用中子活化分析技术测得南宋郊坛下官瓷样品中36种元素的含量,选取22种元素作为特征元素,并对这些元素进行因子分析,发现构成郊坛下官瓷的原料有着明显的产地特征:南宋官瓷胎料的产地集中而稳定,釉料的配方变化较小;胎、釉的原料组成明显不同;现代仿官瓷和南宋官瓷的原料组成差别很大.
11 samples of ancient Chinese Ru porcelain from Qingliangsi kiln, 23 samples of ancient Chinese Guan porcelain from Jiaotanxia kiln and 4 samples of modern archaized Guan porcelain were obtained to determine the contents of elements in each of them by neutron activation analysis (NAA). The NAA data were further analyzed using fuzzy cluster analysis to obtain the fuzzy cluster trend diagrams for the bodies samples and the glazes samples respectively. The analysis shows that the raw material origins of the Jiaotanxia ancient Chinese Guan porcelain bodies samples are very concentrated; those of the Qingliangsi ancient Chinese Ru porcelain bodies samples are a little dispersed; those of ancient Chinese Guan porcelain glazes samples are relatively concentrated; those of ancient Chinese Ru porcelain glazes samples are dispersed; and the origins of the raw material of ancient Chinese Guan porcelain glazes samples are obviously different from those of ancient Chinese Ru porcelain glazes samples. The bodies samples and glazes samples of Jiaotanxia ancient Chinese Guan porcelain and those of Qingliangsi ancient Chinese Ru porcelain have some difference but can be compared with each other.
The 28 samples from Jiaotan Guan kiln, one sample of mud material in jar from ruins of Jiaotan Guan kiln, one sample of mud material in pool of practice mud, one sample of violet-golden clay near Guan kiln and four samples of glazes and bodies of the modern imitative ancient Chinese Guan porcelain were analyzed by neutron activation analysis(NAA). The contents of 36 elements in each sample were measured. The NAA data were statistically treated by fuzzy cluster method and the trend cluster diagram was obtained. The results show that the raw material origin of the bodies of Jiaotan Guan porcelain is evidently different from those of glazes, the source of raw material of bodies and glazes of Jiaotan Guan kiln are stable, and the iron is assured as main coloring element. The reflecting spectrum and main wavelength of Guan porcelain glazes are determined by color analysis instrument. The relative content of structural iron (Fe~(2+),Fe~(3+)) in the glaze and the quantitative relationship between the main wavelength of glaze in (various) colors are determined by Mssbauer spectrum. Thus the coloring mechanism of Guan porcelain is investigated.
Trace-elements in ancient ceramics and imitative ancient ceramics were determined by neutron activation analysis (NAA). The NAA data are then analyzed by fuzzy cluster method and the trend cluster diagram is obtained. The raw material sources of ancient ceramics and imitative ancient ceramics are determined. The path for improving quality of imitative ancient ceramics is found.