US551534A - Closed-conduit electric-railway system - Google Patents

Closed-conduit electric-railway system Download PDF

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US551534A
US551534A US551534DA US551534A US 551534 A US551534 A US 551534A US 551534D A US551534D A US 551534DA US 551534 A US551534 A US 551534A
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sections
conductor
switch
collectors
magnet
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60MPOWER SUPPLY LINES, AND DEVICES ALONG RAILS, FOR ELECTRICALLY- PROPELLED VEHICLES
    • B60M1/00Power supply lines for contact with collector on vehicle
    • B60M1/02Details
    • B60M1/08Arrangements for energising and de-energising power line sections using mechanical actuation by the passing vehicle

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  • FREDERICK C ESMOND, OF BROOKLYN, NEW' YORK, ASSIGNOR TO THE ESMONI) ELECTRIC TRACTION COMPANY, OF TEST VIRGINIA.
  • the present invention rela-tes to a closedconduit electric-railway system.
  • E'Iarious systems have heretofore been devised, in which current is fed to the propelling-motors from an insulated supply-conductor through Working conductor sections or points, which are insulated from one another and normally disconnected from the supply-conductor.
  • Various forms of switching devices have been devised for connecting the Working sections or points which are under or near a car to the supply-conductor, so that these are the only live working sections.
  • the difficulty With these systems heretofore from a practical standpoint, has been chieiiy due to the connecting-sn'itches and means for operating them in the manner desired and intended.
  • Figures 1, Q and 3 show in diagram modified forms ot the invention
  • Fig. l shows in detail an accessory arrangement on the car which sometimes will be used.
  • C C represent the wheels of a truck or locomotive driven by one or more electric motors connected to the axles in any desired ina-nner.
  • One such motor is represented a-t M, having one terminal grounded through the truck and rails T, as is customary in the single-trolley system now in general use, While its other terminal is maintained in circuit with an insulated supply-conductor S by a special arrangement of switches and collectors constituting; the principal feature of the invention. Itis, however, not necessary that the return branch of the circuit be formed through the rails.
  • the invention is equally applicable to an all-metallic circuit or to one Serial No. 545,439. (No model.)
  • sectional conductor syst-em is used in both branches of the motor-circuit.
  • a h d' h represent a series of Werliing conductor-sections which are joined electrically in pairs by a series of conductors c.
  • an electromagnet In each such connecting-circuit there is included an electromagnet, and a switch S s', the., is joined to each conductor c, so that current llowing over the switch may pass to sections l1 b, through the magnets, and te sections d a Without influencing the magnets.
  • the Workin g conductor-sections are insulated from cach other and are disconnected from the supply-conductor at the switches s s', ei:- ccpt as the latter are closed temporarily by the magnets, as hereinafter described.
  • a special arrangement of collectors on the car is used, bringing about this division of the motor-current for operating the pick-up magnets successively.
  • I use overlapping sets of collectors, or, as they may otherwise be regarded, a collector with overlapping sets of contactmakers, the purpose of one set being to conneet the sections corresponding to d of', While the other set connects the sections hh', when the proper time comes for closing the circuit of an advance pick-np magnet so as to operate the corresponding switch.
  • e e represent one set oi' collectors connected electrically, as shown, and e2 e3 a second overlapping set. The parts are shown in the position which they occupy just as they close the circuit of the advance magnet M2.
  • the switch is drawn open, to illustrate more clearly the division of the current iowing from the main conductor through the rear switch s.
  • Current passes through the lastnamed switch and divides at the pointf, part flowing through the collectors c d, working section a', magnet M2, collector es, and to the motor.
  • the other branch from the part f includes magnet M, contact c2, and so on to the motor.
  • the two magnets are in multiple, and each of the motor branches will have a substantially equal resistance. I have assumed that the current passes to the motor over the lead g, connected to the collectors e2 e3.
