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Multiscale simulation of shear-induced mechanical anisotropy of binary polymer blends

机译:多尺度模拟二元聚合物混合物的剪切机械各向异性

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摘要

Mechanical properties of polymer blends are not only determined by characteristics of individual polymer but also depend significantly on processing such as shear fields. A sequential mesoscopic simulation method was adopted to study the influence of shear processing on morphology orientation and mechanical responses. This method utilizes mesoscopic dynamic simulation (MesoDyn) for structural evolution and lattice spring model (LSM) for correlating the structure and mechanical behaviour. The dispersed phase in meso- structures moves from spherical to elliptical and then to columnar structure with the increase of shear rates. The morphology orientation leads to the anisotropy of elastic modulus. During the tensile test, different fracture processes were observed with two kinds of toughness relationship in blends which correspond to brittle phases dispersed in a ductile matrix and in reverse ductile phases dispersed in a brittle matrix. The tensile strength along shear processing direction increases with the increase of shear rates when the dispersed phase is ductile, while the strength decreases when the dispersed phase is brittle. The strength perpendicular to shear processing direction is mainly related to the soft matrix and interfacial strength. The morphologies of polymer blends at different shear rates and their corresponding mechanical behavior are well correlated by the mesoscopic simulation. The simulation results also yield guidelines to manufacture desired polymer blends with shearing process, e.g. extrusion or injection molding.
机译:聚合物共混物的力学性能不仅通过各个聚合物的特征确定,而且还依赖于剪切场的加工依赖性。采用序贯介观模拟方法研究剪切处理对形态取向和机械反应的影响。该方法利用用于结构演化和格子弹簧模型(LAM)的介观动力模拟(Mesodyn),用于关联结构和机械行为。中间结构中的分散相从球形移动到椭圆形,然后随着剪切速率的增加而移动到柱状结构。形态取向导致弹性模量的各向异性。在拉伸试验期间,用两种混合物中的两种韧性关系观察到不同的断裂过程,其对应于分散在延展基质中的脆性相和分散在脆性基质中的反向延展相中。当分散相是延展性时,沿剪切处理方向的拉伸强度随着剪切速率的增加而增加,而当分散的相脆性时,强度会降低。垂直于剪切处理方向的强度主要与软质基质和界面强度有关。在不同剪切速率下的聚合物共混物的形态和它们的相应的机械行为通过介观模拟良好地相关。仿真结果还可以产生具有剪切工艺的所需聚合物共混物的指导,例如,制造所需的聚合物共混物。挤出或注塑。

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  • 来源
    《RSC Advances 》 |2016年第48期| 共9页
  • 作者单位

    E China Univ Sci &

    Technol Dept Chem State Key Lab Chem Engn Shanghai 200237 Peoples R China;

    Technion Israel Inst Technol Fac Chem Engn IL-3200003 Haifa Israel;

    E China Univ Sci &

    Technol Dept Chem State Key Lab Chem Engn Shanghai 200237 Peoples R China;

    E China Univ Sci &

    Technol Dept Chem State Key Lab Chem Engn Shanghai 200237 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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