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Derived from the well-known Plastics Technology Handbook, this volume is for those whose work focuses on the latest designs in and applications for industrial and specialty polymers. It discusses industrial polymers that are produced using a free-radical mechanism, as well as lesser-used polyurethanes, ketones, acrylics, and condensation polymers. A second part examines the manufacture of specialty polymers for commercial use across diverse fields. A final section presents a comprehensive overview of unusual developments in polymer use, such as in the automotive, appliance, and aerospace industries, as well as in packaging, agriculture, communication, electronics, and medicine.
This book begins with a discussion of different types of molds and dies, including compression molding, injection molding, blow molding, thermoforming, reaction injection molding, extrusion, and pultrusion. It then covers spinning, casting, reinforcing, foaming, compounding, and coating processes as well as powder molding, adhesive bonding, and plastics welding techniques. The authors also explore the decoration of plastics, including painting operations, printing processes, hot stamping, in-mold decorating, embossing, electroplating, and vacuum metallizing. They conclude with an overview on key aspects of plastics recycling, developments in the field, and waste recycling problems.
Focuses on commonly used industrial polymers as well as less widely used polymer types. This volume explores polymer derivatives and polymeric combinations that play special and often critical roles in diverse fields of human activities. It offers an overview of developments in the use of polymers in a variety of areas.
Offers a discussion of different types of molds and dies. This book covers spinning, casting, reinforcing, foaming, compounding, and coating processes as well as powder molding, adhesive bonding, and plastics welding techniques. It also explores the decoration of plastics, key aspects of plastics recycling, and waste recycling problems.
Discusses the inherent properties of polymers and how their end-use properties can be influenced through changes in the molecular architecture or incorporation of various fillers and additives. This book explores the mechanical, electrical, optical, and thermal properties of polymers. It also includes a guide for identifying common plastics.
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