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Analysis of Spring-in in U-shaped Composite Laminates: Numerical and Experimental Results

机译:U形复合材料层压板弹簧分析:数值和实验结果

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The phenomena that happen during the cure process of a composite material laminate are responsible for the rise of residual stresses and, consequently, for the deformation at the end of the manufacturing process. The most analyzed deformation is the spring-in, that represent the flange-to-flange angle deviance from the theoretical value. In this work, the influence of some parameters, such as the laminate thickness, the stacking sequence and the mold radius, on the spring-in angle of a U-shaped laminate was studied exploring a full factorial plan through numerical simulations. First of all, a numerical model proper for cure simulation was introduced and its suitability to simulate the deformation behavior was demonstrated. As a result, only the stacking sequence influenced the spring-in value, while the effect of the tool radius and laminate thickness was minimal.
机译:在复合材料层压材料的固化过程中发生的现象是负责残余应力的升高,因此,在制造过程结束时变形。 最具分析的变形是弹簧,表示来自理论值的法兰到法兰角度偏差。 在这项工作中,通过数值模拟研究了一些参数的影响,例如层压厚度,堆叠序列和模具半径,在U形层压板的弹簧角度上进行了探索完整的因子计划。 首先,介绍了用于固化模拟的数值模型,并证明了模拟变形行为的适用性。 结果,只有堆叠序列影响弹簧值,而刀具半径和层压件厚度的效果最小。

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