• Title/Summary/Keyword: 화강암 석재

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A Comparative Study on the Whole Rock Magnetic Susceptibility and SHRIMP Zircon U-Pb Geochronology of the Domestic Dimension Stone and Chinese similar Dimension Stone (전암대자율 특성과 SHRIMP 저어콘 U-Pb 연대 측정을 통한 국내 석재와 중국 유사 석재의 비교 연구)

  • Kim, Kun-Ki;Jwa, Yong-Joo;Hong, Sei-Sun;Lee, Ki-Wook
    • The Journal of the Petrological Society of Korea
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    • v.24 no.3
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    • pp.273-289
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    • 2015
  • This study used the petrological features and the whole rock susceptibility characteristics suggest ways to determine the domestic dimension stones and Chinese similar dimension stones. In addition, this study compare the intrusive period by measuring the zircon U-Pb age of these stones. Result of comparing the petrological feature, with the exception of Macheon stone and Boryeong stone to show the differences in mineral composition and texture under a microscope, the domestic dimension stones and Chinese similar dimension stones exhibit substantially the same petrological feature. According to the measurement results for the whole rock magnetic susceptibility, Goheong, Iksan, Pocheon stones are the similar as Chinese dimension stones, and other stones are easily distinguished. The zircon U-Pb age results for Geochang, Iksan, and Pocheon stones are equivalent to the Jurassic Daebo granites and G603, G633, G655 are the Cretaceous granites. Therefore, the domestic dimension stones and Chinese similar dimension stones can be clearly determined by the zircon U-Pb age results.

A Study on Provenance of the Stone Relics of WoljungGyo Bridge built in Silla Kingdom based on Geological Properties (신라시대 교량 월정교에 사용된 석재 유구의 지질공학적 특성에 근거한 산지 추정 연구)

  • Lee, Kwnag-wu;Cho, Sam-Deok
    • Journal of the Korean Geosynthetics Society
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    • v.15 no.4
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    • pp.79-88
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    • 2016
  • A derelict bridge called WoljungGyo is being restored in Gyeongju, the capital city of ancient Silla. WoljungGyo was originally built in 760AD, and later rebuilt in 1280AD during the Goryeo Kingdom. The bridge lasted in working condition for at least 520 years. The bridge was uncovered to the remains of both abutments and four piers, with only one or two steps remaining. The provenance of the WoljungGyo stone relics was investigated to decide the type of stone for the restoration works. Field survey were carried out in the whole area of Gyeongju-Si with petrological investigation for the stone relics. Results of the study present that Namsan granite was used in those days for building of the WoljungGyo. It is seems that the used stones were obtained from tor or core stone around the Tongil-jeon and Tap-gok area in the east side of Mt. Namsan.

A Study on the Stone Materials from Gwanbong Seokjoyeoraejwasang and Three-storied Stone Pagoda in Seonbonsa Temple, Mt. Palgongsan, Korea (팔공산 선본사 관봉 석조여래좌상 및 삼층석탑의 석재에 대한 연구)

  • Moon, Sung Woo;Jwa, Yong-Joo
    • Journal of the Korean earth science society
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    • v.35 no.7
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    • pp.554-561
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    • 2014
  • The rock materials from the two stone heritages in the Seonbonsa temple, Gwanbong Seokjoyeoraejwasang (stone Buddha) and three-storied Stone Pagoda, show almost identical petrographic characteristics. They are greyish white porphyritic granites which mainly consist of plagioclase, alkali feldspar, quartz, biotite, hornblende, and chlorite. The rocks from the both heritages are petrographically similar to those from the outcrops of the Palgongsan granite near the temple. Modal compositions exhibit that the rocks from the stone Buddha belong to monzogranite, whereas those from the pagoda and the outcrop near the temple correspond to syeno- to monzo granite. Whole rock magnetic susceptibility data indicate that the rocks from the stone Buddha, the pagoda, and the outcrop have nearly the same susceptibility values ranging 9-16(${\times}10^{-3}\;SI$). Gamma spectrometer data obtained from these rocks also demonstrate the same value range. In conclusion the two stone heritages in the Seonbonsa temple were made of the Palgongsan granite surrounding the temple.

