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Analysing process-induced deformation and stresses using a simulated manufacturing process for composite multispar flaps

机译:使用模拟制造工艺分析复合材料多翼襟翼的工艺引起的变形和应力

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摘要

Although composite materials have numerous advantages, some disadvantages, including high manufacturing costs, are relevant. In particular, if the material is applied to large structural components, such as the wings, flaps or fuselage of an airplane, efficient manufacturing processes are required to generate products that are both high quality and cost effective. Therefore, monolithic designs often become integral due to the lower overall part count and simplified designs (e.g. reducing the number of joints and fasteners significantly). For highly integrated monolithic structures, developing a robust manufacturing process to produce high quality structures is a major challenge. An integral structure must conform to the tolerance requirements because those requirements may change. Process-induced deformations may be an important risk factor for these types of structures in the context of the required tolerances, manufacturing costs and process time. Manufacturing process simulations are essential when predicting distortion and residual stresses. This study presents a simulation method for analysing process-induced deformations on the structure of a composite multispar flap. The warpage depends on the thermal expansion and shrinkage of the resin. In this study, a sequentially coupled thermo-mechanical analysis of the process will be used to analyse temperature distribution, curing evolution, distortion and residual stresses of 7.5m long composite part.
机译:尽管复合材料具有许多优点,但是一些缺点,包括高制造成本,仍然是相关的。尤其是,如果将材料应用于大型结构部件,例如飞机的机翼,襟翼或机身,则需要有效的制造过程来生产既高质量又具有成本效益的产品。因此,由于减少了总零件数并简化了设计(例如,大大减少了接头和紧固件的数量),整体式设计常常成为整体。对于高度集成的整体结构,开发可靠的制造工艺以生产高质量的结构是一项重大挑战。整体结构必须符合公差要求,因为这些要求可能会发生变化。在所需的公差,制造成本和加工时间的背景下,加工引起的变形可能是这些类型结构的重要风险因素。在预测变形和残余应力时,制造过程仿真至关重要。这项研究提出了一种模拟方法,用于分析复合多翼襟翼的结构上的过程引起的变形。翘曲取决于树脂的热膨胀和收缩。在这项研究中,将对该过程进行顺序耦合的热机械分析,以分析7.5m长的复合零件的温度分布,固化演变,变形和残余应力。

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