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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Rheological In-Mold Measurements and Characterizations of Sheet-Molding-Compound (SMC) Formulations with Different Constitution Properties by Using a Compressible Shell Model
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Rheological In-Mold Measurements and Characterizations of Sheet-Molding-Compound (SMC) Formulations with Different Constitution Properties by Using a Compressible Shell Model

机译:通过使用可压缩壳模型,通过不同体积性能的片状模塑测量和表塑料(SMC)制剂的表征

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摘要

The rheological characterization of Sheet Molding Compound (SMC) and its modelling is crucial for reliable process simulations. In the past, characterization and material modelling were mainly focusing on SMC with low glass fiber content and a high filler fraction. Due to new application areas, SMC without fillers and with high glass fiber contents, and SMC with carbon fibers become more important. Therefore, these three types of SMCs are characterized in this work, using an inline rheological tool. Differences regarding their compressibility and their flow dependency are identified and considered in an analytical shell modelling. The comparison of the different materials leads to a better understanding of the phenomenological parameters related to the viscosity and friction in the models. Furthermore, the importance to properly consider all relevant material-specific effects becomes evident.
机译:片状成型化合物(SMC)的流变表征及其建模对于可靠的过程模拟至关重要。 在过去,表征和材料建模主要专注于具有低玻璃纤维含量和高填料级分的SMC。 由于新的应用领域,没有填料的SMC和具有高玻璃纤维内容物,并且具有碳纤维的SMC变得更加重要。 因此,使用内联流变工具,这三种类型的SMC在这项工作中表现为特征。 在分析壳建模中识别并考虑对其压缩性及其流量依赖性的差异。 不同材料的比较导致更好地理解与模型中的粘度和摩擦有关的现象学参数。 此外,正确考虑所有相关材料特定效果的重要性变得明显。

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