• 제목/요약/키워드: Metal framework

검색결과 260건 처리시간 0.039초

Preparation and Pore-Characteristics Control of Nano-Porous Materials using Organometallic Building Blocks

  • Oh, Gyu-Hwan;Park, Chong-Rae
    • Carbon letters
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    • 제4권1호
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    • pp.1-9
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    • 2003
  • Recently, the control of pore-characteristics of nano-porous materials has been studied extensively because of their unique applications, which includes size-selective separation, gas adsorption/storage, heterogeneous catalysis, etc. The most widely adopted techniques for controlling pore characteristics include the utilization of pillar effect by metal oxide and of templates such as zeolites. More recently, coordination polymers constructed by transition metal ions and bridging organic ligands have afforded new types of nano-porous materials, porous metal-organic framework(porous MOF), with high degree and uniformity of porosity. The pore characteristics of these porous MOFs can be designed by controlling the coordination number and geometry of selected metal, e.g transition metal and rare-earth metal, and the size, rigidity, and coordination site of ligand. The synthesis of porous MOF by the assembly of metal ions with di-, tri-, and poly-topic N-bound organic linkers such as 4,4'-bipyridine(BPY) or multidentate linkers such as carboxylates, which allow for the formation of more rigid frameworks due to their ability to aggregate metal ions into M-O-C cluster, have been reported. Other porous MOF from co-ligand system or the ligand with both C-O and C-N type linkage can afford to control the shape and size of pores. Furthermore, for the rigidity and thermal stability of porous MOF, ring-type ligand such as porphyrin derivatives and ligands with ability of secondary bonding such as hydrogen and ionic bonding have been studied.

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금속 3D프린팅 통합 제어 및 모니터링 시스템 개발을 위한 프레임워크에 관한 연구 (A Case Study on the Framework Development of the Metal 3D Printing Control & Monitoring System)

  • 전병주;이선규;이승희;장성호;정구상
    • 디지털융복합연구
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    • 제18권11호
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    • pp.187-194
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    • 2020
  • 본 연구는 최근 새로운 제조 수단으로 각광받고 있는 3D프린팅 기술의 통합제어 시스템과 품질개선을 위한 모니터링 SW 기술개발을 위한 프레임워크 및 연구개발 방향을 제시하고자 한다. 이를 위해 본 연구에서는 금속프린팅 기술로 조명되고 있는 DED와 PBF 3D프린팅 기술의 통합 제어기술 개발 Framework와 최근 반도체 장비 등에서 큰 관심을 받고 있는 음향센서를 이용한 모니터링 기술 등 품질 개선을 위한 4가지 모니터링 기술을 제안 소개하고자 한다. 본 연구를 위하여, 국내 3D프린팅 전문기업인 (주)컨셉션, 원광이엔텍(주), (주)디이엔티 등에서 개발 중인 국내 최신 금속 3D프린팅 시스템 장비를 활용하여 연구하였으며(1KW급 Dual Laser PBF 및 DED 프린팅 시스템), 2017년 이래 지속적인 연구개발을 수행해온 경험을 바탕으로 다음세대 3D프린팅 개발자를 위한 연구초안을 제시함으로서 국내 3D프린팅 기술 발전 및 연구개발 협력을 위한 기초자료를 제시하고자 한다.

전기방전가공법을 이용한 임플랜트 보철물의 적합도 연구 (A STUDY ON THE FIT OF IMPLANT-RETAINED PROSTHESES USING ELECTRIC DISCHARGE MACHINING)

  • 한의택;김영수;김창회;양재호
    • 대한치과보철학회지
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    • 제39권1호
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    • pp.1-13
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    • 2001
  • An absolutely passive fit at the interface with the superstructure and the abutment cylinders is need for implant longevity. In this study, a method of cast framework correction using spark erosion technology was evaluated. Electric discharge machining(EDM) is a process that uses electrical discharges, or sparks, to machine metal, The surface being machined is bombared with high-intensity electrical energy pulses that gradually melt away the stock until the desired configuration is obtained. Master model was fabricated by using metal block impression analogue, which fired 5 Branemark squared impression coping in an arc shaped metal block. Then framework using 4mm standard gold cylinder and type IV gold alloy was fabricated. In order to measure the fit of the framework we used both contact and noncontact coordinate measurement machine and data was processed by computer program. After superimposition of gold framework and master model numeric image data the distances between gold cylinder bearing surfaces and abutment replica bearing surfaces, and the angle deviations between gold cylinder and abutment replica centroid points were calculated. The results were as follows 1 The total mean distance (p<0.01) and standard deviation (p<0.001) between the gold cylinders and abutment bearing surfaces were significantly decreased after EDM 2. The total mean of maximum distances was significantly decreased after EDM (p<0.05). 3. After EDM, the mean angle deviation between centroid points was decreased.

