Supercritical Fluids and Their Application to the Recycling of High-Performance Carbon Fibre Reinforced Composite Materials

PDF Publication Title:

Supercritical Fluids and Their Application to the Recycling of High-Performance Carbon Fibre Reinforced Composite Materials ( supercritical-fluids-and-their-application-recycling-high-pe )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 295

220. Poodts, E., et al., Fabrication, process simulation and testing of a thick CFRP component using the RTM process. Composites Part B: Engineering, 2014. 56(0): p. 673-680. 221. Grujicic, M., K.M. Chittajallu, and S. Walsh, Non-isothermal preform infiltration during the vacuum-assisted resin transfer molding (VARTM) process. Applied Surface Science, 2005. 245(1–4): p. 51-64. 222. Bickerton, S., Q. Govignon, and P. Kelly, Resin infusion/liquid composite moulding (LCM) of advanced fibre-reinforced polymer (FRP), in Advanced Fibre-Reinforced Polymer (FRP) Composites for Structural Applications, J. Bai, Editor. 2013, Woodhead Publishing. p. 155-186. 223. Atas, C., et al., An experimental investigation on the low velocity impact response of composite plates repaired by VARIM and hand lay-up processes. Composite Structures, 2011. 93(3): p. 1178-1186. 224. Jia, X., et al., Effect of geometric factor, winding angle and pre-crack angle on quasi- static crushing behavior of filament wound CFRP cylinder. Composites Part B: Engineering, 2013. 45(1): p. 1336-1343. 225. Mack, J. and R. Schledjewski, Filament winding process in thermoplastics, in Manufacturing Techniques for Polymer Matrix Composites (PMCs), S.G. Advani and K.-T. Hsiao, Editors. 2012, Woodhead Publishing. p. 182-208. 226. Sayem Uddin, M., E.V. Morozov, and K. Shankar, The effect of filament winding mosaic pattern on the stress state of filament wound composite flywheel disk. Composite Structures, 2014. 107(0): p. 260-275. 227. Vargas Rojas, E., et al., Unified approach of filament winding applied to complex shape mandrels. Composite Structures, 2014. 116(0): p. 805-813. 228. Wang, R., et al., Slippage coefficient measurement for non-geodesic filament-winding process. Composites Part A: Applied Science and Manufacturing, 2011. 42(3): p. 303- 309. 229. Crossley, R.J., P.J. Schubel, and D.S.A. De Focatiis, Time–temperature equivalence in the tack and dynamic stiffness of polymer prepreg and its application to automated composites manufacturing. Composites Part A: Applied Science and Manufacturing, 2013. 52(0): p. 126-133. 230. Lin, L., et al., PMAC-based Tracking Control System for 8-axis Automated Tape-laying Machine. Chinese Journal of Aeronautics, 2009. 22(5): p. 558-563. 231. Hardesty, E.E., Design and construction of a large, fully automated tape placement machine for aircraft structures. Composites, 1972. 3(6): p. 248-253. 232. Lukaszewicz, D.H.J.A., C. Ward, and K.D. Potter, The engineering aspects of automated prepreg layup: History, present and future. Composites Part B: Engineering, 2012. 43(3): p. 997-1009. 233. Croft, K., et al., Experimental study of the effect of automated fiber placement induced defects on performance of composite laminates. Composites Part A: Applied Science and Manufacturing, 2011. 42(5): p. 484-491. 234. Marsh, G., Automating aerospace composites production with fibre placement. Reinforced Plastics, 2011. 55(3): p. 32-37. 235. Tserpes, K.I., et al., Strain and damage monitoring in CFRP fuselage panels using fiber Bragg grating sensors. Part I: Design, manufacturing and impact testing. Composite Structures, 2014. 107(0): p. 726-736. 294

PDF Image | Supercritical Fluids and Their Application to the Recycling of High-Performance Carbon Fibre Reinforced Composite Materials

PDF Search Title:

Supercritical Fluids and Their Application to the Recycling of High-Performance Carbon Fibre Reinforced Composite Materials

Original File Name Searched:

Dandy15PhD.pdf

DIY PDF Search: Google It | Yahoo | Bing

NFT (Non Fungible Token): Buy our tech, design, development or system NFT and become part of our tech NFT network... More Info

IT XR Project Redstone NFT Available for Sale: NFT for high tech turbine design with one part 3D printed counter-rotating energy turbine. Be part of the future with this NFT. Can be bought and sold but only one design NFT exists. Royalties go to the developer (Infinity) to keep enhancing design and applications... More Info

Infinity Turbine IT XR Project Redstone Design: NFT for sale... NFT for high tech turbine design with one part 3D printed counter-rotating energy turbine. Includes all rights to this turbine design, including license for Fluid Handling Block I and II for the turbine assembly and housing. The NFT includes the blueprints (cad/cam), revenue streams, and all future development of the IT XR Project Redstone... More Info

Infinity Turbine ROT Radial Outflow Turbine 24 Design and Worldwide Rights: NFT for sale... NFT for the ROT 24 energy turbine. Be part of the future with this NFT. This design can be bought and sold but only one design NFT exists. You may manufacture the unit, or get the revenues from its sale from Infinity Turbine. Royalties go to the developer (Infinity) to keep enhancing design and applications... More Info

Infinity Supercritical CO2 10 Liter Extractor Design and Worldwide Rights: The Infinity Supercritical 10L CO2 extractor is for botanical oil extraction, which is rich in terpenes and can produce shelf ready full spectrum oil. With over 5 years of development, this industry leader mature extractor machine has been sold since 2015 and is part of many profitable businesses. The process can also be used for electrowinning, e-waste recycling, and lithium battery recycling, gold mining electronic wastes, precious metals. CO2 can also be used in a reverse fuel cell with nafion to make a gas-to-liquids fuel, such as methanol, ethanol and butanol or ethylene. Supercritical CO2 has also been used for treating nafion to make it more effective catalyst. This NFT is for the purchase of worldwide rights which includes the design. More Info

NFT (Non Fungible Token): Buy our tech, design, development or system NFT and become part of our tech NFT network... More Info

Infinity Turbine Products: Special for this month, any plans are $10,000 for complete Cad/Cam blueprints. License is for one build. Try before you buy a production license. May pay by Bitcoin or other Crypto. Products Page... More Info

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com (Standard Web Page)