• 제목/요약/키워드: TiB$_2$-Fe-Mo

검색결과 18건 처리시간 0.023초

청자 유약 발색메카니즘에 대한 뫼스바우어 분광법에 의한 연구 (Mössbauer Spectroscopic Study on Colorative Mechanism of Celadon Glaze)

  • 김종영;노형구;전아영;김응수;조우석;김경자;김진모;김철성
    • 한국세라믹학회지
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    • 제48권1호
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    • pp.34-39
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    • 2011
  • Systematic study on relationship between celadon coloring and glaze component was conducted by chromaticity analysis and M$\ddot{o}$ssbauer spectroscopic analysis. The chromaticity ($L^*$, $a^*$, $b^*$ values) and M$\ddot{o}$ssbauer analysis results were correlated to the amount of $Fe_2O_3$, $TiO_2$, MnO, and $P_2O_5$, which are the essential factors influencing celadon coloring. According to chromaticity analysis, celadon glaze color belongs to GY group when the addition of $TiO_2$ was 1.4%, whereas the color belongs to BG group when the addition of $TiO_2$ was 0.1%. For the GY group, the colors change from GY to YR with the decrease of brightness as the addition of $TiO_2$, MnO, and $P_2O_5$ increases. According to M$\ddot{o}$ssbauer analysis results, as the amount of divalent iron ion increases, the $a^*$ and $b^*$ values decrease, on the other hand, $L^*$ value increases. The ratio of divalent iron ion produced in reductive sintering process is found to be 80~95% in this study, which induces the increase of $L^*$ values in celadon glaze.

충주 어래산 일대에서 산출하는 희토류 광물의 광물학적 및 광물화학적 특성 (Mineralogy and Mineral-chemistry of REE Minerals Occurring at Mountain Eorae, Chungju)

  • 유병운;이길재;고상모
    • 자원환경지질
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    • 제45권6호
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    • pp.643-659
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    • 2012
  • 충주 지역은 소위 옥천층군에 해당되는 계명산층이 분포하며, 계명산층내에는 변성화산암 모암과 페그마타이트 모암의 희토류 광체가 배태한다. 변성화산암 모암의 희토류 광체를 구성하는 희토류광물은 갈렴석, 저어콘, 인회석, 스핀이 산출하나 갈렴석이 가장 우세하게 산출한다. 페그마타이트 모암의 희토류 광체를 구성하는 희토류 광물은 퍼구소나이트, 카르나수르타이트, 저어콘, 토륨석이 산출하나 퍼구소나이트가 가장 우세하다. 변성화산암에서 산출하는 갈렴석의 화학식은 (Ca, Y, REE, Th)$_{2.095}$(Mg, Al, Ti, Mn, $Fe^{3+})_{2.770}(SiO_4)_{2.975}(OH)$로서 TREO 23.89-29.12 wt%, $La_2O_3$ 4.71-9.92 wt%, $Ce_2O_3$ 11.30-14.33 wt%, $Y_2O_3$ 0.11-0.29 wt%, $ThO_2$ 0.12-0.94 wt% 이다. A(2) 사이트 에서 $Ca^{2+}$$REE^{3+}$, M(2) 사이트에서 $Al^{3+}$$Fe^{2+}$의 치환이 일어나는데 이는 갈렴석의 화학조성에 밀접한 관련을 갖는 특징이고, Fe의 함량이 일반 갈렴석보다 높은 Ce 계열의 Ferriallanite에 해당된다. 이는 모암인 계명산층을 주로 구성하는 변성화산암(변성조면암)의 원암이 Fe이 풍부한 함철층이기 때문인 것으로 판단된다. 페그마타이트 모암에서 가장 우세하게 산출하는 퍼구소나이트의 화학조성은 A 사이트에서 Y-REE, Y-Th 치환이 우세하게 일어났으며, B 사이트에서는 Nb-Ta-Ti의 치환이 주로 초래되었으며, 계산된 화학식은 $YNbO_4$ 이다. 또한 $Y_2O_3$$Nb_2O_5$만의 비율로 상관도를 확인 한 결과 연구지역에서 산출되는 퍼구소나이트는 Y과 Nb의 이상적인 비율인 1:1 비율과 달리 1:1.5의 비율을 나타내고 있으며, Nb의 함량이 Y 함량보다 높으며, Y 사이트 즉, A 사이트에서 희토류 원소의 치환이 활발하게 초래되었다. 페그마타이트에서 산출하는 카르나수르타이트는 REE 및 Th를 치환하는 조성은 각각 $Ce_2O_3$ 9.16-22.88 wt%, $La_2O_3$ 2.15-9.16 wt%, $ThO_2$ 0.44-10.8 wt%, 화학조성으로 계산된 구조식은 (Y, REE, Th, K, Na, Ca)$_{1.478}$(Ti, Nb)$_{1.304}$(Mg, Al, Mn, $Fe^{+3})_{0.988}$(Si, P)$_{1.431}O_7(OH)_4{\cdot}3H_2O$이다. 870-860 Ma 인 초기 원생대에 로디니아 대륙의 분열기로서 한반도에서 A-1형 화산활동이 초래되어 철, 희토류원소 및 고장력원소(Nb, Zr, Y 등)가 풍부한 변성화산암으로 주로 구성되는 계명산층을 형성 시켰다면 갈렴석은 모암이 형성될 당시 알카리 화산암에서 정출되었거나 변성작용이 초래된 고생대 말(300-280 Ma, Cho et al., 2002) 광역변성작용에 의해 형성 되었을 가능성이 높다. 희토류를 함유하는 페그마타이트에서 산출하는 저어콘 연대가 190 Ma 인 것은 쥬라기에 충주지역에서 광범위하게 초래된 화강암 정치활동과 관련된 가능성이 크다. 따라서 충주지역 계명산층 내 배태된 희토류 광체는 인접한 지역에 배태되어 있지만 매우 차별적 희토류 광화작용이 초래 되어 희토류광물조성과 광체의 산상이 차별적으로 나타나는 것으로 해석된다.

