Understanding the physical processes during fabrication and annealing of ceramic materials is a long sought goal among material scientists. Using strontium titanate as a model system for perovskite ceramics, the present work combines advanced non-destructive 3D characterization techniques and computational modeling of microstructure evolution in order to link grain morphology, interface anisotropy and microstructure evolution to macroscopic physical properties
Grain growth and densification process play the two most crucial roles on the microstructure evoluti...
Experimental investigations in STO ceramics revealed a grain growth anomaly, that presumably origina...
The physical properties of materials are dominated by their structure and composition. Insight into ...
Understanding the physical processes during fabrication and annealing of ceramic materials is a long...
The three-dimensional grain boundary network of sintered bulk strontium titanate is reconstructed us...
Motivated by the recently reported a growth anomaly in strontium titatate bulk samples1, the microst...
Nondestructive X-ray diffraction contrast tomography imaging was used to characterize the microstruc...
International audienceNon-destructive X-Ray diffraction contrast tomography (DCT) imaging was used t...
The three-dimensional grain boundary network of sintered bulk strontium titanate is reconstructed us...
Strontium titanate is well-known for its non-Arrhenius grain growth, where grain growth coefficients...
This paper reports some research findings on the parallel evolutions of microstructural properties a...
The purpose of this study is to fabricate the Strontium Titanate (SrTiO3) ceramics by using the High...
3D x-ray diffraction contrast tomography (DCT) is a non-destructive technique for the determination ...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
Space charge contributions to the densification of perovskite ceramics during sintering were assesse...
Grain growth and densification process play the two most crucial roles on the microstructure evoluti...
Experimental investigations in STO ceramics revealed a grain growth anomaly, that presumably origina...
The physical properties of materials are dominated by their structure and composition. Insight into ...
Understanding the physical processes during fabrication and annealing of ceramic materials is a long...
The three-dimensional grain boundary network of sintered bulk strontium titanate is reconstructed us...
Motivated by the recently reported a growth anomaly in strontium titatate bulk samples1, the microst...
Nondestructive X-ray diffraction contrast tomography imaging was used to characterize the microstruc...
International audienceNon-destructive X-Ray diffraction contrast tomography (DCT) imaging was used t...
The three-dimensional grain boundary network of sintered bulk strontium titanate is reconstructed us...
Strontium titanate is well-known for its non-Arrhenius grain growth, where grain growth coefficients...
This paper reports some research findings on the parallel evolutions of microstructural properties a...
The purpose of this study is to fabricate the Strontium Titanate (SrTiO3) ceramics by using the High...
3D x-ray diffraction contrast tomography (DCT) is a non-destructive technique for the determination ...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
Space charge contributions to the densification of perovskite ceramics during sintering were assesse...
Grain growth and densification process play the two most crucial roles on the microstructure evoluti...
Experimental investigations in STO ceramics revealed a grain growth anomaly, that presumably origina...
The physical properties of materials are dominated by their structure and composition. Insight into ...