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입내 분산형 Al<sub>2</sub>O<sub>3</sub>/Ag 나노복합체의 제조와 특성
천승호,한인섭,히데오 아와지,Cheon, Sung-Ho,Han, In-Sub,Awaji, Hideo 한국세라믹학회 2007 한국세라믹학회지 Vol.44 No.4
Alumina/silver ($Al_2O_3/Ag$) nanocomposites with Ag content up to 9 vol% were prepared from nanopowder by soaking method using ${\gamma}-Al_2O_3$ of needle type and spark plasma sintering (SPS). The mechanical properties of specimens were investigated three-point flexural strength and toughness as a function of the Ag contents. The maximum flexural strength of the alumina/silver nanocomposite was 850 MPa for the 1 vol% composite, and also higher than monolith alumina as about 800 MPa at 3, 5, and 7 vol% Ag contents. Fracture toughness by single edged V-notch beam (SEVNB) was $4.05MPa{\cdot}m^{1/2}$ for the 3 vol% composite and maintained about $4.00MPa{\cdot}m^{1/2}$ at 5, and 7 vol% Ag content. Microstructure of fracture surface for each fracture specimens was observed. Due to the inhibition effect of alumina grain growth, the average grain size of nanocomposites depends on the content of Ag nano particles. The fracture morphology of nanocomposite with dislocation (sub-grain boundary) by silver nano-particles of second phases in the alumina matrix also showed transgranular fracture-mode compare with intergranular of monolith alumina. Thermal conductivity of specimens at room temperature was about 40 W/mK for the 1 vol% Ag content.
Nitrided Pressureless Sintering 공정을 이용한 질화규소 세라믹스의 제조 및 특성
천승호,한인섭,정용희,서두원,이시우,홍기석,우상국,Cheon, Sung-Ho,Han, In-Sub,Chung, Yong-Hee,Seo, Doo-Won,Lee, Shi-Woo,Hong, Kee-Soeg,Woo, Sang-Kuk 한국세라믹학회 2004 한국세라믹학회지 Vol.41 No.12
Nitrided Pressureless Sintering(NPS) 공정에 의한 질화규소 세라믹스의 기계적 특성, 미세구조 및 열적 특성을 세 가지조성을 갖는 $Al_{2}O_3,\;Y_{2}O_3$ 소결조제의 변화에 따라 조사하였다. 또한 각 조성에서 금속 실리콘의 첨가량을 0, 5, 10, 15, 그리고 $20wt\%$로 변화를 주어 실리콘의 첨가효과를 조사하였다. $5wt\%\;Al_{2}O_3,\;5wt\%\;Y_{2}O_3$, 그리고 $5wt\%$ Si 조성에서 질화규소 소결체의 치밀화가 진행되었으며, 4점 꺽임강도와 상대밀도는 각각 500 MPa과 $98\%$를 나타내었다. 또한 상온에서 열팽창계수와 열전도도는 각각 $2.89{\times}10^{-6}/^{\circ}C$와 $28W/m^{\circ}C$를 나타내었으며, 20,000회의 열충격 싸이클을 반복한 후, 꺽임강도를 측정한 결과, 초기 500MPa의 강도를 유지하고 있었다. The mechanical properties and microstructure and thermal properties of Nitrided Pressureless Sintering(NPS) silicon nitride ceramics, containing three type of $Al_{2}O_3,\;Y_{2}O_3$ sintering additives, were investigated. Also, we have investigated the effect of silicon metal content changing with 0, 5, 10, 15, and $20wt\%$ Si in each composition. In $5wt\%\;Al_{2}O_3,\;5wt\%\;Y_{2}O_3,\;and\;5wt\%$ Si composition, silicon nitride sintered body was successfully densified to a high density. The average 4-point flexural strength and relative density of these specimens were 500 MPa and 98% respectively. Also, Thermal expansion coefficient and thermal conductivity of specimens at room temperature were $2.89{\times}10^{-6}/^{\circ}C\;and\;28W/m^{\circ}C$, respectively. The flexural strength of sintered specimens after thermal shock test of 20,000 cycles was maintained as-received value of 500 MPa.
