US2953472A - Method of coating metallic articles with metal - Google Patents

Method of coating metallic articles with metal Download PDF

Info

Publication number
US2953472A
US2953472A US709090A US70909058A US2953472A US 2953472 A US2953472 A US 2953472A US 709090 A US709090 A US 709090A US 70909058 A US70909058 A US 70909058A US 2953472 A US2953472 A US 2953472A
Authority
US
United States
Prior art keywords
metal
carbonyl
metallic
coating
flame
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
US709090A
Inventor
Nachtman John Simon
Bjorksten Johan
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to US709090A priority Critical patent/US2953472A/en
Application granted granted Critical
Publication of US2953472A publication Critical patent/US2953472A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • CCHEMISTRY; METALLURGY
    • C23COATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; CHEMICAL SURFACE TREATMENT; DIFFUSION TREATMENT OF METALLIC MATERIAL; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL; INHIBITING CORROSION OF METALLIC MATERIAL OR INCRUSTATION IN GENERAL
    • C23CCOATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; SURFACE TREATMENT OF METALLIC MATERIAL BY DIFFUSION INTO THE SURFACE, BY CHEMICAL CONVERSION OR SUBSTITUTION; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL
    • C23C16/00Chemical coating by decomposition of gaseous compounds, without leaving reaction products of surface material in the coating, i.e. chemical vapour deposition [CVD] processes
    • C23C16/06Chemical coating by decomposition of gaseous compounds, without leaving reaction products of surface material in the coating, i.e. chemical vapour deposition [CVD] processes characterised by the deposition of metallic material
    • C23C16/16Chemical coating by decomposition of gaseous compounds, without leaving reaction products of surface material in the coating, i.e. chemical vapour deposition [CVD] processes characterised by the deposition of metallic material from metal carbonyl compounds

Definitions

  • Another object is a process for providing metal coatings on metal articles with relatively great rapidity and uniformity by passing the metal articles through a burning metal carbonyl flame.
  • Figure l is a perspective view showing the application of the process to a series of shaped articles carried by a conveyor belt
  • Figure 2 is a perspective view showing the application of the process to a stationary shaped metal article.
  • Figure 3 is a perspective view showing the application of the process to a continuously moving metal wire.
  • FIG. 1 there is shown a conveyor belt 5 extending around two rollers 6 and 7.
  • Belt 5 carries on its upper surface a plurality of shaped metal articles 8 which, for example, maybe steel stampings.
  • Steel stampings 8 are first carried by conveyor 5 through furnace or oven 9 wherein they are preferably preheated to a temperature of at least 300 F. They then pass through flame 10 issuing from burners 11 supplied by tubes 12 from container 13 with a gaseous metal carbonyl such as iron carbonyl, nickel carbonyl or the like.
  • the articles as they pass out from under the flames and are allowed to cool on the belt as shown at 8' are suitably coated with a coating of metal corresponding to the metal of said carbonyl, i.e., iron or nickel, nickel being preferred in the case of steel stamping.
  • a steel casting 18 which has been preheated to a temperature of preferably at least 300 F.
  • a flame 20 issuing from burner 21 is then passed over-the article, the burner 21 being supplied with gaseous metal carbonyl through tubing 22 from container 23.
  • metallic wire 28 may be unreeled from supporting'reel 25 and then be .pickled in any conventional manner bypickling means 29, then cleaned by any suitable washing means at 29..andthen passed through oven or furnace 29" wherein it may be preheated to a temperature of at least 300 F. It may thence pass through flames 30 issuing from burners 31 supplied with gaseous metal carbonyl through tubing 32 from any suitable source. The carbonyl mixes with atmospheric air and undergoes combustion with oxygen of the air that issues from the burner and the wire is passed through flame fronts of the flames, just as in the embodiments of Figures 1 and 2 metal articles are caused to pass through such flame fronts or the flame fronts are caused to pass over the article. As the result of passing through said flames, the wire as at 28' is coated with a metallic coating of the metal corresponding to the gaseous metal carbonyl supplied to the burners and is then reeled and wound up on reel 33.
  • the shaped articles, such as castings, stampings, strip, sheet or wire which are coated according to the invention may be of any metal such as iron, nickel, copper, brass, bronze, aluminum or the like. Suitable coatings may be obtained with any carbonyl which may be supplied in gaseous form and caused to burn with oxygen. As described in the aforementioned application, the result is believed to be due to a decomposition during combustion into chemically extremely active and short-lived compounds i.e., free radicals which further decompose to deposit metal from the carbonyl on the metal of the article being coated.
  • Metals of which the carbonyl may be used include, for example, cobalt, nickel, molybdenum, tungsten, iron and chromium; others may be used.
  • an inert carrier or dilut- 111g gas such as nitrogen, helium, neon, argon or the like and although we generally prefer to use at least 10% of gaseous carbonyl to of inert gas we may use as little as 1% of gaseous carbonyl to 99% of inert gas and we may use 100% carbonyl, utilizing no inert gas.
  • a steel stamping such as a part for a stapling machine or an automotive part is first pickled in hydrochloric acid then washed in hot water, allowed to dry and then placed in a spray booth.
  • the stamping is heated to a very dull cherry red by directing a flame of acetylene torch at it and is then coated with a bright and adherent coating of nickel by directing at the article while still at such temperature a flame of gaseous metal carbonyl issuing from a burner tube in diameter supplied with a gas comprising 30% nickel carbonyl and 70% nitrogen, the flame being passed back and forth over the article in the manner of a paint spray gun.
  • an a1u- 3 casting is preheated to 350 F. in an oven, then placed in a spray booth and coated with nickel in the same way.
  • the method of coating elongated metallic bodies with metal which comprises preheating said bodies to a temperature of at least 300 F. and then passing them through flames of burning gaseous metal carbonyl in an oxygen containing gas while at such temperature.
  • the process of coating a metallic wire with a metal which comprises heating said Wire to a temperature of at least 300 F. and then passing the wire through flames of burning gaseous metal carbonyl in an oxygen containing gas, While at such temperatures.

