US2305560A - Steam cylinder oil - Google Patents

Steam cylinder oil Download PDF

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Publication number
US2305560A
US2305560A US416755A US41675541A US2305560A US 2305560 A US2305560 A US 2305560A US 416755 A US416755 A US 416755A US 41675541 A US41675541 A US 41675541A US 2305560 A US2305560 A US 2305560A
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Prior art keywords
steam
acids
oil
oils
stock
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US416755A
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English (en)
Inventor
Knapel F Schiermeier
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Shell Development Co
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Shell Development Co
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Priority to NL65989D priority Critical patent/NL65989C/xx
Application filed by Shell Development Co filed Critical Shell Development Co
Priority to US416755A priority patent/US2305560A/en
Priority to GB15931/42A priority patent/GB563632A/en
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    • C10N2010/00Metal present as such or in compounds
    • C10N2010/02Groups 1 or 11
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    • C10N2040/00Specified use or application for which the lubricating composition is intended
    • C10N2040/135Steam engines or turbines
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    • C10N2060/00Chemical after-treatment of the constituents of the lubricating composition
    • C10N2060/04Oxidation, e.g. ozonisation

Definitions

  • This invention relates to lubricating oils, and more particularly to compounded lubricants which are effective in the presence of steam, i. e. are suitable for use in the lubrication of steam engines and the like.
  • Lubricants to be used in steam engines must possess certain properties not required of most lubricants. In such engines the temperatures may be of the order of 550 F. and higher if superheated steam is employed, and accordingly the lubricant must have high heat-resisting qualities to prevent gumming and carbon formation.
  • the presence of moisture in a steam engine is inherent in its operation, even though such engines may be operated with superheated or dry steam; at certain stages in the operation moisture or wet steam will usually be present. Moisture tends to scour the metal parts free of oil and prevent the spread of oil over the surface to be lubricated. As a-result the relative movements of various metal parts may become jerky due to increased friction.
  • the lubrication of the moving parts of such engines is usually accomplished by atomizing the lubricant through a quill into the steam line and utilizing the steam to carry the lubricant to the moving parts.
  • superheated steam added a dispersing agent and petroleum resins, the various components being selected as will be described in the following.
  • Oils for use as base stocks in the compounding conditions and they should be free from asis not a good carrying medium for lubricating oil, the latter must be readily atomizable to be effective in the presence of dry steam. Further, I
  • oils must be thermally stable to prevent carbon deposits from forming and clogging the quill.
  • my new steam cylinder oil which comprises a heavy, asphalt-free lubricating oil to which have been phaltenes which readily carbonize and thereby interfere with proper lubrication.
  • reflned oils are preferred for reasons of preventing formation of coke-like material on heated metal parts to .be lubricated.
  • oils which readily oxidize, thereby forming excessive amounts of acidic oxidation products and sludge, should be avoided because they may cause severe corrosion fural; nitrobenzene, .phenol, cresols, dichlordi ethylether, antimony trichloride, etc.; or of a pair of mutually immiscible solvents, one being selective for aromatics and the other for parafiins,
  • refining methods may comprise treating with sulfuric acid, clay, aluminum chloride, etc.
  • Petroleum resins as herein defined are highboiling organic compounds normally contained in unextracted bright stocks, which compounds are completely soluble in 86 B. naphtha, possess molecular weights in excess of about 500, have specific dispersions above 200, and contain substantial proportions frequently of the order of 3 Or more of components adsorbable on silica gel or other acidic adsorbents and the recovery of the adsorbed compounds, etc. Methods for producing such resins are described in Merrill.
  • useful amounts of resins to be added range from about 1%-l5% by weight of the base stock, and more often from 2%-10%
  • a minor proportion of the order of 05% to 1%, and preferably from .1% to 5%, of a dispersing or emulsify agent capable of spreading hydrocarbon oil on metal surfaces wetted by water is added.
  • Such an additive preferably comprises a salt of an alkali metal with an organic detergent-forming acid.
  • alkaline earth metals or amino base salts with such acids may be used.
  • the organic detergent-forming acids may comprise, for example, carboxylic acids of the type RCOOH, such as lauric, palmitio, stearic, oleic, linoleic, ricinoleic acids, oxidized parafiin acids, tall oil acid, rosin acids, abietic acid, wool fat acids, naphthenic acids, alkylated benzoic and naphthoic acids.
  • carboxylic acids of the type RCOOH such as lauric, palmitio, stearic, oleic, linoleic, ricinoleic acids, oxidized parafiin acids, tall oil acid, rosin acids, abietic acid, wool fat acids, naphthenic acids, alkylated benzoic and naphthoic acids.
  • aromatic fatty acids such as phenyl stearic acid, terpenic acids, etc.
  • acids of the sulfonic acid type RSO3H for example petroleum sulfonic acids such as the mahogany acids or green acids produced in the manufacture of medicinal oils by treatment with fuming sulfuric acid of parafiinic mineral oils such as lube oil, etc.; or of various aliphatic or alicyclic sulfonic acids such as fatty sulfonic acids, fatty aromatic sulfonic acids, naphthene sulfonic acids; or of sulfonic acids of various aromatic hydrocarbons, particularly those which contain one or more alkyl radicals and which may contain non-functional substituents, such as various alkylated benzenes, diphenyls, xylenes, diphenyl methanes, naphthalenes, anthracenes, phenanthrenes, tetralines; alkyl phenols such as those contained in cracked petroleum
  • ROSOsH for example turkey red oil, sulfated fish oils, sulfated fatty acids such as mono lauryl, cety
  • a convenient source for many of the active sulfate ester acids is the sludges obtained in the. acid treatment of cracked distillates, or the spent acids obtained in the polymerization of olefines or in the alkylation of isoparaffins with olefines with sulfuric acid.
  • Suitable organic detergent-forming acids such as have been described in the foregoing may, if desired, contain non-functional radicals such as halogen, hydroxyl, ether, amino, imino, hydrosulfide, sulfide, vcarboxyl ester, etc.
  • Fatty oils such as tallow, frequently used as steam cylinder oils, should be avoided as under superheat conditions they decompose and form deposits of carbon as well as corrosive acids.
  • a piston in a steam engine was lubricated with a fixed quantity of the oil under test, after which it was run as long as possible at a constant steam pressure Without the addition of further amounts of oil.
  • the number of strokes made and the smoothness of operation were noted and were taken as indicative of the quality of the oil.
  • a stroke counter was attached to the pump.
  • the testing procedure was as follows: The lubricator and its connection to the pump were carefully cleaned with gasoline and ether. They were then flushed and filled with the oil to be tested. The pump was then operated at a constant speed for 60 minutes, with the lubricating feed set at a definite rate. Lubrication was then stopped, the stroke counter placed in position, and the operation of the pump continued at the constant speed. The strokes were counted until the pump would no longer operate at 2.50 pounds pressure. The type of operation of the pump was carefully observed throughout the test and judged as smooth, jerky, or very jerky.
  • oils were subjected to a second test to determine their chemical vstability under high temperatures of the order of 550 F. attained by employing superheated or dry steam. They were injected into a highly superheated steam line through a quill, simulating actual engine lubrication practiced over a period of time.
  • a steam cylinder lubricating oil consisting essentially of a mineral lubricating oil free from asphaltenes and of viscosity suitable for steam cylinder oil containing a minor proportion of a dispersing agent selected from the group consisting of salts of alkali metals, alkali earth metals and amines with organic detergent forming acids, which agent is capable of spreading hydrocarbon oil on metal surfaces wetted by water, and from about 1% to (about 15% by weight of added petroleum resins.”
  • composition of claim 1 in which the lubricating oil is a refined hydrocarbon oil of a viscosity of the order of 100-300 seconds S. U. at 210 F,
  • composition of claim 1 in which the amount of the dispersing agent is between .05% and 1%.
  • composition of claim 1 in which the amount of the dispersing agent is between about .l% and about 5%.
  • a steam cylinder lubricating oil consisting essentially of a mineral lubricating oil free from asphaltenes and of viscosity suitable for steam' cylinder oil containing a minor proportion of an alkali metal salt of an organic detergent-forming acid and from about 1% to about 15% by Weight of added petroleum resins.
  • a steam cylinder lubricating oil consisting essentially of a mineral lubricating oil free from asphaltenes and of viscosity suitable for steam cylinder oil containing a minor proportion of an amino base salt of an organic detergent-forming acid and from about 1% to about 15% by weight of added petroleum resins.
  • a steam cylinder lubricating oil consisting essentially of a mineral lubricating oil free from asphaltenes and of viscosity suitable for steam cylinder oil containing a minor proportion of an alkaline earth metal salt of an organic detergentforming acid and from about 1% to about 15% by weight of added petroleum resins.
  • a steam cylinder lubricating oil consisting essentially of a mineral lubricating oil free from asphaltenes and of viscosity suitable for steam cylinder oil containing a minor proportion of sodium oleate and from about 1% to about 15% by weight of petroleum resins.
  • a steam cylinder lubricating oil consisting essentially of a mineral lubricating oil free, from asphaltenes and of viscositysuitable for steam cylinder oil containing a minor proportion of an ture is introduced into a steam cylinder.

