Engineering Design for PlasticsEric Baer |
Contents
Chemical Composition of Plastics M I Kohan | 1 |
Crystal Structure and Morphology F P Reding and E R Walter | 88 |
Viscoelastic Behavior and TimeTemperature Relationships | 143 |
Copyright | |
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ablation adhesive amorphous Appl applied ASTM atoms behavior bond breakdown cellulose cent chain Chem chemical chloride coefficient composite compression concentration crack creep crystal curve decrease deformation degree of crystallinity density dependence dielectric constant diffusion dissipation factor effect elastic electrical energy epoxy equation fabric failure fibers filaments film fracture frequency friction function glass transition glass transition temperature heat increase laminate layer linear liquid load material measured mechanical melting point modulus moisture molding molecular weight molecules monomer nylon obtained occur penetrant phenolic Phys plastic polyester polyethylene polyethylene terephthalate Polymer Sci polymerization polystyrene polytetrafluoroethylene Polyvinyl polyvinyl chloride pressure properties ratio reinforcement relaxation resin resistance sample shear stress shown in Figure solid sorption specimen spherulites strain stress-cracking stress-strain stress-strain curve structure surface tensile stress tension theory thermal thickness Trans transition temperature values vapor viscoelastic voltage yield