• 제목/요약/키워드: 3 Plate type mold

검색결과 18건 처리시간 0.025초

INDUCTION PLASMA DEPOSITION TECHNOLOGY FOR NUCLEAR FUEL FABRICATION

  • I. H. Jung;K. K. Bae;Lee, J. W.;Kim, T. K.;M. S. Yang
    • 한국원자력학회:학술대회논문집
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    • 한국원자력학회 1998년도 춘계학술발표회논문집(2)
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    • pp.216-221
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    • 1998
  • A study on induction plasma deposition with ceramic materials, yttria-stabilized-zirconia ZrO$_2$-Y$_2$O$_3$ (m.p 264O $^{\circ}C$), was conducted with a view developing a new method for nuclear fuel fabrication Before making dense pellets more than 96%TD., the spraying condition was optimized through the process parameters, such as chamber pressure, plasma plate power powder spraying distance, sheath gas composition, probe position, particle size and powders different morphology. The results with a 5mm thick deposit on rectangular planar graphite substrates showed a 97.11% theoretical density when the sheath gas flow rate was Ar/H$_2$120/20 l/min, probe position 8cm, particle size -75 ${\mu}{\textrm}{m}$ and spraying distance 22cm by AMDRY146 powder. The degree of influence of the main effects on density were powder morphology. particle size, sheath gas composition, plate power and spraying distance, in that order. Among the two parameter interactions, the sheath gas composition and chamber pressure affects density greatly. By using the multi-pellets mold wheel type, the pellet density did not exceed 94%T.D., owing to the spraying angle.

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시간경과 및 표면처리에 따른 Glass ionomer cement의 flexual strength의 변화에 관한 실험적 연구 (AN EXPERIMENTAL STUDY ON THE CHANGES OF FLEXURAL STRENGTH OF GLASS IONOMER CEMENT FOLLOWING SURFACE TREATMENT)

  • 김병우;민병순
    • Restorative Dentistry and Endodontics
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    • 제15권1호
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    • pp.120-128
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    • 1990
  • The purpose of this study was to examine the effect of surface treatment on the flexural strength of glass ionomer cement with time elapsed. Glass ionomer cement (Fuji ionomer type II, (GC Co.) was used as experimental materials. Glass ionomer cement was placed in a beam-shaped teflon mold (3mm ${\times}$ 3mm ${\times}$ 25mm) that was rest on a glass plate. Another flat glass was placed on the top of the mold with pressure. After the cement was set, the specimens were divided into three groups and thirty two specimens in each group were surface-treated as follows: No treatment group: Specimens were no surface-treated and stored at $35.6^{\circ}C$ in distilled water. Fuji varnish application (FA) group: Specimens were surface-treated with Fuji varnish (GC Co.) and stored at $35.6^{\circ}C$ in distilled water. Vaseline storage (VS) group: Specimens were no surface-treated and stored at $35.6^{\circ}C$ in vaseline. The flexural strength was measured after I day, 1 week, 2 weeks, 4 weeks from the start of mixing using Instron Universal Testing Instruments. Results were as follows: 1. After 4 weeks, vaseline storage group exhibited the maximum flexural strength (p <0.0005). 2. The flexural strengths in no treatment group were slightly increased with time elapsed, but its difference was not significant, statistically. 3. The flexural strengths in Fuji varnish application group were increased with time elapsed (p <0.05). 4. The flexural strengths in Fuji varnish application group and vaseline storage group were greater than that in no treatment group (p <0.0005).