한국에 분포하는 한약자원식물의 무기물 함량에 관한 연구 제 2 보 ( The Mineral Content of Medical Wild Plant Resources in Korea ( II ) )

  • 이상래
    • 한국자원식물학회지
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    • 제3권2호
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    • pp.115-121
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    • 1990
  • In view of the results to have measured metallic elements which is included in 40 sorts of herb medicines and surveyed their distribution, ninekinds of metals including Co, Ce, Ga, 71, Cd, As, Sbr Bu. Pb, are never orlittle included in almost herb medicines. Other twenty four sorts of ele-ments (Mo, Sc, Be, V, Ni, Su, Se, Ba, Cr, Su, Ti, B, Li, Mg, Ca, Sr, Mnl Fe,Cu, Zn. p, Al, Na, K) are metals that are included in large quentities incomparison with others. Selagirellae Radix contains is kinds of metallicelements more then other herb medicines does. The content of elements ofinorganic metal differs greatly according to the part of herb medicines .

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한국에 분포하는 한약자원식물의 무기물 함량에 관한 연구 제1 보 ( The Mineral Content of Medical Wild Plant Resources in Korea ( I ) )

  • 이상래
    • 한국자원식물학회지
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    • 제3권2호
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    • pp.107-114
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    • 1990
  • In view of the results to have measured metallic elements which is included in 45 sorts of herb medicines and surveyed their distribution, 8 kinds ofmetals including Co, Ge, Ga, TL, Cd, As, 8i, Pb, are never or little includedin almost herb medicines . Other twenty-five sorts of elements (Mo, Sc, Be, V,Ni, Sn, Se, Ba, Cr, Sb, Si, Ti, B, Li, Mg, Ca, Cr, Mn, Fe, Cu, Zn, p, Al, Na,K) are more or Less included in all herb Bedicines ana Na, Ca, p and K aremetals that are included in Large quentities in comrarison with others . Patri-uiae Radix Contains 7 kinds of metal lic elements more than other herb medicinesdoes .

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3Cr-1Mo강/STS-309L 오버레이 용접부의 천이영역 조직에 미치는 용접조건의 영향 (Effect of Welding Condition on Microstructure of Transient Zone in Overlay Weld of 3Cr-1Mo Steel/STS-309L)

