Kyushu University · 재료과학
Byung-Koog Jang 교수의 연구실은 고온 환경에서 안정성을 확보할 수 있는 세라믹스 및 복합재료의 개발에 중점을 두고 있습니다. 특히 환경 장벽 코ating, 고체산화물 연료전지 및 고온 전기분해 기술에 응용 가능한 내열성 및 내부구조 제어가 가능한 세라믹스 복합체를 연구하고 있으며, 스파크 플라즈마 소결(SPS)을 활용한 밀도 향상과 미세구조 제어 기술이 핵심입니다. 또한, 나노입자 분산, 고온에서의 상안정성 확보 및 기계적 특성 향상 기술을 통합적으로 개발하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Abstract The Gd 2 SiO 5 performed high‐temperature corrosion behavior on calcium–magnesium– aluminosilicate (CMAS) for environmental barrier coatings (EBCs). The synthesized Gd 2 O 3 ‐SiO 2 powder was prepared to fabricate a sintered Gd 2 SiO 5 by spark plasma sintering (SPS) at 1400°C for 20 min. CMAS was sprinkled on the sintered Gd 2 SiO 5 surface and exposed for 2, 12, and 48 h at 1400°C by isothermal heat treatment. The main corrosion factor is Ca, and Ca 2 Gd 8 (SiO 4 ) 6 O 2 phase is form
Abstract Transparent Y 2 O 3 ceramics were successfully fabricated by spark plasma sintering applying a two‐step pressure and heating profile. Through the shrinkage curve of the single‐step SPS profile, it was confirmed that shrinkage occurred at 800°C–1250°C, and it was selected as the two‐step pressure profile. After the first‐step SPS stage at 1250°C, the second‐step SPS stage, which had the highest real in‐line transmittance, was completed at 1500°C. The two‐step SPS profile improved the shr
TiNi/CFRP composites were fabricated by hot-pressing in the temperature range of 130-180 degree(s)C, by controlling the applied pressure. The TiNi wires were embedded as an 1mm interval into the center of CFRP layers and CFRP host materials were stacked as 0, 30, 60 and 90 degrees configuration on tensile direction, respectively. The stress-strain curve and tensile strength of composites strongly depends on stacking direction of carbon fibers. The tensile strength of TiNi/CFRP composites with st
Stable Al 2 O 3 –SiC–YAG hybrid composites were successfully fabricated by reaction of Al 2 O 3 and Y 2 O 3 and incorporation of SiC. The hot‐pressed bodies consisted of uniformly dispersed grains of microsized YAG particulates and nanosized SiC particulates in an Al 2 O 3 matrix. Although the grain size of monolithic A1 2 O 3 increases markedly with increased temperature, the grain size of the Al 2 O 3 –SiC–YAG hybrid composites was effectively restrained due to grain‐boundary pinning by the pa
Al2O3/SiC composites were prepared by hot-pressing in order to investigate the microstructural characteristics and nano-disperse behavior of alumina matrix composites. The grain size of the monolithic alumina ceramics increased with increasing hot-pressing temperature, and the exaggerated grain growth occurred above 1800°C. However, the addition of SiC particulates effectively suppressed the growth of the alumina matrix in the composites. The average matrix grain size was smaller and the grain s
Many researches based on SOFC development and high temperature electrolysis (HTE) have been reported in the last couple of decades. HTE is one of the most clean and efficient technologies for manufacturing large amounts of hydrogen from water with oxygen. The processing and structure of HTE is closely related to the knowledge and concept of solid oxide fuel cells (SOFCs). Specially, it is very important to evaluate the durability’s properties of oxide electrolysis stacks under high temperature a