• 제목/요약/키워드: Positive Temperature Coefficient(PTCR)

검색결과 70건 처리시간 0.018초

PTCR 나노 복합기능 소재의 전류 차단 특성 연구 (PTCR Characteristics of Multifunctional Polymeric Nano Composites)

  • 김재철;박기헌;서수정;이영관;이성재
    • 폴리머
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    • 제26권3호
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    • pp.367-374
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    • 2002
  • 본 연구에서는 나노 입자의 카본블랙을 결정성 고분자에 분산시켜 특정한 온도에서 저항이 급격하게 증가하는 positive temperature coefficient resistance (PTCR) 특성을 연구하였다. 열가소성 수지를 이용한 PTCR 소재를 열처리에 의하여 고분자의 큐리온도를 조절할 수 있었다. 나노입자 카본블랙이 고분자 구조내에 고르게 분산이 되지 않고, 카본블랙의 함량이 과다하면 negative temperature coefficient resistance (NTCR) 현상이 발생하였다. 카본블랙의 함량과 내부전압을 조절함에 따라 발열 온도를 선정할 수 있었다. 카본블랙의 함량에 따라 전기 전도성이 다르게 나타났으며, 20 wt% 이상에서는 저항이 거의 일정하게 나타난다는 것을 확인하였다. 본 연구에서 제조된 PTCR 소재는 반복적인 가열 냉각에 따른 상온에서의 초기 저항의 변화가 거의 없어 재현성을 확인하였으며, 초기의 낮은 저항에 의한 순간적인 발열에 의하여 저온에서의 PTCR 성능이 향상되었다.

Current-voltage Characteristics of Ceramics with Positive Temperature Coefficient of Resistance

  • Li, Yong-Gen;Cho, Sung-Gurl
    • 한국세라믹학회지
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    • 제40권10호
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    • pp.921-924
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    • 2003
  • A current-voltage relation for Positive Temperature Coefficient of Resistance (PTCR) ceramic was derived and compared with the experimental data. The new current-voltage relation was developed based on Heywangs double Schottky barrier model and a bias distribution across the grain boundary. The voltage limitation V < 4${\Phi}$$\sub$b/ suggested by Heywang is no longer necessary in the new expression for the voltage dependence of the resistance. The pulsed voltages were applied to the PTCR ceramic specimen in order to avoid possible temperature variation during the measurement.

Nb2O5 첨가와 소결시간에 따른 Ba0.99(Bi0.5Na0.5)0.01TiO3 세라믹스의 PTCR 특성 (Positive Temperature Coefficient of Resistivity(PTCR) Behavior of Nb2O5 Added Ba0.99(Bi0.5Na0.5)0.01TiO3 Ceramics as a Function of Sintering Time)

  • 오영광;최승훈;류주현
    • 한국전기전자재료학회논문지
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    • 제24권7호
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    • pp.559-562
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    • 2011
  • In this study, the effect of $Nb_2O_5$ and sintering time on the positive temperature of coefficient of resistivity (PTCR) behavior of lead free $Ba_{0.99}(Bi_{0.5}Na_{0.5})_{0.01}TiO_3$ (BBNT) ceramics were investigated in order to fabricate a PTC thermistor with high $T_c$ temperature more than $140^{\circ}C$. In particular, BBNT ceramic doped with 0.1mol% $Nb_2O_5$ and sintered at $1350^{\circ}C$ for 4 h has significantly increased Curie temperature ($T_c$) of about $200^{\circ}C$, showed good PTCR behavior of room-temperature resistivity ($\rho_{rt}$) of $40{\Omega}{\cdot}cm$, a high $\rho_{max}/\rho_{min}$ ratio of $43.78{\times}10^3$ and a large resistivity temperature factor (${\alpha}$) of 16.1%/$^{\circ}C$. With increasing addition of $Nb_2O_5$ content, the $\rho_{rt}$ decreased to a minimum value of $40\;{\Omega}cm$ at 0.1mol% $Nb_2O_5$ and the $\rho_{rt}$ increased for x value over 0.1 mol%.

Ti 조성이 (Ba, Sr) $TiO_3$계 반도체 세라믹에 미치는 영향 (The Effect of Ti Compositions on (Ba, Sr) $TiO_3$ Semiconducting Ceramics)

  • 박금덕;조상희
    • 한국세라믹학회지
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    • 제22권3호
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    • pp.46-52
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    • 1985
  • (Ba0.8. Sr0.2) $TiO_3$ semiconducting ceramic with and without Ti-excess composition were prepared by various sintering temperature. The effects of Ti compositions on the samples were discussed in terms of color micro-structure resistivity at room temperature and the positive temperature coefficient resistivity(PTCR). The 1.02mol Ti-excess composition provides better PTCR properties and has uniform micrositructures with 5-7${\mu}{\textrm}{m}$.

