• Title/Summary/Keyword: 고온 XRD

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Estimation Study of Firing Temperature for Fired Clay Brick Relics Excavated from Buddhist Temple in Karatepa Using Analytical Method of High Temperature X-ray Diffraction (고온 XRD 분석법을 이용한 카라테파 불교사원 출토 점토벽돌의 소성온도 추정연구)

  • Han, Min Su;Lee, Jang Jon;Kim, Jae Hwan
    • Journal of Conservation Science
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    • v.32 no.4
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    • pp.511-520
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    • 2016
  • The purpose of this study was to estimate the firing temperature of fired clay brick by applying high temperature X-ray diffraction(XRD) analysis. The clay bricks, which were excavated from a Buddhist temple in Karatepa, Uzbekistan were composed of quartz, plagioclase, alkali feldspar, mica, chlorite, limestone, hornblende, etc. Some clay bricks contained gypsum, which was presumed to have been used to improve the adhesive strength of the brick. Estimating the firing temperature using a geologic thermometer, the UZ-1 sample was identified as being in the quartz, plagioclase, pyroxene series, and the firing temperature was estimated to be $900-1200^{\circ}C$. On the other hand, applying the high temperature XRD method to the UZ-5 sample, it was found that the limestone was destroyed at $1000^{\circ}C$ and the diffraction peak of chlorite was weakened at $1050^{\circ}C$. Moreover, pyroxene series minerals developed at $1050^{\circ}C$ in the reproduction experiment. These results indicate that the clay bricks used in the temple were produced in a kiln that reached a temperature of more than $1000^{\circ}C$. Thus, high temperature XRD analysis can more accurately estimate firing temperatures as compared to the firing temperature mineral identification method and it can be used to determine the creation and extinction temperature range of minerals.

Microstructural Evaluation of $CO_2$ Oxidation Process of High Modulus Carbon Fibers by XRD Analysis (XRD를 이용한 고강성 탄소섬유의 이산화탄소 산화 중에 발생하는 구조변화 해석)

  • 노재승
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.03a
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    • pp.228-228
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    • 2003
  • 고강성 탄소섬유는 높은 비강도 및 고 강성 특성 때문에 탄소-탄소 복합재료의 가장 우수한 강화재로 각광을 받고 있다. 이 섬유는 미세 결정립의 높은 이방성을 나타내며, 이러한 높은 흑연화 특성은 기계적, 전기적, 전기적 그리고 화학적 특성 등을 좋게한다. 이러한 모든 방면에서의 우수한 특성 때문에 항공우주 재료분야에 의심 없이 가장 우수한 재료로 고려되고 있다. 이렇게 가벼우면서 고온강도가 요구되는 재료로써 탄소재료가 이용되면서 rocket의 nozzle이나 nosecone으로의 응용에는 고온 산화가 중요한 연구주제로 대두되어 왔다. 탄소재료의 산화반응은 결정구조 인자 및 그 배열에 가장 큰 영향을 받는다고 알려져 있는데, 출발원료 및 제조 조건에 따라 그 구조 및 배열이 현격하게 달라진다. 탄소재료의 구조 해석은 주로 TEM과 XRD를 이용해 왔다. 많은 연구자들은 오래 전부터 탄소재료 연구에 TEM에서 얻은 상이 불확실하고 문제가 있다고 보고하였고, 최근 TEM 장치의 발달과 더불어 실제 구조를 얻기가 가능함을 보여주고 있다 그러나 TEM 시편은 여전히 작고 시편으로부터 얻는 정보는 불과 nm 수준이다. 따라서 일반적으로 TEM으로 얻은 정량적인 정보는 불과 특정한 점에서의 정보이기 때문에 여전히 논란의 소지가 많다. XRD는 탄소재료의 미세구조 해석을 위하여 가장 널리 이용되는 분석기기이다.