Characterization of organic-inorganic hybrid compounds based on silicate for stone conservation (Silicate계 유-무기 복합 석재 강화제)

  • Kim, Eun-Kyung;Cho, Hyun-Dong;Won, Jong-Ok
    • 한국문화재보존과학회:학술대회논문집
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    • 2007.05a
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    • pp.67-68
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    • 2007
  • Tetraethyl orthosilicate (TEOS)로 형성된 gel의 film 형성 특성을 증가시키기 위하여 (3-glycidyloxypropyl)trimethoxysilane (GPTMS)와 1,2-bis(triethoxysilyl)ethane (BTEOS)를 추가한 유기-무기 복합 용액을 제조하였다. 화강암과 사암에 적용한 후, 접촉 각 및 고형화 시간, silicate의 함유량, 수분 흡수율 및 석재에 적용되었을 때의 공극률 변화를 측정하여 silicate를 기본으로 하는 복합제의 특성을 분석하였다.

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The Mechanical Properties of the Geochang Granite (거창화강암의 역학적 특성에 관한 연구)

  • Kim, Myeong Kyun
    • Tunnel and Underground Space
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    • v.25 no.1
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    • pp.24-36
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    • 2015
  • The Geochang granite widely used in construction works is one of the most popular dimension stones in Korea. In order to evaluate the physical properties of rock, a lot of laboratory tests for the Geochang granite were conducted to find unit weight, absorption ratio, P wave velocity, S wave velocity, uniaxial compressive strength, Young's modulus, Poisson's ratio, tensile strength, cohesion, friction angle and point load strength index. The uniaxial compressive strength of the Geochang granite was 19.5 times tensile strength and also 8.6 times cohesion, besides P wave velocity was 1.5 times S wave velocity. Correlation analyses were also conducted to find the correlation among 11 different physical properties, where the uniaxial compressive strength showed Pearson correlation coefficient of more than 0.8 with Poisson's ratio, point load strength index and Young's modulus, respectively. Regression analyses were finally conducted by means of both linear and multiple analysis and the brief results including coefficient of determination of more than 0.7 were presented.

Development of Alkoxysilane Mixed Solution as Stone Preservation and Consolidation Materials (알콕시 실란계 석재 보존 및 강화제 개발)

  • Kim, Eun-Kyung;Park, Seong-Yong;Cho, Hyun-Dong;Won, Jong-Ok;Do, Jin-Young;Kim, Sa-Dug
    • Journal of Conservation Science
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    • v.21
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    • pp.21-32
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    • 2007
  • Low-viscosity alkoxysilanes that polymerize into the porous network of decayed stone by a sol-gel process are widely used as stone consolidants. During drying, the gel network contracts due to capillary pressure generated by solvent evaporation. We have prepared tetraethoxysilane mixed solution containing methyltrisilane, ethyl trisilane and (3-glycidyloxypropyl)trimethoxysilane having epoxy ring in order to reduce the shrinkage happened inside the stone porous structure during the gel formation. Mixed solutions were applied into sandstone and granites and characterized by FT-IR, SEM. The gelation time, water uptake, contact angles were measured and compared with those of the commercial stone conservation materials.

