HU192197B - Heavy duty grease compositions resistant to high temperature - Google Patents
Heavy duty grease compositions resistant to high temperature Download PDFInfo
- Publication number
- HU192197B HU192197B HU833266A HU326683A HU192197B HU 192197 B HU192197 B HU 192197B HU 833266 A HU833266 A HU 833266A HU 326683 A HU326683 A HU 326683A HU 192197 B HU192197 B HU 192197B
- Authority
- HU
- Hungary
- Prior art keywords
- additive
- weight
- alkyl
- fatty acid
- molecular weight
- Prior art date
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- C—CHEMISTRY; METALLURGY
- C10—PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
- C10M—LUBRICATING COMPOSITIONS; USE OF CHEMICAL SUBSTANCES EITHER ALONE OR AS LUBRICATING INGREDIENTS IN A LUBRICATING COMPOSITION
- C10M169/00—Lubricating compositions characterised by containing as components a mixture of at least two types of ingredient selected from base-materials, thickeners or additives, covered by the preceding groups, each of these compounds being essential
- C10M169/06—Mixtures of thickeners and additives
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- C10M—LUBRICATING COMPOSITIONS; USE OF CHEMICAL SUBSTANCES EITHER ALONE OR AS LUBRICATING INGREDIENTS IN A LUBRICATING COMPOSITION
- C10M117/00—Lubricating compositions characterised by the thickener being a non-macromolecular carboxylic acid or salt thereof
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- C10M—LUBRICATING COMPOSITIONS; USE OF CHEMICAL SUBSTANCES EITHER ALONE OR AS LUBRICATING INGREDIENTS IN A LUBRICATING COMPOSITION
- C10M125/00—Lubricating compositions characterised by the additive being an inorganic material
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- C10M129/00—Lubricating compositions characterised by the additive being an organic non-macromolecular compound containing oxygen
- C10M129/02—Lubricating compositions characterised by the additive being an organic non-macromolecular compound containing oxygen having a carbon chain of less than 30 atoms
- C10M129/26—Carboxylic acids; Salts thereof
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- C10M131/00—Lubricating compositions characterised by the additive being an organic non-macromolecular compound containing halogen
- C10M131/14—Halogenated waxes
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- C10M133/00—Lubricating compositions characterised by the additive being an organic non-macromolecular compound containing nitrogen
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- C10M135/00—Lubricating compositions characterised by the additive being an organic non-macromolecular compound containing sulfur, selenium or tellurium
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- C10M137/00—Lubricating compositions characterised by the additive being an organic non-macromolecular compound containing phosphorus
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- C10M143/00—Lubricating compositions characterised by the additive being a macromolecular hydrocarbon or such hydrocarbon modified by oxidation
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- C10M145/02—Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds
- C10M145/10—Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds containing monomers having an unsaturated radical bound to a carboxyl radical, e.g. acrylate
- C10M145/12—Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds containing monomers having an unsaturated radical bound to a carboxyl radical, e.g. acrylate monocarboxylic
- C10M145/14—Acrylate; Methacrylate
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Abstract
Description
lent, vagy 800-1500 molekulasúlyú 15-19 szénatomos karbonsavészter kopolimert; és adott esetben víztaszító képességet növelő adalékként 0,03-0,06 t% 5000-100 000 molekulasúlyú szilíkonolajat tartalmaz.or a C 15 -C 19 carboxylic acid copolymer having a molecular weight of 800 to 1500; and optionally containing from 0.03 to 0.06% by weight of silicone oil having a molecular weight of 5000 to 100,000 as a water repellent.
Ismeretes, hogy a gördülőcsapágyak és egyéb nagy igénybevételű kenési helyek zsírkenésével kapcsolatos igények a fordulatszám, terhelés és üzemi hőmérséklet növekedésével jelentősen megnőttek. Az ilyen kenési helyek ellátására ma elsősorban lítium-bázisú, valamint alkáli-földfém komplex bázisú gépzsírokat használnak fel. Ezek közül a lítium és lítium-kalcium vegyes bázisú zsírok 125-135 °C között fellépő fázisátalakulási pontjuk miatt viszonylag magas cseppenéspontjuk ellenére instabilissá válnak, ezért 120 °C feletti kenésre nem javasolhatók (145 374 számú magyar,It is known that grease lubrication requirements for roller bearings and other heavy duty lubrication points have increased significantly as RPM, load and operating temperature increase. Today, lithium-based and alkali-metal complex-based machine greases are used primarily for such lubrication points. Of these, lithium and lithium-calcium mixed-base fats, due to their relatively high drop point, become unstable due to their phase transition point of 125-135 ° C, and therefore cannot be recommended for lubrication above 120 ° C.
