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Study on Damage Evaluation and Machinability of UD-CFRP for the Orthogonal Cutting Operation Using Scanning Acoustic Microscopy and the Finite Element Method

机译:UD-CFRP在正交切削加工中的损伤评价和切削性能的扫描声学显微镜和有限元研究

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摘要

Owing to high specific strength and designability, unidirectional carbon fiber reinforced polymer (UD-CFRP) has been utilized in numerous fields to replace conventional metal materials. Post machining processes are always required for UD-CFRP to achieve dimensional tolerance and assembly specifications. Due to inhomogeneity and anisotropy, UD-CFRP differs greatly from metal materials in machining and failure mechanism. To improve the efficiency and avoid machining-induced damage, this paper undertook to study the correlations between cutting parameters, fiber orientation angle, cutting forces, and cutting-induced damage for UD-CFRP laminate. Scanning acoustic microscopy (SAM) was employed and one-/two-dimensional damage factors were then created to quantitatively characterize the damage of the laminate workpieces. According to the 3D Hashin’s criteria a numerical model was further proposed in terms of the finite element method (FEM). A good agreement between simulation and experimental results was validated for the prediction and structural optimization of the UD-CFRP.
机译:由于高比强度和可设计性,单向碳纤维增强聚合物(UD-CFRP)已在许多领域中用于替代常规金属材料。 UD-CFRP始终需要后加工过程,以实现尺寸公差和组装规格。由于不均匀性和各向异性,UD-CFRP在加工和破坏机理上与金属材料有很大不同。为了提高效率并避免机加工引起的损坏,本文致力于研究UD-CFRP层压板的切削参数,纤维取向角,切削力和切削引起的损伤之间的相关性。使用扫描声显微镜(SAM),然后创建一维/二维损伤因子以定量表征层压板工件的损伤。根据3D Hashin的标准,根据有限元方法(FEM)进一步提出了一个数值模型。 UD-CFRP的预测和结构优化证明了仿真与实验结果之间的良好一致性。

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