실험실 소개
첨단 적층제조 및 소재개발 연구실은 금속 적층제조 (Additive Manufacturing, AM) 공정을 기반으로 다중재료 및 극한환경용 첨단 소재 개발을 목표로 하며, 이를 위해 공정-구조-물성 (Process-Structure-Property) 상관관계를 규명하고 방위 및 항공·우주 산업 응용으로 확장한다. 나아가 인공지능 (AI) 기반 실시간 모니터링 및 결함 검출 기술을 활용하여 적층제조 부품의 신뢰성과 품질을 향상시키고, 차세대 제조 기술의 실용화를 가속화하는 것을 목표로 한다.
주요 연구 분야
- 1. 금속 적층제조 신공정 개발 (New Additive Manufacturing Process Development)
- 2. AM 공정 비용·경제성 모델링 (Process Cost Modeling)
- 3. AM 공정-구조-물성 상관관계 분석 (Process-Structure-Property Relationship Analysis)
- 4. 극한환경용 소재 개발 (Materials Development for Extreme Environments)
- 5. 다중재료 복합구조 제작 (Multi-material Structure Fabrication)
- 6. 실시간 공정 모니터링 (In-situ Process Monitoring)
- 7. AI/ML 기반 결함 검출 (AI/ML-driven Defect Detection)
교수님 소개
이기준
- 소 속: 기계공학부(기계시스템공학전공)
- 연구실: 테크노관 420호
- 연락처: ☎054-478-7400
- E-mail: kijoon.lee@kumoh.ac.kr
- 2013년 국민대학교 공학사 (기계자동차공학)
- 2016년 Oregon State University 공학석사 (기계공학)
- 2022년 Oregon State University 공학박사 (기계공학; 재료공학 부전공)
- 2023년 University of Michigan 박사후연구원
- 2025년 Texas A&M University 박사후연구원
주요 논문
- Extremely low temperature mechanical behavior of in-situ oxide containing 304L stainless steel fabricated by laser powder bed fusion, Journal of Materials Science & Technology (2025) (JCR 2024, IF 14.3, Top 1%)
- Insights on enhancing the adhesion of inkjet-printed europium-doped yttrium oxide by tailoring interfacial bonding environments, Materials & Design (2025) (JCR 2024, IF 7.9, Q1)
- A microchannel heat exchanger produced from a metal matrix composite by hybrid laser powder bed fusion and inkjet printing, Journal of Manufacturing Science and Engineering (2024) (JCR 2023, IF 2.4, Q2)
- Multi-metal additive manufacturing of selectively doped 316 L stainless steel-copper composite using hybrid laser powder bed fusion, Additive Manufacturing (2024) (JCR 2023, IF 10.3, Top 6%)
- A review on progress, challenges, and prospects of material jetting of copper and tungsten, Nanomaterials (2023) (JCR 2022, IF 5.3, Q2)
- Remarkable enhancement in thermal conductivity of stainless-steel leveraging metal composite via laser powder bed fusion: 316L-Cu composite, Additive Manufacturing (2023) (JCR 2022 IF 11.0, Top 10%)
- Synthesis of a 316L Stainless Steel–Copper Composite by Laser Melting, Additive Manufacturing Letters (2022) (JCR 2024, IF 4.7, Q2)
- Selective laser melting of austenitic oxide dispersion strengthened steel: Processing, microstructural evolution and strengthening mechanisms, Materials Science and Engineering: A (2020) (JCR 2019, IF 4.7, Q1)
- Selective laser melting of 304L stainless steel: Role of volumetric energy density on the microstructure, texture and mechanical properties, Additive Manufacturing (2020) (JCR 2019, IF 7.0, Top 5%)
- Oxide dispersion strengthened 304 L stainless steel produced by ink jetting and laser powder bed fusion, CIRP Annals (2020) (JCR 2019, IF 3.6, Q1)
- Improving the Energy Efficiency of Adsorption Chillers by Intensifying Thermal Management Systems in Sorbent Beds, Journal of Manufacturing Science and Engineering (2018) (JCR 2017, IF 2.6, Q2)