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Na2Ti6O13를 도핑한 0.94BaTiO3-0.06(Bi0.5Na0.5)TiO3 세라믹스의 미세구조와 Positive Temperature Coefficient of Resistivity 특성 (Microstructure and Positive Temperature Coefficient of Resistivity Characteristics of Na2Ti6O13-Doped 0.94BaTiO33-0.06(Bi0.5Na0.5)TiO3 Ceramics)

  • 차유정;정영훈;이영진;백종후;이우영;김대준
    • 한국재료학회지
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    • 제20권11호
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    • pp.575-580
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    • 2010
  • The microstructure and positive temperature coefficient of resistivity (PTCR) characteristics of 0.1 mol%$Na_2Ti_6O_{13}$ doped $0.94BaTiO_3-0.06(Bi_{0.5}Na_{0.5})TiO_3$ (BBNT-NT001) ceramics sintered at various temperatures from $1200^{\circ}C$ to $1350^{\circ}C$ were investigated in order to develop eco-friendly PTCR thermistors with a high Curie temperature ($T_C$). Resulting thermistors showed a perovskite structure with a tetragonal symmetry. When sintered at $1200^{\circ}C$, the specimen had a uniform microstructure with small grains. However, abnormally grown grains started to appear at $1250^{\circ}C$ and a homogeneous microstructure with large grains was exhibited when the sintering temperature reached $1325^{\circ}C$. When the temperature exceeded $1325^{\circ}C$, the grain growth was inhibited due to the numerous nucleation sites generated at the extremely high temperature. It is considered that $Na_2Ti_6O_{13}$ is responsible for the grain growth of the $0.94BaTiO_3-0.06(Bi_{0.5}Na_{0.5})TiO_3$) ceramics by forming a liquid phase during the sintering at around $1300^{\circ}C$. The grain growth of the BBNT-NT001 ceramics was significantly correlated with a decrease of resistivity. All the specimens were observed to have PTCR characteristics except for the sample sintered at $1200^{\circ}C$. The BBNT-NT001 ceramics had significantly decreased $\tilde{n}_{rt}$ and increased resistivity jump with increasing sintering temperature at from $1200^{\circ}C$ to $1325^{\circ}C$. Especially, the BBNT-NT001 ceramics sintered at $1325^{\circ}C$ exhibited superior PTCR characteristics of low resistivity at room temperature ($122\;{\Omega}{\cdot}cm$), high resistivity jump ($1.28{\times}10^4$), high resistivity temperature factor (20.4%/$^{\circ}C$), and a high Tc of $157.9^{\circ}C$.

분쇄 방법 및 하소온도에 따른 Doner-doped BaTiO3의 전기적 특성 (Electrical Properties of Donor-doped BaTiO3 Ceramics by Attrition Milling and Calcination Temperature)

  • 이정철;명성재;전명표;조정호;김병익;신동욱
    • 한국전기전자재료학회논문지
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    • 제21권3호
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    • pp.217-221
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    • 2008
  • In this study, We have been investigated the effect of calcination temperature and high-energy ball-milling of powder influences the $BaTiO_3$-based PTCR(Positive Temperature coefficient Resistance) characteristics and microstructure. The mixed powder was obtained from $BaCO_3$, $TiO_2$, $CeO_2$ ball-milled in attrition mill. The mixed powder was calcine from 1000 $^{\circ}C$ to 1200 $^{\circ}C$ in air and then it was sintered in reduction- re-oxidation atmosphere. As a result, The room-temperature electrical resistivity decreased and increased with increasing calcination temperature. specially, Attrition milled powder could have low room-temperature resistivity and high PTC jump order at 1100 $^{\circ}C$. attrition milling had lower room-temperature resistivity than ball milling. Particle size decreased by Attrition milling of powder influences in calcination temperature and room-temperature resistivity.

전기-전자기기의 과열 방지용 PTC서미스터 개발 (The Development of PTC Thermistor using a preventive of Over Heating in Electrical-Electronic Machinery and Apparatus)

  • 박춘배;송민종
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1995년도 하계학술대회 논문집 A
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    • pp.104-106
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    • 1995
  • A curious resistivity anomaly in high curie point barium-lead-titanate materials with positive temerature coefficient of resistivity (PTCR) has been observed just below the curie point, besides the normal PTCR anomaly. The additional resistivity anomaly was observed in the resistivity-temperature characteristics.

