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Effects of particle clustering on the tensile properties and failure mechanisms of hollow spheres filled syntactic foams: A numerical investigation by microstructure based modeling

机译:颗粒团聚对空心球填充复合泡沫塑料拉伸性能和破坏机理的影响:基于微观结构的数值模拟

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Particle clustering originated from manufacturing process is thought to be one of the critical factors to the mechanical performance of hollow spheres filled syntactic foams. Although experimental evidence provides a qualitative understanding of the effects of particle clustering on the mechanical properties of syntactic foams, a quantitative assessment cannot be made in the absence of an appropriate microme-chanical modeling strategy. In this study, three-dimensional microstructures of syntactic foams with different degrees of particle clustering were reconstructed based on random sequential adsorption (RSA) method. Three-phase finite element models considering the progressive damage behavior of the microsphere-matrix interface were accordingly developed by means of representative volume element (RVE) to quantitatively investigate the effects of particle clustering on the tensile properties and failure mechanisms of syntactic foams. The simulation results indicate that the elastic behavior of syntactic foams is insensitive to the degree of particle clustering, but the strength properties as well as the failure mechanisms are significantly influenced by the degree of particle clustering. From the micromechanical viewpoint, the clustered regions containing higher concentration of microspheres than the average volume fraction would serve as crack initiation sites due to stress concentration, and consequently lead to a negative effect on tensile strength, fracture strain, and interfacial damage of syntactic foams.
机译:源自制造过程的颗粒聚集被认为是填充空心球状复合泡沫塑料机械性能的关键因素之一。尽管实验证据对颗粒聚类对句法泡沫的机械性能的影响提供了定性的理解,但是在缺乏适当的微机械建模策略的情况下,无法进行定量评估。在这项研究中,基于随机序贯吸附(RSA)方法重建了具有不同程度的颗粒聚集的句法泡沫的三维微观结构。相应地,通过代表体积元(RVE)建立了考虑微球-基体界面渐进破坏行为的三相有限元模型,定量研究了颗粒团聚对复合泡沫材料拉伸性能和破坏机理的影响。仿真结果表明,复合泡沫的弹性行为对颗粒的聚集程度不敏感,但强度特性和破坏机理受颗粒的聚集程度影响很大。从微力学的观点来看,由于应力集中,含有比平均体积分数高的微球浓度的聚集区域将作为裂纹的萌生位置,因此对拉伸强度,断裂应变和句法泡沫的界面破坏产生负面影响。

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