US1041197A - Arc-lamp. - Google Patents

Arc-lamp. Download PDF

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Publication number
US1041197A
US1041197A US53071109A US1909530711A US1041197A US 1041197 A US1041197 A US 1041197A US 53071109 A US53071109 A US 53071109A US 1909530711 A US1909530711 A US 1909530711A US 1041197 A US1041197 A US 1041197A
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United States
Prior art keywords
lever
clutch
core
cylinder
lamp
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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.)
Expired - Lifetime
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US53071109A
Inventor
Elihu Thomson
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General Electric Co
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General Electric Co
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Publication date
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Priority to US53071109A priority Critical patent/US1041197A/en
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Publication of US1041197A publication Critical patent/US1041197A/en
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Expired - Lifetime legal-status Critical Current

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B31/00Electric arc lamps
    • H05B31/0081Controlling of arc lamps

Definitions

  • Patented 00t.15,1912' Patented 00t.15,1912'.
  • This invention relates to electric lighting, and more especially to electric arc lamps. It is customary to lift the upper electrode of such lamps by means of a friction clutch, consisting, for instance, of a ring encircling the electrode and having pivoted in one side a lever whose toe bites the electrode when the outer end of said lever is lifted by the lamp magnet or solenoid. It may happen that the action of the solenoid4 is so sudden that the clutch is thrown up with a violent motion which causes it to lose its grip.
  • the object of the present invention is to secure freedom from this slip or vibration of the clutching action in lifting the electrode.
  • Figure 1 is a diagrammatic section of a portion of the operating mechanism of an arc lamp embodying one form of my invention.
  • Figs. E2, 3 and l are respectively similar sections of mechanism showing modifications of the same idea.
  • the electrode 1 is the upper electrode of the lamp, and passes through an orifice in the stationary platform 2 of the, lamp frame.
  • the clutch ring 3 encircles the electrode, and has pivoted in one side the clutch lever 11,
  • a heli-Y optional in any of the forms shown.
  • the cylinder 8 of a dash pot In axial alinement with the core is the cylinder 8 of a dash pot, whose piston 9 has an aperture controlled by a valve 10 carried on the upper end of a piston rod 11 preferably attached to the upper end of the core.
  • the piston moves somewhat stiliiy in the dash pot, so that when the core rises the valve will close the aperture and restrain the escape of air from above the piston as it is pushed up by the core, thus causing a compression yof the air in the upper part of the cylinder.
  • AI utilize this air pressure to steady the move* ment of the clutch lever, and the several figures of the drawings show several ways of doing this.
  • Fig. 1 the cylinder 8 is suspended from one end of a lever 12; fulcrunied at 13. The other end of said lever is pivoted to a rod 14 which extends downwardly and has its lower end pivoted to the clutch lever, at a point 15 between the clutch ringand the end of the lever where the core is connected.
  • the operation of this structure is, as follows: When the ⁇ solenoid is energized, the core is lifted and with it the piston of the dash pot, producing a compression of the air in the cylinder, which forces the cylinder upward.
  • Fig. 2 the cylinder is suspended as before from a lever 12, and its weight is counterbalanced by the spring 16 attached to said lever on the other side of its fulcrum clutch lever an upward lift greater than that of the core.
  • the lever pivoting on the lower end of the core, exerts a downward push on the clutch ring, and so prevents it from being thrown violently upward by the pull of the core. As the air leaks out of the cylinder, this holding down action gradually diminishes, allowing finally the lifting of the clutch ring.
  • the cylinder 8 is stationary, and communicates by a pipe 18 with a second cylinder 19 in which is a piston 20 whose rod 14 rests on the clutch lever at a point between the clutch ring and the core.
  • the weight of this piston and rod is counterbalanced by the pivoted arm 21 and the spring 16, so that these parts do not exert any dead resistance uponthe clutch lever.
  • the weight of the rod in Figs. 1 and 3 being counterbalanced by that o-f the cylinder, while in Fig. 2 the rod does not rest upon the clutch lever.
  • the lifting lever is perfectly free to move under the influence of the lifting' magnet, but the instant after it begins to move, the dash pot exerts a steadying effect upon it to check any tendency to violent and excessive movement, liable to let the electrode slip or chatter.
  • a lamp magnet having a movable core attached to said lever.
  • a dash pot for said core havingits cylinder movable, and means for reinforcing the bite of the clutch by the movement of said cylinder.

