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Modeling and Simulation of Mechanical Properties of Nano Particle Modified Polyamide 6
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作者 I. Yi J. Wiedmaier S. Schmauder 《Journal of Materials Science and Chemical Engineering》 2015年第1期80-87,共8页
This paper discusses the utilization of nano-sized fillers in Polyamide 6 to increase the fracture resistance of the composites, which are crucial for various engineering applications. The toughening of the composites... This paper discusses the utilization of nano-sized fillers in Polyamide 6 to increase the fracture resistance of the composites, which are crucial for various engineering applications. The toughening of the composites is achieved by using dispersed nano-scaled rubber particles (Polyether block copolymer) as the inclusion in Polyamide 6 matrix. For a better understanding of the mechanical behavior of the composites, it is indispensable to use analytical and numerical models for evaluating the overall mechanical behavior and damage mechanism of the composite. In this work the toughening mechanism is studied through literature review and by analytical modeling. The mechanical behavior of the composites such as elastic plastic and damage properties are calculated numerically with 3D representative volume element (RVE) models. The numerical results are compared with previously obtained experiments. The influence of volume fraction and aspect ratio of inclusions on the macroscopic stress strain curve as well as the size effect of inclusions and also the failure properties of the composite are studied in detail. 展开更多
关键词 pa 6 nanocomposite Dispersed RUBBER paRTICLES TOUGHENING Mechanism FEM Modeling MECHANICAL PROPERTY
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Numerical Simulation of Mechanical Properties of Nano Particle Modified Polyamide 6 via RVE Modeling
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作者 J. Huang M. Uhrig +1 位作者 U. Weber S. Schmauder 《Journal of Materials Science and Chemical Engineering》 2015年第1期95-102,共8页
In this paper the physical influences on the mechanical behavior of a Polyamide 6 (PA 6)/Mont- morillonit (MMT)-nanocomposite are examined by a selected structure modification in a numerical parameter study. Experimen... In this paper the physical influences on the mechanical behavior of a Polyamide 6 (PA 6)/Mont- morillonit (MMT)-nanocomposite are examined by a selected structure modification in a numerical parameter study. Experimental data of tensile tests of three different volume fractions at ambient temperature are used as reference. These were compared to homogenized stress-strain curves calculated with 3D representative volume elements (RVE) under periodic boundary conditions, in which the curve areas are considered until the tensile yield strength is reached. Besides the influence of filler orientation, exfoliation and its volume fraction, both adhesive interface behavior between the filler and matrix, and local partially crystalline interphases around the MMT-plates were also taken into account. A good approximation of the numerical representation of the experimental curves was achieved only after the introduction of the 30 - 40 nm thick partially crystalline interphases with higher stiffness and strength around the MMT-plates. The use of an exclusively isotropic matrix led to an underestimation of the mechanical values. The local modifications of the morphology were assumed to be transversely isotropic both in the elastic and in the plastic region. The transverse plane is defined by the lateral particle surface. Compared with the experimentally determined values of the corresponding Young’s Modulus, an excellent correlation was achieved. The yield strength for the largest volume fraction shows the best agreement with experimental values. 展开更多
关键词 pa 6 nanocomposite RVE MODELING MECHANICAL Properties
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PA6/OMMT纳米复合材料的炭层残余物的形成过程研究
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作者 杨晶巍 刘岩 《化学与生物工程》 CAS 2013年第2期32-35,共4页
通过SEM对PA6/OMMT纳米复合材料炭层残余物的形成过程进行了研究,以此来研究碳质炭渣与阻燃性能的关系。结果表明:PA6/OMMT纳米复合材料在燃烧过程中,逐渐形成了由皮层和蜂窝状的窝层构成的皮-窝炭层结构,皮层和窝层的骨架都是由纳米尺... 通过SEM对PA6/OMMT纳米复合材料炭层残余物的形成过程进行了研究,以此来研究碳质炭渣与阻燃性能的关系。结果表明:PA6/OMMT纳米复合材料在燃烧过程中,逐渐形成了由皮层和蜂窝状的窝层构成的皮-窝炭层结构,皮层和窝层的骨架都是由纳米尺度的炭层片层组成的;皮层比较致密但较薄,隔气效果较好;窝层含有大量尺寸较大的空穴结构,隔气效果不如皮层,但整体上增大了炭层的体积,隔热效果较好;皮层和窝层的组合有很好的阻隔功能,对复合材料起到阻燃作用。 展开更多
关键词 pa6 OMMT纳米复合材料 炭层残余物 形成过程
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