Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7992131 | Journal of Alloys and Compounds | 2018 | 33 Pages |
Abstract
The effect of sintering temperature (950-1100â¯Â°C) on the densification, microstructure and nonlinear electrical properties of 0.5â¯mol. % Er2O3 added ZnO-V2O5-MnO2-Nb2O5 ceramics powder mixture was investigated. Microstructural characterizations by XRD and SEM coupled with EDS microanalyses confirm the development of equiaxed ZnO grains surrounded by different secondary phases, mainly Er-rich spinel phases in the intergranular layers and triple points. Image analyses reveal that the average size of ZnO grain increases from 1.8 to 7.2â¯Î¼m with increasing sintering temperature from 950 to 1100â¯Â°C. Coarsening of grain structure is found to reduce the breakdown field (10286-2584â¯Vâ¯cmâ1), and nonlinear exponent (150-26). The donor concentration, ND increases from 2.2â¯Ãâ¯1017 to 4.9â¯Ãâ¯1017â¯cmâ3 with increasing sintering temperature from 950 to 1100â¯Â°C, whereas, the depletion layer width, Ï decreases from 56.4â¯nm to 37.8â¯nm. Typically, a fine-grained (1.8â¯Î¼m) and dense (95% TD) varistor sample possessing a high value of nonlinear exponent (αâ¯=â¯150); enhanced breakdown field (10286â¯V cmâ 1) and leakage current density of 0.18â¯mAâ¯cmâ2 could be made by conventional sintering technique at a reasonably lower temperature of 950â¯Â°C from the chosen multicomponent ZnO varistor system.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Samarpita Roy, Debdulal Das, Tapatee Kundu Roy,