US459462A - Oiler - Google Patents

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US459462A
US459462A US459462DA US459462A US 459462 A US459462 A US 459462A US 459462D A US459462D A US 459462DA US 459462 A US459462 A US 459462A
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oil
oiler
tube
vessel
filling
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16NLUBRICATING
    • F16N7/00Arrangements for supplying oil or unspecified lubricant from a stationary reservoir or the equivalent in or on the machine or member to be lubricated
    • F16N7/12Arrangements for supplying oil or unspecified lubricant from a stationary reservoir or the equivalent in or on the machine or member to be lubricated with feed by capillary action, e.g. by wicks

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  • Figure 1 is a sectional elevation of a shaft-oiler containing my improvement
  • Fig. 2 a similar view of a machine-oiler
  • Fig. 3 a like view of a loose-pulley oiler
  • Fig. 4 a sectional elevation of my improved oiler for vehicle-axles
  • Fig. 5 a plan of the axle or hub oiler with the cap removed
  • Fig. 6 a detail view of the oil-feeding tube.
  • This vessel may be made of any suitable material and given any required shape, as circumstances may suggest.
  • the bowl of the cup is perforated at the bottom and provided with a boss or short hollow stem B.
  • the latter is not indispensable, but it facilitates the fitting of the oiler.
  • a tube 0 extending from the inside of the cup down to the point which is to be lubricated-such, for instance, as the shaft D, Fig. 1, which it reaches through the cap of the hearing or journalboX.
  • the upper end of the tube C is bent down so as to constantly dip in the oil, and thus forms a convenient means for draining the cup of its contents by capillary attraction, as will more fully appear hereinafter.
  • Perforations c are provided in the sides of the shorter branch of the siphon to L llow the oil to rise Within it more readily.
  • the filling has a core F, preferably made of metal and usually composed of from one to five strands of copper wire, one strand only being shown in the drawings. This core runs the entire length of the tube- 0 and comes in contact with both the supply of oil and the point lubricated.
  • the filling E and core F are bound together or surrounded by a wire G, loosely wound about said filling.
  • a thumb-screw H adapted to compress the filling material within it and reduce the passage usually afforded to the oil.
  • a seat h having internal screw-threads, is formed upon the bent tube for the thumb-screw H. It will be seen that this seat is provided with alateral fiange 71 upon which the edges bordering the aperture of the upper part of the oil-vessel or top rests.
  • the height of the tube within the vessel is determined by circumstances; but it is in most cases brought up to a point near the lid or cover I, which is conformed or raised so as not to interfere with the screwII.
  • the cover may be curved up, as in Fig. 1, whichrepresents an ordinary shaft-oiler.
  • the screw His In the case of a machine-oiler, which usually consists of a glass cylinder set in brass mountings, the screw His preferably made to project above the top of the vessel and confined in a tubular seat covered by a small cap, as illustrated in Fig. 2.
  • the purpose of this special construction is to bring the compressing-screw within easy reach and yet prevent all leakage of oil.
  • the main cover or brass top has to be cemented, as well as the bottom portion, to the glass cylinder in order to insure a tight joint, and were the compressing-screw placed whollybelow the top, as in the ICO ordinary cup, it could not be handled with convenience through the small aperture commonly left for filling up this kind t lubricator with oil.
  • This machine-lubricator is rendered still more oil-tight by the use of bolts or tie-rods J J, which are secured to the stem or boss at of the oil-vessel by their lower ends, and are provided with nuts at their upper ends, pressingv down upon the top.
  • the brass top and bottom parts of the cup will thus be firmly tied together over the ends of the glass tube and the cemented 'joints will not be loosened by the concussions they are constantly subj ected to.
  • Fig. 3 The form of oiler shown in Fig. 3 is better adapted to oilers for loose pulleys, and that in Fig. 4 to hub-oilers.
  • the oiler illustrated in Fig. at is somewhat different in shape from that represented in the other views; but itcontains the same elements and performs the same functions.
  • This sort of oiler is intended for use in the hubs of vehicle-wheels, and it therefore calls for a special design. I thus produce an oiling device which is made of but few parts, easily constructed, and very economical in its worklugs.
  • an oiler having an apertured top and provided with an interiorly upwardly-extending stem, tie-bolts passing through the top, provided upon their upper ends with nuts and having their lower ends secured to the stem, a covered tubular seat passing through the aperture of the top and provided with a lateral flange bearing on the edges bordering the said aperture, a bent tube within the oil-vessel, a permeable filling within the tube, and a thumbscrew working within the seat and through the tube, so as to compress the permeable filling, substantially as set forth.

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  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
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Description