금속분리판의 Electro Polishing 및 CrN 코팅을 통한 PEMFC 성능 향상을 위한 연구
황성택(Sung Tack Hwang),천승호(Seung Ho Cheon),송준석(Jun Seok Song),윤영훈(Younghoon Yun),김병헌(Byeong Heon Kim),장하(Xia Zhang),김대웅(Dae-Ung Kim),현덕수(Deoksu Hyon),오병수(Byeong Soo Oh) 한국자동차공학회 2013 한국자동차공학회 지부 학술대회 논문집 Vol.2013 No.5-1
As an important component of a fuel cell, the bipolar plate comprises a large proportion in the fuel cell’s volume, weight and price. The bipolar plate is the most widely used; however, graphite bipolar plate is large in volume, brittle and therefore easily broken during assembling. In addition, due to its poor machinability, production costs a lot, unless mass production. Compared with the graphite bipolar plate, the metal bipolar plate has good machinability, high electric conductivity and strong mechanical strength; however, it corrodes easily and has a high contact resistance, so in order to prevent corrosion and reduce the contact resistance, the basic metal needs to be processed by use of electro polishing and coating. The water which is produced by electrochemical reactions in the fuel cell must be discharged smoothly. In this study, in order to prevent corrosion the processes of electro polishing and CrN coating were used. According to the presence or absence of these processes, the contact angles can be measured and different metal bipolar plates can be made, these plates can be used for comparing and analyzing the performance of the fuel cell.
Nitrided Pressureless Sintering에 의해 제조된 Si<sub>3</sub>N<sub>4</sub>의 산화거동
한인성,천승호,정용희,서두원,이시우,홍기석,우상국,Han, In-Sub,Cheon, Sung-Ho,Jung, Yong-Hee,Seo, Doo-Won,Lee, Shi-Woo,Hong, Kee-Soeg,Woo, Sang-Kuk 한국세라믹학회 2005 한국세라믹학회지 Vol.42 No.1
Oxidtion behavior of $Si_{3}N_{4}$ ceramics with the different porosity by the Nitrided Pressureless Sintering (NPS) were investigated in pure oxygen gas atmosphere at 1000 to $1300^{circ}C$. The thickness of formed oxide film on the surface of silicon nitride ceramics was increased with oxidation time and temperature. The oxide film thickness of 5A5Y5Si and 5A5Y10Si specimens for 100 h at 1300^{circ}C$ was about 10 $\mu$m and 20 $\mu$m, respectively. The oxidation of 5A5Y5Si and 5A5Y10Si specimens follows the parabolic behavior with an apparent activation energy of 215 kJ/mol and 104 kJ/mol, respectively. The flexural strength of 5A5Y5Si specimens after oxidation test for 500 h at 1300^{circ}C were maintained as-received value of 500 ma. On the other hand, that of 5A5Y10Si specimens were decreased about 100 MPa in as-received value. 질화상압동시소결(NPS) 공정에 의해 제조된 기공율이 다른 질화규소 소결체에 대해 $1300^{circ}C$ 순산소 가스분위기에서 산화거동을 조사하였다. 질화규소 세라믹스 표면에 형성된 산화층의 두께는 산화 시간과 온도에 따라 증가되었으며, $1300^{circ}C$에서 100시간 산화시킨 5A5Y5Si와 5A5Y10Si 시편의 산화층 두께는 각각 10$\mu$m와 20$\mu$m이었다. 5A5YSi와 5A5Y10Si 시편의 산화는 각각 215kJ/mol과 104kJ/mol의 활성화 에너지를 갖고 포물선적 거동을 나타내었다. $1300^{circ}C$에서 500시간 산화시킨 후, 5A5Y5Si 시편에 대해 꺾임 강도를 측정한 결과, 초기의 약 500MPa값을 유지하고 있었으며, 반면 5A5Y10Si의 경우에는 초기의 값에서 약 100MPa의 강도저하를 나타내고 있었다.
淡路英夫(Hideo Awaji),千承昊(Sung-Ho Cheon),崔成珉(Seong-Min Choi) 한국세라믹학회 2006 세라미스트 Vol.9 No.6
Intra-type alumina-based nanocomposites, in which second-phase nanoparticles are embedded within alumina grains, use dislocation activities to enhance strength and fracture toughness. The dislocations are generated around the nanoparticles by residual stresses during cooling process. In this paper, first, we explain strengthening and toughening mechanisms of alumina-based nanocomposites based on dislocation activities. Second, we propose a soaking method to construct the intra-type nanostructure and fabricate alumina/nickel and alumina/silver nanocomposites. The nanocomposites are then annealed in order to enhance the fracture toughness of the materials. Finally, we discuss the relation between the strength, fracture toughness, and critical frontal process zone size of the materials.