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Effects of SiC Particle Size and Inorganic Binder on Heat Insulation of Fumed Silica-based Heat Insulation Plates

  • Jo, Hye Youn;Oh, Su Jung;Kim, Mi Na;Lim, Hyung Mi;Lee, Seung-Ho
    • 한국세라믹학회지
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    • 제53권4호
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    • pp.386-392
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    • 2016
  • Heat insulation plates of fumed silica were prepared by mixing fumed silica, SiC powder and chopped glass fiber by a high speed mixer followed by pressing of the mixture powder in a stainless steel mold of $100{\times}100mm$. Composition of the plates, particle size of SiC, and type of inorganic binder were varied for observation of their contribution to heat insulation of the plate. The plate was installed on the upper portion of an electric furnace the inside temperature of which was maintained at $400^{\circ}C$ and $600^{\circ}C$, for investigation of heat transfer through the plate from inside of the electric furnace to outside atmosphere. Surface temperatures were measured in real time using a thermographic camera. The particle size of SiC was varied in the range of $1.3{\sim}17.5{\mu}m$ and the insulation was found to be most excellent when SiC of $2.2{\mu}m$ was incorporated. When the size of SiC was smaller or larger than $2.2{\mu}m$, the heat insulation effect was decreased. Inorganic binders of alkali silicate and phosphate were tested and the phosphate was found to maintain the heat insulation property while increasing mechanical properties.

치은 섬유아세포에 대한 치주포대 추출물의 세포동성에 관한 연구 (CYTOTOXIC EFFECTS OF SOLUBLE EXTRACTS FROM RERIODONTAL DRESSINGS ON HUMAN GINGIVAL FIBROBLASTS)

  • 양승한;이만섭;박준봉
    • Journal of Periodontal and Implant Science
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    • 제24권3호
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    • pp.661-670
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    • 1994
  • It is well known that the application of dressings after periodontal surgery have benefits to provide the comforts to patient and to promote the healing process with action of bleeding control and temporary stabilization for the operated mobile teeth. But until recently the relationship between periodontal dressings and cells which are composed of periodontium has not been clear. The purpose of this study was to evaluate the cytotoxic effect of soluble extracts from the four different kinds of periodontal dressings, two of them were eugenol type (K.H.pack, Wondrpak) and the others were non-eugenol type (Coe-pak, Periocare), on the human gingival fibroblasts in vitro. Human gingival fibroblasts were primarily cultured from gingiva around third molar during the extraction for preventive purposes. Extracts solution were prepared with culture medium by means of imersing the consistent size of periodontal dressing made from plastic mold. Cell were inoculated into the 24 well plate with $3\;{\times}\;10^4\;cells/well$ of medium at $37\;^{\circ}C$, 100% of humidity, 5% of $CO_2$, incubator for 24 hours. After discard of the supernatant of medium, those cells were cultured with original, 1/2, 1/5, 1/10 diluted soluble extract for 24, 48 and 72 hours, and counted the number of cells using the hemocytometer at each designed time and concentration. Also, the cytotoxic effect of soluble extract was measured by Wataha's MTT assay method. In briefly, cells were inoculated and cultured into 96 well culture plate with $2\;{\times}\;10^4\;cells/well$ for 24 hours. Soluble extracts were applied to cultured cells and incubated for 48 hours at same condition. $50\;{\mu}l$ of MTT solution and DMSO were added into each well for the detection of absorbance with ELISA reader. The measured data were calculated by value of colorimetric assay for survival rate. The results were as follows ; In the case of eugenol type of dressing, original, 1/2 and 1/5 diluted extracts of K.H.pack showed very low survival rate. And original extract of Wondrpak showed strong cytotoxic effect and 1/2 diluted extract showed moderate cytotoxic effect. In the case of Non-eugenol type of dressings, only original extract of Coe-pak revealed strong cytotoxic effect and Periocare had little cytotoxic effect. It is concluded that eugenol type of dressings showed more cytotoxic effect than non-eugenol types. This study suggest that use of non-eugenol dressings after periodontal surgery is recommended.

