Innovations on display On the JEC Composites show floor at the Paris Expo in Porte de Versaille, new technology for the advanced materials market was in abundance. HPC staffers walked the aisles and spotted the following: Airtech Advanced Materials Group (Differdange, Luxembourg and Huntington Beach, Calif.) premiered the following: CEP (Cyanate Ester Prepreg) tooling prepreg, said to be superior to epoxy, easier to use than bismaleimide (BMI) and stable at 232°C/450°F; the Airtech Premier vacuum system (completely new vacuum hoses, valves and quick disconnects) for autoclaves; Toolfusion 2, a new infusion tooling resin that processes at low temperatures but can be used in high-temperature molding conditions; and new, extra-wide LF1200 vacuum bagging films (elongation of 450 percent and maximum service temperature of 90°C/194°F, in seamless12m/39.4-ft widths. Biteam AB (Stockholm, Sweden) introduced its 3D Constructional Beam with Sine-Curve Web, reportedly the first-ever woven carbon fiber I-beam preform with a sine-curve shaped web integrated between the top and bottom flanges. The one-piece construction provides greater structural stability in compression and torsion, giving the beam an improved load-bearing capacity for aerospace and construction applications, according to Biteam. The beam is fabricated via the company's 3-D weaving technology, which allows the company to control the shape and amplitude of the sine-curve to meet design specifications. Correlated Solutions (W. Columbia, S.C.) offered its Vic-3D Measurement System, a video image correlation system that performs noncontact measurement of in-plane displacement and strains with a single camera, for 2-D measurements or two cameras, for 3-D measurements. Displacement accuracy is said to be within 1/100th of a pixel, while strain accuracy is reportedly better than 0.01 percent, full field. DIAB Group (DeSoto, Texas) premiered two new PVC foam core materials in Europe for use in prepreg, resin infusion and resin film infusion (RFI) applications, which require vacuum consolidation accompanied by elevated temperature cure and/or high peaks of exotherm. The first is an upgraded version of its Divinycell H-grade core material. It can be processed at up to 90°C/194°F with minimal dimensional change, and has 10 percent greater strength as well as better ductility and chemical resistance than the previous product. New Divinycell HP has a 130°C/266°F processing temperature and is designed for compatibility with low- to medium-temperature prepreg and RFI systems. Diamond Fiber Composites Inc. (DFC, Cincinnati, Ohio) announced the opening of its new 1,208m2/13,000 ft2 manufacturing facility and touted its fiber metal-coating capabilities. The company can coat continuous lengths of synthetic and natural fiber tow or fabric with copper, nickel, cobalt, indium, gold and/or silver, deposited as individual coatings or in combinations (e.g., nickel over copper). The processes evenly coat metals from 10 to 70 percent (by weight), on PAN-based carbon, nylon, polyester, E- and S- glass and Spectra-brand fibers. Applications include EI/RFI shielding, lightning-strike protection and conductive adhesives. Emerson & Cuming Composite Materials (Biller-ica, Mass.) highlighted a manufacturing procedure that results in lower-density versions of its Eccosphere microspheres, which exhibit greater strength than the conventional product. Weight is reduced 30 percent by combining lower density with an increase in the packing factor. Target markets are aeronautics, space and automotive manufacturing. Hexcel (Dublin, Calif.) exhibited the K200 Roadster, built almost entirely of carbon composites by Super Light Cars (SLC), a subsidiary of ATR Group (Italy). Weighing only 300 kg/661 lb, the car is reportedly the world's lightest two-seat auto. Body components are molded from HexPly M47, M48 and M49 carbon-fiber prepregs. The vehicle also has a monocoque sandwich-construction chassis of carbon fiber with HexWeb aramid paper honeycomb core, and a front-mounted carbon/Kevlar crash-box. INSYS Ltd. (Ampthill, Bedford, U.K.) highlighted its filament winding capabilities, particularly in the field of aerospace and defense. The high-tech filament winder makes tubes and tubular structures for aerospace applications, such as rocket cases, as well as driveshafts for wind turbines. The company also has autoclave facilities and does compression