Uniaxial Compressive Behavior of AA5083/SiC Co-Continuous Ceramic Composite Fabricated by Gas Pressure Infiltration for Armour Applications

材料科学 复合材料 陶瓷 复合数 抗压强度 盔甲 渗透(HVAC) 泡沫陶瓷 剪切(地质) 合金 图层(电子)
作者
A. S. Prasanth,V. Krishnaraj,Jayakrishnan Nampoothiri,R. Sindhumathi,Mohamed Raeez Akthar Sadik,J. P. Escobedo,Krishna Shankar
出处
期刊:Journal of composites science [MDPI AG]
卷期号:6 (2): 36-36 被引量:9
标识
DOI:10.3390/jcs6020036
摘要

A novel approach of a gas pressure infiltration technique is presented for the synthesis of Co-Continuous Ceramic Composite (C4). SiC foams of varying pore sizes were infiltrated with aluminium AA5083. Optical examination revealed that the SiC foams contained open cells with a network of triangular voids. The number of pores-per-inch (PPI) in the foams was found to depend on the strut thickness and pore diameter. The compressive strengths of two foam configurations, 10 and 20 PPI, were estimated to lie between 1–2 MPa. After infiltration, the compressive yield strength of the resulting C4 was observed to increase to 126 MPa and 120 MPa, respectively, for the 10 and 20 PPI C4. Additionally, the infiltration of ceramic foam with the AA5083 alloy resulted in an increase in strength of 58–100 times when compared with plain ceramic foam. The failure modes of the composites in compression were analyzed by crack propagation and determining the type of failure. The study revealed that shear failure and vertical splitting were the predominant mechanisms of compression failure, and that the fabricated C4 is advantageous in mechanical properties compared to the plain ceramic foam. This study, therefore, suggests the use of C4 composites in armour applications.
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