This inventor holds 1 USPTO granted patent and 1 EPO patent. Top assignee: Beijing University of Technology. Active years: 2023.
Company Filing History:
Years Active: 2023
Title: Innovations in 3D Printing: The Contributions of MingLi Xiang
Introduction
MingLi Xiang is a prominent inventor based in Beijing, China. He has made significant contributions to the field of 3D printing, particularly through his innovative patent that optimizes control parameters for rapid DLP 3D printing. His work is characterized by a blend of theoretical analysis and practical application, making it highly relevant in today's manufacturing landscape.
Latest Patents
MingLi Xiang holds a patent titled "Rapid DLP 3D printing control parameter optimization method combining continuous and layered molding." This method involves several steps, including confirming the maximum printable distance of each slice by analyzing the printable area of the model slice. He established a liquid-liquid interface printing scene and simulated the flow behavior of resin between the printed object and fluorinated oil after printing a layer of slices. The method determines the printing mode of the current slice and utilizes Poiseuille flow, Jacobs working curve, and Lambert-Beer law to express various parameters such as resin curing time and maximum filling distance. This innovative approach allows for fast printing of any model by obtaining optimal control parameters, ensuring portability and printability.
Career Highlights
MingLi Xiang has worked with notable institutions, including Beijing University of Technology and Suzhou Pollypolymer New Material Technology Co., Ltd. His experience in these organizations has contributed to his expertise in 3D printing technologies and materials science.
Collaborations
MingLi Xiang has collaborated with several professionals in his field, including Lifang Wu and Lidong Zhao. These collaborations have further enhanced his research and development efforts in 3D printing.
Conclusion
MingLi Xiang's innovative work in 3D printing control parameter optimization showcases his significant contributions to the field. His patent reflects a deep understanding of both theoretical and practical aspects of 3D printing, paving the way for advancements in manufacturing technologies.
