Fabrication of High‐Strength Continuous Zirconia Fibers and Their Formation Mechanism Study

Получение высокопрочных непрерывных циркониевых волокон и исследование механизма их формирования
Wei Du, Heyi Liu, Xianqin Hou, Xin‐Qiang Wang, Yanling Wang, Dong Xu, Chen Wang, Mengkai Lü, Duorong Yuan
2004-12-01

continuous zirconia fiberspolyacetylacetonatozirconium precursorpyrolysisspecial atmosphere heat treatmenttensile strength 2.8 GPa
Continuous zirconia fibers with a nanometer ceramic structure and a tensile strength up to 2.8 GPa were fabricated by pyrolyzing polyacetylacetonatozirconium precursor fibers through a special atmosphere heat treatment. DSC‐TGA, GC‐MS, IR, SEM, and TEM were used to study the fiber transformation mechanism during heating. Results showed that special atmosphere heat treatment could make the organics in the fibers come out directly without carbonization and remove them almost entirely under 400°C, and the obtained zirconia fibers had few defects, good continuity, and high strength.
1
Continuous zirconia fibers with nanometer ceramic structure were fabricated by pyrolyzing polyacetylacetonatozirconium precursor fibers using a special atmosphere heat treatment.
2
DSC-TGA, GC-MS, IR, SEM, and TEM analyses were used to elucidate the fiber transformation mechanism during heating.
3
Fibers obtained after treatment exhibited few defects, good continuity, and high strength.
4
Special atmosphere heat treatment caused organics to exit fibers directly without carbonization and removed them almost entirely below 400°C.
5
The produced zirconia fibers achieved tensile strength up to 2.8 GPa.

Continuous zirconia fibers produced by pyrolysis of polyacetylacetonatozirconium precursor fibers

Formation mechanism during heat treatment and resulting nanoceramic structure and mechanical properties (tensile strength up to 2.8 GPa), including removal of organics without carbonization and defect minimization

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Publication Date
2004-12-01
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Wei Du
Heyi Liu
Xianqin Hou
Xin‐Qiang Wang
Yanling Wang
Dong Xu
Chen Wang
Mengkai Lü
Duorong Yuan
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