232 201 számú német szövetségi köztársaságbeli és 3 402 615 számú amerikai egyesült államokbeli szabadalmi leírás).German Patent Nos. 232,201; and U.S. Patent 3,402,615).
A kalcium-komplex, bárium-komplex és benzol bázisú komplex gépzsírok élettartama nem kielégítő, előállításuk hosszadalmas, bonyolult és költséges (163 675 számú magyar, 3 156 944 számú amerikai egyesült államokbeli és 175 330 sz. magyar szabadalmi leírás).Calcium complex, barium complex, and benzene-based complex machine greases have an unsatisfactory life span, are lengthy, complex, and costly (Hungarian Patent Nos. 163,675, 3,656,944 and Hungarian Patent 175,353).
E nehézségek elkerülésére újabban többek között alumíniumbázisú komplexnek nevezett zsírokat használnak fel, amelyek termikus stabilitása a lítium-zsírokénál, reológiai tulajdonságai és élettartama a kalcium-komplex zsírokénál kedvezőbb (2 654 710, 2 719 826, 3 511 781, 3 574 111,To overcome these difficulties, more recently, fats, called aluminum-based complexes, have been used which have a higher thermal stability than lithium fats, rheological properties and a longer life than calcium complex fats (2,654,710, 2,719,826, 3,511,781, 3,574,111,
591 505, 4 132 658 számú amerikai egyesült államokbeli szabadalmi leírás).591,505; U.S. Pat. No. 4,132,658.
Az eddig ismeretessé vált alumínium-komplex zsírok számos előnyük ellenére a korszerű kenési igényeket nem mindenben elégítik ki. Korszerű zsírokkal szemben ugyanis a konzisztenciaállóság és termikus stabilitás mellett az igen hosszú, célszerűen az adott gépelem teljes élettartama alatti termooxidációs stabilitást, a nagy teherbíróképességet (célszerűen nagy nyomáson is jó kenőképességet) és a korrózióállóságot, illetve célszerűen korróziógátlóképességet kell biztosítani.Despite their many advantages, the aluminum complex greases known to date do not fully meet the modern lubrication needs. For modern greases, in addition to consistency and thermal stability, it is necessary to ensure a very long, preferably thermooxidative stability over the entire lifetime of the particular machine element, high load-bearing capacity (preferably high pressure lubricity) and corrosion resistance.
Az eddig ismertté vált alumínium-komplex gépzsírok e három feltételt együtt nem teljesítik és általában legfeljebb egy vagy két fenti követelménynek tesznek eleget. így a 2 719 826 számú amerikai egyesült államokbeli szabadalmi leírás csak a kenőképességgel, a 3 725 275 számú amerikai egyesült államokbeli leírás csak a korrózióvédelemmel, a 3 591 505 számú amerikai egyesült államokbeli szabadalmi leírás csak a termooxidációs stabilitással kapcsolatos követelményt teljesítik. A 3 663 726, 3 620 975 számú amerikai egyesült államokbeli szabadalmi leírások csak a termooxidációs stabilitással kapcsolatos követelményt teljesítik egészükben, a kenőképességgel (továbbiakban EP-tulajdonsággal = Extrém Pressure, azaz nagy nyomáson is jó kenőképesség) kapcsolatos korszerű követelményeket nem teljesítik. Korróziógátló tulajdonsága egyik zsírnak sem kielégítő.Aluminum complex machine greases known to date do not meet these three conditions together and generally meet at most one or two of the above requirements. Thus, U.S. Patent No. 2,719,826 only meets the requirement of lubricity, U.S. Patent No. 3,725,275 only corrosion protection, U.S. Patent No. 3,591,505 only meets the requirement of thermooxidative stability. U.S. Patent Nos. 3,663,726, 3,620,975 fulfill only the requirement of thermooxidative stability in their entirety and do not meet the state of the art requirements for lubricity (hereafter EP property = Extreme Pressure). The anti-corrosion properties of any fat are not satisfactory.