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Study on Development of Evaluation Technique and Solidification of Granitic Wastes by the Hydrothermal Hot Press Method (수열 Hot Press법에 의한 화강암 폐재의 고화체형성 및 평가기술의 개발에 관한 연구)

  • Na, Eui-Gyun;Chung, Se-He;Takahashi, Hideaki
    • Korean Journal of Materials Research
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    • v.5 no.3
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    • pp.288-296
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    • 1995
  • 본 연구에서는 석재공장 주변의 오염원으로 되고 있는 화강암 폐재의 고화체의 형성과 평가 기술에 관한 내용을 다루었다. 이를 위해, 최근 고화체의 함성기술로서 높이 평가받고 있는 수열 Hot press법을 이용하여 분말형태의 화강암 폐기물을 고화시키는데 필요한 조건을 찾아내었다. 아울러 고화체의 기계적 성질과 파면의 양상 및 수열실험동안 발생된 생성물 사이의 상호 관계를 고찰하였다. 고화체의 기계적 성질은 수열실험조건에 의존성이 있었으며, 적절한 고화조건은 반응온도 30$0^{\circ}C$, 유지시간 1시간이었다. 또한 고화체의 파면은 반응온도 및 유지시간에 따라 현저히 다른 양상을 보였으며, 수열실험동안 다양한 화합물이 생성되었다. 그 중에서 Xonotlite와 Talc는 고화체의 강도를 저하시키는 주된 화합물이었다.

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Quality of Building Stones by Physical Properties (물성에 의한 석재의 품질도)

  • 박덕원
    • The Journal of Engineering Geology
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    • v.14 no.1
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    • pp.61-69
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    • 2004
  • Building stones are used mainly as a material for making decoration and sculpture, and consequently they must have predominant physical properties extensively. Among various physical properties, the coefficient of pore dominates the usefulness of building stones, so the plans were made for establishing the quality classification of building stones with respect to the nature of pore. For this study, bore-hole core samples according to the depth of the biotite granites and the granitic gneiss were applicated. From the related chart between porosity and absorption ratio, Mungyeong granitic gneiss($Gn_1$) shows the widest phase of distribution in the range of measurement values, and the values decrease in the order of Pocheon granite($Gr_2$) and Mungyeong granite($Gr_1$) in the range. The strength of each rock mass varies with the degree of alteration. Also in correlation between compressive strength and tensile strength, the range of measurement values decrease in the order of $Gn_1$, $Gr_2$and $Gr_1$. Porosity is adopted as a representative physical property for establishing the quality classification of building stones, and then relative evaluation was made with regard to various physical properties. From the related chart between porosity(n)-specific gravity(G), absorption ratio(Ab), compressive strength(${\sigma}_{c}$), tensile strength(${\sigma}_{t}$), shore hardness(Hs) and Young's modulus($E_{t}$), standard of each grade is established.

Precise Diagnosis and Conservation Treatment of the Twin-lion Stone Lantern from the Godalsa Temple Site, Yeoju (여주 고달사지 쌍사자 석등의 정밀진단 및 보존처리)

  • National Museum of Korea Conservation Science Division;Damwon Cultural Heritage Inc.;Man Gyeong Corp.
    • Conservation Science in Museum
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    • v.31
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    • pp.71-103
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    • 2024
  • The National Museum of Korea Conservation science division conducted a precise diagnosis and a non-destructive investigation to comprehensively assess the overall damage of the Twin-lion stone lantern from the Godalsa Temple site, Yeoju to be placed on display in the museum's outdoor stone garden, then reviewed the relevant conservation and management plan and applied conservation treatment to the artifact. The museum carried out the treatment in the following order: precise diagnosis; dismantling of the previously-restored part of the roof stone; reinforcement and restoration of the roof structure with new stone; restoration of the previously-restored part of the lantern's support stone (jungseok); surface texture treatment to the restored area; cleaning (basic, laser); and color matching. The previously-restored part of the roof stone was removed and restored with new stone material, based on the results of a safety diagnosis regarding the separation at the said part. Granite from the Sangju area was selected as the material for the restoration in consideration of the results of mineral analysis as well as the surface color and particle size. The new stone was divided into three pieces based on the descending edges of the octagonal roof structure and joined together using epoxy resin. The structure was further strengthened by inserting titanium rods. It is expected that the status diagnosis and conservation treatment of the twin-lion stone lantern from the Godalsa Temple site in Yeoju will be used as a reference for the future conservation and management of outdoor displays of stone cultural heritage.