Enhancement of thermo-oxidative polyimide composites by functionalized surface modification #sciencefather
Polyimide composites are widely used in high-temperature applications, but their thermo-oxidative stability remains a critical challenge. This study explores an innovative approach to enhance their durability by modifying the polyimide film surface with functionalized coatings. These modifications improve oxidation resistance, thermal stability, and overall performance, making the composites more reliable in extreme conditions. By tailoring surface chemistry, this method strengthens interfacial interactions, reduces degradation, and extends the material's lifespan. Such advancements are essential for aerospace, electronics, and automotive industries, where polyimide materials must withstand harsh environments without compromising mechanical integrity or functionality.
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#Polyimide #Composites #ThermoOxidativeStability #SurfaceModification #MaterialScience #HighTemperatureMaterials #PolymerEngineering #AdvancedMaterials #AerospaceEngineering #Electronics #AutomotiveMaterials #ThermalStability #OxidationResistance #FunctionalCoatings #DurableMaterials #HeatResistantPolymers #Innovation #Engineering #Research #SustainableMaterials
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