A 78 424 számú lengyel leírásban szereplő kenő2 zsír csak kenőképességjavító és oxidációgátló adalékot tartalmaz, korrózióvédő hatása nincs. A 101 989 számú, szintén lengyel szabadalom korrózióvédő hatású alumínium-komplex kenőzsírt említ, amely nem rendelkezik megfelelő termooxidációs stabilitással.The lubricating grease 2 described in Polish specification No. 78,424 contains only lubricant and antioxidant additives and has no corrosion protection effect. Polish Patent No. 101,989 also refers to aluminum complex corrosion-resistant grease which does not have sufficient thermal oxidation stability.
A felsorolásból látható, hogy az ismert szabadalmi irodalomban nincs utalás a legtöbb követelményt egyidejűleg kielégítő kenőzsírra.It is apparent from the list that no known lubricating grease is present at the same time in the known patent literature.
Találmányunk tárgya a legfontosabb követelményeket egyidejűleg teljesítő olyan gépzsírkompozíció, amely rendelkezik:The present invention relates to a machine grease composition which simultaneously fulfills the most important requirements and which has:
- termikus stabilitással,- thermal stability,
- termo-oxidációs stabilitással,- thermo-oxidation stability,
- kenőképességgel és EP-tulajdonságokkal,- lubricity and EP properties,
- és korróziógátló hatással.and corrosion inhibiting effect.
Azt tapasztaltuk, hogy ha bármely ismert módon a fenti szabadalmaknak megfelelő alapanyagokból előállított alumínium-komplex zsírt az alább felsorolt adalékanyagok célnak megfelelően kiválasztott kombinációjával adalékoljuk, akkor a fenti célkitűzéseket kielégítő magas hőmérsékletet álló, nagy élettartamú korróziógátló kenőzsírt kapunk.It has now been found that by addition of an aluminum complex grease made from the raw materials corresponding to the above patents in any known manner by a suitable combination of the additives listed below, a high temperature, long life corrosion inhibiting lubricating grease is obtained.
A gépzsírkompozíció előállításához szükséges alapolaj 100 °C-on 10-30 mm’/mp viszkozitású ásványolaj finomitvány.The base oil required for the preparation of the machine grease composition is a fine mineral oil having a viscosity of 10-30 mm '/ sec at 100 ° C.
A szappan, illetve gélképzéshez szükséges alapanyagok az ismert eljárásoknak megfelelően lehetnek alumínium-izopropilát (ALIP), a (III) képletű ciklikus alumínium-izopropoxid, ciklikus-alumínium-trioxid-tri( 15-19 szénatomos)acilát.The raw materials for soap and gel formation according to known methods include aluminum isopropylate (ALIP), cyclic aluminum isopropoxide of formula (III), cyclic aluminum trioxide tri (C 15-19) acylate.
A komplexnek nevezett tulajdonképpen vegyes só szappanok előállításához alkalmazott reagensek lehetnek 15-19 szénatomszámú zsírsavak, a ciklusos sav benzoesav. A bázisos kettős só képzéséhez felhasznált reagens szükség szerint víz.The reagents used to make the complex so-called mixed salt soaps may be C15-C19 fatty acids, the cyclic acid benzoic acid. The reagent used to form the basic double salt is water as needed.
A kompozíció funkcionális adalékcsomagja az alább felsorolt és hatásmód szerint csoportosított anyagok közül legalább hármat, de célszerűen 3-5 anyagot tartalmaz.The functional additive package of the composition comprises at least three, but preferably 3-5, of the substances listed below and grouped by mode of action.
