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[2] Historical photo curling and fracture mainly caused by the surface performance change of gelatin resulting from alternating dry-wet environment[J]. Journal of Cultural Heritage, 2023, 61: 57-64.
[3] Revealing the surface treatment techniques and degradation characteristics of textiles from a set of thangkas of the mid-Qing Dynasty (1776–1839 CE)[J].Archaeological and Anthropological Sciences, 2023, 15(6).DOI:10.1007/s12520-023-01775-8.
[4] Multi-functional TiO2-based nanocomposite coating with durable superhydrophobicity and enhanced photocatalytic and antimicrobial properties for the sustainable maintenance of building stones[J].Construction and Building Materials, 2023, 404.DOI:10.1016/j.conbuildmat.2023.133139.
[5] Enhanced consolidation efficacy and durability of highly porous calcareous building stones enabled by nanosilica-based treatments[J].中国科学:技术科学英文版, 2023, 66(8):2197-2212.
[6]凝固视野下的中国古代青铜器等壁厚现象观察与研究[J].江汉考古, 2022(5):108-116.
[7]陕西黄龙县摩崖造像调查与初步研究[J].美成在久, 2022(5).
[8]追溯文明根脉 探究文化基因——《中华文明的起源》读后[J].南方文物, 2023(4):182-187.
[9] Research progress on the development mechanism and exploratory protection of the scaling off on earthen sites in NW China[J].中国科学:技术科学英文版, 2023, 66(8):2183-2196.
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[11] Progress or compromise—technological investigation of the transition zone of metal chaplets in ancient Chinese bronzes[J].Archaeological and Anthropological Sciences, 2023, 15(9).DOI:10.1007/s12520-023-01833-1.
[12] Research on the Reinforcement and Inhibition of Water–Salt Activity in Mural Ground Layers by Superhydrophobic SiO2 Particles[J]. Crystals, 2023, 13(10): 1522.
[13]北宋沿邊安定堡漢蕃軍民的護國萬菩薩堂——陝西子長北宋鍾山第10窟主題思想探析[J].華林國際佛學學刊= Hualin International Journal of Buddhist Studies, 2022, 5(1): 50-73.
[14] Deterioration mechanisms of archaeological wood inside the bronze parts of excavated chariots from the Western Han dynasty[J]. Journal of Cultural Heritage, 2023, 62: 90-98.
[15] New solidification simulation reveals the secret of the hidden metal cores in ancient Chinese bronzes[J]. Heritage Science, 2023, 11(1): 252.
[16] Rethinking training strategy in stereo matching[J]. IEEE Transactions on Neural Networks and Learning Systems, 2022, 34(10): 7796-7809.
[17] Design and Application of a Multifunctional Exploration Platform for Robotic Archaeology[C]//2023 IEEE 18th Conference on Industrial Electronics and Applications (ICIEA). IEEE, 2023: 1394-1400.
[18] Art and technique of Cuojinyin: Two belt hooks from luoyang of eastern zhou dynasty[J]. Journal of Archaeological Science: Reports, 2023, 51: 104163.
[19] Realizing nanolime aqueous dispersion via ionic liquid surface modification to consolidate stone relics[J]. Langmuir, 2023, 39(28): 9903-9911.
[20] Effect of glycerol triglycidyl ether on the dimensional stability and flexibility of photographic gelatine films[J]. Heritage Science, 2023, 11(1): 49.
[21] Quaternary ammonium silane modified nanolime for the consolidation and antifungal of stone relics[J]. Construction and Building Materials, 2023, 400: 132605.
地址:西安市长安区东祥路1号西北工业大学长安校区考古探测与文物保护技术教育部重点实验室
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