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Rubber industries

Sulphur monochloride, S2CI2, m.p. —80 C, b.p. I38"C. Yellow liquid hydrolysed by water to SO2, HCl and S. Lower halides S CIj (jt up to 5) are formed S2CI2 plus H2 at a hot surface with freezing of products. S2CI2 is used in the rubber industry as a solvent for S. [Pg.379]

Spirit C 0.700 70-100 Fat extraction, vegetable oil mills, rubber industry, heating... [Pg.272]

Spirit E 0.730 100-130 Rubber industry, cleaning fluids, degreasing fluids... [Pg.272]

The aromatic extracts have been used in the paint industry to partially replace linseed oil. They are still used for producing printer s ink. In addition, they are finding a variety of applications as plasticizers in the rubber industry or for the manufacture of plastics such as PVC. [Pg.291]

Some specific thio-derivatives of thiazoles have been synthesized for pharmacodynamic, pesticidal, or rubber industry studies they are shown in Tables VII-13 and VII-14 described in Section III. Their chemistry has... [Pg.407]

Because of their use in the rubber industry various sulfenamido thiazoles (131) have been prepared. They are obtained in good yields through the oxidation of A-4-thiazoline-2-thiones (130) in aqueous alkaline solution in the presence of an amine or ammonia (Scheme 66) <123, 166, 255, 286, 308, 309). Other oxidizing agents have been proposed (54, 148. 310-313) such as iodine (152), chlorine, or hydrogen peroxide. Disulfides can also be used as starting materials (3141. [Pg.411]

Metal salts of A-4-thiazoline-2-thione are used in the rubber industry Zn salts (123, 152), Pb and Mg salts (54). Cd salts (151, 324), Cu salts (325), in photographic processes (146). and in analysis (328). Zn, Ni, Co and Cd salts are used as germicides (329). Despite their wide range of application, little is known about their physical and chemical properties. [Pg.412]

Rubber Industry. This is the oldest industrial area in which PVA fiber has been successfully appHed. The fiber is used for reinforcement for... [Pg.341]

P. M. Norling, "Managing Technology Critical Questions for the Synthetic Rubber Industry," 29th Mnnual Meeting International Institute of Synthetic... [Pg.137]

Banbury Mixer Preeminent in the field of high-intensity mixers, with power input up to 6000 kW/m (30 hp/gal), is the Banbury mixer, made by the Farrel Co. (Fig. 18-43). It is used mainly in the plastics and rubber industries. The top of the charge is confined by an air-operated ram cover mounted so that it can be forced down on the charge. The clearance between the rotors and the walls is extremely small, and it is... [Pg.1645]

Talc-s of extreme fineness and high surface area are rapidly attaining industrial importance and are used for various purposes in the paint, paper, plastics, and rubber industries. [Pg.1869]

There is also a large number of synthetic heterocyclic compounds with other important practical applications, as dyestuffs, copolymers, solvents, photographic sensitizers and developers, as antioxidants and vulcanization accelerators in the rubber industry, and many are valuable intermediates in synthesis. [Pg.47]

SCHIDROWIT2, p. and DAWSON, T. R., History of the Rubber Industry. The Institution of the Rubber Industry, London (1952)... [Pg.18]

In the rubber industry hydrocarbon oils are often used to reduce the softness and facilitate the processing of hydrocarbon rubbers. These appear to have a small interaction with the polymer but spacing effects predominate. Such materials are generally referred to as softeners. The rubber industry, like the plastics industry, commonly uses the term plasticisers to describe the phthalates, phosphates and sebacates which are more commonly used with the more polar rubbers. [Pg.132]

Phenylnaphthylamines W-Phenyl-p-naphthylamine (11) Yes Once widely used in rubber industry because of good all-round effect in diene rubbers. Now almost obsolete. [Pg.137]