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Examination of Ingredients of High Temperature Heat Resistant Inorganic Fire-Resistant Adhesive Using XRD Analysis (XRD 분석을 이용한 고온가열 무기계 내화 접착제의 성분검토)

  • Cho, Hyeon-Seo;Ji, Woo-Ram;Shin, Ki-Don;Lee, Gun-Cheol
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2018.11a
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    • pp.81-82
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    • 2018
  • The structure of the RC structure is actively reinforcing the structure of the building which has suffered from aging, artificial and natural damage of the building. Among various reinforcement methods, epoxy adhesive is used to attach FRP in FRP reinforcement method which is reinforcing by attaching FRP to the structural part. At this time, the epoxy adhesive having a low critical temperature has a sudden adhesive failure upon exposure to heat, and thus, the development of an inorganic fireproof adhesive having a high critical temperature has progressed. Therefore, in this study, the compositional change of inorganic fire - resistant adhesive exposed to high temperature heat was analyzed by XRD.

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Microstructure Properties of Cement Matrix Exposed to High Temperature (고온에 노출 된 시멘트 매트릭스의 미세구조 특성)

  • Lee, Gun-Young;Lee, Gun-Cheol;Choi, Jung-Gu;Gao, Shan;Heo, Young-Sun
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2015.11a
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    • pp.24-25
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    • 2015
  • To secure fundamental materials for the performance change in concrete structure damaged by fire, this study analyzed SEM and XRD of hardened cement depending on high temperature conditions. As a result, at more than 200℃, SEM and XRD were not observed because of dehydration of Ettringite; at more than 500℃, calcium hydroxide was rapidly decomposed; at more than 700℃, calcium oxide was found; at 1000℃, the highest peak point appeared.

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플라즈마 용사된 알루미나-지르코니아 복합체의 고온 마모, 마찰 거동

  • 김장엽;임대순;안효석
    • Proceedings of the Korean Society of Tribologists and Lubrication Engineers Conference
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    • 1995.06a
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    • pp.72-82
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    • 1995
  • 본 연구에서는 고온 내마모 부품에 사용되는 지르코니아계 세라믹을 이용하여 spray drying법으로 알루미나의 첨가량을 변화시킨 지르코니아-알루미나 복합 분말을 사용하여 플라즈마 용사법에 의해 코팅을 얻었다. 얻어진 코팅의 고온에서의 마모, 마찰 특성의 변화를 살펴보고자 하였다. 마모, 마찰실험은 상온~180$^{\circ}$C까지 수행하였으며 마모전과 후의 변화를 XRD, TEM, SEM 등을 이용하여 관찰하였다.

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Performance Evaluation of High Strength Concrete with Composite Fibers in Accordance with High Temperature (복합섬유가 혼입된 고강도 콘크리트의 고온가열에 따른 성능 평가)

  • Kim, Seung-Ki;Kim, Woo-Suk
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.19 no.6
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    • pp.63-71
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    • 2015
  • The objective of the present study is to investigate how elevated temperature ranging from $100^{\circ}C$ to $800^{\circ}C$ as well as room temperature affects the variation of mechanical properties of high strength concrete ($over\;f_{ck}=60MPa\;grade$). In this experiment, specimens were exposed for a period of $2^{\circ}C/min$ to temperatures of $20^{\circ}C$, $100^{\circ}C$, $200^{\circ}C$, $300^{\circ}C$ $400^{\circ}C$, $500^{\circ}C$, $600^{\circ}C$, $700^{\circ}C$ and $800^{\circ}C$, respectively. Accordingly, the study investigated the fire resistance performance of high strength concrete mixed with composite fibers which composed with hybrid fibers and steel fibers. After cooling down to ambient temperature, the following basic mechanical properties were then evaluated and compared with reference values obtained prior to thermal exposure: (i) compressive strength in room temperature; (ii) residual compressive strength; (iii) Poisson's ratio; (iv) weight change; (v) SEM analysis & XRD analysis In addition, XRD and SEM Images analyses were performed to investigate chemical and physical characteristics of high strength concrete with composite fibers according to high temperature.

