首页> 外文期刊>Archives of Metallurgy and Materials >Mechanical Properties of Alumina Foam/Tri-Functional Epoxy Resin Composites with an Interpenetrating Network Structure / W?a?ciwo?ci Mechaniczne Kompozytów Pianka Korundowa/ Trójfunkcyjna ?ywica Epoksydowa O Strukturze Infiltrowanej
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Mechanical Properties of Alumina Foam/Tri-Functional Epoxy Resin Composites with an Interpenetrating Network Structure / W?a?ciwo?ci Mechaniczne Kompozytów Pianka Korundowa/ Trójfunkcyjna ?ywica Epoksydowa O Strukturze Infiltrowanej

机译:互穿网络结构的氧化铝泡沫/三功能环氧树脂复合材料的机械性能/刚玉泡沫刚玉泡沫/渗透结构的三功能环氧树脂

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摘要

Methods of measuring effective material properties, including Young’s, Kirchoff’s modulus or Poisson’s ratio for composites with an interpenetrating network structure, where the both constituent phases have widely different physical properties, do not lead to an unambiguous interpretation. The commonly- known static methods have the basic disadvantage that higher strain values are needed in order to obtain proper results which is generally impossible to achieve in the case of brittle materials, e. g. ceramics or polymers, as well as for composites created by connecting both these components. The measurement of strain values during the stress test, decreases the values of Young’s modulus from several per cent to several dozen per cent, due to appearance of micro fractures in the brittle materials. If there are differences in the values, then a special form and an appropriate amount of samples are needed. Dynamic methods of predicting an effective material properties (ultrasonic and impulse excitation of vibration techniques) are much more accurate, and their non- destructive nature mean that the samples can be used again in other experiments.
机译:测量具有互穿网络结构的复合材料的有效材料特性(包括杨氏,基尔霍夫模量或泊松比)的方法不会导致明确的解释,在这两种结构中,两个组成相的物理特性差异很大。众所周知的静态方法的基本缺点是,需要较高的应变值才能获得适当的结果,这在脆性材料(例如,脆性材料)的情况下通常是无法实现的。 G。陶瓷或聚合物,以及通过连接这两个组件而创建的复合材料。由于在脆性材料中出现了微裂纹,因此在应力测试过程中对应变值的测量将杨氏模量的值从百分之几降低到百分之几十。如果值存在差异,则需要特殊形式和适当数量的样本。预测有效材料性能的动态方法(振动技术的超声和脉冲激励)要准确得多,并且它们的无损性质意味着可以在其他实验中再次使用这些样品。

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