Landscapes

  • Mechanical Operated Clutches (AREA)

Description

Patented 00t.15,1912'.
` I2 2 BHEETS-SHIEET l. o l o la "I 1 l 8 9 lo 9.1 Hg. l |4- I f l; 1 5 ls N I l5 I x WTNE'SSES:
, INVENTU m .m-
ELIHU IHDA/ISDN.
H75 TTRME'K E. THOMSON.
ARG LAMP.
AP'rLIoATIoN FILED DB0.1, 1909.
1 ,404 1 1 97. v Patented Oct. 15, 1912.
2 SHEETS-SHEET 2.
2525' TTUHNEX UNITED STATES PATENT OFFICE.
ELI-IU THOMSON, OF SWAMPSCOTT, IVIASSACHUSET'JS.J ASSIG'NOR TO GENERAL s ELECTRIC COMPANY, .A CORPORATION OF NEW YORK.
ARC-LAMP.
Specification of Letters Patent.
Patented Oct. 15, 1912.
To all whom it may concer-n:
Be it known that I, ELIHU THOMSON, a citizen of the United States, residing at Swampscott, county of Essex, State of Massachusetts, have invented certain new and useful Improvements in Arc-Lamps, of which the following is a specification.
This invention relates to electric lighting, and more especially to electric arc lamps. It is customary to lift the upper electrode of such lamps by means of a friction clutch, consisting, for instance, of a ring encircling the electrode and having pivoted in one side a lever whose toe bites the electrode when the outer end of said lever is lifted by the lamp magnet or solenoid. It may happen that the action of the solenoid4 is so sudden that the clutch is thrown up with a violent motion which causes it to lose its grip.
The object of the present invention is to secure freedom from this slip or vibration of the clutching action in lifting the electrode. Heretofore it has been proposed to attain this result by usinga dead resistance to the movement of the lever, but this involves putting some additional work on the lamp mechanism, and I have therefore designed a checking device in which the steadying effect of a dash pot is utilized, causing the incipient motion of the lever to develop the air pressure which produces this effect, said pressure being afterward dissipated.
In the accompanying drawings, Figure 1 is a diagrammatic section of a portion of the operating mechanism of an arc lamp embodying one form of my invention. Figs. E2, 3 and l are respectively similar sections of mechanism showing modifications of the same idea.
The electrode 1 is the upper electrode of the lamp, and passes through an orifice in the stationary platform 2 of the, lamp frame. The clutch ring 3 encircles the electrode, and has pivoted in one side the clutch lever 11,
, whose toe is adapted to bite against the side of the electrode and lift it when the ring is lifted. l/Vhen the ring drops upon the platform, the clutch .is released to let the electrode feed downward.
In Fig. 1 a heli-Y optional in any of the forms shown. In axial alinement with the core is the cylinder 8 of a dash pot, whose piston 9 has an aperture controlled by a valve 10 carried on the upper end of a piston rod 11 preferably attached to the upper end of the core. The piston moves somewhat stiliiy in the dash pot, so that when the core rises the valve will close the aperture and restrain the escape of air from above the piston as it is pushed up by the core, thus causing a compression yof the air in the upper part of the cylinder. AI utilize this air pressure to steady the move* ment of the clutch lever, and the several figures of the drawings show several ways of doing this. y
In Fig. 1 the cylinder 8 is suspended from one end of a lever 12; fulcrunied at 13. The other end of said lever is pivoted to a rod 14 which extends downwardly and has its lower end pivoted to the clutch lever, at a point 15 between the clutch ringand the end of the lever where the core is connected. The operation of this structure is, as follows: When the` solenoid is energized, the core is lifted and with it the piston of the dash pot, producing a compression of the air in the cylinder, which forces the cylinder upward. By reason of 'its attachment to the lever 12, this movement of the cylinder produces a downward thrust on the rod 14, and this thrust is communicated `to the clutch lever in such manner as to check any tendency of said lever to be thrown upward violently by the sudden movement of the core. The lever is shifted, but so steadily as to engage the electrode surely and without vibration, thus avoiding all chattering of the electrode or the possibility of its slipping through the clutch ring.
