• 제목/요약/키워드: ceramic core

검색결과 343건 처리시간 0.024초

Modeling, Preparation, and Elemental Doping of Li7La3Zr2O12 Garnet-Type Solid Electrolytes: A Review

  • Cao, Shiyu;Song, Shangbin;Xiang, Xing;Hu, Qing;Zhang, Chi;Xia, Ziwen;Xu, Yinghui;Zha, Wenping;Li, Junyang;Gonzale, Paulina Mercedes;Han, Young-Hwan;Chen, Fei
    • 한국세라믹학회지
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    • 제56권2호
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    • pp.111-129
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    • 2019
  • Recently, all-solid-state batteries (ASSBs) have attracted increasing interest owing to their higher energy density and safety. As the core material of ASSBs, the characteristics of the solid electrolyte largely determine the performance of the battery. Thus far, a variety of inorganic solid electrolytes have been studied, including the NASICON-type, LISICON-type, perovskite-type, garnet-type, glassy solid electrolyte, and so on. The garnet Li7La3Zr2O12 (LLZO) solid electrolyte is one of the most promising candidates because of its excellent comprehensively electrochemical performance. Both, experiments and theoretical calculations, show that cubic LLZO has high room-temperature ionic conductivity and good chemical stability while contacting with the lithium anode and most of the cathode materials. In this paper, the crystal structure, Li-ion transport mechanism, preparation method, and element doping of LLZO are introduced in detail based on the research progress in recent years. Then, the development prospects and challenges of LLZO as applied to ASSBs are discussed.

Sol-Gel Process를 이용한 PMSQ/TiO2 복합 미립자의 합성 (Preparation of PMSQ/TiO2 Composite Fine Powder by Sol-Gel Process)

  • 이동현;구상만
    • 공업화학
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    • 제9권5호
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    • pp.634-638
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    • 1998
  • 응집이 없는 단분산의 $PMSQ/TiO_2$ 복합 미립자를 얻기 위하여 300 nm 크기의 $TiO_2$ seed가 분산되어 있는 메탄올 수용액과 MTMS (Methyltrimethoxysilane)를 메탄올에 녹인 용액을 혼합하여 $TiO_2$ seed 표면에서 MTMS가 가수분해 및 축합 반응이 일어나도록 유도하여 복합 미분말을 제조하였다. 촉매로 암모니아를 사용하였고, 반응온도는 실온이었으며, 모든 반응은 질소분위기에서 행하였다. 교반속도, 반응온도, $[H_2O]/[MTMS]$, $[MTMS]/[TiO_2]$ 등을 변화하여 입자의 크기 및 형태에 영향을 주는 인자들을 조사한 결과, [MTMS]=0.2 M, $[NH_4OH]=0.6M$, $[H_2O]/[MTMS]=100$, $[MTMS]/[TiO_2]=10-50$이고 실온에서 서서히 교반한 경우 단분산된 약 $1-2{\mu}m$의 크기를 갖는 복합입자를 얻을 수 있었다. 얻어진 입자에 대한 소수성을 물에 대한 접촉각 측정을 통해 조사한 결과 거의 180도에 가까운 접촉각을 보임으로써 복합입자의 소수성이 매우 뛰어남을 확인할 수 있었다. 자외선 차폐효과도 UV 투과도 측정을 통해 조사되었다.

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Fe73.5Cu1Nb3Si15.5B7나노 결정립 합금 분말 코아의 자기적 특성 (The Magnetic Properties of Nanocrystalline Fe73.5Cu1Nb3Si15.5B7 Alloy Powder Cores)

  • 노태환;최혁열;안상재
    • 한국자기학회지
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    • 제14권1호
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    • pp.7-12
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    • 2004
  • F $e_{73.5}$C $u_1$N $b_3$S $i_{15.5}$ $B_{7}$ 비정질 리본 합금을 490∼61$0^{\circ}C$의 온도 범위에서 열처리하고 이를 볼 밀링 하여 얻은 250∼850$\mu\textrm{m}$크기의 자성분말과 5wt%의 세라믹 절연체로 구성된 분말 코아의 자기적 특성에 열처리 온도가 미치는 영향을 조사하였다. 5$50^{\circ}C$에서 1 h동안 열처리하여 직경 11 nm의 $\alpha$-Fe상 나노 결정립 구조로 되었을 때(전기비저항은 110$\mu$$.$cm)가장 높은 실효투자율 및 품질계수를 나타내었으며 그 값은 각각 125와 53이었고, 실효투자율의 경우 약 500 KHz에 이르기까지 일정한 크기를 유지하였다. 그리고 이 열처리 조건에서 230 mW/㎤(f=50 KHz, $B_{m}$ =0.1 T)의 대단히 낮은 자심손실을 나타내었다. 그러나 이 합금의 분말 코아는 종래의 분말 코아 재료(MPP,센더스트 등)에 비해 그리 우수하지 못한 직류 바이어스 특성 특히 저 자장 하에서의 낮은 퍼센트 투자율을 나타내었는데, 이는 종래의 소재와 유사한 투자율을 얻는데 너무 큰 입도의 분말이 필요한 것에 그 원인이 있는 것으로 이해되었다.

