The materials qualification landscape is changing - and now your team can use the proven Materials by Design® technology built into our ICMD® platform, resulting in faster, lower-cost advanced materials with predictive properties and performance. ☑Schedule your demo of ICMD® materials design and engineering software today: https://lnkd.in/g3ps9qne ☑Case Study: Ferrium M54 was qualified in 1/3 of the time of conventional aerospace alloys. https://lnkd.in/gHSbfnAn
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"Excited to be part of the [National Conference on Functional Materials for Manufacturing and Aerospace Applications-(FMMAA'23) ]focused on Composite Materials on the Topic of "Investigation of Mechanical characteristics of Microwave Sintered Nitional composite". 🌐 Excited to integrate cutting-edge knowledge into mechanical applications. Let's elevate innovation in materials science! #CompositeMaterials #MechanicalEngineering #ConferenceCertification #nationalconference #FMMAA'23"
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IEEE METROAEROSPACE 2024 / LUBLIN, POLAND / JUNE 3-5, 2024 https://lnkd.in/grK_jzCS Since the first edition, IEEE MetroAeroSpace represents an international meeting place in the world of research in the field of metrology for aerospace involving national and international institutions and academia in a discussion on the state-of-the-art concerning issues that require a joint approach by experts of measurement instrumentation and industrial testing, typically professional engineers, and experts in innovation metrology, typically academics. This 11th edition will keep pursuing the state of the art and practice started over the past years. Attention is paid, but not limited to, new technology for metrology-assisted production in aerospace industry, aircraft component measurement, sensors and associated signal conditioning for aerospace, and calibration methods for electronic test and measurement for aerospace. The program is designed to raise the interest of a wide group of researchers, operators and decision-makers from metrology and aerospace fields, by presenting the most innovative solutions in this field from the scientific and technological point of view.
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The BKD research combustor is a sub-scale model of a multi-element rocket engine designed by the German Aerospace Center. Conducting CFD simulations of the BKD combustor allows engineers to study how different factors (e.g., injector design and propellant properties) influence flame stability, combustion efficiency, and flow characteristics. In this #SimulationFriday, we used CONVERGE’s SAGE detailed chemistry solver and large eddy simulation (LES) turbulence modeling to simulate the BKD combustor with hydrogen fuel and liquid oxygen as the oxidizer. CONVERGE’s temperature-based Adaptive Mesh Refinement automatically adjusts the grid throughout the simulation to efficiently capture the combustion dynamics. Get hands-on practice using CONVERGE for hydrogen simulations at our CONVERGE for H2 Combustion training course, taking place online on March 19 from 2-6pm India Standard Time. Registration closes on March 18—reserve your spot today! https://lnkd.in/d7kEUEue
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10 years ago, when we started working on additive heat exchangers, it was not well understood. Today, it seems widely accepted that AM allows going further in the optimization of novel thermal systems, especially for the energy transition. #additivemanufacturing #3dprinting #heatexchangers #am #energy #energytransition #thermalmanagement
Proud to found an example of our work performed in collaboration with Sogeclair and AddUp in an academic review on "Additive manufacturing of heat exchangers in aerospace applications" by Francesco Careri et al. from University of Birmingham. Read the full article here : https://lnkd.in/eGnDdWcN In this paper, you can also find nice works from Meggitt, Hyperganic Group, Mott Corporation and many other. #additivemanufacturing #heatexchangers #thermal #aerospace #review
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10 years ago, when we started working on additive heat exchangers, it was not well understood. Today, it seems widely accepted that AM allows going further in the optimization of novel thermal systems, especially for the energy transition. #additivemanufacturing #3dprinting #heatexchangers #am #energy #energytransition #thermalmanagement
Proud to found an example of our work performed in collaboration with Sogeclair and AddUp in an academic review on "Additive manufacturing of heat exchangers in aerospace applications" by Francesco Careri et al. from University of Birmingham. Read the full article here : https://lnkd.in/eGnDdWcN In this paper, you can also find nice works from Meggitt, Hyperganic Group, Mott Corporation and many other. #additivemanufacturing #heatexchangers #thermal #aerospace #review