Ezek az anyagcsoportok:These groups of substances are:
1. Oxidációgátló adalékok, mégpedig az (I) és/ vagy (II) általános képletű vegyületek - a képletben R jelentése 5-15 szénatomos alkil- vagy 6-15 szénatomos arilcsoport,Antioxidant additives, compounds of the formula I and / or II, wherein R is C 5 -C 15 alkyl or C 6 -C 15 aryl,
Me jelentése cink-, antimon-, ólom- vagy ónatom vagy metilcsoport - vagy fenil-P-naftiíaminMe denotes zinc, antimony, lead or tin or methyl or phenyl-β-naphthylamine
1-5 t% mennyiségben.1-5% by weight.
2. Korróziógátló adalékok, mégpedig bárium(6-14 szénatomos alkil)-szulfonát, bárium- vagy kalcium-(6-14 szénatomos alkil)-(9-l 1 szénatomos aril)-szulfonát, diciklohexil-amin-( 15—19 szénatomos zsírsav)-észter, trietanol-amin-( 15-19 szénatomos zsírsav)-észter vagy nátrium-nitrit 0,25-10 t% mennyiségben.2. Anti-corrosion additives, namely barium (C 6-14 alkyl) sulfonate, barium or calcium (C 6-14 alkyl) (C 9-11 aryl) sulfonate, dicyclohexylamine (C 15-19) fatty acid ester, triethanolamine (C15-C19 fatty acid) ester or sodium nitrite in an amount of 0.25-10% by weight.
3. Szervetlen vagy szerves kenőképességet növelő adalékok, mégpedig molibdén-diszulfid, pehelygrafit vagy kalcium-acetát, illetve bárium- vagy ólom-dinonil-naftalin-szulfonát, (15-19 szénatomos zsírsav)-ólom-só, dibenzil-diszulfid, kénezett 15-19 szénatomos zsírsav vagy trikrezil-foszfát 0,5-10 t% mennyiségben.3. Inorganic or organic lubricants, namely molybdenum disulphide, soft graphite or calcium acetate or barium or lead dinonylnaphthalene sulphonate, (C15-C19-fatty acid) lead salt, dibenzyl disulphide, sulfur -C 19 fatty acid or tricresyl phosphate in an amount of 0.5 to 10% by weight.
4. Szinerézist csökkentő és kolloid stabilitást növelő adalékok, mégpedig 3000-6000 molekulasúlyú policetil-metakrilát, 1 000 000-3 000 000 molekula-214. Synthesis-reducing and Colloidal Stability Additives, namely 3000-6000 Molecular Weight Polyacetyl Methacrylate, 1,000,000-3,000,000 Molecular-21
192 192.192 192.
súlyú poliizobutilén vagy 800-1500 molekulasúlyú 15-19 szénatomos karbonsav-észter kopolimer 0,5-1,0 t% mennyiségben.0.5 to 1.0% by weight of a polyisobutylene or copolymer of 15 to 19 carbon atoms of a weight of from 800 to 1500.
5. Víztaszítóképességet növelő adalékok, mégpedig 5000-100 000 molekulasúlyú szilikonolajok, így polialkil-sziloxánok.5. Water repellent additives, namely silicone oils having a molecular weight of 5,000 to 100,000, such as polyalkylsiloxanes.
A felsorolt adalékcsoportokból a kívánt effektus eléréséhez szükséges, hogy legalább egy vegyület az oxidációgátló adalékok, egy a korróziógátló adalékok, egy a kenőképességet növelő és EP-hatású adalékok közül jelen legyen a kompozícióban. Lehetséges azonban minden csoportból, azaz az említett három csoporton felül további egy, vagy több adalék (polimerek, szilikonok) hozzáadása, amennyiben a használati cél megköveteli.To achieve the desired effect of the listed additive groups, at least one compound must be present in the composition as an antioxidant additive, an anticorrosive additive, an lubricant, and an EP effect additive. However, it is possible to add one or more additives (polymers, silicones) from each of the groups, that is, in addition to the three groups, if the purpose of use requires it.
A fentiekben felsorolt kompozíció alapzsirját ismert módon állítjuk elő, majd az adalékokat a zsírgyártás hűtési fázisában keverjük be, a képződött kompozíciót teljesen lehűtjük, homogenizáljuk, lefejtjük és kiszereljük.The base fat of the above-listed composition is prepared in a known manner and then the additives are blended in the cooling phase of the fat production, the resulting composition is completely cooled, homogenized, peeled off and packaged.
