Jing Zhang, Carbon Nanotube/Glass Composite Material for Bone Graft Support (US20130108666A1) Journal Papersġ00. Yi Zhang, Yeon-Gil Jung, Jing Zhang "Multiscale Modeling of Additively Manufactured Metals", Elsevier (ISBN 9780128196007), 2020Ģ.Jing Zhang, Yeon-Gil Jung (eds.) "Additive Manufacturing: Materials, Processes, Quantifications and Applications" Elsevier (ISBN 9780128121559), 2018ġ.Jing Zhang, Yeon-Gil Jung (eds.) "Advanced Ceramic and Metallic Coating and Thin Film Materials for Energy and Environmental Applications" Springer International Publishing (ISBN 9783319599069), 2017 Patentġ. Supported by $854 million last year from our partners, IU researchers are building collaborations and uncovering new solutions that improve lives in Indiana and around the globe.Publications View publications on Google Scholar Booksģ. ![]() From curing testicular cancer to collaborating with NASA to search for life on Mars, IU has earned its reputation as a world-class research institution. IU’s world-class researchers have driven innovation and creative initiatives that matter for 200 years. Zhang’s team has a $20,000 grant from the IU Office of the Vice President for Research, along with a matching grant for student support from the Department of Mechanical Engineering at the School of Engineering and Technology at IUPUI. “Copper is reusable and easy to clean, very affordable, and environmentally friendly.” “I think this can be used on a daily basis while also being applied to other systems, such as air vent filters in buildings and airplanes, that require long-term use,” Zhang said. Graduate students in Zhang’s group, Xuehui Yang and Tejesh Dube, are also assisting on the project. Fellow collaborator Ryan Ford Relich, director of clinical microbiology and serology at Eskenazi Health, is helping in laboratory tests that will hopefully lead to a working prototype by October. Two approaches to creating that are using a green-laser metal 3D printer to directly reproduce the complex copper structure or, in an even more economical way to create the design, 3D-printing a plastic structure followed by electroplating, in which the 3D-printed plastic component is merged in a liquid solution full of copper ions and the ions are migrated and cover the surface under electric field.Ĭollaborator Jingzhi Pu, from the Department of Chemistry and Chemical Biology in the School of Science at IUPUI, is continuing to look at how copper ions deactivate the function of the virus using molecular dynamics simulations. ![]() In the prototype, a ring with V-shape “fins,” an analogous structure to the gill filament, was designed to increase the surface area where air passes through more channels. “We know how nature works, so we had to figure out how we could make that into an artificial structure,” said Zhang, whose research interests in 3D printing came into play. Gills allow fish to draw oxygen from water, and that design is incorporated into the prototype mask. The challenge was to find a structure that blocks out tiny aerosol particles while also providing proper ventilation for breathing, and nature had an answer – the gills on fish. ![]() “We can use copper plating to cover some frequently touched surfaces such as doorknobs and elevator buttons that inspired me to see how we could combine what looks like almost a magic metal into a mask design.” Department of Defense, said that a copper alloy can kill 58 percent of infections,” said Zhang, an associate professor in the Department of Mechanical and Energy Engineering. That’s what Jing Zhang of the School of Engineering and Technology at IUPUI and a team of researchers are doing, using a copper coating on 3D-printed plastic filters to create more-efficient masks and respirators. Image courtesy of Jing Zhang, School of Engineering and Technology In the prototype of the mask’s filter, a ring with V-shape “fins” was designed to increase the surface area where air passes through more channels.
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