National Taiwan University of Science and Technology

Taiwan High Speed 3D Printing Research Center

CHEN CHUN MING
https://hs3dp.ntust.edu.tw

Research Field

Medical Engineering

Introduction

Research Areas:

Medical Imaging Reconstruction, Biomechanical Analysis, Orthopedic Biomechanics, Medical Device Product Design, Computer-Aided Manufacturing & Design, Finite Element Analysis, 3D Printing, Medical Device Inspection Registration, Regulatory Certification

Professional Experience:

Project Assistant Professor, Taiwan High-Speed 3D Printing Research Center, National Taiwan University of Science and Technology

Adjunct Assistant Professor, High-Speed 3D Printing Research Center, National Taiwan University of Science and Technology

Postdoctoral Researcher, Department of Mechanical Engineering, National Taiwan University of Science and Technology

Postdoctoral Researcher, Department of Information Engineering, National Taiwan University of Science and Technology

Postdoctoral Researcher, Institute of Biomedical Engineering, National Taiwan University of Science and Technology

Lecturer, Computer and Communication Engineering, Army Academy R.O.C.

Lecturer, Power Mechanical Engineering, Army Academy R.O.C.

Taiwan High Speed 3D-Printing Center of NTUST can provide a variety of forward-looking and high-end printing technologies to assist in the pre- and post-production processes of product prototypes, trial production and mass production, including lightweight ventilation, topology optimization, mesh weaving, 3D printing, equipment development, and surface treatment The other services can accelerate the efficiency of R&D and commercialization, while providing the regulatory certification of innovative medical materials and various project applications and technology transfers.

High-speed 3D Printing OEM: Trial Production of Product Prototypes, OEM Mass Production, Surface Treatment of 3D-printed Objects

High-end Equipment Design: 3D High-speed Printer for OEM Mass Production, 3D Large-scale Printer for Larger Size Products, 3D Micro-scale Printer for Bio-specimens

Optimal Design for 3D Printing: Topology Optimization of Product Configuration, Mesh Structure and flow Channel of Inner Structure, Optimal Arrangement of Supporting Structures

3D-printing Materials and Binders: Development of 3D-printing Materials, Development of 3D-printing Binders for Powders

3D-printing Applications: Commercialization Assistance for Various Industries, Counselling of Medical Regulatory Certification, Apply for Government Subsidy Projects


Research Topics

Research projects:

1.Development of a Lightweight and Highly Breathable Adjustable Infant Helmet Using High-Speed 3D Printing Rapid Prototyping System

2.Precision Medicine in High Tibial Osteotomy

3.High-Speed Direct Digital Layered Manufacturing Technology and Industrial Research and Development Project

4.Development of a Customized Acetabular Cup Shelf Procedure Combined with Hip Arthroscopy Surgical Guidance Positioning System

5.Guide Plate and Correction Surface Design Algorithm for Periarticular Osteotomy around the Knee Joint

6.Development of a Rapid Layered Automatic Manufacturing System for Customized Porous High-Elasticity Orthotics

7.Research and Development of Technologies Assisting in Medical Material Manufacturing and Testing, Including the Construction of an Image Analysis and Regulatory Training Platform

8.Study on the Improvement of the Efficiency in the Review of New Health Insurance Materials - Establishment of a Classification Mechanism for the Review of Next-Generation Bone Plate and Screw Systems

9.Development of Anatomical Bone Plate/Bone Screw and Surgical Assist Systems


Honor

Patent Applications:

1.Adjustable Lumbar Spinal Brace

2.Baby Helmet for Correcting Head Shape

3.Spine Correction Bracket

4.Tunable Insole Pad Components for Comforting Arch

5.Intervertebral Cage

6.Surgery Device for Osteotomy

7.A Surgery Device for Osteotomy

8.An Improved Bony Plate Structure

9.Surgery Device for High Tibial Osteotomy

10.Femoral Neck Resurfacing Device with Screw-Selflocking Mechanism and Highly Anatomic Fitness

11.Joint Surface Partial Implants and Installation Method Thereof


Educational Background

Ph.D. in Mechanical Engineering, National Central University

Master's in Biomedical Engineering, National Central University

Bachelor's in Mechanical Engineering, National Central University