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  • Chemical & Material Sciences (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Lubricants (AREA)
  • Detergent Compositions (AREA)
  • Production Of Liquid Hydrocarbon Mixture For Refining Petroleum (AREA)
US416755A 1941-10-27 1941-10-27 Steam cylinder oil Expired - Lifetime US2305560A (en)

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GB15931/42A GB563632A (en) 1941-10-27 1942-11-11 Steam cylinder lubricating oil compositions

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2430951A (en) * 1943-11-27 1947-11-18 Standard Oil Co Corrosion inhibiting compositions
US2686488A (en) * 1948-01-14 1954-08-17 Harley A Montgomery Method of treating and cold deep drawing sheet metal
US2820007A (en) * 1953-11-24 1958-01-14 Shell Dev Lubricating compositions
CN108504422A (zh) * 2018-03-26 2018-09-07 河南道骐汽车科技有限公司 高温聚合强力耐磨汽缸油

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2430951A (en) * 1943-11-27 1947-11-18 Standard Oil Co Corrosion inhibiting compositions
US2686488A (en) * 1948-01-14 1954-08-17 Harley A Montgomery Method of treating and cold deep drawing sheet metal
US2820007A (en) * 1953-11-24 1958-01-14 Shell Dev Lubricating compositions
CN108504422A (zh) * 2018-03-26 2018-09-07 河南道骐汽车科技有限公司 高温聚合强力耐磨汽缸油

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