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Polymers, Polymer Blends, Polymer Composites, and Filled Polymers


en Limba Engleză Hardback – dec 2006
Polymers are substances containing a large number of structural units joined by the same type of linkage. These substances often form into a chain-like structure. Starch, cellulose, and rubber all possess polymeric properties. Today, the polymer industry has grown to be larger than the aluminium, copper and steel industries combined. Polymers already have a range of applications that far exceeds that of any other class of material available to man. Current applications extend from adhesives, coatings, foams, and packaging materials to textile and industrial fibres, elastomers, and structural plastics. Polymers are also used for most composites, electronic devices, biomedical devices, optical devices, and precursors for many newly developed high-tech ceramics. This book presents leading-edge research in this rapidly-changing and evolving field.
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Specificații

ISBN-13: 9781600211683
ISBN-10: 1600211682
Pagini: 222
Ilustrații: tables & charts
Dimensiuni: 182 x 263 x 20 mm
Greutate: 0.64 kg
Editura: Nova Science Publishers Inc

Cuprins

Preface; Polymer/Silicate Nanocomposites Based on Organomodified Clays; Structure and Properties of Compositions on the Basis of Mixes of Epoxynovolaic and Phenolformaldehyde Pitches; Chain Fractal Geometry and Deformability of Polymer Composites; The Role of Diffusive Processes in Model Reaction of Reetherification; Thermal Degradation Kinetic Study of Polypropylene Nanocomposite; Fundamental Aspects of Filling of Nanocomposites with High-Elasticity Matrix: Fractal Models; An Influence of Mica Surface on Model Reaction of Reetherification; The Interrelation of Elasticity Modulus and Amorphous Chains Tightness for Nanocomposites Based on the Polypropylene; Structure Formation of Polymer Nanocomposites Based on the Polypropylene; Synthesis and Study of Properties of Aromatic Polyether-Imides on the Basis of Derivatives of Chloral and DDT with Use of Polynitroreplacement Processes; Properties of the Filled Acrylic Polymers; Polysulfonetherketones on the Oligoether Base, Their Thermo- and Chemical Resistance; The Mechanism of Inhibition Thermooxidation Destruction of PBT by Polymer Azomethines; Aromatic Block-Co-Polyesters as Prospective Heat Resistant Constructive Materials; Polymeric Nanocomposites, Stabilised Organic Derivatives of Five-Valent Phosphorus; Polyurethaneisocyanurate Polymeric Materials; The Estimation of Opportunities of Low-Temperature Destructions of Synthetic Rubbers in Solutions in Reception of Half-Finished Product for Finishing Compositions; Temperature Transitions in Polycarbonate Polytetramethylenoxide Block Copolymer Resins; The Calculation of Temperature Stresses in Polymers; Composites on The Basis of Polyhydroxiethers and Graphites; Heat-Conducting Compositions on the Base of Epoxy Polymers; Filled Low Viscosive Epoxy Composition Materials; The Electrical Conductive Compositional Material with Low Inflam on Polypropylene Basis; Research of Mixes on the Basis of Corn Starch and Polyethylene; Reception and Research of Properties the Modified Starch; Biologically Utilised Plastics: Condition and Prospects; Composite Materials Capable of Multiple Processing: Ecological Aspects of the Problem; Ecological and Economical Aspects of Composition Materials Creation; Polyarylate Oximates (PAO), Their Physicochemical Properties and Stabilising Influence on Polyalkylene Terephthalate (PAT); Thermostable Polybutylene Terephthalate (PBT) Modified with Polyformal Oximates (PFO); Index.