ScienceDirect.com Feb 29, 2024
‘Two South Korean Universities Develop Self-reinforced Composite Materials – JEC – JEC Composites’
JEC Composites May 09, 2024
Hanyang University announced that Professor Kim Seong-hun of Hanyang University and the Korea Institute of Science and Technology KIST President Yoon Seok-jin Dr. Kim Jae-woo of Solutions to Electromagnetic Interference in Future-Mobility SEIF KIST along with Professor Kim Seong-yun of Jeonbuk National University President Yang O-bong succeeded in developing ahellip
‘$2 Million Grant Will Fund Advanced Composites Technology At WSU – JEC – JEC Composites’
JEC Composites May 07, 2024
The grant secured by WSU Strategic Initiatives will provide funding for essential equipment needed for the Advanced Technology Laboratory for Aerospace Systems ATLAS within WSUs National Institute for Aviation Research. ATLAS investigates the development of manufacturing protocols for automated fiber placement AFP and automated tape laying ATL for aircraft systems.Thehellip
‘Dr. Gayatri Keskar, Advanced Materials Scientist: Networking And Collaboration Is The Key To Success – JEC – JEC Composites’
JEC Composites May 08, 2024
Gayatri039s childhood in an engineering-centric family sparked a fiery love for science and technology which naturally guided her toward a career in engineering. She began exploring the fascinating world of chemical reactions and molecular structures during her college days which sparked a deep passion for chemistry. Furthermore engaging in discussionshellip
‘Composite Materials: Driving 3D Printing To End-Use, Mass Production Parts – All3DP’
All3DP May 10, 2024
‘Media Invited To Learn About NASA’s New Solar Sail Technology – NASA’
NASA Apr 10, 2024
Media are invited to learn about NASAs next-generation solar sail technology known as the Advanced Composite Solar Sail System that could enable
‘Building A Cleaner Future For Energy-intensive Industries Through Composite Materials – Innovation News Network’
Innovation News Network May 09, 2024
The CEM-WAVE Project is developing high-performing composite materials to lead the shift of cleaner manufacturing in heavy industry.
‘Long Rod-shaped Gallium Composite Material: Self-separating Material Aggregation Induced Enhancement Of ROS For … – ScienceDirect.com’
ScienceDirect.com Dec 15, 2023
‘Innovative Process Recovers Polymer Composite Components – Engineer Live’
Engineer Live May 08, 2024
A new process allows full recovery of starting materials from tough polymer composites
‘Advanced Composites Market To Witness Huge Growth By 2030 | AGY – OpenPR’
openPR May 01, 2024
‘Advancing Electronics With Composite Phase Change Materials – AZoM’
AZoM May 07, 2024
Composite PCMs enhance thermal management in electronics offering improved heat dissipation and device longevity.
‘Bi-layer CBN-based Composites Reinforced With Oxide And Non-oxide Microfibers Of Refractory Compounds | Scientific … – Nature.com’
Nature.com May 02, 2024
Research into new composites utilizing cubic boron nitride PcBN shows promise for enhancing cutting tool performance. The unique properties of these materials stem from the addition of microfibers made of refractory compounds to their structure. This study looks at developing two-layer composites based on cBN group BL reinforced with SiCw and Al2O3w microfibers. The goal is to improve tool stability when cutting hardened steels with impact loads. PcBN composite samples were made by sintering a mixture of cBN powder with bundles and microfibers under 7.7 GPa pressure. Bond material selection was based on analyzing the relationship between Poisson39s ratio 951 and plasticity parameter GB. The density Young39s modulus Poisson39s ratio and hardness of the composites were determined and the microstructure of samples with TiCN bond was studied. Tool-life tests were conducted on two-layer cutting inserts made of PcBN reinforced with SiCw and Al2O3w microfibers during the machining of hardened KhVG steel HRC 55 under impact loads at cutting speeds of 100 and 200ampnbspmmin.