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프리캐스트 PSC 곡선 거더교의 구조거동에 대한 실험적 연구 (Experimental Study on Structural Behavior of Precast PSC Curved Girder Bridge)

  • 김성재;김성배;엄기하;김장호
    • 대한토목학회논문집
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    • 제34권6호
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    • pp.1731-1741
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    • 2014
  • 교통수요의 증가에 따른 교통혼잡을 피하기 위하여 고가도로와 고속도로, 경전철 등이 활발히 건설되고 있으며, 이에 따라 접속부 등과 같은 곡률반경이 작은 곡선교 구간의 발생이 증가하고 있다. 초기에는 직선형의 주형을 연결하여 곡선을 이루는 방법을 사용하였으나, 공사비의 증가와 미관성 측면에서 용이하지 않아 강재를 사용한 곡선주형이 개발되어 적용되고 있다. 강재의 특성상 기하학적인 형상을 구현하는데 상대적으로 손쉽기 때문에 대부분의 곡선교에서는 강재를 이용한 강박스 거더교를 주로 사용하고 있다. 그러나 강박스 거더교는 초기 공사비가 고가이고, 도장과 같은 지속적인 유지관리가 필요한 문제점을 가지고 있다. 최근에는 I형 강재 플레이트 거더를 사용하는 방법이 활발히 연구되고 있으나 곡선 I형상의 특성상 개단면이고 얇은 플레이트를 사용하기 때문에 비틀림 강성이 매우 작아 안전성에 문제가 있는 것으로 지적되고 있다. 이러한 곡선강교의 대안으로 경제성과 안전성이 확보되는 프리캐스트 PSC 곡선거더가 제시되고 있다. 이에 본 연구에서는 프리캐스트 PSC 곡선거더를 효율적으로 제작할 수 있는 스마트 몰드 시스템을 개발하고 이를 적용한 2주형 40m 실물교량의 정적 휨 파괴 실험을 통하여 안전성을 확인하고자 한다. 제작단계에서 단일 거더는 곡률반경에 의해 거더의 전도에 대한 안정성이 문제가 있으나 가로보로 연결된 멀티거더는 하중분배가 적절히 이루어지며 안정성이 확보되는 것으로 나타났다. 정적구조 실험결과에서는 균열하중(1,400 kN)이 설계하중(450 kN)의 약 3배 이상 높은 것으로 나타났으며, 허용처짐량에 해당하는 하중은 설계하중의 4배인 1,800 kN에서 발생하여 사용성과 안전성이 모두 확보되는 것으로 나타났다.

경쟁배타에 의한 생태적 진화: 세포성 점균 Polysphondylium pallidum에 대한 실험적 접근 (Ecological Evolution by Competitive Exclusion / An Experimental Approach with Cellular Slime Mold , Polysphondylium pallidum)

  • 최형선
    • The Korean Journal of Ecology
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    • 제17권3호
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    • pp.299-310
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    • 1994
  • 종 내의 클론 상호작용은 개체군 구조에 중요한 영향을 미친다. 본 연구는 클론간의 경쟁에 의해 개체군 내에서 진화적 변화가 일어날 수 있는 가를 조사하고, 균일한 실험실 배양 조건에서 어떻게 다양한 클론이 진화하는지를 밝히고자 하였다. 자원소비율과 교배형이 다른 Polysphondylium pallidum의 클론들이 선택되었다. 실험은 T0에서 T4까지 4번의 시간 간격을 두고 시행되었다. 접종 후 자실체를 수확할 때까지의 한 번의 실험기간은 10~14일 정도 소요되었다. T0의 50개의 클론으로부터 일련의 실험기간 T1, T2, T3, T4에서 50 클론이 두 세트씩 만들어졌다. 개체군들의 자원소비율 변동은 T0와 두세트의 T4 클론들간에 비교되었다. 각 클론은 실험 시작 후 48~56세대가 지난 후에도 균일하고 제한된 Cerophyl 배지 환경에서 다양한 자원 소비율 즉, 다양한 생장율을 보였다. 생장율이 다른 다양한 클론은 서식처가 이질적인 토양 미세 환경 뿐만 아니라 한 장소의 균질한 배양 접시 속에서도 공존 할 수 있었다. 높은 클론 다양성은 한 개체군내의 클론에서 다른 클론을 만날 기회를 제공해 주었고 개체군내의 클론 경쟁이 활발히 일어났다. T0에서 T4까지의 총 실험 기간동안 교배형 I이었던 37개의 클론중에서 한 개체군의 31개가 교배형 II로 바뀌어 클론간에 일어난 경쟁배타율은 0.838이었다. 각 교배형의 출현 빈도는 연속적인 다음 세대마다 0.93~1.29% 만큼 바뀌었다. 2.6X108밀도의 박테리아를 먹이로 제공해 준 실험실 환경에서 한 세대가 지날 때 마다 한 클론에서 다른 클론으로 변화하는 진화적 변화확률이 1.26~1.75%라는 것을 의미한다.

