Introduction

University in Taiwan with a Ph.D. in Mechanical and Aerospace Engineering. He is currently the Development Manager of UGMIC Industrial Ltd., a Taiwanese manufacturer of thread cutting tools.

       Dr. Chen's engineering background combines academic research with extensive industry experience. He received his Bachelor of Science degree in Mechanical Engineering from Feng Chia University in 2001, his Master of Science degree in Mechanical Engineering in 2003, and was also elected a member of the Phi Tau Phi Honorary Society in the same year. Finally, he received his Ph.D. in Mechanical and Aerospace Engineering in 2012.

       During my Master's and Doctoral studies at Feng Chia University, under the meticulous guidance of Professor Chung Li Hwan of the Department of Mechanical and Computer-Aided Engineering and Professor K. H. Tsai of the Department of Fiber and Composite Materials, I achieved academic results including several SCI-indexed papers covering topics such as two-dimensional braided composite materials, impact testing and simulation, braided composite panels with central holes, and three-dimensional four-step braided tubes. I also participated in international conferences and domestic engineering conferences and defense research projects related to composite materials and mechanical engineering. These experiences have enabled me to develop an understanding of material properties, structures, manufacturing conditions, and engineering methods for solving practical problems.

       The relevant technologies and research interests are mainly concentrated in two closely related fields: mechanical engineering research and practical thread manufacturing technology. The master's thesis, " Analysis and Improvement on the Performance of An Adjustable Thread Cutting Die " focuses on thread cutting tools. The doctoral dissertation, " A Spring Model for Predicting the Elastic M oduli of Braided Composites Composites," focuses on braided composite materials, mechanical property prediction, and engineering modeling.

       His career is closely linked to UGMIC Industrial Ltd., founded by his father, Shi-Ming Chen. Growing up in an environment steeped in the machinery manufacturing industry, he developed a strong interest in the field. His first choice for university was Mechanical Engineering; Feng Chia University was renowned for its excellent science and engineering programs, and its proximity to the company made internships convenient. During his university years, he interned at UGMIC's factory, learning to adjust and operate grinding machines, inspect thread-working tools, and improve related machinery.

       Initially, my work focused primarily on technical practice and R&D. Later, I participated in domestic machinery-related exhibitions and expanded business. Since completing my mandatory military service in 2005, I have been continuously involved in the technical and business development work of UGMIC Industrial Ltd., (UGMIC). Currently, my work focuses on thread cutting technology, thread grinding equipment R&D, carbide thread cutting tools, thread manufacturing, product development, technical problem solving, and international business expansion.

       Since its inception, UGMIC has provided precision services and has continuously collaborated with numerous industry manufacturers facing real-world thread machining challenges, such as unstable thread quality, cracks caused by residual machining stress, bolt breakage, tap breakage, chip removal, burr formation, tool wear, difficult-to-machine materials, deep hole threading, and production efficiency issues. Therefore, UGMIC has continuously developed and manufactured various thread machining tools, including solid carbide taps, spiral flute taps, pointed flute taps, roll forming taps, thread end mills, thread die cutters, and customized thread machining tools. The selection of thread machining tools and the optimization of tool parameters depend on the workpiece material, thread geometry, hole condition, chip characteristics, and manufacturing requirements.

       Our current clients span industries including valve manufacturing, hydraulic and pneumatic components, precision machining, automotive parts, aerospace-related machining, medical device manufacturing, fasteners, and other industrial applications with extremely high requirements for thread quality and process stability. Typical materials include aluminum-copper alloys, lead-free brass, copper, cast iron, ductile iron, stainless steel, nickel-based alloys, aluminum alloys, steel, titanium alloys, engineering plastics, and composite materials.

       We continuously integrate mechanical engineering knowledge with patents, product development, international manufacturing needs, and practical technology exchanges. Our work includes developing patents related to thread-fitting tools, and constantly refining thread manufacturing knowledge into structured engineering optimizations and solutions that manufacturers can understand and apply.

       Looking ahead, the goal is to continue expanding connections between mechanical engineering, thread cutting technology, carbide threading tools, manufacturing problem optimization and solutions, and international industrial applications. Through UGMIC Industrial Ltd., we hope to enable engineers, manufacturers, and technology decision-makers worldwide to acquire professional thread manufacturing knowledge more conveniently, systematically, and efficiently.

Our professional fields can be summarized as follows:
Mechanical Engineering → Thread Cutting Technology → Carbide Threading Tools → Thread Manufacturing → Manufacturing Challenges → Engineering Solutions → UGMIC Industrial Ltd.,

We welcome technical exchanges with manufacturers, engineers, product developers, and industry professionals who are committed to improving thread quality, machining stability, and the reliability of industrial threaded parts.
WeChat: ugmic_tw