' (No Model.)
J. T. SMITH.
OIL-BR.
No. 459,462. Patented Sept. 15, 1891;
[We new $01,.
m'i'zwdd e 4.
JQWQ WM UNITED STATES PATENT GEEICE.
JOHN T. SMITH, OF SAN FRANCISCO, CALIFORNIA.
OILER.
SPECIFICATION forming part of Letters Patent No. 459,462,.dated September 15, 1891.
Application filed June 13, 1890.
elfective as those previously patented by me,
but still more desirable on account of its greater simplicity of construction and lower cost of manufacture.
1 Referring to the accompanying drawings, which form part of this specification, Figure 1 is a sectional elevation of a shaft-oiler containing my improvement; Fig. 2, a similar view of a machine-oiler; Fig. 3, a like view of a loose-pulley oiler; Fig. 4, a sectional elevation of my improved oiler for vehicle-axles; Fig. 5, a plan of the axle or hub oiler with the cap removed, and Fig. 6 a detail view of the oil-feeding tube. V
The same letters of reference indicate cor-' responding parts in all the views.
LetA designate a cup or vessel containing oil. This vessel may be made of any suitable material and given any required shape, as circumstances may suggest. The bowl of the cup is perforated at the bottom and provided with a boss or short hollow stem B. The latter is not indispensable, but it facilitates the fitting of the oiler.
Within the stem B, I fit a tube 0, extending from the inside of the cup down to the point which is to be lubricated-such, for instance, as the shaft D, Fig. 1, which it reaches through the cap of the hearing or journalboX. The upper end of the tube C is bent down so as to constantly dip in the oil, and thus forms a convenient means for draining the cup of its contents by capillary attraction, as will more fully appear hereinafter. Perforations c are provided in the sides of the shorter branch of the siphon to L llow the oil to rise Within it more readily.
To retard the outflow of oil or check it in Serial No. 355 366. (N0 model.)
a certain measure I slightly contract the tube 0 at its lowerend and fill its interior with some permeable material E-wool, preferablythrough which the oil has to pass before coming out. The filling not only acts to conduct to the axle by capillary attraction, but also acts as a strainer for the oil, so that no foreign substances can be conveyed to the hearing and all sediments settle at the bottom of the vessel. The filling E has a core F, preferably made of metal and usually composed of from one to five strands of copper wire, one strand only being shown in the drawings. This core runs the entire length of the tube- 0 and comes in contact with both the supply of oil and the point lubricated. The filling E and core F are bound together or surrounded by a wire G, loosely wound about said filling.
In order to more adequately regulate the flow of oil from the vessel, I provide the upper portion of the tube with a thumb-screw H, adapted to compress the filling material within it and reduce the passage usually afforded to the oil. One is thereby enabled to gage the feed of the oiler to the greatest advantage. By preference a seat h, having internal screw-threads, is formed upon the bent tube for the thumb-screw H. It will be seen that this seat is provided with alateral fiange 71 upon which the edges bordering the aperture of the upper part of the oil-vessel or top rests.
The height of the tube within the vessel is determined by circumstances; but it is in most cases brought up to a point near the lid or cover I, which is conformed or raised so as not to interfere with the screwII. Thus the cover may be curved up, as in Fig. 1, whichrepresents an ordinary shaft-oiler.
In the case of a machine-oiler, which usually consists of a glass cylinder set in brass mountings, the screw His preferably made to project above the top of the vessel and confined in a tubular seat covered by a small cap, as illustrated in Fig. 2. The purpose of this special construction is to bring the compressing-screw within easy reach and yet prevent all leakage of oil. In this form of oiler the main cover or brass top has to be cemented, as well as the bottom portion, to the glass cylinder in order to insure a tight joint, and were the compressing-screw placed whollybelow the top, as in the ICO ordinary cup, it could not be handled with convenience through the small aperture commonly left for filling up this kind t lubricator with oil. WVere the screw applied, on the other hand, directly from the outside, it would be subject to let the oil escape, as it becomes loose at times,owing to the continuous jar of machinery; but by using the covered tubular seat, which is provided with a flange h, bearing on the edges bordering the aperture in the top, the com pressing-screw may be brought up to any desirable height, so as to be close at hand, and though it may become loose the oil escaping from the bent tube on account of that will be duly collected in the space inclosed by the sides of the seat. This machine-lubricator is rendered still more oil-tight by the use of bolts or tie-rods J J, which are secured to the stem or boss at of the oil-vessel by their lower ends, and are provided with nuts at their upper ends, pressingv down upon the top. The brass top and bottom parts of the cup will thus be firmly tied together over the ends of the glass tube and the cemented 'joints will not be loosened by the concussions they are constantly subj ected to.
. The form of oiler shown in Fig. 3 is better adapted to oilers for loose pulleys, and that in Fig. 4 to hub-oilers.
The oiler illustrated in Fig. at is somewhat different in shape from that represented in the other views; but itcontains the same elements and performs the same functions. This sort of oiler is intended for use in the hubs of vehicle-wheels, and it therefore calls for a special design. I thus produce an oiling device which is made of but few parts, easily constructed, and very economical in its worklugs.
Having described my invention, what I claim as new, and desire to secure protection in by Letters Patent of the United States,is
1. In an oiler, the combination of an oil- Vessel provided with an apertured upper portion, a covered tubular seat passing through the aperture in the top, a bent feeding-tube Within the oil-vessel,a permeable filling within the tube, and a thumb-screw working within the tubular seat and through the tube, so as to compress the filling therein, substantially asset forth.
2. In an oiler, the combination of an oilvessel having an apertured top and provided with an interiorly upwardly-extending stem, tie-bolts passing through the top, provided upon their upper ends with nuts and having their lower ends secured to the stem, a covered tubular seat passing through the aperture of the top and provided with a lateral flange bearing on the edges bordering the said aperture, a bent tube within the oil-vessel, a permeable filling within the tube, and a thumbscrew working within the seat and through the tube, so as to compress the permeable filling, substantially as set forth.
In testimoiry whereof I have hereunto set my hand and affixed my seal in the presence of two witnesses.
J. T. SMITH. [L.
In presence of R. A. CAMPBELL, R. R. STRAIN.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3083952A (en) * 1955-10-07 1963-04-02 Metal Textile Corp Capillary strand material

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3083952A (en) * 1955-10-07 1963-04-02 Metal Textile Corp Capillary strand material

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