  • the collectors c c may be connected directly to the motor, as at g', so that the current iiowing from section (l may again branch, part flowing through the magnet M2 and part through the direct connection g. If this is done, the resistance of the latter path will be made such as not to short-circuit the pick-up magnet.
  • the conductor-sections and collector-bars will be so proportioned as to connect the sections in the manner described. For example, with a twenty-four-foot car I use condueter-sections substantially four feet long, making eight feet between the switches.
  • the total distance between collectors c e2 would then preferably be ten feet, the space between collectors e e and e3 being approximately six feet.
  • IS represents a secondary battery which maybe connected into the motor-circuit b v the switch s2 for charging, and may be used for lighting purposes, or for picking' up the switches in case the line-current fails.
  • the switch s2 is thrown so as to close the battery-circuit,then, as the parts are arranged in this iigure, the battery would be closed through the magnet M2.
  • Fig. 2 a similar arrangement is shown with some modifications. IIere pairs of contact-points ay Z) a li are used instead of the longer sections of Fig. l.
  • the collectors c e e3 are correspondingly lengtheucd, so as to bridge the wider spaces between the contact-points.
  • the points are connected in successive pairs by conductors, including the magnet M M as before, and the collectors are arranged so as to connect the points momentarily in alternate pairs (il c h b', as in Fig. l, when a new switch is to be thrown.
  • the parts are shown in a different position from Fig. l, with. two of the switches closed. Assume that the car has advanced.
  • Fig. 3 The arrangement shown in Fig. 3 is simila r to that in Fig. I, except that the battery is located in a different position. It is now connected between the collectors c e and the motor, and preferably has a small resistance in Series with it. lVhen the battery-circuit is closed, it therefore forms a shunt to the normal motor line-circuit.
  • the collertors e2 cis will, of course, be the rear set, and the switch s2 is thrown to the dotted-line position, so as to cut the resista-nce out of the lead g and include the resistance r in lead g.
  • the battery has oml terminal connected to the collectors c c', and a switch is provided for connecting the sewond terminal either to g or g, as maybe dcsired.
  • the relative arrangement of the working sections or points and their switches with the collectors on the car is the principal novel feature of the invention and furnishes an effective and satisfactory means for closing and holding up the necessary switchesy at all times, no matter where the car may stop.
  • a further advantage of the arrangement is that the current flows through the magnets in the same direction just before and after the switches are closed. For example, in Fig. 1 it will be noticed that the magnetizing-current,applied to the magnet M2 from the switch s, flows through the magnet inthe same direction as the flow of the line-current after the switch s is closed. This avoids certain obj cctions characteristic of other systems which have been proposed, in which there is a reversal of the current in a part or the whole of the pick-up magnets.
  • T he combination of an insulated supply conductor, working conductor sections, switch operating magnets whose coils join the conductor sections in pairs, and sets of collectors on the car, one of which bridges a given working section and the second section in advance, at the time when the switch of an advance section is thrown, while a second set overlapping the first set, bridges under the same conditions, the remaining sections of two successive pairs of sections, as set forth.
  • G The combination of an insulated supply conductor, working conductor sections, magnets whose coils join the working sections in pairs, and collectors having contactmaking parts adapted to engage simultaneously four of such conductor sections or points and form multiple circuits between the supply conductor and motor, one branch including the magnet of a given section, and the other the magnet of an advance section, as set forth.
  • switches for connecting the diiierent sections with the supply conductor, conductors joining the working sections in pairs and including an electro-magnet between one such section and the corresponding switch, and collectors forming a division of the motor current and placing the magnet coil of an ad- Vance section in multiple with the magnet of a rear section, the connections being so made that current flows in the same direction in the magnets just before and after a given switch is closed, as set forth.

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  • Mechanical Engineering (AREA)
  • Toys (AREA)

Description

(No Model.)
F. C. ESMOND.
CLOSED GONDUIT BLBGTRIGVRAILWAY SYSTEM. No. 551,534. Patented Deo. 17 1895..
WiTJESSE- IFM/ENTER ZSQlngah-ub. Y Mk C. im MZMMV.
