DE1284012B - Lubricating grease mixtures - Google Patents

Lubricating grease mixtures

Info

Publication number
DE1284012B
DE1284012B DES82042A DES0082042A DE1284012B DE 1284012 B DE1284012 B DE 1284012B DE S82042 A DES82042 A DE S82042A DE S0082042 A DES0082042 A DE S0082042A DE 1284012 B DE1284012 B DE 1284012B
Authority
DE
Germany
Prior art keywords
weight
lubricating
antimony
clays
lubricating grease
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
DES82042A
Other languages
German (de)
Inventor
Caruso Gerald Paul
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shell Internationale Research Maatschappij BV
Original Assignee
Shell Internationale Research Maatschappij BV
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shell Internationale Research Maatschappij BV filed Critical Shell Internationale Research Maatschappij BV
Priority claimed from US395024A external-priority patent/US3370007A/en
Publication of DE1284012B publication Critical patent/DE1284012B/en
Pending legal-status Critical Current

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Classifications

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    • C10PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
    • C10MLUBRICATING COMPOSITIONS; USE OF CHEMICAL SUBSTANCES EITHER ALONE OR AS LUBRICATING INGREDIENTS IN A LUBRICATING COMPOSITION
    • C10M169/00Lubricating 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
    • C10M169/06Mixtures of thickeners and additives
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    • C10M2201/00Inorganic compounds or elements as ingredients in lubricant compositions
    • C10M2201/02Water
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    • C10M2201/00Inorganic compounds or elements as ingredients in lubricant compositions
    • C10M2201/06Metal compounds
    • C10M2201/062Oxides; Hydroxides; Carbonates or bicarbonates
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    • C10M2201/00Inorganic compounds or elements as ingredients in lubricant compositions
    • C10M2201/06Metal compounds
    • C10M2201/065Sulfides; Selenides; Tellurides
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    • C10M2201/06Metal compounds
    • C10M2201/065Sulfides; Selenides; Tellurides
    • C10M2201/066Molybdenum sulfide
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    • C10M2201/00Inorganic compounds or elements as ingredients in lubricant compositions
    • C10M2201/08Inorganic acids or salts thereof
    • C10M2201/082Inorganic acids or salts thereof containing nitrogen
    • C10M2201/083Inorganic acids or salts thereof containing nitrogen nitrites
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    • C10M2201/00Inorganic compounds or elements as ingredients in lubricant compositions
    • C10M2201/10Compounds containing silicon
    • C10M2201/102Silicates
    • C10M2201/103Clays; Mica; Zeolites
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    • C10M2201/14Inorganic compounds or elements as ingredients in lubricant compositions inorganic compounds surface treated with organic compounds
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    • C10M2203/00Organic non-macromolecular hydrocarbon compounds and hydrocarbon fractions as ingredients in lubricant compositions
    • C10M2203/10Petroleum or coal fractions, e.g. tars, solvents, bitumen
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    • C10M2207/16Naphthenic acids
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    • C10M2211/02Organic non-macromolecular compounds containing halogen as ingredients in lubricant compositions containing carbon, hydrogen and halogen only
    • C10M2211/022Organic non-macromolecular compounds containing halogen as ingredients in lubricant compositions containing carbon, hydrogen and halogen only aliphatic
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Description

Es ist bekannt, Schmieröle mit Tonen, z. B. mit bis 0,6 Äquivalenten der genannten Fettsäuren (georganophilen Tonen zu verdichten. Solche Schmier- . sättigt und ungesättigt) und einem Gemisch aus fette haben aber, falls man ihnen Hochdruckzusätze "1 Äquivalent Polyäthylenpolyaminen, wobei 20 bis beimischt, den Nachteil,, daß manchmal eine uner- 80 Gewichtsprozent des Gemisches Polyamine umwünschte Erweichung der Schmierfette eintritt. Weiter 5 fassen, die 2 bis 3 Stickstoffatome enthalten, während ist auch der Zusatz von Erdalkalicarbonaten zu die restliche Fraktion Polyäthylenpolyamin mit einem Schmierölen bekannt. Der Zusatz von Erdalkali- durchschnittlichen Molgewicht im Bereich von 200 bis carbonaten zu mit organophilen Tonen verdichteten 500 darstellt.It is known to treat lubricating oils with clays, e.g. B. with up to 0.6 equivalents of the fatty acids mentioned (georganophilic To compact clays. Such lubricating. saturated and unsaturated) and a mixture of But fats have, if you give them extreme pressure additives "1 equivalent of polyethylene polyamines, with 20 to admixed, the disadvantage, that sometimes an unwanted 80 percent by weight of the mixture polyamines Softening of the grease occurs. Next take 5 that contain 2 to 3 nitrogen atoms while is also the addition of alkaline earth carbonates to the remaining fraction of polyethylene polyamine with a Known lubricating oils. The addition of alkaline earth average molecular weight in the range from 200 to carbonates to 500 compacted with organophilic clays.

