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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Micromechanical modeling of the machining behavior of natural fiber-reinforced polymer composites
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Micromechanical modeling of the machining behavior of natural fiber-reinforced polymer composites

机译:天然纤维增强聚合物复合材料加工行为的微机械建模

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摘要

This paper aims to develop a 2D finite element (FE) model at microscale for numerical simulation of the machining behavior of natural fiber-reinforced polymer (NFRP) composites. The main objective of this study is to reproduce the experimentally observed specific cutting behavior of natural fibers within the composite material. Flax fiber-reinforced polypropylene (PP) composites are modeled separately using an elasto-plastic behavior with a ductile damage criterion for flax fibers and PP matrix, while the microscopic interfaces are represented using the cohesive zone modeling (CZM). Numerical outputs are compared with experimental results for the FE model validation. Results show that the proposed FE model can reproduce the cutting force with a good precision for a large cutting speed range (12–80 m/min). The FE model shows also an efficiency and accuracy in predicting the cutting behavior of flax fibers by reproducing the fiber deformation, the fibers torn-off, and the fracture of the interfaces during machining. Moreover, the FE model can be an effective tool for analyzing the quality of the microscopic interfaces in the NFRP composites after machining.
机译:本文旨在在微观尺寸下开发2D有限元(FE)模型,用于天然纤维增强聚合物(NFRP)复合材料的加工行为的数值模拟。本研究的主要目的是在复合材料内进行实验观察到的自然纤维的特异性切割行为。亚麻纤维增强聚丙烯(PP)复合材料用弹性塑料行为单独模拟,其中亚麻纤维和PP基质的延展性损伤标准,同时使用粘性区域建模(CZM)表示微观界面。将数值输出与FE模型验证的实验结果进行了比较。结果表明,该拟议的Fe模型可以以良好的切割速度范围(12-80米/分钟)具有良好精度的切割力。 Fe模型还显示了通过再现纤维变形,撕开的纤维,纤维撕开的纤维和界面的骨折来预测亚麻纤维的切割行为的效率和准确性。此外,Fe模型可以是用于在加工后分析NFRP复合材料中的微观界面的质量的有效工具。

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