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“Multifunctional PLA composites reinforced with exfoliated, expanded, and turbostratic graphite for a sustainable future.” | |
EMILIO GOMEZ SANCHEZ | |
Acceso Abierto | |
Sin Derechos Reservados | |
Multifunctional PLA composites | |
Polymers have been manipulated throughout history, and materials have been the cornerstone of human progress, elevating our production capabilities and living standards. From the earliest tools to the most complex structures, our ability to manipulate materials such as metals, ceramics, and polymers has demonstrated our understanding and ability to reshape nature. In the current era of rapid scientific and technological advancement, the role of materials in driving development and innovation is nothing short of pivotal. These materials can be classified as either structural, focusing on mechanical properties like strength and deformation, or functional, emphasizing their behavior in light, sound, electricity, heat, and magnetic fields. Composite materials, which are formed by combination of different materials, have the goal to increase the number of applications and to change the nowadays materials with high-performance composite materials. The field of materials research is not just evolving; it's innovating. It's moving away from traditional empirical methods and towards a more purposeful approach to materials design. A prime example of this paradigm shift is the emergence of composite materials, a blend of materials that preserve their original properties and acquire new ones. This exciting transition is driven by the desire to expand the scope of applications and to revolutionize today's materials, replacing them with high-performance composites with enhanced properties [1]. | |
22-06-2024 | |
Tesis de maestría | |
Inglés | |
OTRAS | |
Versión aceptada | |
acceptedVersion - Versión aceptada | |
Aparece en las colecciones: | Maestría en Ciencia de Materiales |
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Emilio Gómez Sánchez MCM - 2024.pdf | 6.41 MB | Adobe PDF | Visualizar/Abrir |