scholarly journals Cold-Sintered Temperature Stable Na0.5Bi0.5MoO4–Li2MoO4 Microwave Composite Ceramics

2018 ◽  
Vol 6 (2) ◽  
pp. 2438-2444 ◽  
Author(s):  
Dawei Wang ◽  
Di Zhou ◽  
Shiyu Zhang ◽  
Yiannis Vardaxoglou ◽  
Willian G Whittow ◽  
...  
2018 ◽  
Vol 13 (7) ◽  
pp. 947-950 ◽  
Author(s):  
Li Ma ◽  
Jincheng Yu ◽  
Xue Guo ◽  
Yujun Zhang ◽  
Hongyu Gong
Keyword(s):  

2021 ◽  
Vol 50 (5) ◽  
pp. 2822-2830
Author(s):  
Xiaofeng Qin ◽  
Chuang Zhou ◽  
Heng Wu ◽  
Li Cheng ◽  
Tao fan ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Hyeon-Myeong Oh ◽  
Young-Jo Park ◽  
Ha-Neul Kim ◽  
Kundan Kumar ◽  
Jae-Woong Ko ◽  
...  

AbstractMotivated by recent finding of crystallographic-orientation-dependent etching behavior of sintered ceramics, the plasma resistance of nanocrystalline Y2O3-MgO composite ceramics (YM) was evaluated for the first time. We report a remarkably high plasma etching resistance of nanostructure YM surpassing the plasma resistance of commercially used transparent Y2O3 and MgAl2O4 ceramics. The pore-free YM ceramic with grain sizes of several hundred nm was fabricated by hot press sintering, enabling theoretical maximum densification at low temperature. The insoluble two components effectively suppressed the grain growth by mutual pinning. The engineering implication of the developed YM nanocomposite imparts enhanced mechanical reliability, better cost effectiveness with excellent plasma resistance property over their counterparts in plasma using semiconductor applications.


2021 ◽  
Vol 861 ◽  
pp. 158552
Author(s):  
Zhihao Lou ◽  
Mengjie Qin ◽  
Ping Zhang ◽  
Taichao Su ◽  
Zongmo Shi ◽  
...  

Materials ◽  
2021 ◽  
Vol 14 (3) ◽  
pp. 611
Author(s):  
Benshuai Chen ◽  
Guangchun Xiao ◽  
Mingdong Yi ◽  
Jingjie Zhang ◽  
Tingting Zhou ◽  
...  

In this paper, the Voronoimosaic model and the cohesive element method were used to simulate crack propagation in the microstructure of alumina/graphene composite ceramic tool materials. The effects of graphene characteristic size and volume content on the crack propagation behavior of microstructure model of alumina/graphene composite ceramics under different interfacial bonding strength were studied. When the phase interface is weak, the average energy release rate is the highest as the short diameter of graphene is 10–50 nm and the long diameter is 1600–2000 nm. When the phase interface is strong, the average energy release rate is the highest as the short diameter of graphene is 50–100 nm and the long diameter is 800–1200 nm. When the volume content of graphene is 0.50 vol.%, the average energy release rate reaches the maximum. When the velocity load is 0.005 m s−1, the simulation result is convergent. It is proven that the simulation results are in good agreement with the experimental phenomena.


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