Hyung Wook Park
· 2008: Ph.D. School of Mechanical Engineering, Georgia Institute of Technology
· 2002: M. S. School of Mechanical and Aerospace Engineering, Seoul National University
· 2000: B.S. School of Mechanical and Aerospace Engineering, Seoul National University
· 2009~Present: Professor, UNIST
· 2022~2023: Visiting Professor, Georgia Institute of Technology
· 2008~2009: Senior researcher, Korea Institute of Machinery and Materials(KIMM)
· 2002~2003: Researcher, Hyundai Motor Company
· Minster Award, Minister of Science and ICT, 2022
· Best Presentation Award, International symposium on Precision Engineering and Sustainable Manufacturing, 2022
· Best Presentation Award, the Korean society of manufacturing technology engineers, 2022
· KSME Baekahm Paper Award, Korean Society of Mechanical Engineering, 2019
· Excellent Research Award, the 10th MIRAI conference on Microfabrication and Green Technology, 2017
Multiscale Hybrid Manufacturing Lab
IT, ET, BT 산업이 개인 정보통신으로 접목된 다중매체 유비쿼터스 장비의 증가, 마이크로 의료기기 산업 및 신재생 태양전지 산업의 일반화 등, 첨단산업이 일상생활로 파급되면서 복합형상에 대한 다차원 하이브리드 가공의 고부가가치 제품 수요가 증가함에 따라서, 본 연구실은 다차원 가공 공정 해석 알고리즘/시스템 및 차세대 복합재에 대해서 연구하고 있다.
Based on past and current research experience, my long term research goal is to establish and develop “Multi-Physics based Micro/Meso-scale Manufacturing (MP-M2) Processes and Systems.” In order for this goal to be achieved, it will be necessary to conduct fundamental research into the MP-M2 process as well as to develop a design technique for components and an overall system. In this system, various mechanical micro-machining processes will be performed to produce micro-features, such as micro-molds, bio-sensors, and micro-patterns for portable fuel cells, using diverse materials.
Based on past and current research experience, my long term research goal is to establish and develop “Multi-Physics based Micro/Meso-scale Manufacturing (MP-M2) Processes and Systems.” In order for this goal to be achieved, it will be necessary to conduct fundamental research into the MP-M2 process as well as to develop a design technique for components and an overall system. In this system, various mechanical micro-machining processes will be performed to produce micro-features, such as micro-molds, bio-sensors, and micro-patterns for portable fuel cells, using diverse materials.

멀티 스케일 하이브리드 제조 공정 및 시스템, 다기능 복합재 <br> Multiscale hybrid manufacturing process and system, Multi-functional composite
Multiscale hybrid manufacturing process and system, Multi-functional composite
멀티 스케일 하이브리드 제조 공정, 복합 재료, 전자빔<br>
Multiscale hybrid manufacturing process, Composite, Electron beam
Multiscale hybrid manufacturing process, Composite, Electron beam
국가과학기술표준분류
EA. 기계 > EA02. 생산기반기술 > EA0207. 예측/시뮬레이션기술
· ACS ENGERGY LETTERS/ 3D-printed structural supercapacitor with mxene-N@Zn-Co selenide naniwire based woven carbon fiber electrodes, Biplab K. Deka, Ankita Hazarika, Gu-Hyeok Kang, Yun Jae Hwang, Anand Praksh Jaiswal, Dong Chan Kim, Young-Bin Park, Hyung Wook, 2023.02
· JOURNAL OF MANUFACTURING PROCESSES, Indirect measurement of cutting forces during robotic milling using multiple sensors and a machine learning based system identifier, Chang Hyeon Mun, Sina Rezvani, Jiho Lee, Simon S. Park, Hyung Wook Park,, Jihyun Lee, 2023.01
· JOURNAL OF MANUFACTURING PROCESSES, Improvement of tool life via unique surface modification of a tungsten carbide tool using a large pulsed electron beam in Ti-6Al-4V machining, Sang Min Yang, Joon-Hyeok Choe, Jisoo Kim, Hyung Wook Park, Do Young Kim, 2022.11
Method of manufacturing composite material having nano structure grown on carbon fiber and composite material having nano structure manufactured using the same 14/495,961 (2014)