سیمان و پوشش‌های تقویت‌شده با نانوسرامیک: پیشگام در مواد پیشرفته برای افزایش عملکرد و دوام

Nanoceramic-Enhanced Cement and Coatings: Pioneering Advanced Materials for Enhancing Performance and Durability


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نویسندگان: عزیزه رحمانی دل بخشایش

عنوان کنگره / همایش: 4th Coatings and Interfaces Conference (CIC2025) , Poland , Poznań , 2025

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نویسنده ثبت کننده مقاله عزیزه رحمانی دل بخشایش
مرحله جاری مقاله تایید نهایی
دانشکده/مرکز مربوطه دانشکده علوم نوین پزشکی
کد مقاله 87656
عنوان فارسی مقاله سیمان و پوشش‌های تقویت‌شده با نانوسرامیک: پیشگام در مواد پیشرفته برای افزایش عملکرد و دوام
عنوان لاتین مقاله Nanoceramic-Enhanced Cement and Coatings: Pioneering Advanced Materials for Enhancing Performance and Durability
نوع ارائه پوستر
عنوان کنگره / همایش 4th Coatings and Interfaces Conference (CIC2025)
نوع کنگره / همایش بین المللی
کشور محل برگزاری کنگره/ همایش Poland
شهر محل برگزاری کنگره/ همایش Poznań
سال انتشار/ ارائه شمسی 1404
سال انتشار/ارائه میلادی 2025
تاریخ شمسی شروع و خاتمه کنگره/همایش 1404/02/31 الی 1404/03/02
آدرس لینک مقاله/ همایش در شبکه اینترنت
آدرس علمی (Affiliation) نویسنده متقاضی Department of Tissue Engineering, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran

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عزیزه رحمانی دل بخشایشدوم

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عنوان متن
خلاصه مقالهIntroduction: Nanoceramic materials are playing a pivotal role in advancing the development of high-performance coatings and thin films, significantly improving the performance and durability of cementitious composites and surface treatments. These materials, including nano-silica, nano-titania, and nano-alumina, have shown exceptional promise in enhancing key properties such as mechanical strength, chemical resistance, and environmental resilience. The incorporation of these nanoceramics into coatings has led to substantial improvements, making them an ideal solution for various industrial applications. Methods: For instance, the addition of nano-silica to cementitious materials has been shown to increase compressive strength by up to 20%, primarily due to its pozzolanic activity, which facilitates the formation of additional cementitious compounds and refines the microstructure at the nanoscale. This refinement process results in a more compact and homogeneous material, enhancing its mechanical properties. Similarly, nano-titania and nano-alumina contribute significantly to reduced permeability and enhanced chemical resistance, improving the durability of coatings under harsh environmental conditions. These nanoparticles fill voids within the material matrix, refining the interfaces between particles and enhancing overall structural integrity. Results: In recent studies, microstructural investigations, have provided visual confirmation of these enhancements, showing denser, more uniform networks within the material. These improved structures not only contribute to the mechanical properties but also the longevity and environmental performance of the coatings, ensuring that they can withstand the effects of weathering, chemical exposure, and physical wear. Conclusion: The integration of nanoceramic materials into coatings represents a significant breakthrough in surface engineering, offering new opportunities for creating sustainable and high-performance materials in the construction industry. Future research will focus on optimizing nanoparticle concentrations, assessing long-term durability and performance under real-world conditions, and evaluating the environmental and economic impacts of these advanced materials. With continued innovation, nanoceramics have the potential to revolutionize the field of coatings and surface treatments.
کلمات کلیدیNanoceramic materials, Cementitious composites, Advanced coatings, Mechanical durability

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booklet.pdf1404/02/27841767دانلود
published version.pdf1404/02/27818343دانلود
rahmani_del_bakhshayesh_642932.CERTIFICATE.pdf1404/02/27798970دانلود