US951190A - Telegraph-arm. - Google Patents

Telegraph-arm. Download PDF

Info

Publication number
US951190A
US951190A US47426709A US1909474267A US951190A US 951190 A US951190 A US 951190A US 47426709 A US47426709 A US 47426709A US 1909474267 A US1909474267 A US 1909474267A US 951190 A US951190 A US 951190A
Authority
US
United States
Prior art keywords
pins
telegraph
arm
flange
channel
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.)
Expired - Lifetime
Application number
US47426709A
Inventor
Maurice Lachman
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.)
UNIVERSAL ELECTRIC WELDING Co
Original Assignee
UNIVERSAL ELECTRIC WELDING CO
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 UNIVERSAL ELECTRIC WELDING CO filed Critical UNIVERSAL ELECTRIC WELDING CO
Priority to US47426709A priority Critical patent/US951190A/en
Application granted granted Critical
Publication of US951190A publication Critical patent/US951190A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G7/00Overhead installations of electric lines or cables
    • H02G7/20Spatial arrangements or dispositions of lines or cables on poles, posts or towers
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B17/00Insulators or insulating bodies characterised by their form
    • H01B17/24Insulators apertured for fixing by nail, screw, wire, or bar, e.g. diabolo, bobbin

Definitions

  • MAURICE LACHMAN or NEW YORK, N. Y., -ASSIGNOR 'ro UNIVERSAL ELECTRIC 'WELDING COMPANY, or NEW YORK, N. Y., A CORPORATION or NEW YORK.
  • My present invention relates to telegraph arms and more particularly to such arms as are constructed'entirely of metal.
  • the main object of my invention is the construction of a telegraph arm entirely of metal which will be very strong and which can be very quickly made up.
  • a further object is to provide a metallic arm of the above class which will cost but little, if any, more than the wooden arms at' present in use besides being of practically indefinite life and exceedingly rlgid.
  • My invention consists further in securing struction hereinafter-more particularly described and then specified in the claims.
  • the pins secured in this way are not sufliciently strong to take the strain due to the pull of the telegraph wires during a strong wind, etc.
  • Figure 1 illustrates a front elevation of a telegraph arm constructed in accordance with the preferred manner of carrying out my invention.
  • Fig. 2 is a side view of the same.
  • Fig. 3 is a vertical section taken on the line X X Fig. 1.
  • Fig. 4.- is a similar section showing the parts before welding.
  • Fig. 5 illustrates Patented Mar. 8, 1916.
  • Fig. (E is an edge view of the modification shown in Fig. 5.
  • I employ for a cross beam a length of channel-iron comprising the usual flanges l, Qand the base 3.
  • a number of holes or openings 4 are formed in the flange l by being preferably so arranged that the rear edge will coincide more or less closely with the inner face of the base 3 of the channel and form a continuation thereof.
  • the pins are securelyfastened to the channel iron by electrically welding punching, drilling or otherwise, the holes them thereto, thus lowering the cost of securing them to a minimum and adding reat as when welded, the part 0 the pins between the flanges l and 2 becomes practically part of the channel and forms ribs which add to the strength of the channel.
  • the pins might be Welded to the channel by any suitable method of electric Welding, but I prefer to secure them to the base 3 of the channel iron by raising points or projections 7 in said base which are brought into contact with the sides of the pins 5.
  • the Welding is effected by passing an electric current through the pin and the pro jections 7 and forcing the parts together by pressure as will be understood by anyone skilled in the art.
  • the pins might be Welded to the base 3' at one or more points or it might be Welded all'along its sides, but I find that by providing the base 3 with two contact points as shown and employing a round pin that the best results are attained.
  • each brace being electrically welded to. the base 3 as at 10 by any suitable method, such as for instance providing contact points on either or both parts, passing an electric current through them and applying pressure.
  • the other ends of the braces are welded to each other as at 11, although this is not essential, and provided with an opening 12 through which they are secured to the telegraph .pole or other support.
  • the cross beam 13 indicates a hole through which. the cross beam may be secured to the pole or other support by a suitable clamping bolt, although other means for fastening the cross beam to its support. might be employed.
  • the channel is constructed of two lengths of angle iron l l, 15, joined together by electrically welding the strip 16, arranged in the form of lattice work, to one leg of each 16 might also be welded to each other at their points of intersection.
  • the pins 5 are "electrically welded to the latticed strips in a manner similar to that described in the preferred form and the braces 8 and .l are preferably welded to the one leg of each angle iron forming the base of the channel.
  • a telegraph arm In a telegraph arm, the combination with a beam provided with a laterally projecting flange of pins projecting laterally through openings in said flange and electrically welded to the base of said beam along the side of said pins.

