Lubricant composition based on natural and renewable raw materials
The invention relates to a lubricant composition based on modified, natural and renewable raw materials, the viscosity of which can be adjusted according to the application. The invention relates more particularly to biodegradable lubricant compositions.
1. A lubricant composition comprising
(a) 50 to 90 wt % a modified, native triglyceride-based oil with a oleic acid content of at least 60%, chosen from the group consisting of sunflower oil, rapeseed oil, castor oil, linseed oil, corn oil, safflower oil, soybean oil, flaxseed oil, peanut oil, “lesquerella” oil, palm oil, olive oil, and mixtures of the aforementioned oils, wherein the native oil is made to react with a peroxide, and the unsaturated covalent bonds are linked by a radical addition reaction, and
(b) 5 to 10 wt % additives or additive mixtures,
(c) 5 to 30 wt % thickening agent,
wherein the kinematic viscosity of the modified native oil ranges from 100 to 1250 mm 2 /sec at 40° C.
2. The lubricant composition of claim 1 , also containing
(d) 5 to 10 wt % solid lubricants.
3. The lubricant composition according to claim 1 , in which 5 to 45 wt % of the native modified oil is replaced by an additional crude oil component or multiple crude oil components.
4. The lubricant composition according to claim 1 , in which the thickening agent is chosen from the group consisting of urea, aluminum complex soaps, metallic simple soaps of elements of the 1st and 2nd main groups of the periodic table, metallic complex soaps of elements of the 1st and 2nd main groups of the periodic table, bentonite, sulfonate, silicate, polyimide or PTFE, and a mixture of the aforementioned thickening agents.
5. The lubricant composition according to claim 2 , in which the solid lubricant is chosen from the group consisting of graphite, boron nitride, MoS 2 , WS 2 , SnS, SnS 2 , or Bi 2 S 3 , and a mixture of the aforementioned solid-lubricants.
6. The lubricant composition according to claim 1 , in which the additive or additive mixture is chosen from the group consisting of butyl hydroxy toluene, dialkyl diphenylamines, alkylated phenyl-alpha-naphthylamines, polymeric trimethyl dihydroquinoline, sulfurized fatty acid esters, diphenyl cresyl phosphate, amine-neutralized phosphates, alkylated and non-alkylated triaryl phosphates, alkylated and non-alkylated triaryl thiophosphates, zinc-dialkyl dithiophosphates, carbamates, thiocarbamates, zinc-dithiocarbamates, dimercaptothiadiazole, succinic acid semi-ester, calcium sulfonates, benzotriazole derivatives, K-pentaborates, Na-thiosulfates, and Na-pyrophosphates.
7. The lubricant composition according to claim 3 , in which the crude oil component is chosen from the group consisting of paraffin-based and naphthene-based mineral oils, synthetic hydrocarbons, poly-alpha olefin, poly-internal olefin, ethylene-propylene copolymers, group III oils, synthetic esters, polyalkylene glycols and alkyl aromatics, and mixtures thereof.
8. The lubricant composition according to claim 1 , in which the native oil is made to react with an aromatic or aliphatic peroxide is chosen from the group consisting of 1,3-bis(tert-butylperoxy-isopropyl)benzene, 1,4-bis(tert-butylperoxy-isopropyl)benzene, dicumyl peroxide, tert-butyl cumyl peroxide, 2,5-dimethyl-2,5-di-(tert-butylperoxy)hexane, n-butyl-4,4′-di(tert-butylperoxy)valerate, 1,1′-di-(tert-butylperoxy)-3,3,5-trimethylcyclohexane, and 2,5-dimethyl-2,5-di-(tert-butylperoxy)hexane and di-tert-butyl peroxide.