Schmierölen ist dagegen nicht bekannt. Andere geeignete Aminoamide sind AminoamideLubricating oils, on the other hand, are not known. Other suitable amino amides are amino amides

Es wurde nun gefunden, daß Schmierfette, die mit io von Polyaminooxyverbindungen mit durchschnittlich oleophilen Tonen geliert worden sind, hinsichtlich mindestens 3 Aminostickstoffatomen und Oxygruppen. ihrer Hochdruckeigenschaften bzw. Belastbarkeit eine ; Die bevorzugten Ausgangsstoffe zur Herstellung solsynergistische Wirksamkeit aufweisen, wenn ■ man eher Polyaminooxyverbindungen sind Epichlorhydrin ihnen Erdalkalicarbonate und gegebenenfalls MoS2, und Ammoniak.It has now been found that lubricating greases which have been gelled with polyaminooxy compounds having an average of oleophilic clays with regard to at least 3 amino nitrogen atoms and oxy groups. their high pressure properties or resilience ; The preferred starting materials for the preparation have sol-synergistic effectiveness if one is more likely to use polyaminooxy compounds, epichlorohydrin, alkaline earth metal carbonates and optionally MoS 2 , and ammonia.

amorphes Antimonsulfid und/oder Bleinaphthenat 15 Die zur Herstellung von Aminoamiden zu verwenzusetzt. . denden Fettsäuren haben 10 bis 22 Kohlenstoffatome.amorphous antimony sulfide and / or lead naphthenate 15 which are used for the production of aminoamides. . The fatty acids have 10 to 22 carbon atoms.

Wenn das Erdalkalicarbonat der einzige Hoch- Wenn mindestens 50% der Säuren ungesättigt sind, druckzusatz ist, wird «s in Mengen von 3 bis 7,5 Ge- können solche mit 17 bis 19 Kohlenstoffatomen verwichtsprozent zugesetzt. Bei Verwendung in Verbin- wendet werden. Wenn jedoch die gesättigten Säuren dung mit den MoS2 oder Sb2S3 beträgt die Menge des ao überwiegen, sollen die Säuren 10 bis 16 Kohlenstoff-Carbonats 0,03 bis 1,5 Gewichtsprozent. atome besitzen. Man kann auch ein Gemisch vonIf the alkaline earth carbonate is the only high pressure additive, if at least 50% of the acids are unsaturated, those with 17 to 19 carbon atoms are added in amounts of 3 to 7.5 percent by weight. When used in conjunction. However, if the saturated acids form with the MoS 2 or Sb 2 S 3 , the amount of ao predominate, the acids should be 10 to 16 carbon carbonate 0.03 to 1.5 percent by weight. own atoms. You can also use a mixture of

Als Erdalkalicarbonate werden Calcium-, Magne- Fettsäuren verwenden.Calcium and Magne fatty acids are used as alkaline earth carbonates.

shim- oder Bariumcarbonat, vorzugsweise in reinem Weitere Säuren sind ölsäure und Tallölsäuren dershim or barium carbonate, preferably in pure form. Other acids are oleic acid and tall oil acids

Zustand, verwendet. Kalk wird jedoch bevorzugt. Capron-, Undecyl-, Lauryl-, Myristin- und Palmitin-AIs SB2S3 ist ein amorphes Antimonsulfid zu ver- 35 säure. Die Aminoamide werden durch Erhitzen der wenden. Ein kristallines Antimonsulfid dagegen Fettsäuren und Polyamine bei 125 0C und 250°C in würde bei der Anwendung ein Scheuern an den 0,5 und 16 Stunden hergestellt.
Metallteilen verursachen. Die amorphen Antimon- Als Schmieröle werden raffinierte, unraffinierte oder
Condition, used. However, lime is preferred. Capron, undecyl, lauryl, myristic and palmitin AIs SB 2 S 3 is an amorphous antimony sulfide too acidic. The aminoamides are made by heating the turn. A crystalline antimony sulfide, however, fatty acids and polyamines at 125 0 C and 250 ° C would be produced in a chafing to the 0.5 and 16 hours at the application.
Cause metal parts. The amorphous antimony As lubricating oils are refined, unrefined or

