Boron Carbide Reinforced Alumina Composites
Jenq Liu, P. D. Ownby
Abstract
Jenq Liu, P. D. Ownby
Abstract
The mechanical properties of alumina have been successfully improved by adding isolated boron carbide particles of two different shapes. A K Ic of 7.26 ± 0.20 MPa · m 1/2 for alumina—boron carbide whiskerlike composites and of 5.27 ± 0.12 MPa · m 1/2 alumina—boron carbide shardlike particle composites has been achieved. The fracture toughness of these composites is dependent on the volume fraction of the boron carbide particles as well as their size and shape. The flexural strength is also appreciably enhanced to a constant value with from 5 to 20 vol% boron carbide additions. The whiskerlike particles increase the flexural strength by 25% and the shardlike particles produce a 47% improvement.
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The mechanical properties of alumina have been successfully improved by adding isolated boron carbide particles of two different shapes. A K Ic of 7.26 ± 0.20 MPa · m 1/2 for alumina—boron carbide whiskerlike composites and of 5.27 ± 0.12 MPa · m 1/2 alumina—boron carbide shardlike particle composites has been achieved. The fracture toughness of these composites is dependent on the volume fraction of the boron carbide particles as well as their size and shape. The flexural strength is also appreciably enhanced to a constant value with from 5 to 20 vol% boron carbide additions. The whiskerlike particles increase the flexural strength by 25% and the shardlike particles produce a 47% improvement.
Key concepts: Boron carbide, Materials science, Flexural strength, Composite material, Fracture toughness, Boron, Volume fraction, Carbide