Articoli correlati a Structure and Properties of Glassy Polymers: 710

Structure and Properties of Glassy Polymers: 710 - Rilegato

 
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In twenty-nine chapters by leading authorities, Structure and Properties of Glassy Polymers provides readers with comprehensive coverage of basic and applied research on glass polymers as well as a wealth of information on current topics such as molecular modelling, characterization, polymer glasses in confined spaces, and conducting glass polymers. The characterization techniques presented include temperature-modulated differential scanning calorimetry, dielectric loss spectroscopy, photochemical hole burning, positron annihilation lifetime spectroscopy, and transient current generation.

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Contenuti

  • 1: Hill and Tant: The structure and properties of glassy polymers: an overview
  • Physics of Glassy Polymers
  • 2: DiMarzio: The use of configurational entropy to derive the kinetic properties of polymer glasses
  • 3: Angell: Entropy, landscapes, and fragility in liquids and polymers, and the detlaCp problem
  • 4: Baschnagel: Dynamic properties of polymer melts above the glass transition: monte carlo results
  • 5: bohn and kruger: The thermal glass transition beyond the time trap
  • 6: Haralampus, et al: Dynamic monte carlo simulation and dielectric measurements of the effect of pre size on glass transition temperature and the state of the glass
  • 7: Wunderlich and Okazaki: Temperature-modulated calorimetry of the frequency dependence on the glass transition of poly(ethylene terephthlate) and polystyrene
  • Molecular mobility and relaxations in the glassy state
  • 8: Simha: Polymer glasses: thermodynamic and relaxational aspects
  • 9: Robertson and Wilkes: Structural relaxation and fragility of glass-forming miscible blends composed of atactic polystyrene and poly(2,6-dimethyl-1,4-phenylene oxide)
  • 10: Pratt and Smith: Dielectric spectroscopy of bisphenol-A polycarbonate and some of its blends
  • 11: Davis, et al: Physical ageing in PMMA investigated using positron annihilation, dielectric relaxation, and dynamic mechanical thermal analysis
  • 12: Machida, et al: Low temperature relaxation of polymers probed by photochemical hole burning
  • Physical Aging
  • 13: Simon: Fitting DSC heating curves for polyetherimide using a model of structural recovery
  • 14: O'Connerll, et al: The physics of glassy polycarbonate: superposability and volume recovery
  • 15: Ekenstein, et al: Polymer-polymer miscibility investigated by temperature modulated differential scanning calorimetry, T-m.d.s.c.
  • 16: Davis, et al: Physical ageing in PMMA investigated using positron annihilation, dielectric relaxation, and dynamic mechanical thermal analysis
  • Mechanical properties
  • 17: Tant, et al: Craze initiation and failure in glassy poly(ethylene terephthalate): the effects of physical aging with and without exposure to chemical environments
  • 18: Lange, et al: Transitions, properties, and molecular mobility during cure of thermosetting resins
  • 19: Dickinson, et al: A dynamic probe of tribological processes at metal/polymer interfaces: transient current generation
  • 20: Hill, et al: The effects of orientation by solid state processes on the amorphous regions in poly(vinyl alcohol) and high density poly(ethylene)
  • Transport Properties
  • 21: Freeman and Hill: Free volume and transport properties of barrier and membrane polymers
  • 22: Nakagawa, et al: The segmental motion and gas permeability of glassy polymer poly[1-(trimethylsiyl-1-propyne)] membranes
  • 23: Ito: Vacancy spectroscopy of polymers using positronium
  • 24: Cao, et al: Sub-nanometer hole properties of cellulose studies by positron annihilation lifetime spectroscopy
  • 25: Forsyth, et al: Ionic conductivity in glassy PVOH/lithium salt systems
  • 26: Kang, et al: Oxygen transport through electrically conductive polyanilines
  • 27: Koons, et al: Xenon-129 NMR as a probe of polymer sorption sites: a new view of structure and transport
  • 28: Narasimhan and Peppas: Dissolution mechanism of glassy polymers: a molecular analysis
  • 29: Lee, et al: Gas barrier and thermal properties of alkysulfonylmethyl substituted poly(oxyalkylene)s

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