도재 전용액이 지르코니아 코어-도재 비니어의 전단결합강도에 미치는 영향 (Effect of modeling liquid on the shear-bond strength of zirconia core - porcelain veneer)

  • 최병환;김임선
    • 대한치과기공학회지
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    • 제36권2호
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    • pp.83-89
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    • 2014
  • Purpose: This study is to evaluate the effect of modeling liquid on the shear-bond strength between zirconia core and veneering ceramic. Methods: Disk-shaped (diameter: 12.0mm; height: 3.0mm) zirconia were randomly divided into six groups according to the surface conditioning method and whether modeling liquid is used or not to be applied (N=60, n=10 per group): group 1-control group with distilled water(ZD); group 2-control group with modeling liquid(ZM); group 3-airborne particle abrasion with $110-{\mu}m$ $Al_2O_3$(AD) with distilled water; group 4-airborne particle abrasion with $110-{\mu}m$ $Al_2O_3$ with modeling liquid(AM); group 5-liner with distilled water(LD); group $6{\pounds}{\neq}liner$ with modeling liquid(LM). Contact angles were determined by the sessile drop method at room temperature using a contact angle measurement apparatus. The specimens were prepared using dentin veneering ceramics, veneered, 3mm high and 2.8mm in diameter, over the cores. The shear bond strength test was performed in a Shear bond test machine. Load was applied at a cross-head speed of 0.50mm/min until failure. The fractured zirconia surfaces were evaluated by using stereomicroscope (${\times}30$). Collected data were analyzed using SPSS(Statistical Package for Social Sciences) Win 12.0 statistics program. Results: ZD showed the highest contact angle($50.6{\pm}5.4^{\circ}$) and LD showed the lowest value($6.7{\pm}1.3^{\circ}$). Control groups and zirconia liner groups were significantly higher contact angle than liner groups(p<0.05). LD was the highest shear bond strength($43.9{\pm}3.8MPa$) and ZD was the lowest shear bond strength($24.8{\pm}4.9MPa$). Shear bond strengths of control groups and contact angle of liner groups were not significantly different((p>0.05). Liner groups presented adhesive failures. The others groups showed cohesive and adhesive failures. Conclusion: Modeling liquid groups showed lower contact angles and lower shear bond strength compared to those of distilled water groups.

바이오 메디컬용 코어-쉘 구조의 Bi0.5(Na0.78K0.22)0.5TiO3계 무연압전세라믹 소재의 개발 (Development of Bi0.5(Na0.78K0.22)0.5TiO3 Lead-free Piezoelectric Ceramic Material with Core-shell Structure for Biomedical)

  • 윤성준;배준수
    • 산업경영시스템학회지
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    • 제46권3호
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    • pp.15-22
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    • 2023
  • BNKT Ceramics, one of the representative Pb free based piezoelectric ceramics, constitutes a perovskite(ABO3) structure. At this time, the perovskite structure (ABO3) is in the form where the corners of the octahedrons are connected, and in the unit cell, two ions, A and B, are cations, A ion is located at the body center, B ion is located at each corner, and an anion O is located at the center of each side. Since Bi, Na, and K sources constituting the A site are highly volatile at a sintering temperature of 1100℃ or higher, it is difficult to maintain uniformity of the composition. In order to solve this problem, there should be suppression of volatilization of the A site material or additional compensation of the volatilized. In this study, the basic composition of BNKT Ceramics was set to Bi0.5(Na0.78K0.22)0.5TiO3 (= BNKT), and volatile site (Bi, Na, and K sources) were coated in the form of a shell to compensate additionally for the A site ions. In addition, the physical and electrical properties of BNKT and its coated with shell additives(= @BNK) were compared and analyzed, respectively. As a result of analyzing the crystal structure through XRD, both BNKT(Core) and @BNK(Shell) had perovskite phases, and the crystallinity was almost similar. Although the Curie temperature of the two sintered bodies was almost the same (TC = 290 ~ 300 ℃), it was confirmed that the d33 (piezoelectric coefficient) and Pr (residual polarization) values were different. The experimental results indicated that the additional compensation for a shell additive causes the coarsening, resulting in a decrease in sintering density and Pr(remanent polarization). However, coating shell additives to compensate for A site ion is an effective way to suppress volatilization. Based on these experimental results, it would be the biggest advantage to develop an eco-friendly material (Lead-free) that replaced lead (Pb), which is harmful to the human body. This lead-free piezoelectric material can be applied to a biomedical device or products(ex. earphones (hearing aids), heart rate monitors, ultrasonic vibrators, etc.) and skin beauty improvement products (mask packs for whitening and wrinkle improvement).