Landscapes

  • Chemical & Material Sciences (AREA)
  • General Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Coating With Molten Metal (AREA)

Description

P 1960 J. 5. NACHTMAN EI'AL 2,953,472
METHOD OF COATING METALLIC- ARTICLES WITH METAL Filed Jan. 15, 1958 METAL CA RBON YL FLAME METAL conrso 6 smw we WASHING CHAMBER //VVEN7'0R$ JOHAA/ BJORKSTE/V JOHN NACHTMA/V 32 BY i J' 33 %L I A,
- Af/omey United States Patent METHOD OF COATING METALLIC ARTIC ES WITH METAL Filed Jan. 15, 1958, Ser. No. 709,090
- 8 Claims. (Cl.117--'46) This invention relates to a process for providing coatings of metal on articles of metal such as metal wire, stripand sheet metal castings and metal stampmgs in accordance with discoveries stemming from the invention described and claimed in co-pe'nding application Serial Number 382,518, filed September 28, 195.3,.entitled Methodfor Metal Coating Glass Surfaces, at. Higher Speeds now abandoned, of which the instant application is a continuation-in-part.
In the aforesaid application, there is described a process wherein glass fibers and other ceramic fibers drawn from a bushing can be coated with a uniform adherent coating of metal at very high speeds such as 1,000 to 10,000 feet per minute or more by drawing such fibers from a bushing and passing them while still containing the heat from the molten mass within said bushing through a flame of burning metal carbonyl. In accordance with the instant invention a like process is utilized to provide uniform and adherent metal coatings with great rapidity on metal articles which are preferably preheated to a temperature of at least about 300 F.
It is therefore an object of the invention to provide metal coatings on metal articles.
Another object is a process for providing metal coatings on metal articles with relatively great rapidity and uniformity by passing the metal articles through a burning metal carbonyl flame.
Other objects will become apparent from the drawings and from the following detailed description in which it is intended to illustrate the applicability of the invention without thereby limiting its scope to less than that of all equivalents which will be apparent to one skilled in the art. In the figures, like reference numerals refer to like parts and:
Figure l is a perspective view showing the application of the process to a series of shaped articles carried by a conveyor belt;
Figure 2 is a perspective view showing the application of the process to a stationary shaped metal article; and
Figure 3 is a perspective view showing the application of the process to a continuously moving metal wire.
Referring now to Figure 1, there is shown a conveyor belt 5 extending around two rollers 6 and 7. Belt 5 carries on its upper surface a plurality of shaped metal articles 8 which, for example, maybe steel stampings. Steel stampings 8 are first carried by conveyor 5 through furnace or oven 9 wherein they are preferably preheated to a temperature of at least 300 F. They then pass through flame 10 issuing from burners 11 supplied by tubes 12 from container 13 with a gaseous metal carbonyl such as iron carbonyl, nickel carbonyl or the like. The articles as they pass out from under the flames and are allowed to cool on the belt as shown at 8' are suitably coated with a coating of metal corresponding to the metal of said carbonyl, i.e., iron or nickel, nickel being preferred in the case of steel stamping.
As shown in Figure 2, a steel casting 18 which has been preheated to a temperature of preferably at least 300 F.
ice
is supported on any suitable supporting means 15. A flame 20 issuing from burner 21 is then passed over-the article, the burner 21 being supplied with gaseous metal carbonyl through tubing 22 from container 23.
It is desirable to provide ventilating means, not shown, to protect operators and personnel in the area from inhalation of metal carbonyl (which in the unburnt form is very poisonous) which may have been incompletely burned and to protect them from particles of metal which may be suspended in the air as combustion products, but the very extensive precautions which need to be taken in normal circumstances when utilizing metal carbonyls need not be used in the present instance since combustion of the metal carbonyl causes oxidation of the carbonyl to corresponding metal and oxides of carbon.withthe results that the combustion products are relatively'n'onpoisonous.
