Publication | Closed Access
Lightweight C/SiC Ceramic Matrix Composite Structures with High Loading Capacity
24
Citations
21
References
2019
Year
Materials ScienceMaterials EngineeringMetal Matrix CompositeEngineeringCompositesCeramicsCeramic MaterialMechanical EngineeringComposite Structures (Structural Engineering)Ceramic Matrix CompositesCeramics MaterialsHigh Loading CapacityPrecursor InfiltrationLightweight EfficiencyCeramic TechnologyStructural CeramicCeramic Matrix Composite
Lightweight is one of the key issues for ceramic matrix composites during application. A lightweight concept of lattice core sandwich panel structure is applied for C/SiC composite. In this paper, C/SiC composite lattice core sandwich panel structures with different core angles are proposed and manufactured by using precursor infiltration and pyrolysis (PIP) method. The density, microstructure, and lightweight efficiency, as well as bending behavior, out‐of‐plane compression behavior and in‐plane compression behavior of the lightweight C/SiC structures with different core angles are studied. It is found that the lightweight C/SiC composite lattice core sandwich panel structures can maintain an excellent combination of lightweight characteristic and high loading capacity. And it is believed that this work can give some understanding of C/SiC composite and their structures.
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