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Lubricant Basestocks Properties

Uses Pigment wetting agent/dispersant for interior and exterior waterborne coatings, latexes improves color development and acceptance for high oil absorbing pigments lubricant basestock Properties Amber clear liq. complete sol. in water sp.gr. 1.00 0.02 ... [Pg.830]

Hwang, H.S. A. Adhvaryu S.Z. Erhan. Preparation and properties of lubricant basestocks from epoxidized soybean oil and 2-ethylhexanol./. Am. Oil Chem. Soc. 2003, 80, 811-815. [Pg.608]

Empirical C29H56O4 Properties M.w. 468.76 Toxicology TSCA iisted Uses Lubricant basestock poiymer additive, plasticizer... [Pg.1356]

CH3(CH2)i iCH20C0(CH2)4C00CH2(CH2)i 1CH3 Properties M.w. 510.84 Uses Lubricant basestock for crankcase and compressor oils fiber lubricant in yarns plasticizer for flexible PVC, adhesives textile surfactant emollient... [Pg.1557]

Tri-2-ethylhexyl pyromellitate CAS 3126-80-5 EINECS/ELINCS 221-508-0 Empirical C42H70O8 Properties M.w. 703.01 Uses Lubricant basestock Trade Name Synonyms Bisolube TOPM [Laporte Perf. Chems. http //www.iaporteperform.com]... [Pg.4524]

Due to an increasing demand in performance of lubricants, characterizing a basestock is often complex and requires the measurement of many chemical and physical properties. Viscosity, which measures the fluidity of the basestock ranges from 2 to 20 cSt 100°C for Neutrals and can be as high as 32cSt for Bright stocks. The most common method used is Brookfield viscosity. The viscosity Index or VI... [Pg.168]

Most modern marine lubricants are prepared from good-quality paraffinic base oils although, traditionally, naphthenic basestocks were preferred. Paraffinic base oils have better oxidation resistance, a higher viscosity index and lower volatility but give harder carbon deposits. However, modern additive technology can modify the hard deposits allowing paraffinic base oils to be used and thereby making use of their other superior properties. [Pg.397]

FIGURE 3.19 VI as a function of CMRP content for group II and in base stocks. Source V. J. Gatto M. A. Grina, T. L. Tat, H. T. Ryan. The Influence of Chemical Structure on the Physical and Performance Properties of Hydrocracked Basestocks and Polyalphole-fins, Journal of Synthetic Lubrication 19 13-18 (2002). With permission. [Pg.70]

Asadauskas, S. J.M. Perez J.L. Duda. Lubrication properties of castor oil—Potential basestock for... [Pg.602]

Empirical C24H38O4 Formula (C8Hi700C)2CeH4 Properties Colorless viscous liq. insol. in water m.w. 390 dens. 0.965 (25 C) b.p. 227-234 C (4.5 mm) f.p. -60 C flash pt. 295 F Precaution Combustible NFPA Health 0, Flammability 1, Reactivity 0 Uses Plasticizer for plastics and rubbers incl. vinyl and cellulosic resins basestock for lubricants... [Pg.1250]

Uses Basestock for syn. lubricants (gear oils, engine lubes, compressor, hydraulic fluids, mandrel/mold release, textile fiber, machine, greases) foam control agent plasticizer chem. Intermediate rubber mold release agent Properties LIq. Insol. In water sp.gr. 0.9831 vise. 40.5 cSt (40 C), 8.1 cSt (100 C) pour pt. 48 C ref. Index 1.4444... [Pg.1099]

Uses Emulsifier for vacuum distilled, solv.-refined, and hydrotreated naphthenic basestocks lubricant dispersant Features Contains TEA and MEA Properties Vise. 3200 SUS (100 F) pH 9.2 (5% of blend)... [Pg.1343]


See other pages where Lubricant Basestocks Properties is mentioned: [Pg.1476]    [Pg.1483]    [Pg.4538]    [Pg.18]    [Pg.80]    [Pg.167]    [Pg.168]    [Pg.3237]    [Pg.103]    [Pg.2234]    [Pg.2265]    [Pg.79]    [Pg.80]    [Pg.101]    [Pg.66]    [Pg.1872]    [Pg.1872]    [Pg.1872]    [Pg.1872]   
See also in sourсe #XX -- [ Pg.3 ]




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