A legmagasabb megengedhető bekeverési hőmérséklet az adalékok bármelyikének bomlási hőmérséklete.The maximum admixture temperature is the decomposition temperature of any of the additives.
A fentiekben ismertetett kenőanyag kompozíció előállítására az alábbiakban példákat ismertetünk, anélkül hogy oltalmi körünket csak a példákban felsorolt anyagokra és koncentrációkra korlátoznánk.The following examples of the preparation of the lubricant composition described above are provided without limiting our scope to the substances and concentrations listed in the examples.
1. példaExample 1
Az alapzsir összetételeThe composition of the base fat
4,6% 15-19 szénatomos zsírsav4.6% C 15-19 fatty acids
2,0% benzoesav2.0% benzoic acid
3,3% Al-izopropilát (ALIP)3.3% Al isopropylate (ALIP)
0,3% víz0.3% water
89,8% 1 : 1 arányú finomított és paraffinmentesített nehéz- és maradványolajkeverék, viszkozitása 100 °C-on legalább 10 mm2/mp89.8% 1: 1 blend of refined and paraffinic heavy and residual oils with a viscosity of at least 10 mm 2 / sec at 100 ° C
100,0%100.0%
Az olaj 2A részében feloldjuk az apróra tört Al-izopropilátot 70-80 ’C-on. Ezután beadagoljuk a sztearinsavat és fokozatosan felmelegítjük az anyagot 120 ’C-ra. Ezen hőmérsékleten tartjuk az anyagot mintegy egy órán át keverés közben. Az olaj megmaradt részében 100-110 ’C-on feloldjuk a benzoesavat és az oldatot beadagoljuk az előzőek szerint kapott reakcióelegybe. A kapott reakcióelegyet ismét egy órán át 120-125 ’C-on tartjuk. Ezután a rendszert lehűtjük 80-90 °C-ra és intenzív keverés közben lassan hozzáadjuk a vizet. A víz beadagolása után folyamatosan emeljük a hőfokot 210 °C-ig, ezen a hőfokon mintegy 20 percig tartjuk a reakcióelegyet és utána lehűtjük 70-80 ’C-ra. A lehűlt zsírhoz hozzáadjuk az alábbi példákban felsorolt adalékokat, ezután a zsírt egalizáljuk, homogenizáljuk és levegőtlenítjük.The oil was dissolved in 2 parts of finely crushed Al isopropoxide at 70-80 ° C. Stearic acid is then added and the material is gradually heated to 120 ° C. The material is maintained at this temperature for about one hour with stirring. The rest of the oil is dissolved in benzoic acid at 100-110 ° C and added to the reaction mixture obtained above. The resulting reaction mixture was again heated to 120-125 ° C for one hour. The system is then cooled to 80-90 ° C and water is added slowly with vigorous stirring. After the addition of water, the temperature was raised continuously to 210 ° C, maintained at this temperature for about 20 minutes and then cooled to 70-80 ° C. To the cooled fat are added the additives listed in the examples below, then the fat is homogenized, homogenized and de-aerated.
