• Title/Summary/Keyword: Conservation treatment

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The Conservation of an Woljung Wooden Bridege Structure (월정교지 출토 목재유물의 보존처리)

  • Lee, Chang-Geun;Kim, Ik-Joo;Kim, Sin-Guk
    • 보존과학연구
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    • s.13
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    • pp.9-13
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    • 1992
  • An Woljung wooden bridge structure, which assumde to has been built in the unification of shilla dynasty, was excavated at Nam-chun river basin inKyung-ju. As a result of primary investigation, the weigh loss was 70-80% and the volumetric shrinkage was up to 38% without any conservation. Between 1986 and1991, they were conserved by the two step PEG treatment at the Mokpo Conservation Institute for Maritime Archaeological Finds.

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State of the Arts of the Conservation Science of Stone Monuments and Our Tasks (석조문화재 보존과학의 세계적 연구동향과 우리의 과제)

  • KIM, Soo-Jin
    • 한국문화재보존과학회:학술대회논문집
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    • 2004.10a
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    • pp.1-14
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    • 2004
  • World state of the arts of the conservation of stone monuments is reviewed and the modern conservation program based on conservation science is proposed for the scientific conservation of stone monuments in Korea. The conservation program suggests that the site environment diagnosis, decay diagnosis, petrophysical property analysis, and conservation experiment should always be carefully studied before conservation treatment. It is an up-to-date widely accepted concept in the world of stone conservation science. Our urgent national tasks that should be accomplished for the scientific conservation of stone monuments in Korea are proposed in the following: 1) The stone monument conservation projects should be planned in accordance with 'Conservation Concept of Stone Cultural Properties' and executed in accordance with the proposed 'Conservation Program for Stone Cultural Property' based on conservation science. 2) It is proposed that 'National Institute of Conservation Science for Cultural Properties' be established for systematic conservation research on the tangible cultural properties. 3) The conservation projects of stone monuments should be executed under the control of stone conservation specialist for their quality control. 4) Special national budget should be prepared for quick development of researches on conservation science in Korea.

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Three-Dimensional Digital-Mold Modeling and Sand-Printing for Replication of Bronze Mirror

  • Jo, Young Hoon;Lee, Jungmin
    • Journal of Conservation Science
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    • v.37 no.1
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    • pp.25-33
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    • 2021
  • To extend the application of digital technology to the replication of artifacts, meticulous details of the process and the diversity of three-dimensional (3D) printing output materials need to be supplemented. Thus, in this study, a bronze mirror with Hwangbichangcheon inscription was digitalized by 3D scanning, converted into a voxel model, and virtual conservation treatment was performed using a haptic device. Furthermore, the digital mold of the bronze mirror completed by Boolean modeling was printed using a 3D sand-printer. Such contactless replication based on digital technology reflects the stability, precision, expressivity, collectivity, durability, and economic feasibility of artifacts. Its application can be further extended to cultural products as well as such areas as education, exhibition, and research. It is expected to be in high demand for metal artifacts that require casting. If empirical studies through experimental research on casting are supplemented in the future, it could extend the application of digital technology-based contactless replication methods.

Study on the Manufacturing Technique and Conservation of Portrait Scroll of 'Jo Gyeong' Dated Middle of Joseon (조선중기 조경(趙儆)영정의 보존 및 제작기법 연구)

  • Chang, Yeonhee;Yu, Heisun;Hwang, Yujung
    • Conservation Science in Museum
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    • v.9
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    • pp.85-93
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    • 2008
  • Conservation science team of the National Museum of Korea has conducted conservation treatment for 3 pieces of portraits as a part of project for publishing illustration book of relics of paintings and writings. Among them, portrait scroll of Jo Gyeong is a representative portrait of Seonmoogongsin rank in 17th century of Chosun, which was donated in 1997 and its whole body painted on silk was scrolled. This portrait was in poor state including the silk of portrait got loose from lining paper completely and exfoliation of the pigments. Accordingly before preservation treatment, production technique and the quality of the material lining were surveyed through scientific study(investigation through microscope, XRF, X-ray) and preservation treatment was conducted in order of disassembly, cleaning, removal of lining paper, infiling of the missing parts, lining, finishing.