  • 김동진;김병훈;지병하;김정태;김성곤;강정윤;박화순
    • Journal of Welding and Joining
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    • 제18권2호
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    • pp.49-56
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    • 2000
  • Recently developed Austenite stainless steel, 309L was used to overlay on 3Cr-1Mo-V-Ti-B steels, using Electroslag welding process, which wide electrodes were adopted. Transition region in welding interlayer relating to disbonding crack was investigated. Also, the effect of welding condition on the width of transition region and coarsening grains of the austenite were studied. 1) With increasing welding speed the width of martensite at transient region was increased, but the amount of delta ferrite in weld metal was reduced, being fine grained. 2) The form of martensite at the transition region was occurred by reversible transformation during cooling since the interdiffusion of Cr and Ni from weld metal and Fe and C from base metals at the transition region, causes to lowering the concentration of Cr and Ni at the transition region, leading to increasing Ms point. 3) With increasing welding speed, the grain of austenite formed at the welding interface was finer. With increasing welding current under the same welding speed, the grain size of the austenite was finer. At high current, original grain size of the austenite is coarse, but the austenite has fine grains because the austenite was transformed to martensite during cooling. 4) In the case of high welding speed, the width of martensite at the welding interface was increased, but the grain size of austenite at the welding interface was finer. This indicates that the inhibition of disbonding crack may be achieved through dispersening fine carbides in the gain boundary.

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도재소부용 Ni-Cr 보철합금 개발에 관한 연구 (A Study on the Development of Porcelain Bonded Ni-Cr Dental Alloy)

  • 이규환;신명철;최부병
    • 대한의용생체공학회:의공학회지
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    • 제6권1호
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    • pp.37-46
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    • 1985
  • Development of a dental Ni-Cr alloy system for porcelain veneering crown and bridge was studied in this research. The principles of alloy design were a) It should not contain toxic beryllium. b) It should have low melting Point. c) It should be easily ground and polished. d) It should possess an adequate strength to resist the deformational force In the mouth. e) It should be bondable Ivith porcelain by chemically. After investigating the effect of minor elements such as boron and rare earth metals on the mechanical properties of the Ni-Cr alloy system, the compromised ideal composition for dental use was determined. The composition was l9.6%, Cr, 5.6% Mo, 3.4% Si, 1, 0% Fe, 0.01% Ti, 0.5-1.0% B, 0.2-0.6% misch metal, balance Ni. To compare the performance of experimental alloy with commercially available alloys, the properties such as strength, melting point, and bond strength were measured. The results Ivere as follows: a) Boron increases the strength of the alloy but reduces the elongation. b) Misch metal increases the strength when the boron content is low, but does not increase the strength when boron content is high. And it reduces the elongation drastically, c) Mechanical strength of the experimental alloy was not superior to commercially available Be containing alloy, but handling performance such as castability, ease of granting and polishing, and cuttability were superior to the Be containing alloy.

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Application of Gamma Ray Densitometry in Powder Metallurgy

  • Schileper, Georg
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2002년도 제3회 최신 분말제품 응용기술 Workshop
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    • pp.25-37
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    • 2002
  • The most important industrial application of gamma radiation in characterizing green compacts is the determination of the density. Examples are given where this method is applied in manufacturing technical components in powder metallurgy. The requirements imposed by modern quality management systems and operation by the workforce in industrial production are described. The accuracy of measurement achieved with this method is demonstrated and a comparison is given with other test methods to measure the density. The advantages and limitations of gamma ray densitometry are outlined. The gamma ray densitometer measures the attenuation of gamma radiation penetrating the test parts (Fig. 1). As the capability of compacts to absorb this type of radiation depends on their density, the attenuation of gamma radiation can serve as a measure of the density. The volume of the part being tested is defined by the size of the aperture screeniing out the radiation. It is a channel with the cross section of the aperture whose length is the height of the test part. The intensity of the radiation identified by the detector is the quantity used to determine the material density. Gamma ray densitometry can equally be performed on green compacts as well as on sintered components. Neither special preparation of test parts nor skilled personnel is required to perform the measurement; neither liquids nor other harmful substances are involved. When parts are exhibiting local density variations, which is normally the case in powder compaction, sectional densities can be determined in different parts of the sample without cutting it into pieces. The test is non-destructive, i.e. the parts can still be used after the measurement and do not have to be scrapped. The measurement is controlled by a special PC based software. All results are available for further processing by in-house quality documentation and supervision of measurements. Tool setting for multi-level components can be much improved by using this test method. When a densitometer is installed on the press shop floor, it can be operated by the tool setter himself. Then he can return to the press and immediately implement the corrections. Transfer of sample parts to the lab for density testing can be eliminated and results for the correction of tool settings are more readily available. This helps to reduce the time required for tool setting and clearly improves the productivity of powder presses. The range of materials where this method can be successfully applied covers almost the entire periodic system of the elements. It reaches from the light elements such as graphite via light metals (AI, Mg, Li, Ti) and their alloys, ceramics ($AI_20_3$, SiC, Si_3N_4, $Zr0_2$, ...), magnetic materials (hard and soft ferrites, AlNiCo, Nd-Fe-B, ...), metals including iron and alloy steels, Cu, Ni and Co based alloys to refractory and heavy metals (W, Mo, ...) as well as hardmetals. The gamma radiation required for the measurement is generated by radioactive sources which are produced by nuclear technology. These nuclear materials are safely encapsulated in stainless steel capsules so that no radioactive material can escape from the protective shielding container. The gamma ray densitometer is subject to the strict regulations for the use of radioactive materials. The radiation shield is so effective that there is no elevation of the natural radiation level outside the instrument. Personal dosimetry by the operating personnel is not required. Even in case of malfunction, loss of power and incorrect operation, the escape of gamma radiation from the instrument is positively prevented.

