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- BFA Graphic Design, Painting, Printmaking, Sculpture Thesis Exhibitions11:00 am
- MFA Painting Thesis Exhibition11:00 am
- MechE Seminar Series: J. Gregory McDaniel11:00 am
- FDD Seminar: Get Unstuck: Using Design Thinking to Tackle Challenges in Academic Medicine12:00 pm
- ECE PhD Prospectus Defense Anthony Manni1:00 pm
- ECE PhD Prospectus Defense: Dilara Caygara1:00 pm
- MechE Seminar Series: Joerg G. Werner2:00 pm
- Innovator of the Year: Translating Bioengineering Discoveries into Real-World Impact3:00 pm
- [NIH/NIAID] Advancing Biomedical Careers: Strategies for successful F and K Awards10:00 am
- MechE Seminar Series: J. William Boley11:00 am
- Spring 2026 New Realities, New Responses: Conversations on Higher Education12:00 pm
- MechE Seminar Series: Emma Lejeune2:00 pm
- Starting Your Own Firm: A Practical Guide to Solo & Small Firm Success5:00 pm
- Elizabeth Keckley & Mary Lincoln: In Black & White6:00 pm
MechE Seminar Series: J. William Boley
Speaker: J. William Boley
Title: ADDITIVE MANUFACTURING OF ELCTRONIC SKINS AND MUSCULOFASCIAL MULTIFUNCTIONAL STRUCTURES
Abstract: Materials of the future require burgeoning combinations of outstanding properties (e.g.’s, mechanical, electrical, and stimuli-responsiveness). My talk will cover two broad examples of current and ongoing work from our group towards this effort. The first example will cover our work on designing liquid metal emulsions for 3D printed soft conductors and electrochemically active materials to form multifunctional electronic skins. We integrate the conductive emulsions in a hybrid manufacturing process to rapidly prototype wireless wearable haptics devices. We employ the electrochemically active emulsions for stretchable batteries and soft, self-powered keyboards. The second example highlights our work on developing new polymer composites that serve as synthetic musculofascial analogues for high stiffness, high toughness 4D printed electrically controllable multifunctional structures that detect and tolerate damage. The actuators formed by these materials generate stresses and specific forces that are larger than any other 3D printed actuators to date, with self-sensing and closed loop control capabilities, and can tolerate and detect damage from loads more than 105 time their own weight.
About the Speaker: J. William (Will) Boley is an Assistant Professor in the Department of Mechanical Engineering and the Division of Materials Science at Boston University (BU). His research group focuses understanding and harnessing the relationships between materials synthesis, assembly process, and multiscale architecture in AM to create new multifunctional materials and systems. He completed his B.S. and M.S. degrees at the University of Kentucky, and Ph.D. at Purdue University. He conducted two postdoctoral trainings prior to joining BU, first at Purdue University, and then at Harvard University. He is a recipient of the AFOSR Young Investigator Program Award, the NSF CAREER Award, and the 2024 ASME Rising Stars Award.
| When | 11:00 am - 12:00 pm on 6 May 2026 |
|---|---|
| Building | ENG 245 110 Cummington Mall |