Landscapes

  • Shielding Devices Or Components To Electric Or Magnetic Fields (AREA)

Description

M. LAGHMAN.
I TELEGRAPH ARM. APPLICATION FILED JAN. 26, 1909,
951,1 90, Patented Mar. 8, 1910.
eiws
I Fig.
5 l4 v INVENTO l 3 Maurice mali ATTORNEYS mm sra'rns PATENT OFFICE.
MAURICE LACHMAN, or NEW YORK, N. Y., -ASSIGNOR 'ro UNIVERSAL ELECTRIC 'WELDING COMPANY, or NEW YORK, N. Y., A CORPORATION or NEW YORK.
TELEGRAPH-ABM.
Specification of Letters Patent.
Application filed January 26, 1909. Serial No. 474,267.
To all whom it mag concern:
I Be it known that I, MAURICE LAOHMAN, a citizen of the'llnited States, and a resident of New York, in the county of New, York and State of New York, have invented cer-v tain new and useful Improvements in Telegraph-Arms. of wlnch the following is a specification.
My present invention relates to telegraph arms and more particularly to such arms as are constructed'entirely of metal. V
The main object of my invention is the construction of a telegraph arm entirely of metal which will be very strong and which can be very quickly made up.
A further object is to provide a metallic arm of the above class which will cost but little, if any, more than the wooden arms at' present in use besides being of practically indefinite life and exceedingly rlgid.
To these ends my mainly in the manner of mounting the PIIIS,
which carry'the insulators, on the cross-bar or beam.
My invention consists further in securing struction hereinafter-more particularly described and then specified in the claims.
. Heretofore in constructing metallic telegraph arms. it has been the practice to use angle iron for the arm itself and stamp or drill holes in one leg through which the insulator pins pass. The pins are secured by clamping nuts threaded to the pins and clamping on the leg of the cross arm. This is expensive and also weakens the entire cross arm by having the holes inthe one leg.
,.Further, the pins secured in this way are not sufliciently strong to take the strain due to the pull of the telegraph wires during a strong wind, etc.
In the preferred form of carrying out my invention I employ a length of channel iron as the cross arm and pass the insulator pins through but one flange thereof, thereby retaining the other flange intact to retain the strength of the arm. .The pins pass through the'holes in the one flange and are secured tothe cross arm by electrically welding the invention 1 consists stren th,
side of the PlIIS'tO the base of the channel. Itwill be seen that the pin passes through the flange and is firmly secured to-the cross arm at a place other than at said opening, thus causing the base of the channel which is the strongest part to take the strain 'on the pins.
It will be understood that my invention is not limited to the use of a cross beam of 'In the accompanying drawings, Figure 1 illustrates a front elevation of a telegraph arm constructed in accordance with the preferred manner of carrying out my invention. Fig. 2 is a side view of the same. Fig. 3 is a vertical section taken on the line X X Fig. 1. Fig. 4.- is a similar section showing the parts before welding. Fig. 5 illustrates Patented Mar. 8, 1916.
a modification. Fig. (E is an edge view of the modification shown in Fig. 5.
, In the preferred form' of carrying out in invention I employ for a cross beam a length of channel-iron comprising the usual flanges l, Qand the base 3. A number of holes or openings 4 are formed in the flange l by being preferably so arranged that the rear edge will coincide more or less closely with the inner face of the base 3 of the channel and form a continuation thereof.
5 indicates pins or rods laterally projecting from the flange 1 and which pass through the openings 4 in the flange 1 and butt against the inner surface of the flange- 2.- By this manner of placing the pins on the cross beam, it is positively assured that theprojecting ends of the pins will all be of the same length. The pins 5 -might be round, square, or of any other desired contour and serve as the support to which the usual insulator 6 is secured in any suitable manner. The pins are securelyfastened to the channel iron by electrically welding punching, drilling or otherwise, the holes them thereto, thus lowering the cost of securing them to a minimum and adding reat as when welded, the part 0 the pins between the flanges l and 2 becomes practically part of the channel and forms ribs which add to the strength of the channel. The pins might be Welded to the channel by any suitable method of electric Welding, but I prefer to secure them to the base 3 of the channel iron by raising points or projections 7 in said base which are brought into contact with the sides of the pins 5.-
The Welding is effected by passing an electric current through the pin and the pro jections 7 and forcing the parts together by pressure as will be understood by anyone skilled in the art.
The pins might be Welded to the base 3' at one or more points or it might be Welded all'along its sides, but I find that by providing the base 3 with two contact points as shown and employing a round pin that the best results are attained.
8 and 9 indicate metallic braces, the end of each brace being electrically welded to. the base 3 as at 10 by any suitable method, such as for instance providing contact points on either or both parts, passing an electric current through them and applying pressure. Preferably, the other ends of the braces are welded to each other as at 11, although this is not essential, and provided with an opening 12 through which they are secured to the telegraph .pole or other support.
13 indicates a hole through which. the cross beam may be secured to the pole or other support by a suitable clamping bolt, although other means for fastening the cross beam to its support. might be employed.
By this construction it will be observed that the strain on the pins .will be taken by the base of the channel as the pins become part thereof when welded.
In the modification shown in Figs. 5 and G the channel is constructed of two lengths of angle iron l l, 15, joined together by electrically welding the strip 16, arranged in the form of lattice work, to one leg of each 16 might also be welded to each other at their points of intersection. The pins 5 are "electrically welded to the latticed strips in a manner similar to that described in the preferred form and the braces 8 and .l are preferably welded to the one leg of each angle iron forming the base of the channel.
What I claim as my invention is:
1. In a telegraph arm, the combination with a beam provided with a laterally projecting flange, of pins projecting lalerall through openings in said flange and secured to the member from which the flange projects.
'2. In a telegraph arm, the combination with a beam provided with a laterally projecting flange of pins projecting laterally through openings in said flange and electrically welded to the base of said beam along the side of said pins.
3. In a telegraph arm, the combination with a cross beam formed of channel iron, of pins laterally projecting through openings in one flange of said channel iron and electrically welded to the base of said channel iron along the side of said pins.
4. In a telegraph arm, the combination with a length of channel iron, of pins laterally projccting through openings in one flange of said channel iron and seated on the inner surface of the other flange, said pins being electrically .welded to the base of said (-hannel iron along the side of said pins.
Signed at New York in the county of New Yorlrand State of New York this 25th day of January A. l). 1909.
MA URICE LAGl-l M AN.
\Vitnesses:
Enwann M. JELLINEK, IRENE Lnr'rowirs.
US47426709A 1909-01-26 1909-01-26 Telegraph-arm. Expired - Lifetime US951190A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US47426709A US951190A (en) 1909-01-26 1909-01-26 Telegraph-arm.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US47426709A US951190A (en) 1909-01-26 1909-01-26 Telegraph-arm.

