Plastics EngineeringButterworth-Heinemann, 22 Jan 2020 - 638 halaman Plastics Engineering, Fourth Edition, presents basic essentials on the properties and processing behaviour of plastics and composites. The book gives engineers and technologists a sound understanding of basic principles without the introduction of unduly complex levels of mathematics or chemistry. Early chapters discuss the types of plastics currently available and describe how designers select a plastic for a particular application. Later chapters guide the reader through the mechanical behaviour of materials, along with a detailed analysis of their major processing techniques and principles. All techniques are illustrated with numerous worked examples within each chapter, with further problems provided at the end.This updated edition has been thoroughly revised to reflect major changes in plastic materials and their processing techniques that have occurred since the previous edition. The plastics and processing techniques addressed within the book have been comprehensively updated to reflect current materials and technologies, with new worked examples and problems also included. - Gives new engineers and technologists a thorough understanding of the essential properties and processing behavior of plastics and composites - Presents a great source of foundational information for students, early-career engineers and researchers - Demonstrates how basic engineering principles in design, mechanics of materials, fluid mechanics and thermodynamics may be applied to the properties, processing and performance of modern plastic materials |
Isi
| 1 | |
| 59 | |
3 Mechanical behaviour of composites | 195 |
4 Processing of plastics | 279 |
5 Analysis of polymer melt flow | 411 |
Solutions to questions | 489 |
A Structure of plastics | 585 |
B Solution of differential equations | 595 |
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acetal acrylic applied barrel beam behaviour blow moulding calculate carbon cavity composite compression compression moulding constant cooling crack creep curves crystalline cycle deformation density diameter effect elastic engineering equation example extruder factor failure fatigue fibre reinforced film flow curves flow rate fluid foam fracture given glass heat illustrated in Fig impact strength injection moulding kg/m³ laminate layer LDPE length loading m³/s manufacturing material matrix maximum melt flow methods modulus moulding process nylon parison plastics plate Poisson's Ratio Polycarbonate polyethylene polymer polymer melt polypropylene polystyrene power law production properties ratio resin rotational runner screw shear rate shear stress sheet shown in Fig solid Solution sprue stiffness strain rate structure surface temperature tensile thermal thermoforming thermoplastic thermosetting typical values viscoelastic viscosity wall thickness ξη σι σο σχ
