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US1030666A - Process of manufacturing incandescent-lamp filaments. - Google Patents

Process of manufacturing incandescent-lamp filaments. Download PDF

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Publication number
US1030666A
US1030666A US68481312A US1912684813A US1030666A US 1030666 A US1030666 A US 1030666A US 68481312 A US68481312 A US 68481312A US 1912684813 A US1912684813 A US 1912684813A US 1030666 A US1030666 A US 1030666A
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US
United States
Prior art keywords
filaments
mixture
lamp filaments
heating
manufacturing
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
US68481312A
Inventor
Hans Kuzel
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.)
General Electric Co
Original Assignee
General Electric Co
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Filing date
Publication date
Application filed by General Electric Co filed Critical General Electric Co
Priority to US68481312A priority Critical patent/US1030666A/en
Application granted granted Critical
Publication of US1030666A publication Critical patent/US1030666A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C1/00Making non-ferrous alloys
    • C22C1/04Making non-ferrous alloys by powder metallurgy
    • C22C1/045Alloys based on refractory metals

Definitions

  • nnnnnn Nana vrnima
  • Ausrnra-Huucgmr assrquon roonunnai.
  • nnrzc'rmc company A conroaa'rzon or: Yoax.
  • My invention relates to a process of manufacturing electric incandescent lamps.
  • the object of my invention is to produce such filaments of refractory metalloids other than carbon, viz: boronor silicon J1 both, with or without the addition of metals melt ing ,at very high temperatures such as chromium, manganese, molybdenum, uranium, tungsten, vanadium, tant: um, I110- zirconium, platinum, osmium and iridium, but without usingany agglomerant and more particularly any organic carbonaceous agglomerant.
  • I incorporate nto the filaments nitrogen compounds of the said metalloids.'
  • the filaments obtained by this process have a remarkable, tensile strength and are homogeneous throughout and elastic, the same as the filaments described in my prior application of January 5th, 1905, Serial No. 239,637.
  • No agglomerants, and particularly no carbonaceous agglomerants having been made use of, the .production of carbids is avoided, which might at a red or white heat enter into reaction with the nitrogen compounds used, evolving nitrogen and cyano-v gen, whereby the resistance of the filaments 'would be gradually diminished and pressure would be gradually set up in the bulb originally evacuated.
  • a preferable method of heating by which the dried threads made of the plastic masses above referred to are reconverted into the ordinary or crystalline state, consists in heating such threads to more than centigrade to render them conductive, and then heating them gradually to a'higher temperature by passing through them an electric current in the absence of gases, which attack the substance, preferably in cacao, and finally heating them to a White heat.
  • incandescent lamp filaments consisting of tungsten with a refractory metalloid or specifically, silicon, for they form the subject of 'my application Serial No. 296,885.
  • a process of manufacturing an incandescent lamp filament consisting in melting a mixture of colloidal material with material in a finely powdered state, the mixture containing a described metalloid, working the mixture into a plastic mass, bringing the mass to the desired wire-like shape, drying the latter'and heating it to a white heat in the absence of gases capable of attacking the same.
  • a process of manufacturing an incandescent lamp filament consisting in making a mixture of colloidal material with material in a finely powdered state the mixture containing a described metalloid and a nitrogen compound as described, working the mixture into a plastic mass, bringing the mass to the desired wire-like shape, drying the latter and heating it to a white heat in the absence of gases capable of attacking the same.
  • a process of manufacturing an incandescent lamp filament consisting in making a mixture of colloidal material with material in a finely powdered state, the mixture melting at a very high temperature, working the mixture into a plastic mass, bringing the mass to the desired wire-like shape, drying the latter and heating it to a white heat in the absence of gases capable of attacking the same.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Luminescent Compositions (AREA)
  • Resistance Heating (AREA)