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이트륨 혼입량 변화에 따른 $(Ba,Sr)_{1-x}Y_xTiO_3$의 전기적 특성 (Electrical Properties of $(Ba,Sr)_{1-x}Y_xTiO_3$ with Variation of Yttrium Content)

  • 노태용;성현제;김승원;이철
    • 대한화학회지
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    • 제39권10호
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    • pp.806-811
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    • 1995
  • 정온도저항계수(PTCR) 특성을 지닌 $(Ba,Sr)_{1-x}Y_xTiO_3$(x = 0.001-0.009, BSYT)를 옥살산공침범으로 합성하여 이트륨 혼입량 변화에 따른 전기적 특성을 관찰하였다. 온도변화에 따른 저항을 측정한 결과 이트륨의 농도가 0.3mol%로 증가할때까지는 큰 PTCR 효과를 나타낸 반면 농도가 0.5mol% 이상에서는 적은 PTCR 효과를 나타내었다. 상전이 온도($T_c$) 이상에서 온도와 $1{\varepsilon}$m(T)의 관계를 나타낸 도시에 의하면 유전상수의 변화가 Curie-Wiess 법칙에 잘 따름을 알 수 있었다. 측정한 비저항과 유전상수로부터 계산한 전위장벽위 높이를 온도에 따라 도시한 결과 PTCR 효과와 마찬가지로 이트륨의 혼입량이 0.3mol%로 증가할때까지는 높은 전위장벽이 유지되나 0.5mol% 이상에서는 비교적 낮은 전위장벽을 나타내었다.

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$BaTiO_3$계 박막형 열전센서소자 개발 (Development of Thermal Sensor Devices in the $BaTiO_3$ Systems)

  • 송민종
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2003년도 제5회 학술대회 논문집 일렉트렛트 및 응용기술연구회
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    • pp.100-104
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    • 2003
  • $BaTiO_3$ ceramic thin films were manufactured by rf/dc magnetron sputter technique. We have investigated crystal structure, surface morphology and PTCR(positive-temperature coefficient of resistance) characteristics of the specimen depending on second heat-treatment temperatures. Second heat treatments of the specimen were performed in the temperature range of 400 to $1350^{\circ}C$. X-ray diffraction patterns of $BaTiO_3$ thin films show that the specimen heat treated below $600^{\circ}C$ is an amorphous phase and the one heat treated above $1100^{\circ}C$ forms a poly-crystallization. In the specimen heat-treated at $1300^{\circ}C$, a lattice constant ratio (c/a) was 1.188. Scanning electron microscope(SEM) image of $BaTiO_3$ thin films of the specimen heat treated in between 900 and $1100^{\circ}C$ shows a grain growth. At $1100^{\circ}C$, the specimen stops grain-growing and becomes a poly-crystallization.

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무연 Ba0.99(Bi1/2Na1/2)0.01TiO3 세라믹의 PTCR 특성에 미치는 Nb2O5와 MnO2의 효과 (Effects of Nb2O5 and MnO2 on the PTCR behavior of Lead-free Ba0.99(Bi1/2Na1/2)0.01TiO3 Ceramics)

  • 박용준;남산;이영진;정영훈;백종후;김대준;이우영
    • 한국전기전자재료학회논문지
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    • 제21권7호
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    • pp.638-644
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    • 2008
  • The effects of $Nb_2O_5$ and $MnO_2$ on the positive temperature coefficient of resistivity (PTCR) behavior of lead-free $Ba_{0.99}(Bi_{1/2}Na_{1/2})_{0.01}TiO_3$ (BaBiNT) ceramics were investigated in order to fabricate a PTC thermistor available at high temperature of > $120^{\circ}C$. In particular, 0.05 mol% $Nb_2O_5$ added BaBiNT ceramic, which has significantly increased Curie temperature (Tc) of $160^{\circ}C$, showed good PTCR behavior; low resistivity at room temperature $(\rho_r)$ of $80.1{\Omega}{\cdot}cm$, a high $\rho_{max}/\rho_{min}$ ratio of $5.65{\times}10^3$ and a large resistivity temperature factor (a) of 18.5%/$^{\circ}C$. Furthermore, the improved $\rho_{max}/\rho_{min}$ of $6.48{\times}10^4$ and a of 25.4%/$^{\circ}C$ along with higher $T_c$ of $167^{\circ}C$ despite slightly increased $\rho_r$ of $569{\Omega}{\cdot}cm$, could be obtained for the BaBiNT + 0.05 mol% $Nb_2O_5$ + 0.02 wt% $MnO_2$ ceramic cooled down at a rate of $200^{\circ}C/h$.