A novel semi-empirical analytical method for stiffness prediction of unidirectional discontinuous-fiber composites

IF 9.8 1区 材料科学 Q1 MATERIALS SCIENCE, COMPOSITES Composites Science and Technology Pub Date : 2025-01-30 DOI:10.1016/j.compscitech.2025.111087
Dayong Huang , Wenjun Wang , Xiaofu Tang , Pengfei Zhu , Xianqiong Zhao
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Abstract

A simple and efficient micromechanical model of unidirectional discontinuous-fiber composites (UDC) is critical for predicting the mechanical properties of injection molded fiber-reinforced thermoplastics (IMFT). A new explicit expression of longitudinal modulus E11 is constructed by introducing a fiber aspect ratio weight function considering to the advantages of Cox shear lag model and Halpin-Tsai model. The Halpin-Tsai model is modified by introducing an equivalent fiber aspect ratio to study the variation of transverse modulus E22 with fiber aspect ratio l/a. Based on the stress distribution of Hsueh model in RVE, a simple explicit expression of Poisson's ratio v12 is derived by using average approximation method and mixing principle, which can reduce the Halpin-Tsai equation. Poisson's ratio v23 is deduced by assuming that the Poisson's ratio properties are isotropic, and then the underestimation of shear modulus G23 is corrected by the modified Halpin-Tsai model for v23 based on reverse engineering. The Halpin-Tsai model is modified by introducing an equivalent fiber aspect ratio to study the variation of shear modulus G12 with l/a. The validity of the novel semi-empirical analytical model is verified by compared with the prediction results of other famous models (including finite element method) and experimental results. In addition, the elastic moduli of IMFT were predicted well, which indirectly demonstrates the superiority of the novel modified model.

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单向非连续纤维复合材料刚度预测的半经验分析方法
建立简单有效的单向非连续纤维复合材料(UDC)微观力学模型是预测注射成型纤维增强热塑性塑料(IMFT)力学性能的关键。考虑到Cox剪切滞后模型和Halpin-Tsai模型的优点,引入纤维长径比权函数,构建了新的纵向模量E11显式表达式。通过引入等效纤维长径比对Halpin-Tsai模型进行修正,研究了横向模量E22随纤维长径比l/a的变化规律。基于RVE中Hsueh模型的应力分布,利用平均逼近法和混合原理推导了泊松比v12的简单显式表达式,从而简化了Halpin-Tsai方程。假设泊松比性质是各向同性,推导出泊松比v23,然后利用基于逆向工程的修正Halpin-Tsai模型修正剪切模量G23的低估。通过引入等效纤维长径比对Halpin-Tsai模型进行修正,研究剪切模量G12随l/a的变化规律。通过与其他著名模型(包括有限元法)的预测结果和实验结果的对比,验证了该半经验分析模型的有效性。此外,对IMFT的弹性模量进行了较好的预测,间接证明了新修正模型的优越性。
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来源期刊
Composites Science and Technology
Composites Science and Technology 工程技术-材料科学:复合
CiteScore
16.20
自引率
9.90%
发文量
611
审稿时长
33 days
期刊介绍: Composites Science and Technology publishes refereed original articles on the fundamental and applied science of engineering composites. The focus of this journal is on polymeric matrix composites with reinforcements/fillers ranging from nano- to macro-scale. CSTE encourages manuscripts reporting unique, innovative contributions to the physics, chemistry, materials science and applied mechanics aspects of advanced composites. Besides traditional fiber reinforced composites, novel composites with significant potential for engineering applications are encouraged.
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