FREDERICK C. ESMOND, OF BROOKLYN, NEW' YORK, ASSIGNOR TO THE ESMONI) ELECTRIC TRACTION COMPANY, OF TEST VIRGINIA.
CLOSED-CONDUIT ELECTRIC-RAILWAY SYSTEM.
SPECIFICATION forming part of Letters Patent No. 551,534, dated December 17, 1895.
Application filed April 12, 1895.
To @ZZ whom t 'may concern.-
Be it known that I, FRnDnRicK C. EsMoND, a citizen of the United States, residing at Brooklyn, county of Kings, State ot' New Yo rk, have inventedcerta-in new and useful Improvements in Closed-Conduit Electric-Railway Systems,of which the following is a specitication.
The present invention rela-tes to a closedconduit electric-railway system.
E'Iarious systems have heretofore been devised, in which current is fed to the propelling-motors from an insulated supply-conductor through Working conductor sections or points, which are insulated from one another and normally disconnected from the supply-conductor. Various forms of switching devices have been devised for connecting the Working sections or points which are under or near a car to the supply-conductor, so that these are the only live working sections. The difficulty With these systems heretofore, from a practical standpoint, has been chieiiy due to the connecting-sn'itches and means for operating them in the manner desired and intended.
Bly invention aims to overcome these difficulties and to furnish a practically reliable and satisfactory system of the general charaeter described.
In the accompanying drawings, Figures 1, Q and 3 show in diagram modified forms ot the invention, and Fig. l shows in detail an accessory arrangement on the car which sometimes will be used.
In the drawings, C C represent the wheels of a truck or locomotive driven by one or more electric motors connected to the axles in any desired ina-nner. One such motor is represented a-t M, having one terminal grounded through the truck and rails T, as is customary in the single-trolley system now in general use, While its other terminal is maintained in circuit with an insulated supply-conductor S by a special arrangement of switches and collectors constituting; the principal feature of the invention. Itis, however, not necessary that the return branch of the circuit be formed through the rails. The invention is equally applicable to an all-metallic circuit or to one Serial No. 545,439. (No model.)
in which the sectional conductor syst-em is used in both branches of the motor-circuit.
In Fig. l, a h d' h represent a series of Werliing conductor-sections which are joined electrically in pairs by a series of conductors c. In each such connecting-circuit there is included an electromagnet, and a switch S s', the., is joined to each conductor c, so that current llowing over the switch may pass to sections l1 b, through the magnets, and te sections d a Without influencing the magnets. The Workin g conductor-sections are insulated from cach other and are disconnected from the supply-conductor at the switches s s', ei:- ccpt as the latter are closed temporarily by the magnets, as hereinafter described.
If it be assumed that the car is traveling in the direction of the arrowJ Fig. l, and the rear switch s is closed, as shown, it will be evident that if the Working sections be connected in alternate pairs, (L CL h Z1', and to the motor, then the motor-circuit will be divided, and the current taken from the supply-conductor S over the switch .s Will flow to the motor partly through magnet M and Working section b and partly through magnet M2, so that the advance switch s will be thrown before the sudtch s opens.
In my invention a special arrangement of collectors on the car is used, bringing about this division of the motor-current for operating the pick-up magnets successively. For this purpose I use overlapping sets of collectors, or, as they may otherwise be regarded, a collector with overlapping sets of contactmakers, the purpose of one set being to conneet the sections corresponding to d of', While the other set connects the sections hh', when the proper time comes for closing the circuit of an advance pick-np magnet so as to operate the corresponding switch.
In Fig. l, e e represent one set oi' collectors connected electrically, as shown, and e2 e3 a second overlapping set. The parts are shown in the position which they occupy just as they close the circuit of the advance magnet M2.
