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首页> 外文期刊>Journal of Materials Science >Microstructure-properties relationship in ceramic-elastomer composites with 3D connectivity of phases
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Microstructure-properties relationship in ceramic-elastomer composites with 3D connectivity of phases

机译:具有3D相连接的陶瓷-弹性体复合材料的微观结构-性能关系

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The ceramic-elastomer composites with 3D phase connectivity were tested under compressive loads. Such composites exhibit high initial strength and stiffness with the ability to sustain large deformations. Samples of the composites were made of porous Si0_2 ceramic matrix infiltrated by polyurethane elastomer. The ceramic matrix preforms used differed in the porosity and three different composite microstructures have been obtained. Selected parameters of microstructure composites were evaluated using image analysis. The compressive strength and capacity for energy absorption are characterized under various strain rates (0.001-235 s—t). It was found that stress—strain characteristic depends on the strain rate and the specific interface area (Sv). Pore size and the specific interface area have a strong effect on the compressive strength of composites and these parameters can be used for tailoring their mechanical properties. The acoustic emission was applied to identify stages in the process of microstructure damage during compression. The interpretation of damage stages was proposed, which also explains the character of the stress—strain curves.
机译:具有3D相连接性的陶瓷弹性体复合材料在压缩载荷下进行了测试。这样的复合材料显示出高的初始强度和刚度,并且能够承受大的变形。复合材料的样品是由聚氨酯弹性体渗透的多孔SiO 2陶瓷基体制成的。所使用的陶瓷基体预成型体的孔隙率不同,并且已经获得了三种不同的复合微结构。使用图像分析评估微结构复合材料的选定参数。在各种应变率(0.001-235 s-t)下表征了压缩强度和能量吸收能力。发现应力-应变特性取决于应变率和比界面面积(Sv)。孔的大小和特定的界面面积对复合材料的抗压强度有很大的影响,这些参数可用于调整其机械性能。应用声发射来识别压缩期间微结构破坏过程中的阶段。提出了损伤阶段的解释,它也解释了应力-应变曲线的特征。

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