4.2 Article

The Effect of Sm2O3 on the Chemical Stability of Borosilicate Glass and Glass Ceramics

Publisher

WUHAN UNIV TECHNOLOGY
DOI: 10.1007/s11595-014-0982-8

Keywords

borosilicate glass; chemical durability; crystallization; Sm2O3

Funding

  1. National Natural Science Foundation of China [51025416, 51202104, 51362019]
  2. Natural Science Foundation of the Inner Mongolia Autonomous Region [2012MS0807]
  3. Program for Young Talents of Science and Technology in Universities of Inner Mongolia Autonomous Region
  4. Talent Incubation Funding of School of Materials and Metallurgy [2014CY012]

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Sm2O3 containing zinc-borosilicate glass and glass ceramics were prepared by melt quenching method, and the effect of Sm2O3 and micro-crystallization on the chemical stability of borosilicate glass was explored. DTA analysis showed that the endothermic peak and exothermic peak of basic glass changed from 635 degrees C and 834 degrees C to 630 degrees C and 828 degrees C respectively as a result of the doping of Sm2O3. XRD analysis showed the promoting effect of Sm2O3 on crystallization ability of this glass. The cumulative mass loss of base glass, Sm2O3 containing glass, glass ceramic and Sm2O3 containing glass ceramic was 0.289, 0.253, 0.329, 0.269 mg/mm(2) respectively after 26 days corrosion in alkali solution, and 1.293, 1.290, 0.999, 1.040 mg/mm(2) respectively in acidic erosion medium. Micro-crystallization decreased and improved the alkali and acid resistance of borosilicate glass respectively, the addition of Sm2O3 increased the alkali resistance of base glass and glass ceramics, and the slight effect of Sm2O3 on the acid resistance of borosilicate glass was also observed.

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