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Spring-back simulation of flat symmetrical laminates with angled plies manufactured through autoclave processing

机译:通过高压釜加工制造的成角度层的扁平对称层压板的弹簧仿真

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This paper presents a non-linear finite element analysis (FEA) method to predict the spring-back deformation for composite structures manufactured using autoclave processing. It is a progression from previous accompanying study on flat unidirectional samples and the aim is to observe spring-back warpage on laminates consisting of angled (±45°) plies compared to unidirectional (0°) laminate. Three samples for each of the symmetrical laminates with angled plies [45/0]s and [45/-45]s are manufactured and the warpage form is observed. FEA model that was utilized in the previous study, along with the physical mechanisms of spring-back such as the first ply stretching and tool-part interaction mechanisms, are maintained with only changes in material orientation for the part and the tool-part interface components. Upon comparison, the data shows that the spring-back form for symmetrical laminate becomes more complex to predict.
机译:本文介绍了非线性有限元分析(FEA)方法,以预测使用高压釜加工制造的复合结构的弹簧背部变形。它是前一项关于平面单向样本的伴随研究的进展,目的是观察与单向(0°)层压板相比的成角度(±45°)层组成的层压板上的回弹翘曲。为每个对称层压板具有成角度层和[45 / -45] S的每个对称层压板的三个样品,并观察到翘曲形式。在先前的研究中使用的FEA模型以及弹簧背部的物理机制,例如第一帘布层拉伸和工具部件相互作用机构,只能改变部分和工具部件部件的材料方向。在比较时,数据表明,对称层压材料的弹簧背形式变得更复杂。

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