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Accuracy of a proposed implant impression technique using abutments and metal framework

  • Lee, Hyeok-Jae;Lim, Young-Jun;Kim, Chang-Whe;Choi, Jung-Han;Kim, Myung-Joo
    • The Journal of Advanced Prosthodontics
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    • 제2권1호
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    • pp.25-31
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    • 2010
  • PURPOSE. This study compared the accuracy of an abutment-framework (A-F) taken with open tray impression technique combining cement-on crown abutments, a metal framework and resin cement to closed tray and resin-splinted open tray impression techniques for the 3-implant definitive casts. The effect of angulation on the accuracy of these 3 techniques was also evaluated. MATERIAL AND METHODS. Three definitive casts, each with 3 linearly positioned implant analogs at relative angulations 0, 30, and 40 degrees, were fabricated with passively fitted corresponding reference frameworks. Ten impressions were made and poured, using each of the 3 techniques on each of the 3 definitive casts. To record the vertical gap between reference frameworks and analogs in duplicate casts, a light microscope with image processing was used. Data were analyzed by two-way analysis of variance and the Tukey test. RESULTS. The open tray techniques showed significantly smaller vertical gaps compare to closed tray technique (P < .05). The closed tray and the resin-splinted open tray technique showed significantly different vertical gaps according to the angulation of implant (P < .05), but the A-F impression technique did not (P > .05). CONCLUSION. The accuracy of the A-F impression technique was superior to that of conventional techniques, and was not affected by the angulation of the implants.

이중 상호 침투 구조를 갖는 신규 터븀(III) 기반 금속-유기 골격체의 합성 및 특성연구 (Synthesis and characterization of the two-fold interpenetrated Tb(III)-based metal-organic framework)

  • 송정화
    • 한국결정성장학회지
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    • 제32권6호
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    • pp.225-230
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    • 2022
  • p-XBP4 (N,N'-p-phenylenedimethylenbis(pyridin-4-one)), Cs3[W(CN)8]와 Tb(NO3)3·6H2O를 사용하여 2차원의 이중 상호 침투 구조를 갖는 새로운 Tb-MOF인 [Tb(p-XBP4)2.5(H2O)2]·W(CN)8를 합성하였다. 단결정 X선 회절 분석법으로 얻어진 구조 정보를 통해 Tb-MOF는 이중 상호 침투된 독특한 2차원 구조임을 확인하였다. 또한, 적외선 분광 분석법, 단결정 및 분말 X-선 회절 분석법을 활용하여 추가적인 특성 분석을 수행하였다. Tb-MOF가 갖는 자성 특성과 분자 자석으로서의 거동 가능성을 조사하기 위해, 직류 자화율 및 교류 자화율을 측정하고 이를 분석하였다.

코발트-크롬 합금의 표면처리에 따른 열중합형 의치상용 레진과의 전단결합강도 (SHEAR BOND STRENGTH OF HEAT-CURED DENTURE BASE RESIN TO SURFACE TREATED CO-CR ALLOY WITH DIFFERENT METHODS)

  • 이상훈;황선홍;문홍석;이근우;심준성
    • 대한치과보철학회지
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    • 제45권2호
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    • pp.216-227
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    • 2007
  • Statement of problem: For the long-term success of removable partial dentures, the bonding between metal framework and denture base resin is one of the important factors. To improve bonding between those, macro-mechanical retentive form that is included metal framework design has been generally used. However it has been known that sealing at the interface between metal framework and denture base resin is very weak, because this method uses mechanical bonding. Purpose: Many studies has been made to find a simple method which induces chemical bond, now various bonding system is applied to clinic. In this experiment, shear bond strengths of heat-cured denture base resin to the surface-treated Co-Cr alloy were measured before and after thermocycling. Chemically treated groups with Alloy $Primer^{TM}$, Super-Bond $C&B^{TM}$, and tribochemically treated group with $Rocatec^{TM}$ system were compared to the beadtreated control group. The data were analyzed with two-way ANOVA. Result: 1. Shear bond strength of bead-treated group is highest, and Alloy $Primer^{TM}$ treated group, Super-Bond $C&B^{TM}$ treated group, RocatecTM system treated group were followed. Statistically significant differences were found in each treated group(p<0.05). 2. Surface treatment and thermocycling affected shear bond strength(p<0.05), however there was no interaction between two factors(p>0.05). 3. Shear bond strengths of bead-treated group and Alloy $Primer^{TM}$ treated group showed no statistically significant difference before and after thermocycling(p>0.05), and those of Super-Bond $C&B^{TM}$ treated group and $Rocatec^{TM}$ system treated group showed statistically significant difference after thermocycling(p<0.05).

