
mechanical engineering
Optimizing Complex Modeling Processes Through Machine Learning Technologies
Nov. 23, 2020 • 4 min. readTexas A&M research shows that data-driven techniques used in autonomous systems hold the potential to solve complex modeling problems more accurately and efficiently.
A Texas A&M associate professor is using his understanding of fluid-solid surface interactions to simulate blood flow through mechanical valves.
Students Create Frame For Interchangeable Face Coverings
Oct. 28, 2020 • 3 min. readFunding from a National Science Foundation program will help a team of Texas A&M engineering and public health students take the EASYMASK from concept to market.
Researchers Create Robots That Can Transform Their Wheels Into Legs
Oct. 20, 2020 • 2 min. readThe robots designed by a Texas A&M team can self-sufficiently travel through urban military environments.
Droplet Breakup Could Hold The Key To More Efficient Engines
Sep. 22, 2020 • 2 min. readResearch from Texas A&M's Department of Mechanical Engineering could also have applications in energy production, medicine and more.
Sterilizing Respirators At Texas A&M’s Electron Beam Facility
Sep. 8, 2020 • 2 min. readResearchers are using radiation to decontaminate personal protective equipment including gowns, facial shields and N95 masks.
Lightweight Green Supercapacitors Could Quickly Charge Devices
Sep. 7, 2020 • 4 min. readTexas A&M researchers have designed a new energy storage device that can store a charge up to 900 times greater than state-of-the-art supercapacitors.
A team of Texas A&M students is adapting its award-winning sanitization technology. The program provides resources and funding to further the commercialization of student products.
New Lithium Battery Charges Faster, Reduces Risk Of Device Explosions
July 14, 2020 • 5 min. readTexas A&M researchers have created a technology to prevent lithium batteries from heating and failing.
Tiny Pop-Up Devices Work Relentlessly, Even Under Extreme Pressure
May 14, 2020 • 4 min. readTexas A&M researchers found that miniature electronics based on the Japanese art of kirigami are ideal for pressure sensing because of their ability to be repeatedly compressed.