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구룡산(九龍山)(옥천(決川)) 함(含)우라늄 흑색(黑色) 점판암(粘板岩)의 지화학(地化學) 및 성인(成因) (Geochemistry and Genesis of the Guryonsan(Ogcheon) Uraniferous Back Slate)

  • 김종환
    • 자원환경지질
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    • 제22권1호
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    • pp.35-63
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    • 1989
  • 구룡산(九龍山)(또는 옥천(沃川)) 함(含)우라늄 흑연질점판암(黑鉛質粘板岩)은 옥천대(沃川帶) 서북부(西北部)에 따라 증상(層狀) 또는 부딘상(狀)으로 90km이상(以上) 연장(延長) 분포(分布)한다. 함(含)우라늄점판암(粘板岩)의 오토레디오그라프에 나타나는 퇴적(堆積), 속성(續成), 변성구조(變成構造)는 우라늄과 동시퇴적물(同時堆積物)로서 속성작용과정(續成作用過程)에서 전혀 이동(移動)하지 않고 황성변성(廣域變成) 초기(初期)에 제자리에서 미립(微粒)우라니나이트로 재결정(再結晶)하였음을 보여준다. 동시(同時)에 유기물(有機物)은 미세환장흑연(微細環狀黑鉛)으로 되었다. 라미나구조(構造)의 발달(發達)과 평균(平均) 19.64% C, 2.32% S의 함유(含有)는 함(含)우라늄흑니(黑泥) 퇴적(堆積)의 일반조건(一般條件)으로서의 극(極)히 낮은 퇴적화(堆積比), 고유기물함유(高有機物含有), 염기성황경등을 충족(充足)하였으며 Th/U가 0.07로서 해수원(海水源)임을 뜻한다. 지역별(地域別) CaO, $P_2O_5$의 평균치(平均値)가 매우좁은 범위(範圍)의 일정치(一定値)이며 높은 CaO 평균치(平均値)를 나타내어 전퇴적(全堆積)분지를 통(通)하여 동일(同一) pH(7.8-8.0)조건(條件)의 환경(環境)에서 퇴적(堆積)하였음을 나타낸다. 함(含)우라늄점판암(粘板岩)은 같은 성인(成因)의 타산장(他産狀)에 비(比)하여 미량원소(微量元素) 부화도(富化度)가 매우 높다. 고부화(高富化)의 중요(重要)한 원인(原因)으로서 미량원소(微量元素)의 소스(source)인 해수(海水)의 주기적(週期的) 교체(交替)가 요구(要求)되는데 사이크릭퇴적구조(堆積構造)는 그러한 현상(現象)을 뒷받침하여 준다. 흑니(黑泥)의 성인별(成因別) 구성광물(構成鑛物)과 원소(元素)의 수반관계(隨伴關係)에서 쇄설성광물(鑛物)에는 Si, Al, K, Na, Ti, Zr, Th, Be, B, Li, 유기물(有機物)후락숀에, U, Ni, Cu, Co, Zn, Ag, Mo, Pb, Sn, Cd, S, Fe, V, Cr, Y, 탄산염광물(炭酸鹽鑛物)에 Ca, Mg, Mn, P, Ba가 높은 상관(相關)을 나타낸다. 유기물(有機物)의 우라늄고정심전능력(固定沈澱能力)에 있어 사프로페릭(Sapropelic)형(型)보다 휴믹(Humic)형(型)에서 더 높다. 육성식물(陸性植物)의 분해물(分解物)인 휴무스(Humus)는 고대성(古生代) 중기(中期)에 출현(出現)한다. 우라늄 함유(含有) 흑니(黑泥)는 이 시대(時代)의 형성물(形成物)로서 이런 형(型)의 광상(鑛床)은 생물상(生物相)의 진화(進化)에 규제(規制)된 광화작용(鑛化作用)의 산물(産物)이다.

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