‘Industry Experts Share How To Design With Metal Composite Materials – ACHR NEWS’
ACHR NEWS May 07, 2024
The composition of MCM makes it versatile and flexible while maintaining its durability. The advantages are limitless as it can be fully customized to meet the project design requirements.
‘787 Dreamliner By Design – Boeing’
Boeing May 03, 2024
Discover what goes into creating the industry-leading technology of the 787 Dreamliner family.
‘Automotive Composite Materials Market: Market Dynamics And Strategies For Success 2024-2031 – WhaTech’
WhaTech May 04, 2024
Global Automotive Composites Market growing with a CAGR of 11.75 over the forecast period 2024-2031.
‘Rocket Lab’s New Zealand Success Deploys Satellites To Separate Orbits 500km Apart For KAIST And NASA – SatNews – SatNews’
SatNews Apr 24, 2024
‘Composite Material Based On Piezoelectric Core-shell Nanofibers For Tactile Recognition – ScienceDirect.com’
ScienceDirect.com Apr 23, 2024
‘NCC Leads Composites Manufacturing Phase Of EXtra Wing Demonstrator – CompositesWorld’
CompositesWorld May 02, 2024
Key structural elements for a 6-meter section of the Airbus biomimetic wing were undertaken by NCC engineering specialists to producexA028 one-off flying parts.
‘MXene/AgNW Composite Material For Selective And Efficient Removal Of Radioactive Cesium And Iodine From Water … – Nature.com’
Nature.com Nov 11, 2023
Toxic fission products such as cesium 137Cs and iodine 129I are of great concern because of their long half-lives and high solubility in water. The simultaneous removal of Cs and I using a single adsorbent is an area of increasing interest. In this study MXenesilver nanowire AgNW composite was synthesized through physical mixing and employed for simultaneous removal of iodide I8722 and cesium Cs ions from contaminated water. The MXeneAgNW composite demonstrated excellent adsorption capacities of 84.70 and 26.22ampnbspmgg for I8722 and Cs respectively. The experimental data supported the hypothesis of multilayer adsorption of Cs owing to the inter-lamellar structures and the presence of heterogeneous adsorption sites in MXene. The interaction between I8722 and the AgNW involved chemisorption followed by monolayer adsorption. MXeneAgNW composite material exhibited promising results in the presence of competitive ions under extreme pH conditions. Thus synthesized composite materials holds promising potential as an adsorbent for the remediation of radioactive liquid waste.
‘Ultralight Crystalline Hybrid Composite Material For Highly Efficient Sequestration Of Radioiodine – Nature.com’
Nature.com Feb 10, 2024
Considering the importance of sustainable nuclear energy effective management of radioactive nuclear waste such as sequestration of radioiodine has inflicted a significant research attention in recent years. Despite the fact that materials have been reported for the adsorption of iodine development of effective adsorbent with significantly improved segregation properties for widespread practical applications still remain exceedingly difficult due to lack of proper design strategies. Herein utilizing unique hybridization synthetic strategy a composite crystalline aerogel material has been fabricated by covalent stepping of an amino-functionalized stable cationic discrete metal-organic polyhedra with dual-pore containing imine-functionalized covalent organic framework. The ultralight hybrid composite exhibits large surface area with hierarchical macro-micro porosity and multifunctional binding sites which collectively interact with iodine. The developed nano-adsorbent demonstrate ultrahigh vapor and aqueous-phase iodine adsorption capacities of 9.988201g.g87221 and 4.748201g.g87221 respectively in static conditions with fast adsorption kinetics high retention efficiency reusability and recovery. The development of effective adsorbents of radioiodine nuclear waste remains difficult due to the lack of proper material design strategies. Here the authors report an ultralight hierarchically porous crystalline multifunctional hybrid nanocomposite for ultrafast entrapment of iodine and polyiodide species under both static and dynamic condition.