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Big event coming up...🌟Dare we say... Industry Engagement Alert! 🌟 Starting this Sunday, August 4th we will be at the @AVS 24th International Conference on Atomic Layer Deposition & Etching Technologies at the Messukeskus in #Helsinki, where our scientists from R&D will present their latest findings, paving the way forward together with the scientific community. 🚀 As your innovation partner with the broadest product portfolio, we are committed to advancing the semiconductor industry's latest technological trends. 🤩 Interested in connecting with us? Engage with our thought leaders for exclusive insights on: 🤝 ALE-SuP-10 Selective Thermal Atomic Layer Etching of Molybdenum by Bhushan Zopé AF-MoP-86 Indium Precursors with Thermal Stability by Lukas Mai AA1-TuM-1 Leakage Control of DRAM High-k Capacitor Stack by Randall Higuchi NS-TuA-3 Tuning MoCl5 Self-Etching Effect for Deposition by Angelica Azcatl SAA1-WeM Flash & Ferroelectric Memories, moderated by Haripin Chandra We are looking forward to meeting you there. Together, let’s celebrate the 50th anniversary of the groundbreaking work on ALD and the first filed patent on Atomic Layer Epitaxy in 1974 by Dr. Tuomo Suntola. 🎉 #ALDALE2024 #AVS2024 #ALDforManufacturing #AtomicLayerDeposition #AtomicLayerEtching #Inorganics #Metalorganics #Dielectrics #Metallics #ThinFilms #MaterialsIntelligence #AdvancingDigitalLiving
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Engineers in aerospace, automotive, defense, space and consumer electronics – it's time to rethink the use of conventional aluminum alloys. The latest research on our AyontEX™ aluminum-silicon alloys was recently published in “Crystals,” an esteemed international journal by MDPI. This in-depth study dives into the exceptional properties and performance of our specialty materials. Explore extensive data on their controlled thermal expansion, excellent balance of strength and thermal conductivity, and increased modulus compared to conventional options. Don’t miss this essential read: https://lnkd.in/gpuvmiGU #MaterialsScience #AlloysAndMetals #Engineering #EnablingWhatsNext
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🔧 How are Al-Si alloys enhancing thermal management solutions across various industries? 🔍 Mr. Peter Lewis et al from Materion Corporation introduces high-performance hypereutectic Al-Si alloys (AyontEX™) for superior thermal management in aerospace, automotive, consumer electronics, defense, EV, and space industries in their high-download preprint. 📊 They detail the critical performance relationships, microstructure, and mechanical properties of these #alloys, highlighting their potential to meet the demands of high-power density electronics and global decarbonization efforts. ➡ Access the preprint: https://lnkd.in/gvbkThUZ ➡ Peer-reviewed version is out in Crystals MDPI 🎉: https://lnkd.in/gpuvmiGU #ThermalManagement #LightweightMaterials
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III-V Lab prides itself to the fruitful collaboration between teams of Nokia Networks France, Thales Research and Technology, CEA-Leti and III-V Lab on a III-V/SOI platform using wafer-bonding which allows integration of lasers. The invited paper presented by Alexandre Shen at the 28th Optoelectronics and Communications Conference (OECC 2023 https://oecc2023.com) on July 4 (14 :30), 2023 at Shanghai (China) explains how we demonstrated new lasers leveraging innovations this platform provides: nanosecond wavelength tuning laser, 10GHz-frequency continuous tuning DFB laser and a new few mode-locking laser. « III-V/SOI as a versatile platform for innovative hybrid lasers: from fast tunable lasers to multimode DFB comb-source lasers » - see https://lnkd.in/eVjXDM4c
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The image below demonstrates a potential joint design for soldering a solid state laser crystal rod (e.g. Yb:YAG) into a CTE-matched heat sink. 🔝 This is possible thanks to PHOTONICPARTS' technology, which enables versatile bonding of various materials, allowing tailored joint designs. This flexibility minimizes material stresses, permits precise layering for insulation, and ensures optimal joint structures based on the materials and application requirements.👌 PHOTONICPARTS specializes in precision joining and assembly technologies, as well as the production of laser components for the photonic market. We’re very happy to offer their laser components and mirror mounts through MEETOPTICS, which are used specially in laser technology, aerospace, and quantum technology sectors! 😊🚀 You can check them out here: https://lnkd.in/eA7i2bKZ #innovation #meetoptics #engineering #research #photonics #optics #laser #aerospace #technology #precisionjoining #lasercomponents #techinnovation #opticalengineering #advancedmaterials #quantumtech #lasertechnology #techsolutions #photonicsdesign #materialsscience #photonicparts #laseramplifier #lasercrystal #ultrashortpulselaser
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