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Dibutyl azelate

Plastisan B. See Melamine cyanurate Plastistab 2900. See Epoxy resin Plastoflex 2307. See Epoxidized soybean oil Plastolein 9048. See Dibutyl azelate Plastolein 9051. See Di-n-hexyl azelate Plastolein 9058. See Di octyl azelate Plastolein 9232. See Epoxidized soybean oil Plastolein 9404. See PEG-3 dipelargonate Plastopal ATB, AWB, Plastopal BTA, BTB, BTI, BTM, Plastopal CB, CBX, HVB, Plastopal FIB, FA, Plastopal . See Urea-formaldehyde resin... [Pg.3389]

Diesters. Many of the diester derivatives are commercially important. The diesters are important plasticizers, polymer intermediates, and synthetic lubricants. The diesters of azelaic and sebacic acids are useflil as monomeric plasticizing agents these perform weU at low temperatures and are less water-soluble and less volatile than are diesters of adipic acid. Azelate diesters, eg, di- -hexyl, di(2-ethylhexyl), and dibutyl, are useflil plasticizing agents for poly(vinyl chloride), synthetic mbbers, nitroceUulose, and other derivatized ceUuloses (104). The di-hexyl azelates and dibutyl sebacate are sanctioned by the U.S. Food and Dmg Administration for use in poly(vinyl chloride) films and in other plastics with direct contact to food. The di(2-ethylhexyl) and dibenzyl sebacates are also valuable plasticizers. Monomeric plasticizers have also been prepared from other diacids, notably dodecanedioic, brassyflc, and 8-eth5lhexadecanedioic (88), but these have not enjoyed the commercialization of the sebacic and azelaic diesters. [Pg.64]

A lot of plasticizers typically with two ester groups have been described in the literature [39] including aliphatic diesters of phthalic acid, like diethyl phthalate, and diesters of aliphatic dicarboxylic acids like dibutyl adipate or azelate [22] as well as glycerol triacetate (triacetin), citrate esters, and phosphates [39]. Although these kind of plasticizers work well for decades in various applications, the accelerated retention test shows [39] that exudation and volatilization must be taken into account and can cause changes in the material performance. Thus, attempts have been made to synthesize long-chain esters of cellulose (LCCEs) with acid chain lengths of up to 20 carbon atoms (see [21] and references cited therein), which could be processed without external plasticizers. Positive results are reported for cellulose acetate hexanoate and cellulose acetate nonanoate [21] but these esters did not go into production. [Pg.49]

Acetyl tri-n-hexyl citrate Bis (2-ethylhexyl) maleate Butyl cyclohexyl phthalate Butyidecyl phthalate n-Butyl epoxystearate Butyl oleate n-Butyl phthalyl-n-butyl glycolate Coumarone/indene resin Cyclohexyl epoxystearate Decyltridecyl phthalate Diallyl phthalate Dibutoxyethoxyethyl formal Dibutoxyethoxyethyl glutarate Dibutoxyethyl azelate Dibutoxyethyl phthalate Dibutyl adipate Dicyclohexyl phthalate ... [Pg.5547]

Dibutoxyethyl azelate Dibutyl adipate Diisobutyl adipate Diisodecyl glutarate Diisooctyl dodecanedioate Dioctyl dodecanedioate Dioctyl terephthalate chlorinated Dipropylene glycol dibenzoate Methyl tallate Sucrose benzoate Trimethylolethane tricaprylate-caprate Trimethylolpropane triheptanoate plasticizer, vinyl... [Pg.5550]

Figures 10.45 and 10.46 show that the effect of plasticizer concentration increase cannot be described by a simple relationship. Some plasticizers (e.g., dioctyl azelate, dioctyl adipate, and dioctyl phthalate) increase stability of PVC composition when their concentrations increase and other plasticizers (e.g., benzyl butyl phthalate, dibutyl phthalate, diphenyl octyl phosphate, and tricre-syl phosphate) decrease stability of plastificate when their concentration increases. Both groups display linear relationships with good correlation coefficients. Comparing two... Figures 10.45 and 10.46 show that the effect of plasticizer concentration increase cannot be described by a simple relationship. Some plasticizers (e.g., dioctyl azelate, dioctyl adipate, and dioctyl phthalate) increase stability of PVC composition when their concentrations increase and other plasticizers (e.g., benzyl butyl phthalate, dibutyl phthalate, diphenyl octyl phosphate, and tricre-syl phosphate) decrease stability of plastificate when their concentration increases. Both groups display linear relationships with good correlation coefficients. Comparing two...
Di-(2-ethyUiexyl) azelate, tri-(2-ethylhexyl) trimellitate, dibutyl sebacate No information located ... [Pg.602]

Surface lubricants used in the manufacture of metallic articles acetyl tributyl citrate, acetyl tiiethyl citrate, butyl stearate, castor oil, dibutyl sebacate, di-(2-ethylhexyl) azelate, di-(2-ethylhexyl) sebacate, diisodecyl phthalate, di-(2-ethyl-hexyl) phthalate, diethyl phthalate, di-n-octyl sebacate, epoxidi soybean oil, polyisobutylene (minimum molecular weight 300),... [Pg.627]

DBF = dibutyl phthalate, BBP = butyl benzyl phthalate, TCP = tricresyl phthalate, DOA = dioctyl adipate, DOS = dioctyl seba-cate, DIDA = diisodecyl adipate, DOZ = dioctyl azelate, DTDP = ditridecyl phthalate. [Pg.8951]


See other pages where Dibutyl azelate is mentioned: [Pg.331]    [Pg.1232]    [Pg.6207]    [Pg.74]    [Pg.74]    [Pg.331]    [Pg.1232]    [Pg.6207]    [Pg.74]    [Pg.74]    [Pg.3]    [Pg.3]    [Pg.4]    [Pg.128]    [Pg.1]    [Pg.3]    [Pg.44]    [Pg.45]    [Pg.3]    [Pg.3]    [Pg.605]   
See also in sourсe #XX -- [ Pg.49 ]




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4.5- Dibutyl

Azelate

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