• Title/Summary/Keyword: $ZrB_2$

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Effect of Annealing Temperature on Microstructure and Properties of the Pressureless-Sintered $SiC-ZrB_2$ Electroconductive Ceramic Composites (상압소결(常壓燒結)한 $SiC-ZrB_2$ 전도성(電導性) 복합체(複合體)의 미세구조(微細構造)와 특성(特性)에 미치는 Annealing 온도(溫度)의 영향(影響))

  • Shin, Yong-Deok;Ju, Jin-Young
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.55 no.9
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    • pp.434-441
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    • 2006
  • The effect of pressureless-sintered temperature on the densification behavior, mechanical and electrical properties of the $SiC-ZrB_2$ electroconductive ceramic composites was investigated. The $SiC-ZrB_2$ electroconductive ceramic composites were pressureless-sintered for 2 hours at temperatures in the range of $1,750{\sim}1,900[^{\circ}C]$, with an addition of 12[wt%] of $Al_2O_3+Y_2O_3$(6:4 mixture of $Al_2O_3\;and\;Y_2O_3$) as a sintering aid. The relative density and mechanical properties are increased markedly at temperatures in the range of $1,850{\sim}1,900[{^\circ}C]$. The relative density, flexural strength, vicker's hardness and fracture toughness showed the highest value of 81.1[%], 230[MPa], 9.88[GPa] and $6.05[MPa\;m^{1/2}]$ for $SiC-ZrB_2$ composites of $1,900[{^\circ}C]$ sintering temperature at room temperature respectively. The electrical resistivity was measured by the Pauw method in the temperature ranges from $25[{^\circ}C]\;to\;700[{^\circ}C]$, The electrical resistivity showed the value of $1.36{\times}10^{-4},\;3.83{\times}10^{-4},\;3.51{\times}10^{-4}\;and\; 3.2{\times}10^{-4}[{\Omega}{\cdot}cm]$ for SZ1750, SZ1800, SZ1850 and SZ1900 respectively at room temperature. The electrical resistivity of the composites was all PTCR(Positive Temperature Coefficient Resistivity). The resistance temperature coefficient showed the value of $4.194{\times}10^{-3},\;3,740{\times}10^{-3},\;2,993{\times}10^{-3},\;3,472{\times}10^{-3}/[^{\circ}C}$ for SZ1750, SZ1800, SZ1850 and SZ1900 respectively in the temperature ranges from $25[{\circ}C]\;to\;700[{\circ}C]$, It is assumed that because polycrystallines such as recrystallized $SiC-ZrB_2$ electroconductive ceramic composites, contain of porosity and In Situ $YAG(Al_5Y_3O_{12})$ crystal grain boundaries, their electrical conduction mechanism are complicated. In addition, because the condition of such grain boundaries due to $Al_2O_3+Y_2O_3$ additives widely varies with sintering temperature, electrical resistivity of the $SiC-ZrB_2$ electroconductive ceramic composites with sintering temperature also varies with sintering condition. It is convinced that ${\beta}-SiC$ based electroconductive ceramic composites for heaters or ignitors can be manufactured by pressureless sintering.

A Study on Improvement of Fracture Toughness of $\beta-SiC-ZrB_2$Composites ($\beta-SiC-ZrB_2$ 복합체의 파괴인성 증진연구)

  • Shin Yong-Deok;Ju, Jin-Young;Yoon, Se-Won;Hwang, Chul;Song, Joon-Tae
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.05a
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    • pp.291-294
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    • 1999
  • The effect of AI$_2$O$_3$+Y$_2$O$_3$additives on fracture toughness of $\beta$-SiC-ZrB$_2$composites by hot-pressed sintering were Investigated. The $\beta$-SiC-ZrB$_2$ ceramic composites were hot-presse sintered and annealed by adding 1, 2, 3wt% AI$_2$O$_3$+Y$_2$O$_3$(6:4wt%) powder as a liquid forming additives at 195$0^{\circ}C$ for 4h. In this microstructures, no reactions were observed between $\beta$-SiC and ZrB$_2$, and the relative density Is over 90.79% of the theoretical density and the porosity decreased with increasing AI$_2$O$_3$+Y$_2$O$_3$ contents. Owing to crack deflection and crack bridging of fracture toughness mechanism, the fracture toughness showed the highest of 5.5328MPa . m$^{1}$2/ for composites added with 2wt% AI$_2$O$_3$+Y$_2$O$_3$ additives at room temperature. But the standard deviation of fracture toughness of specimens decreased with increasing AI$_2$O$_3$+Y$_2$O$_3$ contents and showed the highest of 0.8624 for composite tilth 1wt%, AI$_2$O$_3$+Y$_2$O$_3$additives.

