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Lubrication chemical

Used industrially as a textile finishing agent, antioxidant, paint solvent, additive for adhesives, additive for extreme pressure lubricant chemical intermediate for organic phosphorus compounds. [Pg.59]

Fluorocarbons and fluoropolymers have been in commercial use for over half a century and have found their way into a diverse array of products. The members of this array are too numerous to hst but they include nonstick coatings for cookware, construction materials, carpets, textiles, paints, electronic materials, household cleaners and personal hygiene products. As fluorocarbons are expensive compared to their hydrocarbon analogues, they are chosen carefully and usually to fill a void in a product attribute that simply cannot be accommodated by another material. The attributes typically afforded by the use of fluorocarbons are repellency, lubricity, chemical and thermal inertness, and low dielectric constant, in regards to which fluorocarbons are unique among their hydrocarbon counterparts. [Pg.47]

Radia . [Fina Chem.] Hydrogenated triglycoides or fatty esters lubricant, chemical intermediate, plasticizer, emollient solvent for plastics, cosmetics, pharmaceuticals, textiles, leather, paper, metalworking, coatings. [Pg.307]

Bis(octadecanoyloxymethyl)-1,3-propanediyldiocta-decanoate. EINECS 204-110-1 Octadeoanoio acid, 2,2-bis(((1-oxooctadecyl)oxy)methyl)-1,3-propanediyl ester Penta-erythrityl tetrastearate Radia 7176, Radiasurf 7175 Stearic acid, neopentanetetrayl ester. Lubricant, chemical intermediate used in formulation of cutting, lamination, textile oils and corrosion inhibitors, in chemical synthesis, polishes, coatings and textile finishes. Solid mp = 71° d = 0.940. Fina Chemicals Hercules Inc. Upo Lohzagroup. [Pg.476]

C16-C18) and (C18) Unsaturated alkylcarboxylic acid methyl ester EINECS 267-0194 Fatty acids, C16-18 and C18-unsatd, Me esters SDA 11-010-00. Chemical intermediate, lubricant chemical synthesis lubricity improvers in mineral oils formulation of cutting, lamination, and textile oils rust Inhibitors textile and leather Industry. bp2 = 168-170° dj 0.879 ng = 1.4510 soluble in EtOH, Et20. [Pg.537]

Polynuclear AROMATIC HYDROCARBONS and heterocycles are quite abundant in fossil fuel materials such as coal and petroleum, and insights into new chemistry can potentially lead to developments in the areas of fuels, lubricants, chemicals, and carbonaceous materials. The study of large aromatic hydrocarbons is long-standing, and the symposium upon which this book is based was held on the 30th anniversary of a symposium, Polycyclic Hydrocarbons , held in Atlantic City in September 1956 and published in Volume 1 of the Preprints of the Petroleum Division. We are fortunate to have as one of the contributors to this book, Michael Szwarc, who was an author of one of the papers of the 1956 symposium ( Reactivities of Deformed Aromatic Hydrocarbons ). [Pg.8]

Uses Corrosion inhibitor, pigment in metal protective coatings, corrosion-resist. metal primers mfg. of zinc hydrosulfide precipitating agent reducing agent in lubricants, chemicals Features Unslaked lime minimizes formation of hydrogen gas in org. [Pg.941]

Chem. Desaip. Zinc dust CAS 7440-66-6 EINECS/ELINCS 231-175-3 Uses Corrosion inhibitor, pigment in thin-film metal protective coatings, corrosion-resist, metal coatings, aerosol paints in lubricants, chemicals Features For use with either org. or inorg. binders Reguiatory ASTM Spec. D-520 Type I compliance Properties Superfine powd. 100 /. thru 325 mesh 4.5 p median particle size sp.gr. 7.0 dens. 58.4 Ib/solid gal 99.3% total zinc, 96.5% metallic zinc, 3.1 zinc oxide ZCA Zinc Dust 64L [Zinc Corp. of Am.]... [Pg.941]

Alumina-TiB2 Higher hardness and lubricity Chemical reactivity... [Pg.143]

Properties Pale yel. liq. m.w. 634 dens. 0.915 (25/15 C) m.p. 20 C ref. index 1.4985-1.5025 flash pt. (COC) 430 F Toxicoiogy TSCA listed Precaution Combustible Uses StabiIizer for polymers esp. polyolefins lubricant chemical intermediate antioxidant and sulfur deactivator in lubricants improves antiwear and antifriction props. [Pg.4544]

PPG-17 PPG-30 Xanthan gum lubricant, ceramics extrusion Isotridecyl stearate lubricant, chain Oleth-6 carboxylic acid lubricant, chain lubricants Tallamide DEA lubricant, chain saws Laurate canola oil lubricant, chemical tech, prods. [Pg.5434]

PEG-10 oleate lubricant, chemicals Chlorotrifluoroethylene polymer lubricant, citrus... [Pg.5434]

UHMWPE also shares the lubricity, chemical resistance, and superior electrical properties of HDPE. Industrial applications, which utilize the properties of UHMWPE, are presented in Table 1 ... [Pg.276]

The major industrial applications of hexagonal boron nitride rely on its high thermal conductivity, excellent dielectric properties, self-lubrication, chemical inertness, nontoxicity, and ease of machining. These are, for instance, mold wash for releasing molds, high-temperature lubricants, insulating filler material in composite materials, as an additive in silicone oils and synthetic resins, as filler for tubular heaters, and in neutron absorbers. On the other hand, the industrial applications of cubic boron nitride rely on its high hardness and are mainly as abrasives. [Pg.638]

Other important properties for certain products include coefficient of friction, chemical resistance, and others. Many plastic materials inherently have a low coefficient of friction. Other plastic materials can incorporate this property by compounding a suitable ingredient such as graphite powder into the base material. It is an important feature for moving products, which provides for self-lubrication. Chemical resistance is another characteristic that is inherent in most plastic materials the range of this resistance varies among materials. [Pg.132]

The numerous industrial and consumer products made from olefins include many polymers and copolymers, synthetic rubbers [10, 11], plasticizers, surfactants, lube oil additives, synthetic lubricants, chemicals for oil field and fiber industry appUeations,... [Pg.251]

The catalytic ozonation process is fairly general and provides us with a broad platform for modifications of vegetable oils. In this article we have used it to enhance the thermal stability of soy-based lubricants, chemically modified soy oil to introduce primary alcohol groups which can then be further condensed to yield polyurethanes and polyester, and to resolve the oxidative and storage stability of biodiesel. [Pg.98]

There are many applications of PTFE that use one or more of its specific properties self-lubrication, chemical inertia, thermostability, and anti-adhesive capacity. It also finds applications in mechanical engineering, chemical and textile industries as well as in electrical engineering. [Pg.541]


See other pages where Lubrication chemical is mentioned: [Pg.235]    [Pg.96]    [Pg.245]    [Pg.165]    [Pg.172]    [Pg.124]    [Pg.1277]    [Pg.340]    [Pg.653]    [Pg.93]    [Pg.129]    [Pg.118]    [Pg.941]    [Pg.1314]    [Pg.537]    [Pg.537]    [Pg.3673]    [Pg.36]    [Pg.7]    [Pg.189]    [Pg.7]    [Pg.904]    [Pg.228]    [Pg.854]    [Pg.854]    [Pg.854]    [Pg.854]    [Pg.854]    [Pg.854]    [Pg.854]    [Pg.854]   
See also in sourсe #XX -- [ Pg.466 ]




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