Large scale optical inhomogeneities were analysed in different Si(sub 3)N(sub 4) ceramics containing different additive ratios and densified by hot pressing, gas pressure sintering and spark plasma sintering.In all analysed materials showing these optical inhomogeneities ("snow flakes") non-filled triple junctions were locally found which could be correlated with the "snow flake" structure. The internal tensile stress in the amorphous grain boundary phase is the most likely reason for this phenomenon. These stresses are caused by thermal mismatch between the grain boundary phase and the Si(sub 3)N(sub 4) skeleton, or the volume change during crystallisation of the grain boundary phase
The microstructural evolution and structural characteristics and transitions in the thin grain-bound...
The influence of the grain boundary phase composition on high temperature properties of various sili...
High temperatures stimulate thermally activated deformation mechanisms. For single crystal ceramics ...
The majority of polyphase ceramics contain a residual glass phase at their grain boundaries. The sta...
Gas pressure sintering of silicon nitride ceramics can lead to the formation of different coloured n...
Abstract; The microstructure of silicon nitride ceramics is related to the mechanical properties. It...
The mechanical properties of silicon nitride are controlled by the shape and size of the silicon nit...
In this paper, silicon nitride ceramics with Y2O3 and/or Al2O3 sinter additives, with and without Ti...
Present paper deals with the residual stresses localized within the grains of silicon nitride based ...
Grain boundaries in silicon-based ceramics have been characterized by high resolution electron micro...
Crystallizing the grain-boundary glass of a liquid-phase-sintered Si3N4 ceramic for 2 h or less at 1...
A survey is presented of the principles and practice of tailoring: sintering liquid composition and ...
High temperature strength in silicon nitride is limited by glassy second phases which result from th...
The microstructural evolution and structural characteristics and transitions in the thin grainbounda...
The microstructural evolution and structural characteristics and transitions in the thin grain-boun...
The microstructural evolution and structural characteristics and transitions in the thin grain-bound...
The influence of the grain boundary phase composition on high temperature properties of various sili...
High temperatures stimulate thermally activated deformation mechanisms. For single crystal ceramics ...
The majority of polyphase ceramics contain a residual glass phase at their grain boundaries. The sta...
Gas pressure sintering of silicon nitride ceramics can lead to the formation of different coloured n...
Abstract; The microstructure of silicon nitride ceramics is related to the mechanical properties. It...
The mechanical properties of silicon nitride are controlled by the shape and size of the silicon nit...
In this paper, silicon nitride ceramics with Y2O3 and/or Al2O3 sinter additives, with and without Ti...
Present paper deals with the residual stresses localized within the grains of silicon nitride based ...
Grain boundaries in silicon-based ceramics have been characterized by high resolution electron micro...
Crystallizing the grain-boundary glass of a liquid-phase-sintered Si3N4 ceramic for 2 h or less at 1...
A survey is presented of the principles and practice of tailoring: sintering liquid composition and ...
High temperature strength in silicon nitride is limited by glassy second phases which result from th...
The microstructural evolution and structural characteristics and transitions in the thin grainbounda...
The microstructural evolution and structural characteristics and transitions in the thin grain-boun...
The microstructural evolution and structural characteristics and transitions in the thin grain-bound...
The influence of the grain boundary phase composition on high temperature properties of various sili...
High temperatures stimulate thermally activated deformation mechanisms. For single crystal ceramics ...