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Research Article

Experimental Research of Piece-Mold Casting: Gilt-Bronze Pensive Bodhisattva

초록

영어

We have tried the experimental research of lost-wax casting to reconstruct Gilt-Bronze Pensive Bodhisattva; preliminary and reconstruction experiment based on ancient texts. Main object to reconstruct is Korean National Treasure No.83, Gilt-Bronze Pensive Bodhisattva (Maitreya), then we measure alloy ratio and casting method based on the scientific analysis. Other impurities were removed from the base metal components(copper : tin : lead) and their ratio was set to 95.5 : 6.5 : 3 where the ratios for tin and lead were increased by 2.5% each. The piece-mold casting method was used, and piece-mold casting experiments were carried out twice in this study but supplementary research on piece-mold casting was necessary. The microstructure was confirmed to be typical cast microstructure and the component analysis result was similar to that of the prior study. Analysis of the chemical composition is confirmed to copper, tin, lead, and zinc, and the chemical composition of the matrix was 87.8%Cu-7.5%Sn-2.7%Pb-2.1%Zn, and similar to previous experimental research. Also resulted in the detection of small impurity in Zn. Analysis of the mould revealed that the mould was fabricated by adding quartz and organic matter for structural stability, fire resistance, and air permeability. We expect that our research will contribute to provide base data for advanced researches in future.

목차

ABSTRACT
1. INTRODUCTION
2. GILT-BRONZE MAITREYA IN MEDITATION REPRODUCTION EXPERIMENT
2.1. Properties of Gilt-Bronze Maitreya in meditation
2.2. Reproduction study using piece-mold casting
3. SCIENTIFIC ANALYSIS
3.1. Analysis subject
3.2. Analysis method
3.3. Alloy specimen analysis results
3.4. Mould analysis results
4. CONCLUSION
REFERENCES

저자정보

  • Yong-Hyun Yun Exhibition Division, National Science Museum, Daejeon 34143, Korea
  • Nam-Chul Cho Department of Cultural Heritage Conservation Science, Kongju National University, Gongju 32588, Korea
  • Jung-Mann Doh Interface Control Research Center, Institute of Science and Technology, Seoul 02792, Korea

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