sulfide (z. B. Antimontrisulfid, Antimontetrasulfid oder halb raffinierte, paraffinische, naphthenische oder Antimonpentasulfid und Gemische dieser) schwanken 30 asphaltische Mineralöle mit einer Viskosität von 50 in der Farbe von Gelb bis Grau. Sie werden z.B. bis 4000 SUS bei 38° C oder auch synthetische Schmiererhalten durch Fällen des Antimonsulfids aus einer öle verwendet.sulfides (e.g. antimony trisulfide, antimony tetrasulfide or semi-refined, paraffinic, naphthenic or Antimony pentasulphide and mixtures of these) vary from 30 asphaltic mineral oils with a viscosity of 50 in color from yellow to gray. They are obtained e.g. up to 4000 SUS at 38 ° C or synthetic lubricants used by precipitating the antimony sulfide from an oil.

wäßrigen Lösung eines wasserlöslichen Antimonsalzes, Andere übliche Schmierzusätze, z. B. aromatischeaqueous solution of a water-soluble antimony salt, other common lubricating additives, e.g. B. aromatic

wie Antimonylchlorid, durch Behandlung mit einem Amine, Alkalinitrite, sowie die Reaktionsprodukte aus Sulfid, wie Natriumsulfid oder Schwefelwasserstoff. 35 Terpenen mit einem phosphorhaltigen Halogenidsuch as antimonyl chloride, by treatment with an amine, alkali nitrites, as well as the reaction products Sulfide, such as sodium sulfide or hydrogen sulfide. 35 terpenes with a phosphorus halide

Das Bleinaphthenat erfüllt die Funktion, daß es die können ebenfalls zugesetzt werden.
Hochdruckeigenschaften der Schmierfette, die unter Die Schmierfette werden nach bekannten Methoden
The lead naphthenate fulfills the function that it can also be added.
High pressure properties of the lubricating greases, which are The lubricating greases are according to known methods

trockenen Bedingungen erreicht werden, auch unter durch Mischen hergestellt.dry conditions can be achieved even under produced by mixing.

nassen Bedingungen aufrechterhält und manchmal Bevorzugte Schmierfette sind solche, welche einenmaintains wet conditions and sometimes preferred lubricating greases are those which have a

sogar in unerwarteter Weise noch höhere Hochdruck- 40 überwiegenden Anteil an mineralischem Schmieröl, eigenschaften herbeiführt. Die Menge des Bleinaph- 2,5 bis 10 Gewichtsprozent Ton, 0,25 bis 1 % Erdthenats soll 0,1 und 0,75%, berechnet auf das Gewicht alkalicarbonat, 0,0 bis 1,25, vorzugsweise 0,25 bis 1,0, des Schmierfettes, betragen. Gewichtsprozent Sulfid, 0,0 bis 0,65 Gewichtsprozenteven unexpectedly higher high pressure 40 predominant share of mineral lubricating oil, properties. The amount of lead naph- 2.5 to 10 weight percent clay, 0.25 to 1% earth thenate should be 0.1 and 0.75%, calculated on the weight of alkali carbonate, 0.0 to 1.25, preferably 0.25 to 1.0, of the grease. Weight percent sulfide, 0.0 to 0.65 weight percent

Als Ausgangstone für die zur Herstellung der oleo- Bleinaphthenat und 2,5 bis 5 Gewichtsprozent einer philen Tone dienen Montmorillonite, wie Natrium-, 45 hydrophoben Aminoverbindung enthalten, wobei das Kalium-, Lithium- und die übrigen Bentonite, speziell Gewicht von Ton und Aminoverbindung ausgedrückt vom Typ des Wyoming Bentonite. Bevorzugt werden wird als getrennte Komponenten, unabhängig davon, die Magnesiumbentonite (Hektorite). ob sie als physikalische Gemische der beiden StoffeAs a starting stone for the production of oleo- lead naphthenate and 2.5 to 5 percent by weight of a The philic clays are montmorillonites, containing sodium, 45 hydrophobic amino compounds, the Potassium, lithium and the other bentonites, specifically expressed weight of clay and amino compound of the Wyoming Bentonite type. Is preferred as separate components, regardless of the magnesium bentonites (hectorites). whether they are physical mixtures of the two substances

