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Rheological models for modeling the viscoelastic behavior in liquid composite molding processes (LCM) review

机译:用于在液体复合材料成型工艺(LCM)中建模粘弹性行为的流变模型综述

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In recent years, a crucial interest has focused on closed mold composites manufacturing technologies. Mainly due to the ability to handle the harmful emissions of hazardous gases and the ability to produce parts with complex geometry. The liquid composite molding term includes a list of manufacturing composite varieties, such as resin transfer molding, vacuum assisted resin transfer molding, compression resin transfer molding. All liquid composite molding varieties involve compressive strain reinforcement before and in many cases during mold filling. The compressive strain reinforcement response is generally considered as non-linear elastic for the modeling. The viscoelastic stress relaxation is thus taken into account. A better understanding of the compressibility phenomenon helps to improve control of implementation process of parts and tooling design. The quality of the parts can also be improved through a better understanding of the stresses acting in composite products. In this paper, we present a detailed review of the most important models that have focused on the compression and relaxation of fiber reinforcements. In the order of succession, we first present the models giving a non-linear elastic behavior for fibrous reinforcements, then the models considering the reinforcements as viscoelastic materials.
机译:近年来,至关重要的兴趣集中在闭合模具复合材料制造技术上。主要归因于处理有害气体有害排放的能力以及生产具有复杂几何形状零件的能力。液体复合成型术语包括制造复合品种的列表,例如树脂传递成型,真空辅助树脂传递成型,压缩树脂传递成型。所有液态复合成型品都在模具填充之前以及在许多情况下涉及压缩应变的增强。对于建模,通常将压缩应变增强响应视为非线性弹性。因此考虑了粘弹性应力松弛。对可压缩性现象的更好理解有助于改善对零件和工具设计的实施过程的控制。零件的质量也可以通过更好地了解复合产品中的应力来提高。在本文中,我们对最重要的模型进行了详细的回顾,这些模型集中于纤维增强材料的压缩和松弛。按照顺序,我们首先介绍给出纤维增强材料非线性弹性行为的模型,然后将这些增强材料视为粘弹性材料的模型。

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