Referring now to Figure3, metallic wire 28 may be unreeled from supporting'reel 25 and then be .pickled in any conventional manner bypickling means 29, then cleaned by any suitable washing means at 29..andthen passed through oven or furnace 29" wherein it may be preheated to a temperature of at least 300 F. It may thence pass through flames 30 issuing from burners 31 supplied with gaseous metal carbonyl through tubing 32 from any suitable source. The carbonyl mixes with atmospheric air and undergoes combustion with oxygen of the air that issues from the burner and the wire is passed through flame fronts of the flames, just as in the embodiments of Figures 1 and 2 metal articles are caused to pass through such flame fronts or the flame fronts are caused to pass over the article. As the result of passing through said flames, the wire as at 28' is coated with a metallic coating of the metal corresponding to the gaseous metal carbonyl supplied to the burners and is then reeled and wound up on reel 33.
The shaped articles, such as castings, stampings, strip, sheet or wire which are coated according to the invention may be of any metal such as iron, nickel, copper, brass, bronze, aluminum or the like. Suitable coatings may be obtained with any carbonyl which may be supplied in gaseous form and caused to burn with oxygen. As described in the aforementioned application, the result is believed to be due to a decomposition during combustion into chemically extremely active and short-lived compounds i.e., free radicals which further decompose to deposit metal from the carbonyl on the metal of the article being coated. Metals of which the carbonyl may be used include, for example, cobalt, nickel, molybdenum, tungsten, iron and chromium; others may be used.
In order to control the rate of reaction or thickness of coating, we may, rather than using undiluted carbonyl, dilute the carbonyl with an inert carrier or dilut- 111g gas such as nitrogen, helium, neon, argon or the like and although we generally prefer to use at least 10% of gaseous carbonyl to of inert gas we may use as little as 1% of gaseous carbonyl to 99% of inert gas and we may use 100% carbonyl, utilizing no inert gas.
As an example, in accordance with the invention a steel stamping such as a part for a stapling machine or an automotive part is first pickled in hydrochloric acid then washed in hot water, allowed to dry and then placed in a spray booth. The stamping is heated to a very dull cherry red by directing a flame of acetylene torch at it and is then coated with a bright and adherent coating of nickel by directing at the article while still at such temperature a flame of gaseous metal carbonyl issuing from a burner tube in diameter supplied with a gas comprising 30% nickel carbonyl and 70% nitrogen, the flame being passed back and forth over the article in the manner of a paint spray gun. Likewise, an a1u- 3 casting is preheated to 350 F. in an oven, then placed in a spray booth and coated with nickel in the same way.
It is thus seen that the invention is broad in scope and 'is not to be restricted eXcepting by-the claims in which it" is our intention to cover all novelty inherent in the invention as broadly as possible in view'of prior art.
Having thus disclosed our invention, We claim:
1. The process of coating a metallic article witha metal which comprises the steps of preheating saidr'ne'tal article to a temperature of at least 300 F. and then causing the flame of burning gaseous metal carbonyl in an oxygen containing gas to impinge on the article.
2. The method of coating elongated metallic bodies with metal which comprises preheating said bodies to a temperature of at least 300 F. and then passing them through flames of burning gaseous metal carbonyl in an oxygen containing gas while at such temperature.
'3. The process of coating a metallic wire with a metal which comprises heating said Wire to a temperature of at least 300 F. and then passing the wire through flames of burning gaseous metal carbonyl in an oxygen containing gas, While at such temperatures.
4. The process of continuously coating a metallic wire with a metal which comprises continuously advancing a metallic wire, continuously applying heat to a zonal portion of said advancing wire to raise the temperature thereof to at least 300 F, then causing said wire to pass through at least one flame front of a flame of burning gaseous metal carbonyl in an oxygen containing gas while at such temperature.
5. The process of claim 1, wherein said metallic article is metallic plate.
6. The process of claim 1, wherein said metallic article is metallic sheet.
7. The process of claim 1, wherein said metallic article is metallic rod.
8. The process of claim 1, wherein said metallic article is metallic wire.
References Cited in the file'of this patent UNITED STATES PATENTS 2,510,143 Sandora June 6, 1950 2,698,812 Schladitz Jan/4, 1955 2,699,415 Nachtman Jan. 11, 1955 2,754,225 Gfeller July 10, 1956 2,809,124 5 Rich Oct. 8, 1957 2,817,141 Toulmin Dec. 24, 1957 2,859,132 Novak- Nov. 4, 1958