The switch is drawn open, to illustrate more clearly the division of the current iowing from the main conductor through the rear switch s. Current passes through the lastnamed switch and divides at the pointf, part flowing through the collectors c d, working section a', magnet M2, collector es, and to the motor. The other branch from the part f includes magnet M, contact c2, and so on to the motor. At this moment, then, the two magnets are in multiple, and each of the motor branches will have a substantially equal resistance. I have assumed that the current passes to the motor over the lead g, connected to the collectors e2 e3. If desired, however, the collectors c c may be connected directly to the motor, as at g', so that the current iiowing from section (l may again branch, part flowing through the magnet M2 and part through the direct connection g. If this is done, the resistance of the latter path will be made such as not to short-circuit the pick-up magnet. The conductor-sections and collector-bars will be so proportioned as to connect the sections in the manner described. For example, with a twenty-four-foot car I use condueter-sections substantially four feet long, making eight feet between the switches. The total distance between collectors c e2 would then preferably be ten feet, the space between collectors e e and e3 being approximately six feet. In this figure, IS represents a secondary battery which maybe connected into the motor-circuit b v the switch s2 for charging, and may be used for lighting purposes, or for picking' up the switches in case the line-current fails. Assume, for example, that the switch s2 is thrown so as to close the battery-circuit,then, as the parts are arranged in this iigure, the battery would be closed through the magnet M2.
In Fig. 2 a similar arrangement is shown with some modifications. IIere pairs of contact-points ay Z) a li are used instead of the longer sections of Fig. l. The collectors c e e3 are correspondingly lengtheucd, so as to bridge the wider spaces between the contact-points. The points are connected in successive pairs by conductors, including the magnet M M as before, and the collectors are arranged so as to connect the points momentarily in alternate pairs (il c h b', as in Fig. l, when a new switch is to be thrown. In Fig. 2 the parts are shown in a different position from Fig. l, with. two of the switches closed. Assume that the car has advanced. so that the collector c3 rests on the point CL2, the collector c engaging point b aud collector e' the point 1). rlhen there will be the same division of the current from the switch s', as heretofore explained, one branch passing from point b, by the collectors e d, to point Zi', through the magnet M3 and to the motor. The other path from the switch s passes through the magnet M2, collector e2, and to the motor. The advance switch will then be thrown, while that portion of the current which iiows through magnet M2 holds the latter switch closed. In this figure the motor connection corresponding to g', Fig. l, is
shown open at the switch s3. XVhen closed the circuit is formed through the battery and resistance R.
The arrangement shown in Fig. 3 is simila r to that in Fig. I, except that the battery is located in a different position. It is now connected between the collectors c e and the motor, and preferably has a small resistance in Series with it. lVhen the battery-circuit is closed, it therefore forms a shunt to the normal motor line-circuit.
IVhen an arrangement like that of Fig. I is used it is desirable that a small resistance be included in that branch of the motor-circuit directly connecting the rear pair of collectors and the motor. In Fig. 4 such an arrangement is shown. I'Iere the motor connections g r/ each have a double set of contacts, the circuit of one of which includes the necessary resistance. A switch is arranged as shown, so that when the car is moving to the right the switch will stand in the full-line position, putting the resistance yr in circuit to balance the resistance of the advance pick-up magnet. Then the car travels in the opposite direction, the collertors e2 cis will, of course, be the rear set, and the switch s2 is thrown to the dotted-line position, so as to cut the resista-nce out of the lead g and include the resistance r in lead g. In this last iigure the battery has oml terminal connected to the collectors c c', and a switch is provided for connecting the sewond terminal either to g or g, as maybe dcsired.
The relative arrangement of the working sections or points and their switches with the collectors on the car is the principal novel feature of the invention and furnishes an effective and satisfactory means for closing and holding up the necessary switchesy at all times, no matter where the car may stop. A further advantage of the arrangement is that the current flows through the magnets in the same direction just before and after the switches are closed. For example, in Fig. 1 it will be noticed that the magnetizing-current,applied to the magnet M2 from the switch s, flows through the magnet inthe same direction as the flow of the line-current after the switch s is closed. This avoids certain obj cctions characteristic of other systems which have been proposed, in which there is a reversal of the current in a part or the whole of the pick-up magnets.