Microstructure Characteristics of Concrete Exposed to High Temperature (고온에 노출된 콘크리트 미세조직의 특성)

  • 태순호;이병곤
    • Fire Science and Engineering
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    • v.12 no.4
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    • pp.31-40
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    • 1998
  • Very often, whether accidentally or intentionally set fire, according as building are elevated, varied or complicated day by day. It is of primary importance that we have a treatment of fire damaged structure. In general, strength and elasticity modulus of heated concrete are reduced. Product background of cement, sand and coarse aggregate differ from country to country, so that thermal behaviour of concrete make a difference in high temperature. To cope with demand, this paper is a study on relation to microstructure and strength reduction. In consequence of experiments, concrete exposed to high temperature are estimating the reduction of mechanical properties in comparison with microstructure characteristics which are abtained from the SEM/EDX, XRD and DSC-TG analysis of heated specimens under various temperature.

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High temperature characteristic of cathodic arc deposited ZrO2/Al2O3 thin films (음극 아크법으로 증착한 ZrO2/Al2O3 박막의 고온특성)

  • Lee, Dong-Bok;Van Trung, Trinh;Kim, Seon-Gyu
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2012.05a
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    • pp.174-175
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    • 2012
  • 음극 아크법으로 증착한 $ZrO_2/Al_2O_3$ 박막의 고온특성을 대기중 $600-900^{\circ}C$에서 50시간동안 노출시킨후 XRD, XPS, AES. SEM, TEM을 이용하여 분석하였다. 증착된 박막은 비정질이었고, 고온에서 가열함에 따라 점차 결정질로 바뀌었다.

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Effect of V, Mo, Nb on high temperature oxidation of TiAl (TiAl합금의 고온산화에 미치는 V, Mo, Nb의 영향)

  • 장유동;이동복
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.03a
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    • pp.157-157
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    • 2003
  • TiAl 금속간화합물은 저밀도, 고용융점 및 우수한 고온강도 둥의 여러 장점을 지녀 고온의 열악한 부식성 분위기에 노출되는 가스터빈, 자동차 엔진부품 등에 사용하기 위해 최근 활발한 연구가 진행되고 있다. 그러나 이 합금의 실용화에 장애가 되는 가장 큰 문제점은 나쁜 저온인성, 고온가공의 어려움 및 고온에서의 나쁜 내산화성이다. 일반적으로 V는 상온연성을 증진시키지만 내산화성을 감소시키고, Nb는 상온연성과 내산화성을 증진시키는 원소이다. 또한 Mo는 강도와 연성을 증진시킨다. 이들 첨가원소의 산화특성을 비교분석하기 위하여 고온산화실험을 실시하고, 산화막의 구조, 산화막의 종류 및 형성과정을 SEM/EDS, EPMA 및 XRD을 이용하여 조사하였다.

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Pressure Effects on the Dehydration Behavior of Natrolite (나트로라이트 탈수현상의 압력의존성에 관한 연구)

  • Hwang, Gil Chan;Jang, Young-Nam;Liu, Zhenxian;Lee, Yongjae
    • Journal of the Mineralogical Society of Korea
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    • v.26 no.3
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    • pp.175-187
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    • 2013
  • In-situ Raman and X-ray diffraction experiments have been performed on mineral natrolite (Na-zeolite) to investigate the dehydration behavior under high temperature and high pressure-temperature conditions. XRD data show reversible dehydration up to $450^{\circ}C$ whereas Raman data show irreversible change when the material is heated up to $630^{\circ}C$. The existence of post-natrolite was newly identified to form from ${\beta}$-metanatrolite at $380^{\circ}C$ upon cooling. The formation of dehydrated metanatrolite under simultaneous high temperature-pressure (room temperature < T < $300^{\circ}C$, 0 GPa < P < 2.1 GPa) conditions was not observed.