Butadiene and styrene may be polymerised in any proportion. The Tfs of the copolymers vary in an almost linear manner with the proportion of styrene present. Whereas SBR has a styrene content of about 23.5% and is rubbery, copolymers containing about 50% styrene are leatherlike whilst with 70% styrene the materials are more like rigid thermoplastics but with low softening points. Both of these copolymers are known in the rubber industry as high-styrene resins and are usually used blended with a hydrocarbon rubber such as NR or SBR. Such blends have found use in shoe soles, car wash brushes and other mouldings but in recent times have suffered increasing competition from conventional thermoplastics and to a less extent the thermoplastic rubbers. [Pg.294]

Blending of polymer, plasticiser and filler may be carried out using two-roll mills or internal mixers as commonly used in the rubber industry. Alternatively, since the raw polymer is supplied as a free-flowing powder a dry blending process similar to that now widely used with PVC (see Chapter 12) is also used. [Pg.306]

The polymer is a water-soluble viscous liquid which has found application in the adhesive and rubber industries. One particular use has been a heat sensitiser used in the manufacture of rubber latex dipped goods. [Pg.476]

Another approach has been adopted by the Du Pont Company with Adiprene C. This is a urethane-type polymer with unsaturated groups in the polymer. Because of the unsaturation the polymer may be vulcanised with sulphur, the standard vulcanising agent of the rubber industry. This is a clear-cut example of a product being modified to suit the processor rather than that of a processor adapting himself to meet new products. Whereas Adiprene C has poor tensile strength when unfilled, the use of carbon black leads to appreciable reinforcement (as is the case with SBR and to some extent natural rubber. [Pg.788]

The ebonite compound before cure is a rather soft plastic mass which may be extruded, calendered and moulded on the simple equipment of the type that has been in use in the rubber industry for the last century. In the case of extruded and calendered products vulcanisation is carried out in an air or steam pan. There has been a progressive reduction in the cure times for ebonite mixes over the years from 4-5 hours down to 7-8 minutes. This has been brought about by considerable dilution of the reactive rubber and sulphur by inert fillers, by use of accelerators and an increase in cure temperatures up to 170-180°C. The valuable effect of ebonite dust in reducing the exotherm is shown graphically in Figure 30.3. [Pg.861]

Training for all staff, covering both normal operation and emergency situations, is essential. The combination of measures used will depend upon the degree of hazard, and the scale and nature of the processes. For example, dust and fume control measures in the rubber industry are summarized in Table 5.19. [Pg.108]

Table 5.19 Combination of measures for dust and fume control in the rubber industry ... Table 5.19 Combination of measures for dust and fume control in the rubber industry ...
Ammonia is shipped as a liquefied gas under its own vapour pressure of 114 psig (7.9 bar) at 21°C. Uses are to be found in refrigeration, fertilizer production, metal industries, the petroleum, chemical and rubber industries, domestic cleaning agents and water purification. Aqueous solutions of ammonia are common alkaline laboratory reagents ca 0.88 solution is the strongest available. Ammonia gas is expelled on warming. [Pg.276]

Rubber Industry Advisory Committee - A New Practical Guide to Complying with COSHH in the Rubber Industry Dust Control in Powder Handling and Weighing Dust and Fume Control in Rubber Mixing and Milling Control of Solvents in the Rubber Industry... [Pg.557]

Another common device used in the rubber industry is the thin film evaporator. This device is very often used in the manufacture of ultra-low molecular weight elastomers that are used in sealant applications or specialty coatings, and as processing aids in conventional rubber compounding processes. The thin film evaporator described earlier, has found a multitude of other industry applications, including food processing operations. [Pg.143]

Bayer AG, Manual for the Rubber Industry, Bayer AG Leverkusen Germany, p. 119 (1993). [Pg.574]

Carbon black is an extremely fine powder of great commercial importance, especially for the synthetic rubber industry. The addition of carbon black to tires lengthens its life extensively by increasing the abrasion and oil resistance of rubber. [Pg.118]

Reisch M. S., Thermoplastic, Elastomers Bring New Vigor to Rubber Industry, Chemical and Engineering News, May 4, 1992, pp. 29-41. [Pg.372]

Report 54 Health and Safety in the Rubber Industry, A.R. Nutt, Arnold Nutt Co. and J. Wade. [Pg.131]


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