Diese Tone werden modifiziert durch Absorption oder als Aminotone vorliegen. Optimale Mischungen einer oder mehrerer olefinischer, kationischer, ober- 50 sind solche, die 3 bis 7% Hektoritton, 0,3 bis 0,7% flächenaktiver Mittel, wie aliphatische Amine, Imid- Calciumcarbonat, 0,5 bis 0,85 % amorphes Antimonazoline und Aminoamide. Die Tone werden in Mengen trisulfid oder Molybdändisulfid, 0,35 bis 0,66 % Bleivon 2,5 bis 10 Gewichtsprozent den Schmierölen bei- petroleumnaphthenat und 2 bis 4,5 Gewichtsprozent gemischt. der Aminoamine enthalten, die hergestellt sind ausThese clays are modified by absorption or exist as amino clays. Optimal mixes one or more olefinic, cationic, upper 50 are those containing 3 to 7% hectorite clay, 0.3 to 0.7% surface-active agents such as aliphatic amines, imide calcium carbonate, 0.5 to 0.85% amorphous antimonazoline and aminoamides. The clays are trisulfide or molybdenum disulfide in amounts, 0.35 to 0.66% lead of 2.5 to 10 percent by weight of the lubricating oils for petroleum naphthenate and 2 to 4.5 percent by weight mixed. contain the aminoamines that are made from

Der Ausdruck »oleophiler Ton« umfaßt Tone, wenn 55 0,3 bis 0,6 Äquivalenten C10-22-FeWSaUrCn pro Äqui-(absorbiert oder damit durch Umsetzung verbunden) valent des Gemisches von Polyäthylenpolyaminen, wie eine ausreichende Menge einer Ammoniakbase vor- oben beschrieben,
liegt, um ein oleophiles Produkt zu bilden. Die so- Beisüiell
The term "oleophilic clay" includes clays if 55 0.3 to 0.6 equivalents of C 10-22 FeWSaUrCn per equivalent (absorbed or linked to by reaction) valent of the mixture of polyethylene polyamines, such as a sufficient amount of an ammonia base. described above,
to form an oleophilic product. The so- example

genannten »Onium-Tone« enthalten Reaktionspro-called »onium clays« contain reaction problems

dukte aus oleophilen Ammoniumbasen (oder ihren 60 Zu Vergleichszwecken wurden in sämtlichen Bei-Salzen) und Ton. spielen Mineralöle verwendet. Das gesamte Schmier-products made from oleophilic ammonium bases and sound. play mineral oils used. The entire lubrication

AIs aliphatische Amine und Imidazoline werden fett enthielt Hektoritton, der wasserfest gemacht war solche mit mindestens 18 Kohlenstoffatomen ver- mit 60 %, berechnet auf das Gewicht des Tons, mit wendet. Bevorzugt sind jedoch Aminoamide, welche einem Aminoamid, das gebildet war aus Tallölfettaus aliphatischen Monocarbonsäuren mit 10 bis 65 säuren und dem Gemisch von Polyäthylenpolyaminen, Kohlenstoffatomen und Polyalkylenpolyaminen ge- das oben beschrieben worden ist als Bodenprodukt, bildet werden. Noch günstigere Aminoamine sind das bei der Herstellung von Äthylendiamin erhalten solche, die gebildet werden durch Umsetzung von 0,3 worden war.As aliphatic amines and imidazolines, bold contains hectorite clay, which was made waterproof those with at least 18 carbon atoms compared with 60%, calculated on the weight of the clay turns. However, aminoamides, which are an aminoamide formed from tall oil fat, are preferred aliphatic monocarboxylic acids with 10 to 65 acids and a mixture of polyethylene polyamines, Carbon atoms and polyalkylenepolyamines as described above as a bottom product, forms are. Even cheaper aminoamines are obtained in the production of ethylenediamine those that had been formed by the conversion of 0.3.

Der Timken-Hochdrucktest ist beschrieben in ASTM Bulletin, 228, Februar 1958, S. 28 bis 31.The Timken high pressure test is described in ASTM Bulletin, 228, February 1958, pp. 28-31.