Fenti alapzsír 95 kg-jához az alábbi adalékokat adjuk:To 95 kg of base fat above add the following additives:
Zn-di(5-15 szénatomos alkil)-ditiofoszfát 2,5 kgZn-di (C 5 -C 15 alkyl) dithiophosphate 2.5 kg
Pb-Sb-di(5-15 szénatomos alkil)ditiokarbamát 1,5 kgPb-Sb-di (C 5 -C 15 alkyl) dithiocarbamate 1.5 kg
Ba-dinonil-naftalinszulfonát 0,5 kgBadinonyl naphthalene sulfonate 0.5 kg
Poliizobutilén (PiB) 0,5 kg (Ms = 1 000 000-3 000 000)Polyisobutylene (PiB) 0.5 kg (Ms = 1,000,000-3,000,000)
2. példaExample 2
Az 1. példa szerinti alapzsír 94 kg-jához az alábbi adalékokat adjuk:The following additives are added to 94 kg of base fat of Example 1:
Zn-di(5-15 szénatomos alkil)-ditiofoszfát 2,0 kgZn-di (C 5 -C 15 alkyl) dithiophosphate 2.0 kg
Di-benzil-diszulfid 2,0 kgDi-benzyl disulfide 2.0 kg
Di-ciklohexilamin-oleát 1,0 kgDicyclohexylamine oleate 1.0 kg
Policetil-metakrilát (Ms = 3000-6000) 1,0 kgPolyacetyl methacrylate (Ms = 3000-6000) 1.0 kg
3. példaExample 3
Az 1. példa szerinti alapzsir 95 kg-jához az alábbi adalékokat adjuk:To 95 kg of base fat of Example 1, the following additives are added:
Sb-di(5—15 szénatomos alkil)ditiokarbamát 2,2 kgSb-di (C 5 -C 15 alkyl) dithiocarbamate 2.2 kg
Kénezett olajsav 1 ,o kgSulfuric oleic acid 1 kg
Tri-krezil-foszfát 0,25 kgTris-cresyl phosphate 0.25 kg
MoS2 i,0 kgMoS 2 i, 0 kg
Tri-etanolanin-(15-19 szénatomos zsírsav)-észter 0,5 kgTriethanolanine (C15-C19 fatty acid) ester 0.5 kg
Fenil-P-naftilamin 0,05 kgPhenyl-β-naphthylamine 0.05 kg
4. példaExample 4
Az 1. példa szerinti alapzsir 96 kg-jához az alábbi adalékokat adjuk:To 96 kg of base fat of Example 1, the following additives are added:
: 1 Zn-di(5-l 5 szénatomos alkil)-ditiofoszfát és Zn-di(6-15 szénatomos aril)-ditiofoszfát keverék: 1 mixture of Zn-di (C 5 -C 15 alkyl) dithiophosphate and Zn-di (C 6 -C 15 aryl) dithiophosphate
2,4 kg2.4 kg
Klórparaffin 0,5 kgChlorparaffin 0.5 kg
Kalcium-acetát 0,80 kgCalcium acetate 0.80 kg
Nátrium-nitrit 0,25 kgSodium nitrite 0.25 kg
Szilikonolaj 0,05 kgSilicone oil 0.05 kg
5. példaExample 5
Az alapzsír összetétele:The composition of the base fat:
4,9% 15-19 szénatomos zsírsav4.9% of C15-19 fatty acids
1,7% benzoesav1.7% benzoic acid
3,6% ciklikus Al-izopropoxid3.6% cyclic Al isopropoxide
89,8% SAE 40-es bázisolaj, viszkozitása 100 ’Con 13-15 mmJ/mp.89.8% SAE 40 Base Oil, Viscosity 100 'Con 13-15 mm J / sec.
Az alapolaj % részében 70-80 ’C-on feloldjuk a receptúra szerinti mennyiségű sztearint és benzoesavat, a hőmérsékletet 100 ’C-ra emeljük, és beadagoljuk a maradék lA olajban oldott alumínium-izopropoxidot. Intenzív keverés és cirkuláltatás közben a hőmérsékletet 205 ’C-ig emeljük, utána egyenletes sebességgel lehűtjük a reakcióelegyet 70^80 ’C-ra. A lehűlt alapzsírhoz hozzáadjuk az alább felsorolt adalékokat, ezután homogenizáljuk és légtelenítjük.Part of the base oil of 70-80% ° C and the dissolved amount of stearin acid of the formula, the temperature was 100 ° C is increased, and by addition of the residual oil dissolved in l aluminum isopropoxide. Under vigorous stirring and circulation, the temperature was raised to 205 ° C, then the reaction mixture was cooled to 70-80 ° C at a constant rate. The following additives are added to the cooled base fat, then homogenized and vented.