Effect of various intraoral repair systems on the shear bond strength of composite resin to zirconia

  • Han, In-Hae;Kang, Dong-Wan;Chung, Chae-Heon;Choe, Han-Cheol;Son, Mee-Kyoung
    • The Journal of Advanced Prosthodontics
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    • 제5권3호
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    • pp.248-255
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    • 2013
  • PURPOSE. This study compared the effect of three intraoral repair systems on the bond strength between composite resin and zirconia core. MATERIALS AND METHODS. Thirty zirconia specimens were divided into three groups according to the repair method: Group I-CoJet$^{TM}$ Repair System (3M ESPE) [chairside silica coating with $30{\mu}m$ $SiO_2$ + silanization + adhesive]; Group II-Ceramic Repair System (Ivoclar Vivadent) [etching with 37% phosphoric acid + Zirconia primer + adhesive]; Group III-Signum Zirconia Bond (Heraus) [Signum Zirconia Bond I + Signum Zirconia Bond II]. Composite resin was polymerized on each conditioned specimen. The shear bond strength was tested using a universal testing machine, and fracture sites were examined with FE-SEM. Surface morphology and wettability after surface treatments were examined additionally. The data of bond strengths were statistically analyzed with one-way ANOVA and Tamhane post hoc test (${\alpha}$=.05). RESULTS. Increased surface roughness and the highest wettability value were observed in the CoJet sand treated specimens. The specimens treated with 37% phosphoric acid and Signum Zirconia Bond I did not show any improvement of surface irregularity, and the lowest wettability value were found in 37% phosphoric acid treated specimens. There was no significant difference in the bond strengths between Group I ($7.80{\pm}0.76$ MPa) and III ($8.98{\pm}1.39$ MPa). Group II ($3.21{\pm}0.78$ MPa) showed a significant difference from other groups (P<.05). CONCLUSION. The use of Intraoral silica coating system and the application of Signum Zirconia Bond are effective for increasing the bond strength of composite resin to zirconia.

인공 치아 단일 코아 보철물의 효과적인 모델링 (An Effective Modeling of Artificial Teeth Single Cores Prostheses)

  • 유관희
    • 한국컴퓨터그래픽스학회논문지
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    • 제8권1호
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    • pp.13-20
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    • 2002
  • 최근들어 지르코니아 세라믹과 같이 $1500^{\circ}C$에서 소결된 소재를 이용한 인공 치아 보철물의 수요가 증대되고 있다. 그러나 이들 소재의 강도가 너무 높기 때문에 세라믹용 보철물을 기공사가 수작업으로 제작하기란 매우 어려워 CNC 기계를 사용하여 제작하고 있다. CNC 기계에 의한 보철물 제작에 있어 가장 중요한 사항은 치과 의사가 만들고자 하는 형태의 보철물이 3차원으로 정확하게 모델링되어져 있는가이다. 본 논문에서는 인공 치아 주요 보철물인 단일 캡(single cap)과 코너스 코아(conus core)와 같은 단일 코아 보철물를 효과적으로 모델링할 수 있는 기법을 제시하고, 제시된 기법에 의해 모델링된 단일 코아 결과를 소개한다. 특히, 제시된 기법에서는 단일 코아 보철물 모델링을 위해 Minkowski Sum과 ZMap 알고리즘을 사용한다.

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Enhanced 2-Chorophenol Photodecomposition using Nano-Sized Mn-incorporated TiO2 Powders Prepared by a Solvothermal Method

  • Kim, Dongjin;Im, Younghwan;Jeong, Kyung Mi;Park, Sun-Min;Um, Myeong-Heon;Kang, Misook
    • Bulletin of the Korean Chemical Society
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    • 제35권8호
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    • pp.2295-2298
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    • 2014
  • To effectively destruct 2-chlorophenol, a representative sterile preservative, nanometer-sized Mn (0.5, 1.0, 3.0 mol %)-incorporated $TiO_2$ powders were synthesized by a solvothermal method. XRD result demonstrated that the Mn ingredients were perfectly inserted into $TiO_2$ framework. The Mn-$TiO_2$ particles exhibited an anatase structure with a particle size of below 20 nm. The absorbance was shifted to the higher wavelength on Mn-$TiO_2$ compared to that of $TiO_2$. Otherwise, the PL intensities which has a close relationship for recombination between holes and electrons significantly decreased on Mn-$TiO_2$. The photodecomposition for 2-chlorophenol in a liquid system was enhanced over Mn-doped $TiO_2$ compared with pure $TiO_2$: 2-chlorophenol of 50 ppm was completely decomposed after 12 h when 1.0 mol % Mn-$TiO_2$ was used. Consequently, the core of this paper is as follows. introducing Mn into $TiO_2$ framework reduced the band-gap, moreover, it played as an electron capture resulted to lower recombination between electrons and holes during photocatalytic reaction for removal of 2-cholophenol.