An Estimation on the Field Application of Consolidants According to Rock Quality (암석 재질에 따른 보존처리제의 현장 적용성 평가)

  • Kim, Jae-Hwan;Han, Min-Su;Lee, Jang-Jon;Song, Chi-Young;Lee, Jae-Man;Kim, Min-Ji;Lee, Myeong-Sung
    • 보존과학연구
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    • s.30
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    • pp.79-91
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    • 2009
  • Stone cultural heritages are mostly situated in field, so they are damaged from mechanical, chemical and biological weathering, and their degree of strength is also weaken. Therefore, the scientific conservation of the stone cultural heritages are necessary in order to the long-term maintenance and safety conservation. In this study, we attempt to estimate on the field application of consolidants which are Wacker OH 100, Remmers KSE 300 and 1T1G according to the quality of the rocks. Based on the ultrasonic velocity, conditions of weathering damage before treatment are mainly ranked completely weathering condition (CW) or partly highly weathering condition (HW). After the first treatment, weathering damage conditions are changed by the high weathering condition (HW). These results shows that the internal pores of stone are filled with consolidant materials, so average ultrasonic velocities increases after treatment. And Remmers KSE 300 which is consolidant material is highest rate of increase of average ultrasonic velocities.

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Conservation of the Ancient Greek Bronze Helmet donated by Sohn Keechung (손기정 기증 고대 그리스 청동제투구의 보존처리)

  • Park, Haksoo;Jeong, Subin
    • Conservation Science in Museum
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    • v.14
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    • pp.69-79
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    • 2013
  • The area of conservation treatment of the bronze helmet of the ancient Greece, treasure No. 904, which Sohn Keechung (1912 to 2002) received as an extra prize for his winning the marathon in the 1936 Berlin Olympics deteriorated and as a result crack and discoloration occurred. Its nose guard hung downward due to the crack of the bonded area of upper end. Therefore, conservation treatment of the helmet was conducted again. The nose guard was separated from the body. Stabilization and consolidation treatment of them was made and then they were joined again. The cracked and missing areas were reinforced with woven glass fibers, and the nose guard was reinforced with woven glass fibers and Ti plate after the bonding. The joined area of the nose guard was carved with the same pattern as that of the surrounding area and its color was adjusted to be the same as well.

On-site Treatments and Conservation of Ox Bones Excavated from Bogam - ri tumulus, Naju (나주 복암리 고분군 출토 소뼈의 수습 및 보존처리)

  • Lee, Jung-Min;Park, Young-Hwan;Youn, Hye-seong;Ham, Chul-Hee;Kwon, Hyuk-nam
    • 보존과학연구
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    • s.36
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    • pp.74-85
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    • 2015
  • An ox bone object was excavated from the wetland at the excavation site in Bogam-ri tumulus, Naju. It was only able to identify the full image of the shape. Bogam were deteriorated and cracked due to the soil pressure and the repeated cycle of freezing and melting. They were also fragmented in pieces and powdered. In situ, bones were dewatered, consolidated and wrapped together with surrounding soils not to lose the fragmented bone pieces. Unpacking was carried out in the conservation lab and the treatment was processed. Soils on the reverse were removed and then the surface was consolidated and reinforced. Then, soils on the excavated side was cleaned and the surface was consolidated. The object was placed in the produced storing box. When the ox bone object was excavated, it did not have its head and was in the shape of tieing all its legs up. This shows that the animal had been tied up during a ritual and then buried. During the treatment, the importance of the burial purpose and maintaining the shape at the time of excavation was considered. Therefore, the shape of the object at the time of excavation was maintained rather than dismantling all these fragile bones and finding the shape of an ox. This conservation of ox bone object shows that conservation treatment methods have to be vary depending on characters and conditions of objects. In addition, it is expecting that this writing could be the reference to bone and horn objects excavated in the future for the whole process from the excavation to the conservation treatment.