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Effect of ($\textrm{B}_{2}\textrm{O}_{3}$.$\textrm{Li}_{2}\textrm{O}$) on the Microwave Dielectric Properties of the ($\textrm{Zr}_{0.8}\textrm{Sn}_{0.2}$)$\textrm{TiO}_{4}$ Ceramics (($\textrm{Zr}_{0.8}\textrm{Sn}_{0.2}$)$\textrm{TiO}_{4}$ 세라믹스의 마이크로파 유전특성에 미치는 ($\textrm{B}_{2}\textrm{O}_{3}$.$\textrm{Li}_{2}\textrm{O}$)의 영향)

  • An, Il-Seok;Yun, Gi-Hyeon;Kim, Eung-Su
    • Korean Journal of Materials Research
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    • v.9 no.10
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    • pp.1041-1046
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    • 1999
  • (Zr(sub)0.8Sn(sub)0.2)$TiO_4$세라믹스와 소결조제로서 ($B_2$$O_3$.Li$_2$O)의 첨가에 따른 마이크로파 유전특성 및 미세구조에 미치는 영향에 대하여 연구하였다. 1.0 mol.% $Sb_2$O(sub)5를 첨가하고 130$0^{\circ}C$에서 5시간 소결한 (Zr(sub)0.8Sn(sub)0.2)$TiO_4$세라믹스의 경우 ($B_2$$O_3$.Li$_2$O)첨가량 증가에 따라 치밀화 및 결정립 성장에 의해 유전상수와 Q.f값은 증가하여 첨가량이 0.35wt.%에서 최대값인 38과 59,000을 각각 나타내었으며, 0.50wt.% 이상 첨가한 경우에서는 제 2상의 생성으로 인하여 감소하였다. 1.0 mol% Sb$_2$O(sub)5와 0.35wt.% ($B_2$$O_3$.$Li_2$O)를 첨가한 (Zr(sub)0.8Sn(sub)0.2)TiO$_4$세라믹스를 125$0^{\circ}C$와 135$0^{\circ}C$에서 5시간 소결한 경우에는 각각 미반응 TiO$_2$의 존재와 과대입자성장에 의한 결정립내기공의 생성으로 인하여 마이크로파 유전특성은 저하되었다.

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Evaluation of Corrosion Resistance of Ti-Zr-Nb-Pd Based Alloys for Biomedical applications by electron Theory (전자론에 의한 생체용 Ti-Zr-Nb-Pd계 합금의 내식성 평가)

  • Jung, Jong-Hyun;Sun, Gum-Ju
    • Journal of Technologic Dentistry
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    • v.26 no.1
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    • pp.35-40
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    • 2004
  • In order to understand alloying effects on the corrosion resistance of Ti-(10$\sim$20)%Zr-(2$\sim$8%)Nb-0.2%Pd alloys, Polarization curves were measured at 5%HCI solution. The results were interpreted in terms of two parameters obtained by the molecular orbital calculation ; one is the bond order($B_{\circ}$) and the other is the metal d-orbital level($M_{d}$). $B_{\circ}$ is a measure of the strength of covalent bonds between titanium and alloying elements. $M_{d}$ is correlative with the electronegativity of elements. It was found that increasing of Zr and Nb with higher $B_{\circ}$ values showed a lower critical anodic current density in the polarization curve and hence higher corrosion resistance. On the other hand, increasing of Zr and Nb with higher $M_{d}$ values showed a higher corrosion resistance.

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Electrical Resistivity of the $\beta$-SiC+39vol.%$ZrB_2$ Composites ($\beta$-SiC+39vol.%$ZrB_2$ 복합체의 전기저항률)

  • Shin, Yong-Deok;Ju, Jin-Young;Yoon, Se-Won;Hwang, Chul;Lee, Jong-Deok;Song, Joon-Tae
    • Proceedings of the KIEE Conference
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    • 1999.07d
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    • pp.1916-1918
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    • 1999
  • The electrical conductive mechanism and temperature dependence of electrical resistivity of ${\beta}-SiC+ZrB_2$ composites with $Al_2O_3+Y_2O_3$ contents were investigated. The electrical resistivity of hot-pressed composites was measured by the Pauw method from $25^{\circ}C$ to $700^{\circ}C$. The electrical resistivity of the composites showed the PTCR(Positive Temperature Coefficient Resistivity) and follow the electrical conduction model for a homogeneous mixture of two kind of particles with different conductivity. Also, the electrical resistivity versus temperature curves indicate the formation of local chains of $ZrB_2$ particles.

