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Influence of filler content and interphase properties on large deformation micromechanics of particle filled acrylics

机译:填料含量和相间性能对颗粒填充丙烯酸酯大变形微观力学的影响

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摘要

Large deformation response of alumina trihydrate (ATH) filled poly(methyl metacrylate) PMMA over a wide temperature range was investigated. A multi-particle unit cell mode! of PMMA/ATH composite with different volume fractions was employed to study the influence of interphase properties and interparticle distance. The model constitutes of amorphous polymer matrix, rigid fillers and interphase between filler and matrix. Polymer matrix was modeled using a thermodynamically consistent dual-mechanism viscoplastic model, whereas fillers were assumed as linear elastic. In numerical simulations, the interphase between filler and matrix was modeled through a user defined interphase model and matrix material was modeled through a user defined material model. Damage evolution in PMMA/ATH at large deformations due to particle debonding was studied based on a critical stress criterion. Composite elastic modulus results from finite element analysis of unit cell model were compared with analytical model predictions (Mori-Tanaka, Eshelby, Lielens models) at different temperatures for various volume fractions of fillers. The influence of interphase characteristics, interparticle distance and temperature on large deformation response of PMMA/ATH was examined through multi-particle unit cell model.
机译:研究了三水合氧化铝(ATH)填充的聚(甲基丙烯酸甲酯)PMMA在较大温度范围内的大变形响应。多粒子晶胞模式!研究了不同体积分数的PMMA / ATH复合材料的相间性能和颗粒间距离的影响。该模型由无定形聚合物基体,刚性填料以及填料与基体之间的界面组成。聚合物基体使用热力学一致的双机理粘塑性模型建模,而填料则假定为线性弹性。在数值模拟中,通过用户定义的相模型对填料和基体之间的相进行建模,并通过用户定义的材料模型对基质材料进行建模。基于临界应力准则研究了PMMA / ATH在大变形下由于颗粒脱粘而产生的损伤。在不同温度下,对于不同体积分数的填料,将单元格模型的有限元分析得出的复合弹性模量与分析模型预测值(Mori-Tanaka,Eshelby,Lielens模型)进行了比较。通过多颗粒晶胞模型研究了相间特性,颗粒间距离和温度对PMMA / ATH大变形响应的影响。

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