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A Review on the Mechanical Modeling of Composite Manufacturing Processes

机译:复合材料制造过程的力学建模综述

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摘要

The increased usage of fiber reinforced polymer composites in load bearing applications requires a detailed understanding of the process induced residual stresses and their effect on the shape distortions. This is utmost necessary in order to have more reliable composite manufacturing since the residual stresses alter the internal stress level of the composite part during the service life and the residual shape distortions may lead to not meeting the desired geometrical tolerances. The occurrence of residual stresses during the manufacturing process inherently contains diverse interactions between the involved physical phenomena mainly related to material flow, heat transfer and polymerization or crystallization. Development of numerical process models is required for virtual design and optimization of the composite manufacturing process which avoids the expensive trial-and-error based approaches. The process models as well as applications focusing on the prediction of residual stresses and shape distortions taking place in composite manufacturing are discussed in this study. The applications on both thermoset and thermoplastic based composites are reviewed in detail.
机译:纤维增强聚合物复合材料在承重应用中的使用增加,要求对过程引起的残余应力及其对形状变形的影响有详细的了解。为了使复合材料制造更加可靠,这是非常必要的,因为残余应力会在使用寿命期间改变复合材料部件的内部应力水平,并且残余形状变形可能会导致无法满足所需的几何公差。在制造过程中残余应力的发生本质上包含了所涉及的物理现象之间的各种相互作用,这些物理现象主要与材料流动,传热以及聚合或结晶有关。虚拟设计和复合材料制造过程的优化需要数字过程模型的开发,从而避免了昂贵的基于反复试验的方法。本研究讨论了复合材料制造中的过程模型以及侧重于预测残余应力和形状变形的应用。详细介绍了在热固性和热塑性基复合材料上的应用。

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