In using the word sections in the claims hereinafter made I mean to cover the short sections shown in Fig. 2, sometimes called contact-points, as well as the longer railsections shown in the other figures.
Vhat I claim as new, and desire to secure by Letters Patent of the United States, is-
l. The combination of a main supply ccnductor, working conductor sections normally out of circuit with the supply conductor. electro-magnetically operated switches for ICO IIO
coupling the working sections in circuit with the main conductor, and collectors on the car overlapping one another in a fore and aft direction, for establishing a circuit through the pick-up magnet of an advance conductor section, as set forth.
2. The combination of a main conductor, a single row of working conductor sections normally insulated from the main conductor and from each other, electro-magnetically operated switches for coupling the working conductor sections temporarily into circuit with the main conductor, and collectors on the car overlapping each other in a fore and att direction,for establishing a circuit through the pickup magnet of an advanced section, as set forth.
3. The combination of an insulated supply conductor, working conductor sections, switches for connecting the working sections with the supply conductor, magnets for operating the switches whose coils form part of circuits connecting succeeding working sections in pairs, and overlapping sets of collectors on the car, connecting alternate working sections in pairs, for completing' a circuit through the pick-up magnet of an advance section before the switch of a rear section is opened, as set forth.
i. T he combination of an insulated supply conductor, working conductor sections, switch operating magnets whose coils join the conductor sections in pairs, and sets of collectors on the car, one of which bridges a given working section and the second section in advance, at the time when the switch of an advance section is thrown, while a second set overlapping the first set, bridges under the same conditions, the remaining sections of two successive pairs of sections, as set forth.
5. The combination of an insulated supply conductor, working conductor sections, magnets whose coils connect the sections in pairs, and collectors on the car forming a division of the motor current for actuating the pick-up switches between paths of substantially equal resistance, one of which, starting from a given switch passes from one of a pair of sections through the magnet of an advance section, while the second path passes through the magnet of the iirst named section, whereby the magnets of successive sections are in multiple at the time the switch of an advance section is thrown, as set forth.
G. The combination of an insulated supply conductor, working conductor sections, magnets whose coils join the working sections in pairs, and collectors having contactmaking parts adapted to engage simultaneously four of such conductor sections or points and form multiple circuits between the supply conductor and motor, one branch including the magnet of a given section, and the other the magnet of an advance section, as set forth.
7. The combination of an insulated supply conductor, working conductor seetions,
switches for connecting the diiierent sections with the supply conductor, conductors joining the working sections in pairs and including an electro-magnet between one such section and the corresponding switch, and collectors forming a division of the motor current and placing the magnet coil of an ad- Vance section in multiple with the magnet of a rear section, the connections being so made that current flows in the same direction in the magnets just before and after a given switch is closed, as set forth.
S. The combination of an insulated supply conductor, working conductor sections, switches and magnets for operating the switches, whose coils connect the conductor sections in pairs, overlapping sets of collectors for forming a division of the motor current, and actuating the switch of an advance section by throwing its magnet in multiple with the magnet of a preceding section, a battery connected at one terminal to one such set of collectors, and means for connecting the other terminal of the batteryin the motor circuit, or to the second set of collectors, as set forth. y
9. The combination of an insulated supply conductor, working conductor sections, switches and magnets for operating the switches, with a double set of overlapping collectors leading to the motor, and a switch for including a resistance in the circuit between the motor and the rear set of collectors in either direction of motion of the car, as set forth.
In witness whereof I have hereunto set my hand this 8th day of April, 1895.
FREDERICK C. ESMOND. lVitnesses B. B. HULL, A. F. MACDONALD.
IOO
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD666891S1 (en) 2011-09-01 2012-09-11 Bae Systems Land & Armaments, L.P. Vehicle emergency escape window handle

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD666891S1 (en) 2011-09-01 2012-09-11 Bae Systems Land & Armaments, L.P. Vehicle emergency escape window handle

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