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A High Aspect Ratio Fillers

The commercialization of glass fibers in the mid-1930s and the development of polyester resins during the same period were instrumental in the introduction and establishment of reinforced plastics/composites (RP/C) based on glass fibers as new [Pg.143]

Components Polyester compatible (US Patent 4 752 527) Polyvinyl acetate compatible (US Patent 4 027 071) Polyurethane compatible (US Patent 3 803 069) [Pg.147]

Coupling agent y-Methacryloxy-propyltrimethoxysilane y-Ethylenediaminepropyltrimethoxysi-lane or methacrylic acid complex of chromic chloride y-Aminopropyltriethoxysilane [Pg.147]

Film former Antistatic agent Unsaturated bisphenolic glycol-maleic polyester Cationic organic quaternary ammonium salt Polyvinyl acetate Curable blocked polyurethane resin emulsion [Pg.147]

Lubricant Strand-hardening agent Polyethyleneimine polyamide Aqueous methylated melamine-formaldehyde resin Cationic fatty acid amide or tetraethylene pentamine  [Pg.147]


Celzard A, McRae E, Deleuze C, Dufort M, Furdin G, Mareche JF. Critical concentration in percolating systems containing a high-aspect-ratio filler. Physical Review B. 1996 Mar 1 53(10) 6209-14. [Pg.250]

A theoretical smdy showed that it is not necessary to build a conductive network with a high-aspect-ratio filler alone [109] and that the percolation threshold of CPCs is sensitive to the part of high-aspect-ratio filler in a system that contains hybrid fillers with different dimensions [111]. A number of studies on CPCs with two mixed carbon-filler-filled have been reported. The percolation thresholds of these systems are often close or below the average value of the systems that are filled with... [Pg.19]


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