Das bei diesen Versuchen verwendete amorphe Antimontrisulfid wurde hergestellt durch Fällung, indem Schwefelwasserstoff zu einer wässerigen Lösung von Antimontrichlorid zugeführt wurde. Die so hergestellten Sulfide waren ziegelrot und hatten vor dem Schmelzen im Vergleich zu kristallinen Antimonsulfiden ein verhältnismäßig niedriges spezifisches Gewicht. Die modifizierten Schmierfette wurden hergestellt durch Vorformen der Schmierfette nach dem beschriebenen direkten Transferprozeß mit darauffolgender Zugabe des Antimontrisulfids und/oder des Bleinaphthenats in Form eines Ölschlammes.The amorphous antimony trisulfide used in these experiments was produced by precipitation, by adding hydrogen sulfide to an aqueous solution of antimony trichloride. The so produced Sulphides were brick red and had before melting compared to crystalline antimony sulphides a relatively low specific weight. The modified greases were made by preforming the greases according to the direct transfer process described with the subsequent one Addition of the antimony trisulfide and / or the lead naphthenate in the form of an oil sludge.

Tabelle ITable I.

einem anderen üblichen Verdickungsmittel an Stelle von organophilen Tonen kombiniert.another common thickener combined in place of organophilic clays.

Schmier
fett
Lubricant
fat
Sb2S3 Sb 2 S 3 CaCO3 CaCO 3 Molybdän-
disulfid
Molybdenum-
disulfide
Timken
Gleiten
Timken
Slide
■Test, kg
Fressen
■ test, kg
Wolf down
AA. 0,60.6 9,19.1 BB. - 4,64.6 - 15,915.9 18,118.1 CC. - 6,66.6 - 20,420.4 22,722.7 DD. 0,750.75 - - 13,613.6 15,915.9 EE. 0,30.3 0,60.6 - 13,613.6 15,915.9 FF. 0,50.5 0,60.6 - 18,118.1 20,420.4 GG 0,750.75 0,60.6 - 22,722.7 24,824.8 HH 0,250.25 1,61.6 - 15,915.9 18,118.1 II. 0,50.5 1,21.2 - 24,824.8 - JJ - - 5,05.0 15,915.9 18,118.1 KK - - 7,07.0 15,915.9 18,118.1 LL. - 1,01.0 1,01.0 18,118.1 20,420.4

Wie die nachstehenden Vergleichsversuche mit einem Seifenschmierfett (etwa 8 Gewichtsprozent Lithiumhydroxystearat) zeigen, tritt ein entsprechender günstiger Effekt bezüglich der Belastbarkeit im Timken-Test nicht ein, wenn man die Erdalkalicarbonate mitLike the following comparative tests with a soap grease (about 8 percent by weight lithium hydroxystearate) show, there is a corresponding favorable effect with regard to the load capacity in the Timken test not one if you are using the alkaline earth carbonates

SS. Lithiumseifen-
Schmierfett
Lithium soap
Grease
Tabelle IITable II ASTM-
Penetration,
unbearbeitet/
60 Schläge
ASTM
Penetration,
unprocessed /
60 strokes
Timken-Test,
kg
Fressen
Timken test,
kg
Wolf down
IO
a
b
C
IO
a
b
C.
CaCO3
Gewichts
prozent
CaCO 3
Weight
percent
255/254
269/266
255/254
269/266
9,1
9,1
13,6*)
9.1
9.1
13.6 *)
12
6
10
12th
6th
10

*) Nicht geprüft bei 9,1 kg.*) Not tested at 9.1 kg.

Beispiel 2Example 2

Es wurden Schmierfette hergestellt durch Vermählen eines hydrophoben, oleophilen Ammoniumtones und eines Schmieröls mit einer Viskosität von 55 Sec. SSU bei 99 0C zwecks Herstellung eines Schmierfettes mit einem Ammoniumtongehalt von 6,18%. Dieses Schmierfett entsprach nicht dem Timken-Test bei 9,1 kg Druck. Es versagte auch beim Timken-Test mit 9,1 kg Druck bei Anwesenheit von Antimontrisulfid. Die Modifizierung des letztgenannten Schmierfettes mit Hilfe von 0,4% Calciumcarbonat erhöhte die Timken-Zahl auf 13,6 kg, während eine Erhöhung des Calciumcarbonats auf 1% die Timken-Zahl auf 22,7 kg erhöhte.Lubricating greases were prepared by grinding a hydrophobic, oleophilic ammonium clay and a lubricating oil with a viscosity of 55 seconds. SSU at 99 0 C for the purpose of producing a lubricating grease with an ammonium clay content of 6.18%. This grease failed the Timken test at 9.1 kg pressure. It also failed the Timken test at 9.1 kg pressure in the presence of antimony trisulfide. Modifying the latter with 0.4% calcium carbonate increased the Timken number to 13.6 kg, while increasing the calcium carbonate to 1% increased the Timken number to 22.7 kg.

