be used. 4D printing of composites utilizes the same concept of 4D printing, except that the materials used are long fiber composite materials. 4D printing of composites utilizes the shrinkage of the matrix resin, and the difference in coefficients of thermal contraction of layers with different fiber orientations to activate the change in shape upon curing and cooling. This behavior can be used to make parts with curved geometries without the need for a complex mold. As such manufacturing of pieces of curved shapes can be fast and economical. However, the degree of shape changing depends on the material properties, the fiber orientation, the lay up sequence and the manufacturing process. This paper presents the results obtained from a study on the effects of these aspects on the shape of the curved parts.
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影响4D打印复合材料性能的因素(无模复合材料制造)
3D打印是将材料层沉积以制造复杂几何结构的过程。4D打印是将3D打印与某些活化剂的应用相结合,以改变加工后制造零件的形状的过程,例如平面结构会改变其形状,呈现出所需的复杂形状,如“弯曲”或“S”形。因此,3D打印过程不必花费时间来打印复杂的部件,并且过程可以更快。4D打印的要求是需要使用对活化剂有反应的具有特殊特性的材料。复合材料的4D打印利用了与4D打印相同的概念,只是使用的材料是长纤维复合材料。复合材料的4D打印利用基体树脂的收缩和不同纤维取向层的热收缩系数的差异来激活固化和冷却时形状的变化。这种行为可以用来制造具有弯曲几何形状的零件,而不需要复杂的模具。因此,曲面件的制造既快速又经济。然而,形状变化的程度取决于材料性能、纤维取向、铺层顺序和制造工艺。本文介绍了这些因素对曲面零件形状影响的研究结果。
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
CiteScore
4.00
自引率
0.00%
发文量
11
审稿时长
16 weeks
期刊最新文献
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