Fabrication of Smart Materials Using Laser Processing: Analysis and Prospects
Изготовление интеллектуальных материалов с использованием лазерной обработки: анализ и перспективы
2023-12-21
SCID: 54.1/rzk8kavk
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4D printingdiffractive optical elementslaser processingphotonics and optoelectronicssmart materials
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Abstract (AI)
Laser processing is a versatile tool that enhances smart materials for diverse industries, allowing precise changes in material properties and customization of surface characteristics. It drives the development of smart materials with adaptive properties through laser modification, utilizing photothermal reactions and functional additives for meticulous control. These laser-processed smart materials form the foundation of 4D printing that enables dynamic shape changes depending on external influences, with significant potential in the aerospace, robotics, health care, electronics, and automotive sectors, thus fostering innovation. Laser processing also advances photonics and optoelectronics, facilitating precise control over optical properties and promoting responsive device development for various applications. The application of computer-generated diffractive optical elements (DOEs) enhances laser precision, allowing for predetermined temperature distribution and showcasing substantial promise in enhancing smart material properties. This comprehensive overview explores the applications of laser technology and nanotechnology involving DOEs, underscoring their transformative potential in the realms of photonics and optoelectronics. The growing potential for further research and practical applications in this field suggests promising prospects in the near future.
Key Findings
1
Computer-generated diffractive optical elements improve laser precision through predetermined temperature distributions, offering potential to enhance smart-material performance.
2
Laser processing advances photonics and optoelectronics by enabling precise optical-property control and development of responsive devices.
3
Laser processing enables precise modification of smart-material properties and surface characteristics for diverse industrial applications.
4
Laser-processed smart materials support 4D printing, enabling stimulus-responsive shape changes relevant to aerospace, robotics, healthcare, electronics, and automotive systems.
5
Photothermal reactions and functional additives provide controlled routes for producing smart materials with adaptive properties.
Research Object
laser-processed smart materials
Research Subject
adaptive, surface, thermal, and optical property modification enabling dynamic shape change and responsive photonic/optoelectronic behavior
Publication Details
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2023-12-21
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