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S E E A L S O Adhesives; Fibers; Nylons; Plastics; Polyesters; Polymers, Natural. Charles E. Carraher Jr. , Jr. (2003). Giant Molecules: Essential Materials for Everyday Living and Problem Solving, 2nd edition. Hoboken, NJ: Wiley. Carraher, Charles E. Jr. (2003). Polymer Chemistry. New York: Dekken. , Jr. (2000). Applied Polymer Science: 21st Century. New York: Elsevier. Morawetz, Herbert (1995). Polymers: The Origins and Growth of a Science. New York: Dover. , ed. (1999). M Boca Raton, FL: CRC Press.

Commercial laminates are produced on a large scale with wood as the adherent and phenolic, urea, epoxy, resorcinol, or polyester resins as the adhesive. Plywood is an example of a laminate. Laminates of paper or textile include Formica and Micarta. Laminates of phenolic, nylon, or silicone resins with cotton, asbestos, paper, or glass textiles are used as mechanical, electrical, and general purpose structural materials. Conductive polymers. Most polymers are nonconductive and polymers such as polyethylene, polypropylene and polytetrafluoroethylene (Teflon) are used as insulators.

Rohm and Haas Company bought out Plexiglas (polyacrylonitrile [Figure 18]; also known as acrylic and as a fiber sold under tradenames such as Orlon) from a British firm in 1935 and began production of clear plastic parts and goods, including replacements for glass in camera lenses, aircraft windows, clock faces, and car tail lights. Figure 18. ( CH2 CH )n CN Polyacrylonitrile Poly(vinyl butyral). The polymer poly(vinyl butyral) (PVB) was first used in automotive safety glass in 1938 to prevent flying glass resulting from automobile accidents and continues to be utilized in the twenty-first century for this purpose (Figure 19).

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