Publications (1)

Publication Number Publication Date
US951190A true US951190A (en) 1910-03-08

Family

ID=3019601

Family Applications (1)

Application Number Title Priority Date Filing Date
US47426709A Expired - Lifetime US951190A (en) 1909-01-26 1909-01-26 Telegraph-arm.

Country Status (1)

Country Link
US (1) US951190A (en)

Similar Documents

Publication Publication Date Title
US2287761A (en) Electrical cable connector
US2081047A (en) Clamp
US1042885A (en) Process of welding.
US3510624A (en) Combined mechanical and welded joint and method of making
US11316332B2 (en) Bracket for power transmission poles and a method of fabricating the same
US1846682A (en) Composite supporting structure
US1090312A (en) Metallic structure.
US1998367A (en) Method of making columnar structures
DE102017200123B4 (en) Mounting arrangement
US1110495A (en) Insulator-support.
US1753216A (en) Guy rod and method of making it
US617062A (en) Insulating-arm
US2345404A (en) Reinforced insulator pin
US2356049A (en) Method of resistance welding
US1638634A (en) Girder
US1342645A (en) Grounding device
US2004999A (en) Ground rod
US656125A (en) Bond for track-rails.
US552338A (en) Victor thelin
US1214652A (en) Lightning-rod structure.
US2113673A (en) Insulating device for high tension constructions
CN205330200U (en) Pole reinforcing apparatus
US2294934A (en) Rail bond
US765053A (en) Hollow pole.
JP6314293B1 (en) Plate member of ground electrode