Composite materials have high strength to weight ratio, corrosion, resistance, fatigue and durability, due to that they are widely used in aerospace applications. Aramid FiberReinforced Composites, Carbon Fiber Reinforced Polymers, Glass Fiber Reinforced Polymers, CeramicMatrix Composites and MetalMatrix Composites, by using of above composite materials allows aerospace manufacturers to create lighter, stronger, and more fuel-efficient components, all while enhancing the performance and safety of aircraft and spacecraft. Aluminium-copper alloy, is highly regarded in aerospace field applications. It is due to the cryogenic stability, corrosion resistance and exceptional strength. The aim of this research work is to improve the thermal and mechanical properties of AA2219 by incorporating rutile, a material known for its hardness and thermal stability, as a reinforcing phase.This review explores the development and characterization of an advanced aluminium matrix composite (AMC) consisting of AA2219 aluminium alloy reinforced with rutile (TiO2) particles.

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Aluminium 2 Series Rutile Composite Materials: Fabrication, Characterization and Performance Enhancement - A Review

  • Akhil S. Prasad,
  • P. Balamurugan

摘要

Composite materials have high strength to weight ratio, corrosion, resistance, fatigue and durability, due to that they are widely used in aerospace applications. Aramid FiberReinforced Composites, Carbon Fiber Reinforced Polymers, Glass Fiber Reinforced Polymers, CeramicMatrix Composites and MetalMatrix Composites, by using of above composite materials allows aerospace manufacturers to create lighter, stronger, and more fuel-efficient components, all while enhancing the performance and safety of aircraft and spacecraft. Aluminium-copper alloy, is highly regarded in aerospace field applications. It is due to the cryogenic stability, corrosion resistance and exceptional strength. The aim of this research work is to improve the thermal and mechanical properties of AA2219 by incorporating rutile, a material known for its hardness and thermal stability, as a reinforcing phase.This review explores the development and characterization of an advanced aluminium matrix composite (AMC) consisting of AA2219 aluminium alloy reinforced with rutile (TiO2) particles.