A fenti alapzsír 96,0 kg-jához az alábbi adalékokat adjuk:To 96.0 kg of the above base fat add the following additives:
192 197192 197
6. példaExample 6
Az 5. példa alapzsírjának 98 kg-jához az alábbi adalékokat adjuk:The following additives are added to 98 kg of base fat of Example 5:
Cink-di(5-15 szénatomos alkil)ditiofoszfát 1,0 kgZinc di (C 5 -C 15 alkyl) dithiophosphate 1.0 kg
Báriumszulfonát (Ms = 800-1200) 1,0 kgBarium sulfonate (Ms = 800-1200) 1.0 kg
7. példaExample 7
Az alapzsír összetétele 2,43% 15-19 szénatomos zsírsav 0,84% benzoesavThe composition of the base fat is 2.43% C 15-19 fatty acids 0.84% benzoic acid
1,81 % ciklikus Al-izopropoxid1.81% cyclic Al isopropoxide
47,50% SAE 50 bázisolaj, viszkozitása 100 °C-on47.50% SAE 50 base oil, viscosity 100 ° C
17-20 mm2/mp.17-20 mm 2 / sec.
47,42% Bright Stock, viszkozitása 100 °C-on 26-30 mm2/mp.47.42% Bright Stock, Viscosity at 100 ° C 26-30 mm 2 / sec.
A gyártási technológia megegyezik az 5. példában leírtakkal. A kapott alapzsír 96 kg-jához az alábbi adalékokat adjuk:The manufacturing technology is the same as described in Example 5. To 96 kg of the resulting base fat add the following additives:
Sb-di(5—15 szénatomos alkil)ditiokarbamát 2,5 kgSb-di (C 5 -C 15 alkyl) dithiocarbamate 2.5 kg
Pb-sztearát 1,0 kgPb stearate 1.0 kg
Ba-(6-14 szénatomos alkil)-szulfonát , 0,5 kgBa- (C 6 -C 14 alkyl) sulfonate, 0.5 kg
8. példaExample 8
Az alapzsír összetétele:The composition of the base fat:
0,3% 15-19 szénatomos zsírsav 1,7% benzoesav0.3% C 15-19 fatty acid 1.7% benzoic acid
10,9% Al-trisztearát10.9% Al-tristearate
85,50% bázisolaj (lásd 1. példa alapzsír bázisolaja).85.50% base oil (see Example 1 base fat base oil).
A gyártási technológia megegyezik az 5. példában leírtakkal. A kapott alapzsír 96,5 kg-jához az alábbi adalékokat adjuk:The manufacturing technology is the same as described in Example 5. To the 96.5 kg of base fat obtained, the following additives are added:
Metil-di(5-15 szénatomos alkil)ditiokarbamát 2,0 kgMethyl di (C 5 -C 15 alkyl) dithiocarbamate 2.0 kg
15-19 szénatomos zsírsav-Pb-só 0,5 kgC15-C19 fatty acid Pb salt 0.5 kg
Ba-(6-14 szénatomos alkil)-szulfonát 1,0 kgBa- (C 6-14 alkyl) sulfonate 1.0 kg
9. példaExample 9
A 8. példa alapzsírjának 87 kg-jához az alábbi adalékokat adjuk:The following additives are added to 87 kg of base fat of Example 8:
Pehely grafit 10,0 kgFluff graphite 10.0 kg
Sn-di(5-15 szénatomos alkil)ditiokarbamát 2,45 kgSn-di (C 5 -C 15 alkyl) dithiocarbamate 2.45 kg
Pb-dinonil-naftalin-szulfonát 0,5 kgPb-dinonylnaphthalenesulfonate 0.5 kg
Szilikonolaj 0,05 kgSilicone oil 0.05 kg
A példaThe example
Az 1. példa alapzsírjának 96 kg-jához az alábbi adalékokat adjuk:The following additives are added to 96 kg of base fat of Example 1:
Kénezett olajsav 2,0 kgSulfuric oleic acid 2.0 kg
Pb-di(5-15 szénatomos alkil)ditiokarbamát 2,0 kgPb-di (C 5 -C 15 alkyl) dithiocarbamate 2.0 kg
B példaExample B
Az 5. példa alapzsírjának 96,6 kg-jához az alábbi adalékokat adjuk:The following additives are added to 96.6 kg of the base fat of Example 5:
: 1 Zn-dialkil-ditiofoszfát és Zn-diaril-ditiofoszfát keverék 2,4 kg: 1 mixture of Zn-dialkyl dithiophosphate and Zn-diaryl dithiophosphate 2.4 kg
TEA-04-19 szénatomos zsírsav)-észter (Trietanolamin-(14-19 szénatomos zsírsav)-észter)TEA-04-19 fatty acid ester (Triethanolamine (C 14-19 fatty acid) ester)
