Metallocene Catalyzed Polymers: Materials, Processing and Markets
It has been estimated that within just ten years, over half of all polyolefins will be made by using metallocene catalysts. This ground-breaking volume from PDL brings together¨for the first time¨work from dozens of world-renowned experts on the subject. Fifty chapters of peer-reviewed content offer insights into applications in automotive components, food packaging, insulating films, non-woven fabrics and medical markets, among others.
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applications behavior blend blown film catalyst systems catalyzed Chem Chemical cocatalyst commercial comonomer composition compounds conventional copolymerization copolymers cost crystallinity crystallization dart impact density polyethylene effect EPDM ethylene extrusion film blowing film properties fraction g/cc gas phase glass fiber glass transition temperature HDPE heat seal higher homopolymer increases injection molding isotactic isotactic polypropylene LDPE ligand linear LLDPE long chain branching low density lower material melt flow melt index melt temperature melting point metallocene catalysts metallocene resins metallocene-based modulus molecular weight distribution molecules monomer narrow MWD norbornene output rate parameters performance polymer polymer chain polymerization polyolefin polypropylene pressure propylene range ratio resins resistance rheology samples shear rate shown in Figure shows shrink speed styrene syndiotactic Table tear strength tensile strength thermal thermoplastics tion ULDPE viscosity Ziegler-Natta catalysts zirconocene