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구치부용 복합 레진 가열시 물리적 성질의 변화에 관한 실험적 연구 (THE EFFECT OF TEMPERATURE CHANGES ON THE PHYSICAL PROPERTIES OF POSTERIOR COMPOSITE RESINS)

  • 박연홍;민병순;최호영;박상진
    • Restorative Dentistry and Endodontics
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    • 제14권1호
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    • pp.41-56
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    • 1989
  • The purpose of this study was to examine the effect of temperature dependence of the behavior on the physical properties of posterior composite resins. Three light cure posterior composite resins (Heliomolar, Litefil-P, and P-50) and one chemical cure posterior composite resin (Bisfil-II) were used as experimental materials. Composite resin was placed in a cylindrical brass mold (2.5 mm high and 6.5 mm inside diameter) that was rested on a glass plate. Another flat glass was placed on top of the mold, and the plate was tightly clamped together. After the mold had been filled with the light cure composite material, the top surface was cured for 30 seconds with a light source. Chemical cure resin specimens were made in the same manner as above. Three hundreds and twenty composite resin specimens were constructed from the four composite materials. One hundred and sixty specimens of them were placed in a heater at $50^{\circ}C$, $75^{\circ}C$, $100^{\circ}C$, $125^{\circ}C$, $150^{\circ}C$, $175^{\circ}C$ and $200^{\circ}C$ for 5 minutes or 10 minutes respectively before compressive strengths were measured. Another one hundred and sixty specimens were tested for the diametral tensile strengths in the same way as above. They were randomly divided into eight groups according to the mode of heating methods as follows and stored in distilled water at $37^{\circ}C$ for 24 hours. Group $37^{\circ}C$ - specimens were stored at $37^{\circ}C$ in distilled water for 24 hours. Group $50^{\circ}C$ - specimens were heated at $50^{\circ}C$ after curing. Group $75^{\circ}C$ - specimens were heated at $75^{\circ}C$ after curing. Group $100^{\circ}C$ - specimens were heated at $100^{\circ}C$ after curing. Group $125^{\circ}C$ - specimens were heated at $125^{\circ}C$ after curing. Group $150^{\circ}C$ - specimens were heated at $150^{\circ}C$ after curing. Group $175^{\circ}C$ - specimens were heated at $175^{\circ}C$ after curing. Group $200^{\circ}C$ - specimens were heated at $200^{\circ}C$ after curing. Twenty specimens of each of four composite resins were respectively made by insertion of materials into same mold for examining the dimensional changes between before and after heating. The final eighty specimens were stored in distilled water at $37^{\circ}C$ for 24 hours before testing the dimensional changes. Compressive and diametral tensile strengths were measured crosshead speed 1mm/minute and 500Kg in full scale with a mechanical testing machine (DLC 500 Type, Shimadzu Co., Japan). Dimensional changes were determined by measuring the diametral changes of eighty specimens with micrometer (Mitutoyo Co., Japan). Results were as follows: 1. Diametral tensile strengths of specimens in all groups were increased with time heated compared with control group except for that in group $50^{\circ}C$ and the maximum diametral tensile strength was appeared in the specimen of Litefil-P heated for 10 minutes at $100^{\circ}C$. In heliomolar and P-50, it could be seen in the specimen heated for 10 minutes at $150^{\circ}C$, but in Bisfil-II, it could be found in the specimen heated for 5 minutes at $150^{\circ}C$. 2. Compressive strengths of specimens in all groups was tended to be also increased with time heated but that in group $50^{\circ}C$ and the maximum compressive strengths were showed in the same specimens conditioned as the diametral tensile strengths of four composite materials tested. 3. In Heliomolar, Litefil-P, and Bisfil-II, it was decreased in diameters of resin specimens between before heating and increased in diameters of resin specimens after storing in distilled water, but it was not in P-50. 4. There is little difference in diametral tensile strengths, compressive strengths, and dimensional changes followed by heating the resin specimens for 5 minutes and 10 minutes, but there is no statistical significances.