도재전장관용 비귀금속합금과 도재의 융착결합에 관한 연구 (A Study on Bond Strength of Procelain with Non Precious Alloy)

  • 강성현
    • 대한치과보철학회지
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    • 제18권1호
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    • pp.49-57
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    • 1980
  • The adhesive mechanisms on the metal-ceramic restorations have been reported to be mechanical interlocking, chemical bonding, compressive force, and Van der Waal's force, etc. Of these, the mechanical interlocking and chemical bonding forces are thought to affect the adhesive force between Ni-Cr alloy and porcelain. This study investigates the adhesion of Ni-Cr alloy to porcelain according to surface treatment. For this purpose, the following experiments were made; The compositions of Ni-Cr alloy as cast by emission spectrograph, and the oxides produced on Ni-Cr alloy during degassing at $1850^{\circ}F$ for 30 minutes in air and in vacuum were analyzed by X-ray diffractograph. The metal phases of Ni-Cr alloy were observed according to porcelain-baking cyclic heat treatment by photo microscope and the distribution and the shift of elements of Ni-Cr alloy and porcelain and the failure phases between Ni-Cr alloy and porcelain by scanning electron microscope. The adhesive force between Ni-Cr alloy and porcelain was measured according to surface treatment with oxidization and roughening by Instron Universal Testing Machine. Results were as follows; 1. The metal phases of Ni-Cr alloy as cast and degassing state showed the enlarged and fused core, but when subjected to porcelain-baking cyclic heat treatment, showed a dendrite growing. 2. The kinds of metal oxides produced on Ni-Cr alloy during degassing were found to be NiO and $Cr_2O_3$. 3. The distribution of elements at the interface of Ni-Cr alloy and porcelain in degassing state showed demarcation line, but in roughening state, showed mechanical interlocking phase. 4. The shift of elements at the interface occurred in both states, but the shift amount was found to be larger in roughening than in degassing. 5. The adhesive force between Ni-Cr alloy and porcelain was found to be $3.45{\pm}0.93kg/mm^2$, in degassing and $3.82{\pm}0.99kg/mm^2$, in roughening. 6. The failure phase between Ni-Cr alloy and porcelain showed the mixed type failure.

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Evaluation of the bond strength between aged composite cores and luting agent

  • Polat, Serdar;Cebe, Fatma;Tuncdemir, Aliriza;Ozturk, Caner;Usumez, Aslihan
    • The Journal of Advanced Prosthodontics
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    • 제7권2호
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    • pp.108-114
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    • 2015
  • PURPOSE. The aim of this study was to evaluate effect of different surface treatment methods on the bond strength between aged composite-resin core and luting agent. MATERIALS AND METHODS. Seventy-five resin composites and also seventy-five zirconia ceramic discs were prepared. 60 composite samples were exposed to thermal aging (10,000 cycles, 5 to $55^{\circ}C$) and different surface treatment. All specimens were separated into 5 groups (n=15): 1) Intact specimens 2) Thermal aging-air polishing 3) Thermal aging- Er:YAG laser irradiation 4) Thermal aging- acid etching 5) Thermal-aging. All specimens were bonded to the zirconia discs with resin cement and fixed to universal testing machine and bond strength testing loaded to failure with a crosshead speed of 0.5 mm/min. The fractured surface was classified as adhesive failure, cohesive failure and adhesive-cohesive failure. The bond strength data was statistically compared by the Kruskal-Wallis method complemented by the Bonferroni correction Mann-Whitney U test. The probability level for statistical significance was set at ${\alpha}$=.05. RESULTS. Thermal aging and different surface treatment methods have significant effect on the bond strength between composite-resin cores and luting-agent (P<.05). The mean baseline bond strength values ranged between $7.07{\pm}2.11$ and $26.05{\pm}6.53$ N. The highest bond strength of $26.05{\pm}6.53$ N was obtained with Group 3. Group 5 showed the lowest value of bond strength. CONCLUSION. Appropriate surface treatment method should be applied to aged composite resin cores or aged-composites restorations should be replaced for the optimal bond strength and the clinical success.