Claims (1)

1. THE PROCESS OF COATING A METALLIC ARTICLE WITH A METAL WHICH COMPRISES THE STEPS OF PREHEATING SAID METAL ARTICLE TO A TEMPERATURE OF AT LEAST 300*F. AND THEN
US709090A 1958-01-15 1958-01-15 Method of coating metallic articles with metal Expired - Lifetime US2953472A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US709090A US2953472A (en) 1958-01-15 1958-01-15 Method of coating metallic articles with metal

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US709090A US2953472A (en) 1958-01-15 1958-01-15 Method of coating metallic articles with metal

Publications (1)

Publication Number Publication Date
US2953472A true US2953472A (en) 1960-09-20

Family

ID=24848441

Family Applications (1)

Application Number Title Priority Date Filing Date
US709090A Expired - Lifetime US2953472A (en) 1958-01-15 1958-01-15 Method of coating metallic articles with metal

Country Status (1)

Country Link
US (1) US2953472A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3175259A (en) * 1961-10-05 1965-03-30 Union Carbide Corp Method of making pattern

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2510143A (en) * 1948-10-30 1950-06-06 C E Freeman Co Inc Spraying device for spraying and fusing powdered material
US2698812A (en) * 1949-10-21 1955-01-04 Schladitz Hermann Metal deposition process
US2699415A (en) * 1953-02-25 1955-01-11 Owens Corning Fiberglass Corp Method of producing refractory fiber laminate
US2754225A (en) * 1951-11-22 1956-07-10 Martin Von Schulthess Method of spray-coating with metals
US2809124A (en) * 1954-08-26 1957-10-08 Du Pont Production of inorganic oxide composition coatings
US2817141A (en) * 1953-04-14 1957-12-24 Ohio Commw Eng Co Composite metal structure
US2859132A (en) * 1956-05-09 1958-11-04 Ohio Commw Eng Co Gas plating using nitrous oxide

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2510143A (en) * 1948-10-30 1950-06-06 C E Freeman Co Inc Spraying device for spraying and fusing powdered material
US2698812A (en) * 1949-10-21 1955-01-04 Schladitz Hermann Metal deposition process
US2754225A (en) * 1951-11-22 1956-07-10 Martin Von Schulthess Method of spray-coating with metals
US2699415A (en) * 1953-02-25 1955-01-11 Owens Corning Fiberglass Corp Method of producing refractory fiber laminate
US2817141A (en) * 1953-04-14 1957-12-24 Ohio Commw Eng Co Composite metal structure
US2809124A (en) * 1954-08-26 1957-10-08 Du Pont Production of inorganic oxide composition coatings
US2859132A (en) * 1956-05-09 1958-11-04 Ohio Commw Eng Co Gas plating using nitrous oxide

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3175259A (en) * 1961-10-05 1965-03-30 Union Carbide Corp Method of making pattern

Similar Documents

Publication Publication Date Title
US2374926A (en) Process of coating with tin or other metals
US2656284A (en) Method of plating rolled sheet metal
US3056694A (en) Galvanizing process
US2656283A (en) Method of plating wire
US2619433A (en) Method of gas plating
US2082622A (en) Daluminum coated metal and process for producing the same
US2700365A (en) Apparatus for plating surfaces with carbonyls and other volatile metal bearing compounds
US3320085A (en) Galvanizing
US2811466A (en) Process of chromizing
US2953472A (en) Method of coating metallic articles with metal
US2631948A (en) Method and apparatus for gas plating
GB1454378A (en) Method of applying metal oxide coating to a substrate
US2898235A (en) Metal dienyl gas plating
US2817141A (en) Composite metal structure
US2680085A (en) Method of maintaining dimensional tolerances in partially enameled metal objects
US3121019A (en) Galvanizing one side of a strip of metal
GB432212A (en) Improved method of coating ferrous bodies with other metals
US7122221B2 (en) Method and apparatus for metal vapor coating
US3322558A (en) Galvanizing
US2907626A (en) Metal coating of glass fibers at high speeds
US2763576A (en) Method for gas plating
US2649754A (en) Apparatus for plating metal objects
US2887406A (en) Gas plating of titanium
US3457097A (en) Method of coating ferrous metal with molten aluminum
US3526552A (en) Metal treating