Dr. Qi received his bachelor and graduate degrees in Engineering Mechanics from Tsinghua University, Beijing, China, and received his doctor degree in Mechanical Engineering from Massachusetts Institute of Technology (MIT) in 2003. After a one year postdoc at MIT, he joined University of Colorado Boulder in 2004 as an assistant professor and was promoted to associate professor with tenure in 2010. In 2014, he started at Georgia Tech as an associate professor with tenure. His current research is in the area of mechanics of soft materials, with a focus on soft active materials, including theoretical and experimental investigation of structure-function relationships of shape memory polymers and elastomers, and arterial tissues.Presented on Sep...
In this study, a coaxial additive manufacturing process was developed for four-dimensional (4D) prin...
Four-dimensional (4D) active shape-changing structures based on shape memory polymers (SMPs) and sha...
In this study, a coaxial additive manufacturing process was developed for four-dimensional (4D) prin...
Additive manufacturing (AM), commonly known as three-dimensional (3D) printing or rapid prototyping,...
Additive manufacturing (AM), as one of the most powerful manufacturing methods, is fabricating a thr...
Additive manufacturing (AM), commonly known as three-dimensional (3D) printing or rapid prototyping,...
In recent years, there has been rising interest in additively manufactured shape memory polymers (SM...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
Additive manufacturing (AM) gives engineers unprecedented design and material freedom, providing th...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
Shape Memory Composites Based on Polymers and Metals for 4D Printing is a thorough discussion of the...
Recent advances in additive manufacturing (AM), commonly known as three-dimensional (3D)-printing, h...
In this study, a coaxial additive manufacturing process was developed for four-dimensional (4D) prin...
Four-dimensional (4D) active shape-changing structures based on shape memory polymers (SMPs) and sha...
In this study, a coaxial additive manufacturing process was developed for four-dimensional (4D) prin...
Additive manufacturing (AM), commonly known as three-dimensional (3D) printing or rapid prototyping,...
Additive manufacturing (AM), as one of the most powerful manufacturing methods, is fabricating a thr...
Additive manufacturing (AM), commonly known as three-dimensional (3D) printing or rapid prototyping,...
In recent years, there has been rising interest in additively manufactured shape memory polymers (SM...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
Additive manufacturing (AM) gives engineers unprecedented design and material freedom, providing th...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
Shape Memory Composites Based on Polymers and Metals for 4D Printing is a thorough discussion of the...
Recent advances in additive manufacturing (AM), commonly known as three-dimensional (3D)-printing, h...
In this study, a coaxial additive manufacturing process was developed for four-dimensional (4D) prin...
Four-dimensional (4D) active shape-changing structures based on shape memory polymers (SMPs) and sha...
In this study, a coaxial additive manufacturing process was developed for four-dimensional (4D) prin...