10. példaExample 10
Az 1. példa alapzsírjának 95,5 kg-jához az alábbi adalékokat adjuk:The following additives are added to 95.5 kg of the base fat of Example 1:
Zn-dialkil-ditiokarbamát 0,75 kgZn-dialkyl dithiocarbamate 0.75 kg
Metilén-di(4-6 szénatomos alkil)ditiokarbamát 2,25 kgMethylene di (C 4 -C 6 alkyl) dithiocarbamate 2.25 kg
Ba-dinonil-naftalin-szulfonát 0,1 kgBadinonyl naphthalene sulfonate 0.1 kg
Poliizobutilén (Ms = 1 000 000-3 000 000) 0,5 kgPolyisobutylene (Ms = 1,000,000-3,000,000) 0.5 kg
Az 1-10. példákban a zsírok vizsgálati eredményeit összehasonlítva az A és B példa hasonló eredményeivel látható, hogy ha a legfontosabb három adalék bármelyike hiányzik, vagy a korrózióállóságot, vagy a megfelelő EP-követelményt nem teljesíti a zsír.1-10. Comparing the fat test results of Examples 1 to 4 with those of Examples A and B, it is shown that if any of the three most important additives are missing, the fat does not meet the corrosion resistance or the corresponding EP requirement.
A példák szerinti kenőzsírok jellemzőiCharacteristics of the lubricating greases according to the examples
Szabadalmi igénypontA patent claim
Claims (3)
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HU833266A HU192197B (en) | 1983-09-22 | 1983-09-22 | Heavy duty grease compositions resistant to high temperature |
DE3431585A DE3431585A1 (en) | 1983-09-22 | 1984-08-28 | Lubricating grease compositions which are resistant to high temperatures and high stresses |
CH4513/84A CH662127A5 (en) | 1983-09-22 | 1984-09-20 | RESISTANT LUBRICANT COMPOSITIONS AT HIGH TEMPERATURES AND STRONG LOADS. |
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HU833266A HU192197B (en) | 1983-09-22 | 1983-09-22 | Heavy duty grease compositions resistant to high temperature |
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HU (1) | HU192197B (en) |
Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5385682A (en) * | 1990-05-15 | 1995-01-31 | Exxon Research & Engineering Co. | Grease composition |
JP2989311B2 (en) * | 1991-04-30 | 1999-12-13 | 協同油脂株式会社 | Grease composition for constant velocity joints |
US5358664A (en) * | 1992-10-15 | 1994-10-25 | Caschem, Inc. | Gelled oil compositions |
WO2010018148A2 (en) * | 2008-08-11 | 2010-02-18 | Shell Internationale Research Maatschappij B.V. | Lubricating composition |
RU2738108C1 (en) * | 2020-07-27 | 2020-12-08 | Общество с ограниченной ответственностью Элмашпром | Electroconductive lubricant for integrated thread protection in earthing switches (versions) |
-
1983
- 1983-09-22 HU HU833266A patent/HU192197B/en not_active IP Right Cessation
-
1984
- 1984-08-28 DE DE3431585A patent/DE3431585A1/en not_active Withdrawn
- 1984-09-20 CH CH4513/84A patent/CH662127A5/en not_active IP Right Cessation
Also Published As
Publication number | Publication date |
---|---|
DE3431585A1 (en) | 1985-04-11 |
CH662127A5 (en) | 1987-09-15 |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
HU90 | Patent valid on 900628 | ||
HPC4 | Succession in title of patentee |
Owner name: KOMAROMI KOEOLAJIPARI VALLALAT, HU |
|
HPC4 | Succession in title of patentee |
Owner name: MOL MAGYAR OLAJ- ES GAZIPARI RT., HU |
|
HMM4 | Cancellation of final prot. due to non-payment of fee |