GE는 135m에 달하는 풍력발전기를 'space frame'를 설치했다. 기존의 철이 아닌 섬유유리코팅소재의 격자구조를 도입하여 무게줄였다. 이는 운송시에도 편리하여 기존에 설치 불가능 한 지역에서 운용할 수 있다. 또한 다섯개의 기둥으로 지지되어 기존의 발전탑보다 날씨 등의 외부 충격에도 강한 내구성을 보인다.
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What happens when cutting-edge technology meets unparalleled performance? The CFM* LEAP engine of course. So what makes this engine so amazing? We can think of a few reasons… ➡️It includes the first-ever 3D-woven fiber composite fan blades and fan case ➡️CMCs give it 20% greater temperature capability ➡️It’s the first engine to use 3D-printed parts for critical engine components ➡️It delivers 15% percent better fuel efficiency than its predecessor
Spooky season is here, but don't let your annual mammogram scare you. Nearly 30% of women in the U.S. admit to skipping breast screenings out of fear. That's why @gehealthcare engineers decided to better the experience with a mammography system designed by women, for women. Melding comforting design with cutting edge technology, the Senographe Pristina aims to humanize the process for patients, technicians, and radiologists. #BCAM#Mammography#breastcancerawareness
Colder weather is on the way. If you’re in Winnipeg, Canada, that means ice testing is too. There, @geaviation test engines are pummeled with sub-zero winds and ice. The harsh conditions on the ground make sure engines are ready to face the elements in the air. #AVgeek#jetengine#engineering
Slice into an additively-made part from @geadditive and you’ll see geometries once thought impossible with traditional manufacturing methods. Why the hype? Engineers can now find greater strength and efficiency through design. #engineering#additive#3Dprinting#manufacturing
This Ultra Performance Heat Exchanger is a perfect example of how small parts can make a HUGE difference. Still in development, the additively manufactured compact heat exchanger is printed with a high-temperature capable, crack-resistant nickel superalloy that will be able to withstand temps that exceed 1,650°F at pressures >3,600 psi. Good thing, too, because it’s headed straight for the inside of a gas turbine, where it’s projected to deliver a 4% improvement in thermal efficiency for supercritical C02 power cycles while improving power output and reducing emissions. Cleaner, more efficient power generation here we come.
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