Description

' bium, titanium, thorium,
, UNITEDSTATES 3 W ms xuznn,
nnnnn, Nana vrnima, Ausrnra-Huucgmr, assrquon roonunnai. nnrzc'rmc company, A conroaa'rzon or: Yoax.
r nocnss or mnoracrunruc IircANn scnur-Lamr .FILMENTS.
Patented-June25, 1912.
K0 Drawing. Application filed December 15, 19,05, Serial No. 291,909. Renewed March 19, 1912. Serial To all whom it may concern:
Be it known that I,'HANS KUiEL, a subject of the Emperor of Germany, residing at Baden, near Vienna,Empire of Austria- Hungary,
clear, and exact description;
My invention relates to a process of manufacturing electric incandescent lamps.
The object of my invention is to produce such filaments of refractory metalloids other than carbon, viz: boronor silicon J1 both, with or without the addition of metals melt ing ,at very high temperatures such as chromium, manganese, molybdenum, uranium, tungsten, vanadium, tant: um, I110- zirconium, platinum, osmium and iridium, but without usingany agglomerant and more particularly any organic carbonaceous agglomerant. In some cases I incorporate nto the filaments nitrogen compounds of the said metalloids.'
In carrying out my invention I proceed as follows:-I take the metalloid or a mixture of metalloids to be used, viz. boron or 'silicon, in the colloidal state, and I add thereto, if desired, one or more of the above namedmetals melting at very high temperatures, in the colloidal state, aiid further, if desired, one or more. of the said metalloids 'or metals in a finely powdered solid state,
. but without the addition of any agglomera nt, and then I bring the'whole into the form of a plastic mass, by removing from the colloid or colloids used such of their imbibition liquid as may be required, by any of of colloids or of colloids and dry powders have to be used, I first mix the colloids while in' a state of solution, for instance the dissolved sols, and I uniformly suspend in such mixture the powders, if any are to be used, and then the colloids are thickened by evaporation or gelatinized by heat or all are precipitated by electrolytes, whereby an intimate mixture of theconstituents is in-' surcd and the plastic mass above referred .to is'obtained. To the colloids of the said metalloids I add in some cases the nitrogen Serial No. 1139637, but
compounds of the said metalloids in a colloidal state or I may add such nitrogen the known methods. When mixturessaid colloids, preferably in the manner above set forth.- 'I then bring the plastic mass thus obtained into the desired shape of threads by any known or preferred method, and then dry such threads and finally heat them to a white heat in the absence of gases capable of attacking the constituents used, for Instance in 'vacuo or in an inert gas, such as hydrogen. By such heating, the substance of the threadsis re-converted into the ordinary or crystalline state, with the result that filaments ready for use are obtained, which consist of the constituent elements of the plastic masses used, the electric resistance of those filaments being higher than that of metal filaments.
The filaments obtained by this process have a remarkable, tensile strength and are homogeneous throughout and elastic, the same as the filaments described in my prior application of January 5th, 1905, Serial No. 239,637. No agglomerants, and particularly no carbonaceous agglomerants having been made use of, the .production of carbids is avoided, which might at a red or white heat enter into reaction with the nitrogen compounds used, evolving nitrogen and cyano-v gen, whereby the resistance of the filaments 'would be gradually diminished and pressure would be gradually set up in the bulb originally evacuated.
A preferable method of heating, by which the dried threads made of the plastic masses above referred to are reconverted into the ordinary or crystalline state, consists in heating such threads to more than centigrade to render them conductive, and then heating them gradually to a'higher temperature by passing through them an electric current in the absence of gases, which attack the substance, preferably in cacao, and finally heating them to a White heat.
I do not claim in. this case incandescent lamp filaments consisting of tungsten with a refractory metalloid or specifically, silicon, for they form the subject of 'my application Serial No. 296,885.
I do not claim in this case broadly the colloidal process of making incandescent lamp filaments, as that forms a subject of my application for patent above mentioned,
I claim as my invention:
l. A process of manufacturing an incandescent lamp filament, consisting in melting a mixture of colloidal material with material in a finely powdered state, the mixture containing a described metalloid, working the mixture into a plastic mass, bringing the mass to the desired wire-like shape, drying the latter'and heating it to a white heat in the absence of gases capable of attacking the same.
2. A process of manufacturing an incandescent lamp filament, consisting in making a mixture of colloidal material with material in a finely powdered state the mixture containing a described metalloid and a nitrogen compound as described, working the mixture into a plastic mass, bringing the mass to the desired wire-like shape, drying the latter and heating it to a white heat in the absence of gases capable of attacking the same.
3. A process of manufacturing an incandescent lamp filament, consisting in making a mixture of colloidal material with material in a finely powdered state, the mixture melting at a very high temperature, working the mixture into a plastic mass, bringing the mass to the desired wire-like shape, drying the latter and heating it to a white heat in the absence of gases capable of attacking the same.
In testimony whereof I have signed my name to this specification, in the presence of two subscribing witnesses.
HANS KUZEL. Witnesses T. GEORGE HARDY, ALvEsro S. Hocun.
US68481312A 1912-03-19 1912-03-19 Process of manufacturing incandescent-lamp filaments. Expired - Lifetime US1030666A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US68481312A US1030666A (en) 1912-03-19 1912-03-19 Process of manufacturing incandescent-lamp filaments.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US68481312A US1030666A (en) 1912-03-19 1912-03-19 Process of manufacturing incandescent-lamp filaments.

Publications (1)

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US1030666A true US1030666A (en) 1912-06-25

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2719786A (en) * 1949-10-29 1955-10-04 Rca Corp Method of making a tungsten-nickel alloy filament
US3414438A (en) * 1963-09-27 1968-12-03 Asea Ab Fuel cell having sintered porous electrode consisting of electrically conductive material and of boron
US3798008A (en) * 1972-09-12 1974-03-19 Egyesuelt Izzolampa Retentive tungsten body containing 20{14 50 ppm titanium and/or zirconium

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2719786A (en) * 1949-10-29 1955-10-04 Rca Corp Method of making a tungsten-nickel alloy filament
US3414438A (en) * 1963-09-27 1968-12-03 Asea Ab Fuel cell having sintered porous electrode consisting of electrically conductive material and of boron
US3798008A (en) * 1972-09-12 1974-03-19 Egyesuelt Izzolampa Retentive tungsten body containing 20{14 50 ppm titanium and/or zirconium

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