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Study on the Conservation of Scale Armor Using Duplication Technique - Focused on the Case of the Conservation Treatment of the Excavated Artifact from Jinyoung 2-Area, Gimhae - (복제 기법을 이용한 찰갑의 보존처리 - 김해 진영 2지구 출토품의 보존처리 사례를 중심으로 -)

  • Kim, Dong Min;Park, Jung Hyeok;Cho, Hyun Kyung;Cho, Nam Chul
    • Journal of Conservation Science
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    • v.31 no.1
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    • pp.75-86
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    • 2015
  • A scale Armor is usually excavated in a scattered form weakened by corrosion after its burial. Therefore, they should be brought into the indoor in a safe environment for the on-site conservation treatment as it was excavated. They should be placed on a stable support with a reinforced base in the indoor treatment. In this process, the bottom surface which can not be observed after the conservation treatment is placed for a record by actual survey and photography. But this method had a limit on figuring out the whole aspects of the artifact. For compensating the defect, duplication of the artifact was considered as an alternative method for the previous two methods in the case of conservation of the scale Armor from Jinyoung 2-Area, Gimhae. Neck guard was excavated in a distorted form by the earth pressure, and was hard to recognize the original shape. However, whole real material of its original form was secured through the combination of each duplicated lamellae. Throughout the application of the duplication technique in the process of conservation of scale Armor and neck guard, it could secure the real material of the bottom surface and elevate the understanding of the artifact. Moreover, a constitution of the armor could be identified more effectively.

A Study of Conservation Treatment and Physical Characteristics of Silver Diadem Ornaments with Flower Design Excavated from Cheokmun-ri site, Namwon (남원(南原) 척문리(尺門里) 출토 은화관식 보존처리와 외형적 특징 연구)

  • Lee, Youngbeom;Yang, Eunhee;Beom, Daegeon
    • Conservation Science in Museum
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    • v.10
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    • pp.15-20
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    • 2009
  • This paper introduces a conservation treatment for silver diadem ornaments with flower design and the types of corrosive chemical compounds. Twelve silver diadem ornaments with flower design from the Baekje period excavated thus far have been classified into four types. This classification is made more specific in this paper. Each of the silver diadem ornaments was compared with one another. The comparison showed that the same production technique had been used for all of them, but they differed in size and thickness. This suggests that only a few pieces were produced whenever needed, rather than many pieces being produced at the same time.

Conservation Treatment of Jikgeum(Weave with Supplementary Golden Wefts) and Bugeum(Gold sticking) Textiles and Costumes Excavated from Tomb of Cheongyeongunju (a Princess) (청연군주묘(淸衍郡主墓) 출토복식(出土服飾) 중 직김(織金), 부김의(附金衣)의 보존처리)

  • Park, Seungwon;Lee, Yoonkyoung;Yu, Heisun
    • Conservation Science in Museum
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    • v.9
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    • pp.67-83
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    • 2008
  • This study is process of conservation treatment for textiles and custumes containing Jikgeum(weave with supplementary golden wefts) and Bugeum(Gold sticking) among excavated ones(including all of Sinsu751) of Cheongyeongunju (a princess) collected by the National Museum of Korea. Adhesive strength was reinforced by coating 2% solution of glue on layer of gold disintegrated in the course of depletion of gold(Au) on the surface after conducting nondestructive test(X-ray fluorescent analysis) of flat gold strip and gold sticking. To remove dust on the surface and polluted materials, dry cleaning through vacuum suction and spray-type wet cleaning were conducted simultaneously and damaged part was restored to recover the relics to original state.