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首页> 外文期刊>Journal of Applied Polymer Science >Simulation of the scale factor of a ductile fracture of polymer blends and composites on the basis of the specific interphase concept
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Simulation of the scale factor of a ductile fracture of polymer blends and composites on the basis of the specific interphase concept

机译:根据特定的相间概念模拟聚合物共混物和复合材料的韧性断裂的比例因子

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The concept of interfacial layers surrounding inclusions in a host polymer is accepted as a basic source of the scale factor in the simulation of the large-strain deformation and fracture of polymer blends and composites. The essence of the phenomenon is the ductile-brittle transition if the polymer ligament thickness exceeds a critical value, which is determined by the nature of the polymer. Original texture-sensitive constitutive equations have been applied for the simulation of the polymer large-strain deformation. Two periodic structural models of composites have been used. The disperse component (elastomeric or rigid inclusion) has been replaced by a geometrically identical system of pores, which coincides with phenomena of elastomeric inclusion rupture in rubber-toughened plastics and debonding in particulate-filled composites. The local loss of stability of an elastic deformation is used as a composite fracture criterion. The specific properties of the interphase can be caused by a specific texture and by closeness to a free surface. This specificity is stated in the model by an improved plastic ability compared with that of a bulk polymer. Our simulations show that the percolation of an interfacial polymer provides the brittle-ductile transition. (C) 2003 Wiley Periodicals, Inc. [References: 25]
机译:在聚合物共混物和复合材料的大应变变形和断裂模拟中,主体聚合物中夹杂物周围的界面层的概念被接受为比例因子的基本来源。如果聚合物韧带厚度超过临界值,则现象的本质是韧性-脆性转变,这由聚合物的性质决定。原始的纹理敏感本构方程已应用于聚合物大应变变形的模拟。复合材料的两个周期性结构模型已被使用。分散成分(弹性或刚性夹杂物)已被几何上相同的孔系统取代,这与橡胶增韧塑料中的弹性体夹杂物破裂以及颗粒填充的复合材料中的脱粘现象相吻合。弹性变形的稳定性的局部损失被用作复合断裂准则。相间的特定性质可能是由于特定的质地和与自由表面的紧密度所致。与本体聚合物相比,该特异性在模型中通过提高的可塑性来表示。我们的模拟表明,界面聚合物的渗滤提供了脆性-韧性转变。 (C)2003 Wiley Periodicals,Inc. [参考:25]

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