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Continuous Composites Demonstrates CF3D® Technology For Lockheed Martin And The Air Force Research Laboratory's Wing Structure Design For Manufacturing (WiSDM) Project


April 7, 2021
COEUR D’ALENE, ID. — April 7, 2021 — Continuous Composites successfully completed the Air Force Research Laboratory’s two-year Wing Structure Design for Manufacturing (WiSDM) contract through Lockheed Martin to manufacture a Low Cost Attritable Aircraft (LCAA) wing. The project focused on a new structural design paradigm, when coupled with commensurate materials and manufacturing, to substantially reduce costs and lead times for attritable airframe structures. Continuous Composites’ patented Continuous Fiber 3D Printing (CF3D®) technology successfully printed the structural carbon fiber spars of the wing assembly. Structural performance was demonstrated when the completed wing box was statically tested and achieved 160% design limit load (DLL) before the compression skin buckled. The spars did not fail. ....

United States , John Scarcello , Ray Fisher , Tyler Alvarado , United States Air , Research Laboratory , Research Laboratory Program , Us Air , Lockheed Martin , Continuous Composites , Air Force Research Laboratory , Wing Structure Design , Low Cost Attritable Aircraft , Continuous Fiber , United States Air Force , Design Limit , Senior Manager , Lockheed Martin Skunk Works , Air Force Research Laboratory Program Manager , Chief Executive Officer , Air Force , ஒன்றுபட்டது மாநிலங்களில் , ராய் மீனவர் , டைலர் அல்வராடோ , ஒன்றுபட்டது மாநிலங்களில் அேக , ஆராய்ச்சி ஆய்வகம் ,

2D material controls light twice stronger


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IMAGE: The SH light produced in the MoS2 double layer has the same phase as the MoS2 layer so the overlaid secondary harmonic wave has linear polarization. However, in a heterobilayer.
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Credit: POSTECH
Since the invention of world s first laser - the ruby laser - in 1960, the human desire to control light has spread to various industries, including telecommunications, medicine, GPS, optical sensors and optical computers. Recently, a POSTECH research team has taken a step closer to its goal of controlling light by identifying nonlinear optical phenomena occurring in heterobilayers composed of two-dimensional materials.
A nonlinear optical phenomenon refers to the occurrence of light whose intensity is not doubled when optical input intensity becomes doubled, in which the resulting output has different frequencies from original input. This phenomenon is easily understood if you think of electrons and nuclei as spring-connected oscillat ....

South Korea , Sunmin Ryu , Wontaek Kim , Department Of Chemistry , Research Lab Program , Career Researcher Program , Professor Sunmin Ryu , Nano Letters , Mid Career Researcher Program , Basic Research Lab Program , Waals Material Science , Chemical Engineering Lab , National Research Foundation , தெற்கு கொரியா , துறை ஆஃப் வேதியியல் , ஆராய்ச்சி ஆய்வகம் ப்ரோக்ர்யாம் , தொழில் ஆராய்ச்சியாளர் ப்ரோக்ர்யாம் , நானோ எழுத்துக்கள் , நடுவில் தொழில் ஆராய்ச்சியாளர் ப்ரோக்ர்யாம் , அடிப்படை ஆராய்ச்சி ஆய்வகம் ப்ரோக்ர்யாம் , இரசாயன பொறியியல் ஆய்வகம் , தேசிய ஆராய்ச்சி அடித்தளம் ,