Claims (1)

Patentanspruch:Claim: Schmierfett, bestehend aus einem Schmieröl, einem oleophilen Ton, einem Erdalkalicarbonat und gegebenenfalls MoS2, amorphem Atimonsulfid und/oder Bleinaphthenat.Lubricating grease consisting of a lubricating oil, an oleophilic clay, an alkaline earth carbonate and optionally MoS 2 , amorphous atimon sulfide and / or lead naphthenate.
DES82042A 1961-10-17 1962-10-15 Lubricating grease mixtures Pending DE1284012B (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US14577161A 1961-10-17 1961-10-17
US383503A US3271309A (en) 1961-10-17 1964-07-17 Grease compositions
US395024A US3370007A (en) 1964-09-08 1964-09-08 Extreme-pressure grease compositions

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Publication Number Publication Date
DE1284012B true DE1284012B (en) 1968-11-28

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DES82042A Pending DE1284012B (en) 1961-10-17 1962-10-15 Lubricating grease mixtures
DE19651594590 Pending DE1594590A1 (en) 1961-10-17 1965-07-15 Lubricating grease mixture
DE19651594594 Pending DE1594594A1 (en) 1961-10-17 1965-09-06 Lubricating grease mixture

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Application Number Title Priority Date Filing Date
DE19651594590 Pending DE1594590A1 (en) 1961-10-17 1965-07-15 Lubricating grease mixture
DE19651594594 Pending DE1594594A1 (en) 1961-10-17 1965-09-06 Lubricating grease mixture

Country Status (7)

Country Link
US (1) US3271309A (en)
BE (3) BE666946A (en)
CH (1) CH447443A (en)
DE (3) DE1284012B (en)
FR (1) FR88753E (en)
GB (3) GB960059A (en)
NL (3) NL6509144A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2814516A1 (en) * 1977-04-06 1978-10-19 Rocol Ltd LUBRICANT

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3344065A (en) * 1965-01-25 1967-09-26 Molykote Produktions G M B H Extreme pressure lubricants
US4156655A (en) * 1978-01-30 1979-05-29 Exxon Research & Engineering Co. Grease composition resistant to salt water corrosion
US4435296A (en) 1981-05-22 1984-03-06 The British Petroleum Company Limited Lubricating grease
US20090325829A1 (en) * 2008-06-27 2009-12-31 Cowan Sandra S Reduced Molybdenum Grease Formulation

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1204605A (en) * 1916-02-26 1916-11-14 James M Stafford Device for locating and raising sunken vessels.
US2704276A (en) * 1954-02-12 1955-03-15 Gulf Research Development Co Lubricating compositions
FR1282216A (en) * 1959-12-15 1962-01-19 Exxon Research Engineering Co Process for the manufacture of additives soluble in petroleum oils

Family Cites Families (2)

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Publication number Priority date Publication date Assignee Title
US2831809A (en) * 1952-11-25 1958-04-22 Shell Dev Onium clay grease containing surface active agent
DE1065968B (en) * 1955-12-20 1959-09-24 N. V. De Bataafsche Petroleum Maatschappij, Den Haag Process for the production of lubricating greases

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1204605A (en) * 1916-02-26 1916-11-14 James M Stafford Device for locating and raising sunken vessels.
US2704276A (en) * 1954-02-12 1955-03-15 Gulf Research Development Co Lubricating compositions
FR1282216A (en) * 1959-12-15 1962-01-19 Exxon Research Engineering Co Process for the manufacture of additives soluble in petroleum oils

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2814516A1 (en) * 1977-04-06 1978-10-19 Rocol Ltd LUBRICANT

Also Published As

Publication number Publication date
CH447443A (en) 1967-11-30
NL6511631A (en) 1966-03-09
BE623658A (en)
GB960059A (en) 1964-06-10
GB1041509A (en) 1966-09-07
DE1594590A1 (en) 1971-06-03
FR88753E (en) 1967-06-07
NL284414A (en)
BE669245A (en) 1966-03-07
BE666946A (en) 1966-01-17
DE1594594A1 (en) 1971-04-22
GB1100189A (en) 1968-01-24
US3271309A (en) 1966-09-06
NL6509144A (en) 1966-01-18

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