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Crystal Structure of $\textrm{ZrV}_{x}\textrm{Mn}_{1-x-y}\textrm{Ni}_{1+y}$ Laves Phase Alloys for MH Battery Application (MH전지용 $\textrm{ZrV}_{x}\textrm{Mn}_{1-x-y}\textrm{Ni}_{1+y}$ Laves합금의 결정구조)

  • Kim, Won-Baek;Seo, Chang-Yeol;Choe, Guk-Seon;Kim, In-Gon
    • Korean Journal of Materials Research
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    • v.7 no.3
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    • pp.234-243
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    • 1997
  • The crystal structure of arc melted $ZrV_{x}Mn_{1-x}Ni_{1.0},\;ZrV_{x}Mn_{0.8-x}Ni_{1.2},\;ZrV_{x}Mn_{0.6-x}Ni_{1.4}$ alloys which are known to have AB2 type Laves structure was investigated. They had mixed phases of C14 and C15. The radius ratio ($r_{A}/r_{B}$) of atoms in A site to that of B site was found to be an important parameter in explaining the omposition dependence of the crystal structure The C15 structure showed a linear increase with the ratio in as-cast conditions. However, the annealed alloys revealed a definite ratio at which the stability of both phases are divided distinctly. The composition of the alloys could be closely controlled by maintaining the argon pressure in the chamber over 1 arm during arc melting. In contrast, the alloy ingot melted in VIM showed a significant loss of hln.

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Synthesis and Characterization of Dense $Ti_{0.5}Zr_{0.5}B_2$ Solid Solutions by Electrically-Stimulated Combustion

  • Lee, H. B.;Kim, S. J.;Y. H. Han;J. E. Garay;Zuhair A. Munir
    • The Korean Journal of Ceramics
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    • v.6 no.2
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    • pp.172-176
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    • 2000
  • Solid solutions of Ti$_{0.5}$Zr$_{0.5}$B$_2$were successfully synthesized and densified simultaneously from elemental reactants by the use of a field-activated, pressure-assisted synthesis method. The method involves the application of an electric current and mechanical pressure across reactant compacts to achieve combustion synthesis. Dense solid solutions with relative densities of up to 99% were produced and characterized by XRD, SEM, and EPMA methods. With a maximum measured temperature of 145$0^{\circ}C$ under a load of 86 MPa for 30 min, the desired dense solid solution wad synthesized.

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Dielectric, Piezoelectric Properties and Temperature Stability of Resonant Frequency in PSN-PMN-PZT Ceramics (PSN-PMN-PZT 세라믹스의 유전 및 압전 특성과 공진 주파수의 온도안정성)

  • 윤광희;류주현;민석규;이명수;서성재
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2000.07a
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    • pp.391-395
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    • 2000
  • In this study, the temperature coefficient of resonant frequency(TC $F_{r}$), dielectric and piezoelectric properties of Pb[(S $b_{1}$2/N $b_{1}$2/)$_{0.0035}$-(M $n_{1}$3/N $b_{2}$3/)$_{0.0065}$-(Z $r_{x}$ $Ti_{1-x}$ )$_{0.90}$] $O_3$ceramics is investigated with Zr/Ti ratio. The dielectric constant and electromechanical coupling factor( $k_{p}$) showed the highest values of 1257, 0.562 respectively when the Zr/Ti ratio is 49.5/50.5. The mechanical quality factor( $Q_{m}$) is the lowest value of 713 when the Zr/Ti ratio is 49.5/50.5, and increased with the decrease of the Zr/Ti ratio. The temperature coefficient of resonant frequency(TC $F_{r}$) change abruptly at the morphotropic phase boundary(MPB), which is between the rhombohedral phase with highly negative TC $F_{r}$ of -106ppm/$^{\circ}C$ and the tetragonal phase with highly positive TC $F_{r}$ of +64pp $m^{\circ}C$ as Zr/Ti ratio changes from 50/50 to 49.5/50.5.50.5..5.50.5.5.

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Development of Ultra-High Temperature Ceramics (초고온 세라믹스의 발전 동향)

  • Lee, Sea Hoon;Park, Min-Sung;Zou, Yun
    • Composites Research
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    • v.35 no.4
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    • pp.261-268
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    • 2022
  • Ultra-high temperature ceramics (UHTC) such as ZrB2, ZrC, HfB2, HfC and TaC have been recently investigated for the application to hyper-sonic systems such as nose-cone, rocket nozzle and leading edge. In this paper, the recent research results about UHTC have been reviewed. Domestic and international research results about UHTC mainly during the last 5 years were briefly summarized. Also, the results of C3HARME project, which was one of the Horizon 2020 program in EU, to get over the problems of UHTC such as brittleness through the fabrication of ultra-high temperature ceramic matrix composites (UHTCMC) were briefly introduced.