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Plastics elastomer

An eiegant theoreticai treatise of poiymer physics which conveys an intuitive understanding of the behaviour of macromoiecuies. Charrier J-M 1990 Polymeric Materials and Processing Plastics, Elastomers and Composites (Munich Hanser)... [Pg.2542]

These ethers readily copolymerize with tetrafluoroethylene and other fluoroalkenes to commercially significant plastics, elastomers, and ion-exchange resins such as Teflon PFA, Kalrez, andNafton (see Fluorine compounds organic-tethafluoroethylene-perfluorovinylETHERcopolya rs EuASTOPffiRS, SYNTHETIC-FLUOROCARBONELASTOTffiRS lONIC POLYTffiRS). [Pg.304]

P. Schweitzer, Corrosion Resistance Tables Metals, Non-Metals, Coatings, Mortars, Plastics, Elastomers andEinings, andFabrics, 3rd ed., Marcel Dekker, New York, 1992. [Pg.140]

Flame and Smoke Retardants. Molybdenum compounds are used extensively as flame retardants (qv) (93,94) in the formulation of halogenated polymers such as PVC, polyolefins, and other plastics elastomers and fabrics. An incentive for the use of molybdenum oxide and other molybdenum smoke and flame retardants is the elimination of the use of arsenic trioxide. Although hydrated inorganics are often used as flame retardants, and thought to work by releasing water of crystallization, anhydrous molybdenum oxides are effective. Presumably the molybdenum oxides rapidly form... [Pg.477]

Plasma processing technologies ate used for surface treatments and coatings for plastics, elastomers, glasses, metals, ceramics, etc. Such treatments provide better wear characteristics, thermal stability, color, controlled electrical properties, lubricity, abrasion resistance, barrier properties, adhesion promotion, wettability, blood compatibility, and controlled light transmissivity. [Pg.434]

HARPER Handbook of Plastics, Elastomers, and Composites, Third Edition... [Pg.3]

Cellular organic plastics. Elastomer, polystyrene, polyisocyanate, polyisocyanurate, and polyvinyl acetate. [Pg.1098]

Electron and optical microscopes are being used to see blend homogeneity. Elastomer-plastic blends are somewhat easier to identify than elastomer-elastomer blends because normal staining techniques, e.g., osmium tet-raoxide, can be used in the case of plastic-elastomer blends. Normally, there are two methods that are followed for examining the blend surface by electron microscopy. [Pg.655]

It is possible to distinguish between SBR and butyl rubber (BR), NR and isoprene rubber (IR) in a vulcan-izate by enthalpy determination. In plastic-elastomer blends, the existence of high Tg and low Tg components eases the problems of experimental differentiation by different types of thermal methods. For a compatible blend, even though the component polymers have different Tg values, sometimes a single Tg is observed, which may be verified with the help of the following equation ... [Pg.655]

Plastic elastomers are generally lower-modulus flexible materials that can be stretched repeatedly and will return to their approximate original length when the stresses are released. The rubber materials have been around for over a century. They will always be required to meet certain desired properties, but thermoplastic TPEs are replacing traditional TS natural and synthetic rubbers (elastomers). TPEs are also... [Pg.360]

Vulcanization A process in which rubber or TS plastic (elastomer) undergoes a change in its chemical structure brought about by the irreversible process of reacting the materials with sulfur and/or other suitable agents. These cross-linking action results in property changes such as decreased plastic flow, re-... [Pg.647]

Source Arnold, R.L. and Rader, C.P., Handbook of Plastics, Elastomers and Composites, Harper, C.A., ed., McGraw-Hill, New York, 1992. With permission. Note P, poor F, fair G, good E, excellent. [Pg.136]

U. SchOnhausen, Positive List I. Additives for Plastics, Elastomers and Synthetic Fibres for Food Contact Applications, Ciba-Geigy Ltd, Basel (1993). [Pg.28]

Polymer-bound antioxidants must be molecularly dispersed (i.e. infinitely soluble) and cannot be physically lost from the substrate. High-MW phenolic AOs are preferred for applications requiring FDA approval, minimal discoloration, and long service life at high temperatures. Antioxidants are used for protection of polymers, plastics, elastomers, foods, fuels and lubricants. [Pg.775]

Depending on their ultimate form and uses, polymers can be classified into plastics, elastomers, fibres or liquid resins. These are defined as follows ... [Pg.48]

Both thermoplastics and thermosets can be used in four of the five major application areas plastics, elastomers, coatings, and adhesives. But, only thermoplastics can be used in making fibers. During the spinning and drawing process of fiber processing, it s necessary to orient the molecules. Only unbranched, linear polymers (not thermosets) are capable of orientation. [Pg.321]

Do you think that daily life would have been easier and colourful without the discovery and varied applications of polymers The use of polymers in the manufacture of plastic buckets, cups and saucers, children s toys, packaging bags, synthetic clothing materials, automobile tyres, gears and seals, electrical Insulating materials and machine parts has completely revolutionised the daily life as well as the industrial scenario. Indeed, the polymers are the backbone of four major Industries viz. plastics, elastomers, fibres and paints and varnishes. [Pg.134]

Uses. Widely used monomer in the production of plastic elastomers and coatings... [Pg.451]

Polymers are viscoelastic materials meaning they can act as liquids, the visco portion, and as solids, the elastic portion. Descriptions of the viscoelastic properties of materials generally falls within the area called rheology. Determination of the viscoelastic behavior of materials generally occurs through stress-strain and related measurements. Whether a material behaves as a viscous or elastic material depends on temperature, the particular polymer and its prior treatment, polymer structure, and the particular measurement or conditions applied to the material. The particular property demonstrated by a material under given conditions allows polymers to act as solid or viscous liquids, as plastics, elastomers, or fibers, etc. This chapter deals with the viscoelastic properties of polymers. [Pg.459]

Only about 5% of the fossil fuels consumed today are used as feedstocks for the production of synthetic carbon-based products. This includes the products of the chemical and drug industries with a major portion acting as the feedstocks for plastics, elastomers, coatings, fibers, etc. [Pg.525]

Harper, C.A. 2002. Handbook of Plastics, Elastomers, and Composites. McGraw-Hill, New York. Kaplan, W.A. Published yearly. Modern Plastic World Encyclopedia. McGraw-Hill, New York. Kroschwitz, J.I. 2004. Encyclopedia of Polymer Science and Engineering, 3rd ed. Wiley, New York. Mark, J.E. 1996. Physical Properties of Polymers Handbook. Springer, New York. [Pg.756]

Aromatic polyisocyanates Aromatic polyisocyanates are primarily used for a wide variety of PU foamed plastics, elastomers, and adhesives. More than 90% of PUs are produced from aromatic polyisocyanates. The isocyanate group bonded to an aromatic ring is more reactive toward water or hydroxyl groups than that bonded to an aliphatic compound. The most important aromatic diisocyanates are also given in Figure 4.7. [Pg.246]


See other pages where Plastics elastomer is mentioned: [Pg.129]    [Pg.330]    [Pg.137]    [Pg.301]    [Pg.542]    [Pg.320]    [Pg.600]    [Pg.128]    [Pg.20]    [Pg.827]    [Pg.48]    [Pg.125]    [Pg.9]    [Pg.148]    [Pg.169]    [Pg.222]    [Pg.39]    [Pg.168]    [Pg.181]    [Pg.226]    [Pg.255]    [Pg.112]    [Pg.7]    [Pg.330]   


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