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首页> 外文期刊>Refractories and Industrial Ceramics >STUDY OF MOLDING STRUCTURES AND PHYSICOMECHANICAL PROPERTIES OF CARBON-CERAMIC COMPOSITE MATERIALS OF THE SiC - C SYSTEM
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STUDY OF MOLDING STRUCTURES AND PHYSICOMECHANICAL PROPERTIES OF CARBON-CERAMIC COMPOSITE MATERIALS OF THE SiC - C SYSTEM

机译:SiC-C系碳陶瓷复合材料的成型结构和物理力学性能研究。

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摘要

The microstructure of composite materials of the composition SiC - C is analyzed. It is established that they are a separate group of materials containing a ceramic matrix. The ceramic matrix experiences tensile stresses, as a result of which within the composite material a traditional internal stress field is distorted. The ceramic matrix increases strength at carbon phase boundaries of the composite material, and it reduces porosity. An excess of ceramic material reduces strength and thermal stress resistance. Requirements are provided for porosity of the structure that govern the optimum field of material composition.
机译:分析了组成为SiC-C的复合材料的微观结构。已经确定它们是包含陶瓷基体的一组单独的材料。陶瓷基体承受拉伸应力,其结果是在复合材料内传统的内部应力场发生了变形。陶瓷基体增加了复合材料碳相边界处的强度,并降低了孔隙率。过量的陶瓷材料会降低强度和耐热应力。提供了对控制材料成分的最佳领域的结构孔隙率的要求。

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