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Modeling mechanical behaviors of composites with various ratios of matrixeinclusion properties using movable cellular automaton method

机译:使用可移动元胞自动机方法模拟具有不同比例的基质包裹体性能的复合材料的力学行为

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摘要

Two classes of composite materials are considered: classical metaleceramic composites with reinforcing hard inclusions as well as hard ceramics matrix with soft gel inclusions. Movable cellular automaton method is used for modeling the mechanical behaviors of such different heterogeneous materials. The method is based on particle approach and may be considered as a kind of discrete element method. The main feature of the method is the use of many-body forces of inter-element interaction within the formalism of simply deformable element approximation. It was shown that the strength of reinforcing particles and the width of particle-binder interphase boundaries had determining influence on the service characteristics of metaleceramic composite. In particular, the increasing of strength of carbide inclusions may lead to significant increase in the strength and ultimate strain of composite material. On the example of porous zirconia ceramics it was shown that the change in the mechanical properties of pore surface leads to the corresponding change in effective elastic modulus and strength limit of the ceramic sample. The less is the pore size, the more is this effect. The increase in the elastic properties of pore surface of ceramics may reduce its fracture energy.
机译:考虑了两类复合材料:具有加强硬夹杂物的经典金属聚合物复合材料以及软凝胶夹杂物的硬陶瓷基质。可移动的蜂窝自动机方法用于建模这种不同异质材料的机械行为。该方法基于粒子方法,并且可以被认为是一种分立元件方法。该方法的主要特征是在简单可变形元件近似的形式主义内使用元素间相互作用的许多身体。结果表明,增强颗粒的强度和颗粒 - 粘合剂间界限的宽度对金属聚合物复合材料的服务特性进行了影响。特别地,碳化物夹杂物的强度的增加可能导致复合材料的强度和最终菌株的显着增加。在多孔氧化锆陶瓷的实施例中,显示孔表面的机械性能的变化导致有效弹性模量和陶瓷样品的强度极限的相应变化。孔径越小,这种效果越多。陶瓷孔表面的弹性性质的增加可以减少其裂缝能量。

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  • 来源
    《兵工学报(英文版)》 |2015年第1期|18-34|共17页
  • 作者单位

    Institute of Strength Physics and Materials Science SB RAS, Tomsk 634021, Russia;

    Institute of Strength Physics and Materials Science SB RAS, Tomsk 634021, Russia;

    Institute of Strength Physics and Materials Science SB RAS, Tomsk 634021, Russia;

    Institute of Strength Physics and Materials Science SB RAS, Tomsk 634021, Russia;

    Institute of Strength Physics and Materials Science SB RAS, Tomsk 634021, Russia;

    Institute of Strength Physics and Materials Science SB RAS, Tomsk 634021, Russia;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 03:35:06
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