Stories
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Briefs: Aerospace
NASA’s Ames Research Center has developed a novel closed-form solution to model wing flutter aerodynamics for any aircraft wing (within a certain thickness regime and without camber). This closed-form solution can be readily extended to wing sections with camber.
Q&A: Manufacturing & Prototyping
Michael Kirka and a team of researchers at the Department of Energy’s Oak Ridge National Laboratory are the first to 3D print large rotating steam turbine blades. They achieved it with robot-controlled wire arc additive manufacturing.
Briefs: Manufacturing & Prototyping
A research team has made new discoveries that can expand additive manufacturing in industries that rely on strong metal parts, including aerospace.
Briefs: Aerospace
Researchers at Chalmers University of Technology have developed a propeller design optimization method that paves the way for quiet, efficient electric aviation.
Briefs: Robotics, Automation & Control
Ornithological animals have always benefited from folding their wings during upstroke. So, a Swedish-Swiss research team has constructed a robotic wing that can flap like a bird.
Application Briefs: Aerospace
Through the Sustainable Flight Demonstrator project, Boeing is partnering with NASA to develop and flight-test a full-scale Transonic Truss-Braced Wing (TTBW) demonstrator aircraft.
Briefs: Propulsion
Biomimicking Hummingbirds for Better Drones
Hummingbirds have extreme aerial agility and flight forms, which is why many drones and other aerial vehicles are designed to mimic hummingbird movement.
Briefs: Electronics & Computers
The ability to emit light also brings these microscale robots, which weigh barely more than a paper clip, one step closer to flying on their own outside the lab.
Briefs: Mechanical & Fluid Systems
This simple, elegant invention can control flow separation resulting from the high flap deflections required by simple-hinged flap systems making such flaps a viable option for aircraft designers.
Briefs: Design
Acoustic optimization for anti-phase asymmetric rotor.
Briefs: Unmanned Systems
Researchers built electroluminescent soft artificial muscles for flying, insect-scale robots.
Briefs: Design
New design removes the need for mechanisms to perform active tilting of the wings or rotors, reducing system mass.
Briefs: Design
Gust load alleviation is an increasing concern for the design of fixed-wing aircraft with ultra-high aspect wings.
Briefs: Aerospace
A lightweight alternative to rudders for aircraft with spanwise adaptive wings.
Briefs: Design
A new robot developed by Caltech researchers LEO carves out a new type of locomotion somewhere between walking and flying.
5 Ws: Energy
About the size of a grain of sand, the flying microchip (or microflier) does not have a motor or engine.
Briefs: Mechanical & Fluid Systems
This mechanism improves rotordynamic stability in turbomachinery.
Briefs: Aerospace
The technique controls rather than combats ice formation.
Articles: Motion Control
Learn the differences between bipolar and unipolar motors, their driving methods, and advantages and limitations.
Briefs: Materials
Applications include aerospace and automotive components, prosthetics, sporting goods, and other uses where strength-to-weight ratio is important.
Briefs: Sensors/Data Acquisition
Early flutter detection will help in the development of safer and more eco-friendly aircraft turbines.
Briefs: Materials
The coating repels insects on aircraft wing surfaces and motor vehicles and reduces surface imperfections on other low-friction or non-stick surfaces.
Briefs: Mechanical & Fluid Systems
Injection of air at the trailing edge of a winglet further reduces drag.
Briefs: Motion Control
The new hinge is the key to get loadbearing, large quadrotors to climb a few dozen feet in seconds.
Briefs: Energy
The material can be recycled, making renewable energy more sustainable while lowering costs in the process.
Briefs: Robotics, Automation & Control
Onboard cameras can be used to keep damaged quadcopters in the air and flying stably, even without GPS.
Briefs: Aerospace
This versatile new material family could build realistic prosthetics and futuristic Army platforms.
Briefs: Energy
Taking a cue from birds and insects, the wing design helps drones fly more efficiently and makes them more robust to atmospheric turbulence.
Top Stories
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Blog: Energy
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Blog: Electronics & Computers
The Kitchen Tech Hack Aiming to Revolutionize 3D Printing
Blog: Materials
A Shield for the Next Generation: Lithium Batteries Get a Major Upgrade
Blog: Energy
Batteries that Can Withstand the Cold
Q&A: Physical Sciences
Webcasts
Webinars: Mechanical & Fluid Systems
The Over-Engineering Trap: Aligning Custom Equipment Specs with Operational...
Webinars: RF & Microwave Electronics
Where Time and Frequency Converge: Multi-Channel RF Analysis for Radar and...
Webinars: Unmanned Systems
Driving Reliability: Simulation Driven EMI Techniques for Modern Vehicle...
Editorial Webinars: Aerospace
Smarter Aerospace Manufacturing & Design with Digital Twins and Agentic AI
Summits: AR/AI
2026 Battery & Electrification Summit (Online)
Podcasts: Electronics & Computers
Arm’s Agentic AI CPU: Engineering the Next Generation of AI Data Centers

