Microstructural Design and Processing Control of Advanced Ceramics

Advanced ceramics are referred to in various parts of the world as technical ceramics, high-tech ceramics, and high-performance ceramics. Advanced ceramics have better performances in quality as well as new applications that traditional ones do not have. They have multiple physical and mechanical pr...

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Bibliographic Details
Other Authors: Wang, Qingyuan (Editor), Chen, Yu (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2023
Subjects:
Online Access:DOAB: download the publication
DOAB: description of the publication
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520 |a Advanced ceramics are referred to in various parts of the world as technical ceramics, high-tech ceramics, and high-performance ceramics. Advanced ceramics have better performances in quality as well as new applications that traditional ones do not have. They have multiple physical and mechanical properties including high hardness, high strength, thermal shock resistance, wear resistance, corrosion resistance, and high-temperature resistance. In view of these characteristics, advanced ceramics are often high value-added products. Developments in advanced ceramics continue at a rapid pace, constituting what can be considered a revolution in the kind of materials and properties obtained.This reprint is intended for material researchers and application developers who seek information on the microstructural design and processing control of advanced ceramics, including piezoelectric ceramics, high-temperature ceramic composites, ceramic coatings, metal glasses, etc. 
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650 7 |a Research & information: general  |2 bicssc 
650 7 |a Chemistry  |2 bicssc 
650 7 |a Analytical chemistry  |2 bicssc 
653 |a Aurivillius phase ceramic 
653 |a Bi3TiNbO9 
653 |a electrical conduction behaviors 
653 |a impedance spectrum 
653 |a electrical modulus 
653 |a composite ceramic fibers 
653 |a boron nitride 
653 |a silicon nitride 
653 |a SrBi4Ti4O15 
653 |a high-temperature piezoceramics 
653 |a oxide additives 
653 |a curie temperature 
653 |a piezoelectric coefficient 
653 |a ion substitution 
653 |a Al2TiO5 
653 |a ceramics 
653 |a crystal structure 
653 |a residual stresses 
653 |a neutron diffraction 
653 |a Ti3SiC2-PbO-Ag composites 
653 |a tribo-chemical reaction 
653 |a self-lubricating composite 
653 |a tribo-oxidation 
653 |a photodeposition 
653 |a electron escape 
653 |a semiconductor photocatalyst 
653 |a MAX phase 
653 |a SPS 
653 |a Ti3SiC2/Cu composites 
653 |a sintering characteristic 
653 |a ferroelectrics 
653 |a BiFeO3 
653 |a humidity response 
653 |a sol-gel preparation 
653 |a CaBi4Ti4O15 
653 |a ion doping 
653 |a electrical conduction 
653 |a dielectric relaxation 
653 |a oxygen vacancies 
653 |a BMGs 
653 |a microstructural inhomogeneity 
653 |a tribological behaviors 
653 |a HRRF 
653 |a n/a 
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