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  • Polycarbonate
    and transparent. Polycarbonate resins are available in general-purpose molding and extrusion grades and in special grades that provide specific properties or processing characteristics. Ilese include flame-retardant formulations as well as grades that meet Food and Drug Administration regulations for parts
  • Polycarbonate Enclosures 101: A Guide for Specifiers
    . Then, in the 1950's, GE and Bayer concurrently developed polycarbonate resin, and in the 1960's the new resins (Lexan for GE and Makrolon for Bayer) began finding their way into the marketplace. Due to its exceptional impact strength, machinability, formability, and UV stability, polycarbonate
  • Ecofriendly Polycarbonate and Ecofriendly Castings
    Three new flame-retardant polycarbonate/acrylonitrile-butadienestyrene (PC/ABS) blend resins use postconsumer recycled content and thus can help OEMs hit a higher rating in the U.S. Government's Electronic Product Environmental Assessment Tool (EPEAT) for evaluating the sustainability of specific
  • Medical Device Link . Medical Applications of Polycarbonate
    Polycarbonate fills an important niche as one of the most popular engineering resins in the medical device market. Bisphenol-A polycarbonate has been commercially available since the 1960s, and its use in medical devices dates from approximately that time. Possessing a broad range of physical
  • Medical Device Link . Stabilization of Gamma-Irradiated Polycarbonate
    Bisphenol A based polycarbonate (PC) is a well-known engineering thermoplastic with an excellent balance of optical, physical, mechanical, and processing characteristics. Various grades of PC are widely used in a range of medical applications because of the material's transparency, toughness
  • Medical Device Link . EXPLAINING DUCTILITY LOSS IN STEAM-STERILIZED POLYCARBONATE
    009;Numerous studies in the past have shown that polycarbonate is subject to hydrolysis by hot-water aging. This conclusion was derived from evidence that showed a loss in molecular weight an increase in melt-flow rate, or the presence of monomers (bisphenol A) and oligomers on the sample surface
  • Medical Device Link .
    , are key factors in the increased use of polycarbonate in medical devices. Polycarbonate resins can be injection molded, extruded, blow molded, or thermoformed. Products made with polycarbonate can be sterilized using EtO, gamma radiation, electron-beam radiation, and steam processes. Certain commercial
  • Injection Molding with Composite Stereolithography Resins
    materials, composite resins, coupled with high resolution SL technology, shows signs of breaking the mold. Molds made of these resins have been used to make hundreds of injection-molded parts out of plastic materials such as ABS, polypropylene (PP), polyethylene (PE), polycarbonate (PC

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  • Polycarbonate Resins
    Polycarbonate Resins .
  • Polycarbonate
    Polycarbonate resins are commercially pro- duced by interfacial and transesterification or melt processes.
  • Polycarbonates
    Polycarbonate resins are commercially produced by interfacial and transesterification processes.
  • Bisphenol A
    13 Polycarbonate Resins ...................................................................................................................
  • Epoxy/Polycarbonates Business Strategic Units
    Abstract Process Economics Program Report 244 STRATEGIC BUSINESS UNITS OF EPOXY AND POLYCARBONATE RESINS (June 2002 .
  • Phosgene
    The United States, Western Europe, and Asia are currently the major producing and consuming regions for phosgene, which they captively consume to manufacture p,p′-methylene diphenyl diisocyanate (MDI), toluene diisocyanate (TDI), and polycarbonate resins .
  • Key Patent Report - Flexible Display Substrate - 2012
    KR2012075813A The glass fiber enforcement polycarbonate resin composition with an excellent fire retardant characteristic .
  • Polycarbonates
    U.S. Producers of Polycarbonate Resins Annual Capacity Estimates .........................................