In Fig. 2, the cylinder is suspended as before from a lever 12, and its weight is counterbalanced by the spring 16 attached to said lever on the other side of its fulcrum clutch lever an upward lift greater than that of the core. The lever, pivoting on the lower end of the core, exerts a downward push on the clutch ring, and so prevents it from being thrown violently upward by the pull of the core. As the air leaks out of the cylinder, this holding down action gradually diminishes, allowing finally the lifting of the clutch ring.
In Fig. 3 the weight of the cylinder is counterbalanced by the spring 16, which, in this instance, is arranged in line with said cylinder, and the movement of the cylinder 1s communicated by the lever 12 to the rod 14 whose lower end in this instance rests on the clutch lever at a point between the clutch ring and the core of the solenoid. Here, as in Fig. 1, the push of the rod is downward, and the steadying effect is evident.
In Fig. 4, the cylinder 8 is stationary, and communicates by a pipe 18 with a second cylinder 19 in which is a piston 20 whose rod 14 rests on the clutch lever at a point between the clutch ring and the core. The weight of this piston and rod is counterbalanced by the pivoted arm 21 and the spring 16, so that these parts do not exert any dead resistance uponthe clutch lever. This also is true of the other modifications, the weight of the rod in Figs. 1 and 3 being counterbalanced by that o-f the cylinder, while in Fig. 2 the rod does not rest upon the clutch lever. In other words, in all of these embodiments of my invention, the lifting lever is perfectly free to move under the influence of the lifting' magnet, but the instant after it begins to move, the dash pot exerts a steadying effect upon it to check any tendency to violent and excessive movement, liable to let the electrode slip or chatter.
kIn` all these modifications, it will be seen that when the core descends itl positively pulls down the piston of the dash pot, after opening the valve, the latter being arrested by a number of pins 9a projecting from the valve cavity into the patli'of the valve 10. In this manner there is provided a means for producing` an initial damping action when the core first exerts its lifting effect, and this is all that is required, because after the clutch has gripped, and the core of the magnet has lifted the electrode, the grip of the clutch is secure. The leaking of the air from the dash pot is therefore of no consequence after the first steadying effect has been secured.
`While I have shown a ring and lever as constituting the clutch, it is evident that any type of clutch may be used which can be tightened by a downward pressure between,
and for reinforcing the bite of the clutch by.
and in accordance with the action of the electromagnet.
2. In an electric arc lamp, the combination with the arc establishing clutch, the le verfor operating the same and the electromagnet for actuating the lever, of a dash-pot having two mutually reacting movable members, one of said members being operatively connected with the armature of the magnet and the other reacting upon the clutch lever to re-inforce the bite of the clutch by and in accordance with the action of the electromagnet.
In an electric arc lamp, the combination with the clutch, of a lever for operating the same, a lamp magnet having a movable core attached to said lever. a dash pot for said core havingits cylinder movable, and means for reinforcing the bite of the clutch by the movement of said cylinder.
4. In an electric arc lamp, the combination with the clutch, of a lever for operating the same, a lamp magnet having its core attached to said lever, a dash pot for said core, a lever to which the cylinder of said dash pot is attached, and a rod attached to said second lever and acting upon the clutch lever to reinforce the bite of the clutch.
In an electric arc lamp, the combination with the clutch, of a lever-for operating the same, a lamp magnet having its core attached to said lever, a dash pot for 'said core, a lever to which the cylinder of said dash pot. is attached, and a rod attached to said second lever and engaging with the clutch lever at a point between the clutch and the point of attachment of the core to said clutch lever. A
6. In an arc lamp, a clutch, means for operating said clutch and means dependent upon and responsive to the movementof said first named means for reinforcing the bite of the clutch.
In witness whereof, I have'hereunto set my hand this 29th day of November, 1909.
ELIHU THOMSON.
Witnesses:
JOHN A. MCMANUS, Jr., CHARLES A. BARNARD.
US53071109A 1909-12-01 1909-12-01 Arc-lamp. Expired - Lifetime US1041197A (en)

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