首页> 外文期刊>Journal of Applied Polymer Science >The effect of morphology of ternary-phase polypropylene/glass Bead/Ethylene-Propylene rubber composites on the toughness and brittle-ductile transition
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The effect of morphology of ternary-phase polypropylene/glass Bead/Ethylene-Propylene rubber composites on the toughness and brittle-ductile transition

机译:三元相聚丙烯/玻璃珠/乙丙橡胶复合材料的形貌对韧性和脆性-韧性转变的影响

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Correlation between the morphology and the impact toughness was studied for ternary-phase polypropylene (PP)/glass bead (GB)/ethylene-propylene rubber (EPR) composites containing 5-40 vol % of rigid filler at a fixed volume fraction ratio EPR/GB equal to 0.33. The three following types of phase morphology were obtained: (1) separate dispersion of phases and weak GB-PP adhesion; (2) separate dispersion of phases and high GB-PP adhesion; and (3) encapsulation of GB particles by elastomer shell. Maleated PP or EPR was used for the preparation of second and third types of composites, respectively. Binary composites with either rigid or rubbery phases were prepared as model systems. Young's modulus values of composites containing GB encapsulated by a soft interlayer stay close to neat PP modulus and are located in the bounds corresponding to ternary systems with phase-separate distribution and rubber-modified PP. Notched impact strength was measured by Izod and three-point bending tests. Systems with the phase-separate distribution both with weak and with high adhesion exhibit quasi-brittle fracture. The encapsulation of GB particles by elastomer results in significant improvement of the toughness. An increase in core-shell inclusion fraction leads to intense matrix yielding within a specimen bulk and brittle-ductile transition similar to the rubber-toughened PP. A criterion of brittle-ductile transition was proposed on the basis of load-time curve analysis, which is an accumulation of critical plastic deformation on a crack initiation stage. The stress of start of local failure microprocesses at the inclusion-matrix boundary was found to play the dominating role in energy-dissipating mechanisms. The lowering of the stress at which a local matrix yielding starts at elastomer shell-PP interface compared to the stress of GB debonding is a main source of intensive energy adsorption at the initiation stage in the system with encapsulated GB. The optimal stiffness-toughness balance can be obtained by coating the rigid particles with an elastomer shell. (C) 2002 Wiley Periodicals, Inc. [References: 42]
机译:研究了以固定体积分数EPR /%包含5-40体积%刚性填料的三相聚丙烯(PP)/玻璃珠(GB)/乙丙橡胶(EPR)复合材料的形貌与冲击韧性之间的相关性GB等于0.33。获得了以下三种类型的相形态:(1)分别的相分散和弱的GB-PP附着力; (2)分别分散相和高GB-PP附着力; (3)通过弹性体壳包封GB颗粒。马来酸化PP或EPR分别用于制备第二种和第三种复合材料。制备具有刚性或橡胶相的二元复合材料作为模型系统。包含由软中间层包裹的GB的复合材料的杨氏模量值保持接近纯PP模量,并位于与具有相分离分布和橡胶改性PP的三元体系相对应的范围内。缺口冲击强度通过艾佐德和三点弯曲试验测量。具有弱粘附力和高粘附力的具有相分离分布的系统表现出准脆性断裂。弹性体对GB颗粒的包封大大提高了韧性。与橡胶增韧的PP相似,核-壳夹杂物分数的增加会导致样品主体内大量基体屈服并产生脆性-延性转变。在载荷-时间曲线分析的基础上提出了脆性-韧性转变的判据,该判据是裂纹萌生阶段的临界塑性变形的积累。发现在包合体边界处局部失效微过程开始的应力在能量耗散机制中起主导作用。与GB脱胶的应力相比,在弹性体壳-PP界面处开始产生局部基体的应力降低是GB封装系统中初始阶段强化能量吸收的主要来源。通过用弹性体壳涂覆刚性颗粒可以获得最佳的刚性-韧性平衡。 (C)2002 Wiley Periodicals,Inc. [参考:42]

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