molding. Izumi International (Greenville, S.C.) introduced the new Kamitsu automatic rewinder (Model SSP-MA-CFR) for high-performance fibers (carbon, ceramic, aramid, glass, etc.). System capabilities include automated rewinding of packages at preset yardage, including small package sizes typically required for creeling applications, such as those used in weaving, prepregging, multiaxial nonwoven fabric construction and pultrusion processes. The system features a six-package turret for automatic bobbin change, and is equipped with yard and package counters, enabling the operator to preset the number of bobbins to be wound. Oxeon AB (Västra Frölunda, Sweden) introduced next-generation TeXtreme tape-woven reinforcements produced by interlacing unidirectional 20-mm to 50-mm (0.79-inch to 1.97-inch) wide tapes rather than yarns. The company has acquired its own unidirectional tape production line, which permits the company's customers to order reinforce- ments to a desired thickness or to variable thicknesses in specific areas. The new capability is expected to reduce risk of delamination and lay up time. Phoenixx TPC Inc. (Taunton, Mass.) showed its recently released Thermo-Lite 360-mm/14-inch-wide unidirectional thermoplastic prepreg tapes. The tapes can be manufactured with any of a wide selection of resin matrices, including Polyetheretherketone (PEEK), polyetherimide (PEI), polyamide (Nylon), Cyclic PBT, polyethylene, polypropylene and others, reinforced with either carbon fiber or a wide selection of other fibrous materials. Porcher Industries (Badinieres, France) spotlighted its recently developed thermoplastic prepregs, trademarked Pi preg. The materials include unidirectional and balanced reinforcements made from E-glass, S-2 Glass (by AGY), carbon or aramid fibers impregnated with thermoplastic resins, such as Victrex PEEK, PPS, polyetherimide (PEI), PA 12 (polyamide) and others. Also available are thermoformable thermoplastic sheets reinforced with glass, carbon or aramid fibers. Pyrograf Products Inc., a subsidiary of Applied Sciences Inc. (Cedarville, Ohio), introduced patented Pyrograf-III, a multifunctional carbon nanofiber that the company says is available in commercial quantities. Available in 100 nm to 200 nm diameters and in lengths estimated to be 50,000 nm to 100,000 nm, the nanofibers possess physical properties that contribute to composite performance, as well as electrical conductivity that facilitates their use in composites for EMI shielding, antistatic and lightning-strike protection. Additionally, the fibers' thermal conductivity and coefficient of thermal expansion make them suitable for heat sinks and applications that require dimensional stability during extreme thermal cycling, such as cryogenic tanks. Pyromeral Systems (Pont Sainte Maxence, France) displayed parts made with Pyromatrix prepreg, a material that combines either silicon carbide or carbon fibers with a ceramic matrix. The prepreg has a practical cure temperature range of 60°C to 200°C (140°F to 392°F). The service temperature of the cured material is 1000°C/1832°F. One of its first uses will be in underhood parts for Formula 1 cars. Saint-Gobain Technical Fabrics (Niagara Falls, N.Y.) announced that it is the primary supplier of carbon fiber multiaxial fabrics to GKN Aerospace (Isle of Wight, U.K.). The fabrics will be used to fabricate the sandwich panels for the Airbus A380 passenger jet's wing assembly. Schappe Techniques (Charnoz, France) displayed TPFL, a new reinforcement made using a stretch-breaking process that combines carbon fibers with fibers made from thermoplastic material, e.g., polyamide (PA 12) or polyetheretherketone (PEEK). The resulting "slivered" discontinuous fibers are combined into yarns or unidirectional tapes. Offered as braid, unidirectional, biaxial and noncrimp multiaxial formats, the materials make preforms suitable for compression molding and bladder molding. Victrex plc (Lancashire, U.K.) showcased its newest product, a High Flow PEEK (polyetheretherketone) resin system called VICTREX 90. Used in highly filled compounds and composites where its low viscosity enables better wet out of the filler/fiber reinforcement, the resin is recommended for injection molding of glass- or carbon-reinforced thin-walled and/or highly filled composite parts. Available in pellet or powder form, the resin reportedly reduces impregnation time and speeds production. |