• Title/Summary/Keyword: Ultraviolet stabilizer

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Synthesis and Crystal Structure of Yttria-Stabilized Zirconia (이트리아를 첨가한 저코니아의 합성과 결정구조)

  • Kim, Won-Sa;Suh, Il-Hwan;Bak, Ro-Hak;Kim, Moon-Jib;Kim, Huhn-Jun;Lee, Chang-Hee;Kim, Yong-Che;Seong, Baek-Seok;Lee, Jeong-Soo;Shim, Hae-Seop;Kim, Yi-Kyung;Lee, Jin-Ho
    • Journal of the Korean earth science society
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    • v.18 no.6
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    • pp.553-558
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    • 1997
  • Colorless and transparent cubic zirconia($Zr_{0.73}Y_{0.27}O_{1.87}$) crystal has been synthesized by the Bridgman-Stock-bager method(also called Skull melting method). $Y_2O_3$ is used as stabilizer. The crystal shows a vitreous luster with a slight oily appearance. Under a polarizing microscope, it shows isotropic nature with no appreciable anisotropism. Mohs hardness value is measured to be $8{\sim}8\frac{1}{2}$ and specific gravity 5.85. Under ultraviolet light it shows a faint white glow. The crystal structure of yttria stabilized zirconia was determined, using single crystal X-ray diffraction techniques to be a cubic symmetry, space group $Fm\overline{3}m({O^5}_h)$ with $a=5.1552(5){\AA}$, $V=136.99(5){\AA}^3$, Z=4, and R=0.0488 for 29 unique reflections. Each zirconium atom is at the center of eight oxygen atoms situated at the corners of a surrounding cube and each oxygen atom is at the center of a tetrahedron of zirconium atoms. So a coordination of 8:4 holds in the structure.

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UV Degradation Characteristics and Applicability of Coating Agent for Conservation of FRP Artifacts (FRP 작품 보존을 위한 자외선 열화 특성 및 자외선 차단 코팅제 적용 연구)

  • Han, Ye Bin;Chung, Yong Jae
    • Journal of Conservation Science
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    • v.33 no.3
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    • pp.203-214
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    • 2017
  • This study evaluated the degradation characteristics of FRP by ultraviolet (UV) rays and applied a UV-resistant coating to prevent the degradation of the surface of these sculptures. As a result of the degradation caused by UV rays, there were slight changes in the FRP surface and contact angle. The chromaticity sharply increased in the early phase of degradation. After applying the coating to the FRP, no significant surface changes were observed. However, it had lower changes in color as compared to the uncoated specimen, so it was verified that the control of discoloration could be possible. Some changes in the gloss and contact angle were observed depending on the extent of degradation, but the UV coating agent remained relatively stable. Analysis of the infrared light spectrum showed that there were almost no chemical changes, and it could be concluded that the coating treatment prevented degradation for a certain period. This study investigated the degradation of FRP used as materials in artwork exposed to UV rays, and it was found that there was a delay in the onset of degradation in the FRP with the UV-resistant coating when compared to the uncoated FRP.