MA Zhao-ceng, DU Ling, FANG Chun-ying, YIN Xiu-lan, and JIN Lian-ji, STRUCTURE OF BLACK PATINA ON THE ANCIENT BRONZE MIRRORS, J. Univ. Sci. Technol. Beijing, 3(1996), No. 2, pp. 121-126.
Cite this article as:
MA Zhao-ceng, DU Ling, FANG Chun-ying, YIN Xiu-lan, and JIN Lian-ji, STRUCTURE OF BLACK PATINA ON THE ANCIENT BRONZE MIRRORS, J. Univ. Sci. Technol. Beijing, 3(1996), No. 2, pp. 121-126.
MA Zhao-ceng, DU Ling, FANG Chun-ying, YIN Xiu-lan, and JIN Lian-ji, STRUCTURE OF BLACK PATINA ON THE ANCIENT BRONZE MIRRORS, J. Univ. Sci. Technol. Beijing, 3(1996), No. 2, pp. 121-126.
Citation:
MA Zhao-ceng, DU Ling, FANG Chun-ying, YIN Xiu-lan, and JIN Lian-ji, STRUCTURE OF BLACK PATINA ON THE ANCIENT BRONZE MIRRORS, J. Univ. Sci. Technol. Beijing, 3(1996), No. 2, pp. 121-126.
X-ray diffaction analysis(XRDA)data of the black or brown patina on the surfaces of eight kinds of bronze mirror samples show 4 or 5 broad diffuse peaks which corresponding to almost the same 2θ angle, while their matixes does not.These results indicate that those diffuse peaks were produced by the SnO2, microcrystals of 3~5 nm size contained in the black or brown patina.The matrix of unearthed black patina bronze mirror numbered 223, gives strong XRDA diffraction peaks, indicating that there are a large amounts of non-oxidized bronze alloy particles surrounded by SnO2,which shows that the black patinas are not wholly metallic oxides (mainly SnO2),there are also a lot of original alloys of different sizes in grain in the patina.The bright-field image of the black patina sample gives the same result.