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전자선 치료 시 차폐블록 두께 변화에 따른 블록 주변 선량에 관한 연구 (The study on the scattering ratio at the edge of the block according to the increasing block thickness in electron therapy)

  • 박시온;곽근탁;박주경;이승훈;김양수;김정수;권형철;이선영
    • 대한방사선치료학회지
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    • 제31권1호
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    • pp.57-65
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    • 2019
  • 목 적: 전자선 치료에서 저 용융점 납합금과 순수 납을 이용한 차폐 시 두께증가에 따른 블록 가장자리의 산란선 영향을 알아보고자 한다. 대상 및 방법: $10{\times}10cm^2$ 어플리케이터의 Insert Frame 절반을 차폐하도록 블록을 제작하였고, 두께는 각 재질당 3, 5, 10, 15, 20 (mm)로 하였다. 공통 조건을 에너지 6 MeV, 선량률 300 MU/Min, 갠트리 각도 0, 부여선량 100 MU으로 설정하였고, 블록의 위치와 측정점의 위치, 블록재질을 각각 달리하여 블록 두께증가에 따른 상대적인 산란비율을 평행평판형 전리함과 고체팬텀으로 측정하였다. 결 과: (측정 깊이 / 블록 위치 / 블록 재질)이 (표면 / 어플리케이터 / 순수 납)일 때 블록 두께가 3, 5, 10, 15, 20 (mm) 순으로 증가함에 따라 상대선량은 15.33 nC, 15.28 nC, 15.08 nC, 15.05 nC, 15.07 nC로 측정되었다. (표면 / 어플리케이터 / 합금 납)일 때 15.19 nC, 15.25 nC, 15.15 nC, 14.96 nC, 15.15 nC로 측정되었다. (표면 / 팬텀 위 / 순수 납)일 때 15.62 nC, 15.59 nC, 15.53 nC, 15.48 nC, 15.34 nC로 측정되었다. (표면 / 팬텀 위 / 합금 납)일 때 15.56 nC, 15.55 nC, 15.51 nC, 15.42 nC, 15.39 nC로 측정되었다. (심부 / 어플리케이터 / 순수 납)일 때 16.70 nC, 16.84 nC, 16.72 nC, 16.88 nC, 16.90 nC로 측정되었다. (심부 / 어플리케이터 / 합금 납)일 때 16.83 nC, 17.12 nC, 16.89 nC, 16.77 nC, 16.52 nC로 측정되었다. (심부 / 팬텀 위 / 순수 납)일 때 17.41 nC, 17.45 nC, 17.34 nC, 17.42 nC, 17.25 nC로 측정되었다. (심부 / 팬텀 위 / 합금 납)일 때 17.45 nC, 17.44 nC, 17.47 nC, 17.43 nC, 17.35 nC로 측정되었다. 결 론: 차폐블록을 이용하여 전자선 치료를 진행할 때 블록위치는 환자 체표면보다는 어플리케이터에 삽입하고 두께는 각 사용 에너지에 해당되는 최소 적정차폐두께로 제작해야 한다. 또한 블록 가장자리 경계선으로부터 떨어진 거리에 따라 변화하는 산란선의 영향을 충분히 고려하여 치료를 시행하는 것이 바람직하다고 사료된다.