Insertion of Alkali Metals into Open Framework, TaPS6 by Using Alkali Metal Halide Fluxes: Single Crystal Structures of K0.18TaPS6, K0.28TaPS6, and Rb0.09TaPS6

  • Do, Jung-Hwan;Dong, Yong-Kwan;Kim, Jung-Wook;Hahn, Song-I;Yun, Ho-Seop
    • Bulletin of the Korean Chemical Society
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    • 제26권8호
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    • pp.1260-1264
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    • 2005
  • Three new quaternary tantalum thiophosphates, $K_{0.18}TaPS_6,\;K_{0.28}TaPS_6,\;and\;Rb_{0.09}TaPS_6$ have been synthesized by using reactive alkali metal halide fluxes and structurally characterized by single crystal X-ray diffraction techniques. The crystal structures of $K_{0.18}TaPS_6,\;K_{0.28}TaPS_6,\;and\;Rb_{0.09}TaPS_6$ contain 3-dimensional open framework anions, $[TaPS_6]^{x-}$(x = 0.09, 0.18, 0.28) with the empty channel which disordered alkali metal cations, $K^+\;and\;Rb^+$ are located in. Crystal data: $K_{0.18}TaPS_6$, tetragonal, space group$I4_1$/acd (no. 142), a=15.874(3) $\AA$, c=13.146(4) $\AA$, V=3312.7(12) ${\AA}^3$, K, Z=16, R1=0.0545. Crystal data: $K_{0.28}TaPS_6$, tetragonal, space group $I4_1$/acd (no. 142), a=15.880(2) $\AA$, c=13.134(3) $\AA$, V=3312.1(10) ${\AA}^3$, Z=16, R1=0.0562. Crystal data: $Rb_{0.09}TaPS_6$, tetragonal, space group I41/acd (no. 142), a=15.893(3) $\AA$, c=13.163(4) $\AA$, V=3324.7(15) ${\AA}^3$, Z=16, R1=0.0432.

나노구조물질을 이용한 고체수소저장 기술 동향 (Advances in the Technology of Solid State Hydrogen Storage Methods Using Novel Nanostructured Materials)

  • ;김근영;남기석
    • Korean Chemical Engineering Research
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    • 제43권4호
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    • pp.439-451
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    • 2005
  • 수소저장기술은 수소경제를 달성하기 위해 개발해야할 핵심요소기술이다. 이 논문에서는 고체수소저장기술의 최신 개발 동향을 고찰하였다. 나노구조 탄소계 물질(nanostructured carbon materials), 유기금속구조물(metal organic framework, MOFs), 금속수소화물(metal hydrides), 클래스레이트수화물(clathrate hydrates), 금속착수소화물(complex chemical hydrides)과 같은 고체수소저장매체를 중점적으로 고찰하였다. 그 결과 지금까지 개발된 고체수소저장재료의 수소저장용량은 고체의 표면적에 비례하여 증가함을 알 수 있었다. 또한 수송용 탑재형 수소저장 응용을 목적으로 안전하면서도 가역적 고밀도 수소저장이 가능한 기능성 신 나노재료의 개발 방향을 제시하였다.

Comparison of the fracture resistances of glass fiber mesh- and metal mesh-reinforced maxillary complete denture under dynamic fatigue loading

  • Im, So-Min;Huh, Yoon-Hyuk;Cho, Lee-Ra;Park, Chan-Jin
    • The Journal of Advanced Prosthodontics
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    • 제9권1호
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    • pp.22-30
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    • 2017
  • PURPOSE. The aim of this study was to investigate the effect of reinforcing materials on the fracture resistances of glass fiber mesh- and Cr-Co metal mesh-reinforced maxillary complete dentures under fatigue loading. MATERIALS AND METHODS. Glass fiber mesh- and Cr-Co mesh-reinforced maxillary complete dentures were fabricated using silicone molds and acrylic resin. A control group was prepared with no reinforcement (n = 15 per group). After fatigue loading was applied using a chewing simulator, fracture resistance was measured by a universal testing machine. The fracture patterns were analyzed and the fractured surfaces were observed by scanning electron microscopy. RESULTS. After cyclic loading, none of the dentures showed cracks or fractures. During fracture resistance testing, all unreinforced dentures experienced complete fracture. The mesh-reinforced dentures primarily showed posterior framework fracture. Deformation of the all-metal framework caused the metal mesh-reinforced denture to exhibit the highest fracture resistance, followed by the glass fiber mesh-reinforced denture (P<.05) and the control group (P<.05). The glass fiber mesh-reinforced denture primarily maintained its original shape with unbroken fibers. River line pattern of the control group, dimples and interdendritic fractures of the metal mesh group, and radial fracture lines of the glass fiber group were observed on the fractured surfaces. CONCLUSION. The glass fiber mesh-reinforced denture exhibits a fracture resistance higher than that of the unreinforced denture, but lower than that of the metal mesh-reinforced denture because of the deformation of the metal mesh. The glass fiber mesh-reinforced denture maintains its shape even after fracture, indicating the possibility of easier repair.