TY - JOUR
T1 - Mechanically robust Al2O3 f/LaPO4/Al2O3 composite for high-performance microwave transparent
AU - Jing, Linhan
AU - Luo, Fa
AU - Xu, Hailong
AU - Wang, Chunhai
AU - Pan, Haijun
N1 - Publisher Copyright:
© 2024 Elsevier B.V.
PY - 2025/1/5
Y1 - 2025/1/5
N2 - Al2O3 f/Al2O3 composites are considered the up-and-coming candidates for high-temperature microwave transparency applications due to their low dielectric constant, and excellent resilience to heat and oxidation. The interface phase plays a critical role in determining the mechanical properties. Here, the LaPO4 interface layer was introduced in the Al2O3 f/Al2O3 composites successfully via a straightforward and effective precursor transmission method. The fabricated Al2O3 f/LaPO4/Al2O3 possesses a low porosity of 13.5 % and a high density of 2.61 g/cm3. As anticipated., its bending strength reaches 110.3 MPa and its fracture displacement reaches 0.21 mm. More important, the microwave transmittance remains above 90 % for thicknesses ranging from 1 to 2.28 mm and 7.25–7.77 mm throughout the X-band (4.2 GHz, 8.2–12.4 GHz). Consequently, they create prospects for utilizing interface strategies to design a category of functional materials that possess both high strength and high-temperature microwave transparency for various applications.
AB - Al2O3 f/Al2O3 composites are considered the up-and-coming candidates for high-temperature microwave transparency applications due to their low dielectric constant, and excellent resilience to heat and oxidation. The interface phase plays a critical role in determining the mechanical properties. Here, the LaPO4 interface layer was introduced in the Al2O3 f/Al2O3 composites successfully via a straightforward and effective precursor transmission method. The fabricated Al2O3 f/LaPO4/Al2O3 possesses a low porosity of 13.5 % and a high density of 2.61 g/cm3. As anticipated., its bending strength reaches 110.3 MPa and its fracture displacement reaches 0.21 mm. More important, the microwave transmittance remains above 90 % for thicknesses ranging from 1 to 2.28 mm and 7.25–7.77 mm throughout the X-band (4.2 GHz, 8.2–12.4 GHz). Consequently, they create prospects for utilizing interface strategies to design a category of functional materials that possess both high strength and high-temperature microwave transparency for various applications.
KW - AlO/AlO composites
KW - LaPO interface layer
KW - Sol-gel method
KW - The process of closed pores formation
KW - Wave-transparent composite
UR - http://www.scopus.com/inward/record.url?scp=85211103543&partnerID=8YFLogxK
U2 - 10.1016/j.jallcom.2024.177974
DO - 10.1016/j.jallcom.2024.177974
M3 - 文章
AN - SCOPUS:85211103543
SN - 0925-8388
VL - 1010
JO - Journal of Alloys and Compounds
JF - Journal of Alloys and Compounds
M1 - 177974
ER -