US980584A - Process of casting copper bars, ingots, and other articles. - Google Patents

Process of casting copper bars, ingots, and other articles. Download PDF

Info

Publication number
US980584A
US980584A US56853510A US1910568535A US980584A US 980584 A US980584 A US 980584A US 56853510 A US56853510 A US 56853510A US 1910568535 A US1910568535 A US 1910568535A US 980584 A US980584 A US 980584A
Authority
US
United States
Prior art keywords
copper
metal
ingots
articles
furnace
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
US56853510A
Inventor
Lawrence Addicks
August Marks
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.)
UNITED STATES METALS REFINING Co
US METALS REFINING Co
Original Assignee
US METALS REFINING 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 US METALS REFINING Co filed Critical US METALS REFINING Co
Priority to US56853510A priority Critical patent/US980584A/en
Application granted granted Critical
Publication of US980584A publication Critical patent/US980584A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22BPRODUCTION AND REFINING OF METALS; PRETREATMENT OF RAW MATERIALS
    • C22B15/00Obtaining copper
    • C22B15/0026Pyrometallurgy
    • C22B15/006Pyrometallurgy working up of molten copper, e.g. refining

Definitions

  • LAWRENCE nnnroKs tar-E IZAB TH, Ann AUGUST nanxsorcnnoivm, New-mess l ,ASSIGNTORS TO U'nIr tote A we Ne. Drawingi To all whom may 'co ncc' rziju Y (Bait known that'we, LAWRENCE, Anoroxs, acitlzen ofthe-qUnitedfiStates, residing at Elizabeth, in; the bounty of: Union and State ofNew dei sey g-ti'nd AUGUST MARKS, a citi-i ""lenof t'he United States, residing at Chrome,
  • the cathodes In the production of ingots, etc.',' from the cathodes producedin electrolytic refining processes, the cathodes "are melted down, preferably in a suitable reverberatory furnace," and from the furnace the" metal” is poured out into the proper molds.
  • Thecathodes are substantially pure, but” carry nevertheless small amounts of occluded or entrapped electrolyte, and additional impurities also find their way into the mblten mass, as fromthe gases of combustron,jet c.
  • These forelgn substances are removed'before the metal 1s cast Into the de- “sired” ingots or bars, and the removal is usually efl'ected by an oxidizing or scorifying process.
  • the essential feature of our process is the addition of solid metal to the molten metal in the furnace from timeto time during the casting, the'sum total of the additions being sufficient in amount to keep the furnace in operation for the desired length of time. For example, if the process'i's to be continuous the additions are made suflicient in amount to compensate, in the long-run, for
  • the-cathodes are stacked one on top of another and the stack or stacks are introduced through a suitable opening in the furnace wall, such opening being closed at othertimes.
  • the stack of cathodes sinks-into the molten metal and most of the stack, if not all, is submerged, the submerged portion being thus protected from oxidation or other efiects of the gases of combustion flowing through the furnace.
  • the additions may cease and the casting continue, in which case the furnace is emptied within the next four hours, the total operation occupying twentyfour and a half hours withan output of 450,000pounds, as against twenty-two and a half or three-quarters hours and an output of 330,000 pounds by the old method, or, if desired, the additions may be continued in the same amounts, but preferably in smaller amounts so as to bring the run to an end gradually.
  • care is exercised to keep up the fire to maintain the metal in the furnace at a suitable casting temperature, and if the set shows signs of becoming too low the metal is poled to the extent needed to keep the set within the limits of permissibledeparture from the standard. The set will hardly become too high except as the result of unskilful or too prolonged poling.
  • the process may be continued as long as desired by keeping" up the additions of solid copper.
  • the method may also be employed to advantage in the casting o anodes from pig copper, anode scrap, etc.
  • T heherein described process of making ingots, bars and other copper articles of a substantially constant degree of purity of the metal comprising melting a mass of electrolytically refined. or cathode copper treating the molten mass to remove impurities therefrom, drawing off'the molten cop per in relatively small amounts into suitable molds, and addin solid cathode copper to the molten mass irom time to time, while maintaining the heat of the mass at a proper casting temperature.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Manufacturing & Machinery (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Manufacture And Refinement Of Metals (AREA)

Description

UNITED sTA'rEs'PATENT OFFICE.
LAWRENCE nnnroKs," tar-E IZAB TH, Ann AUGUST nanxsorcnnoivm, New-mess l ,ASSIGNTORS TO U'nIr tote A we Ne. Drawingi To all whom may 'co ncc' rziju Y (Bait known that'we, LAWRENCE, Anoroxs, acitlzen ofthe-qUnitedfiStates, residing at Elizabeth, in; the bounty of: Union and State ofNew dei sey g-ti'nd AUGUST MARKS, a citi-i ""lenof t'he United States, residing at Chrome,
iii-the counfiy ofMiddlesexand State of New J ei sey li ave invented certain new and usefiiil li nprovements in Processes of Casting Copper Bars, Ingots, and other Articles, of
which the'following is a full, clear, and exact description.
"In the production of ingots, etc.',' from the cathodes producedin electrolytic refining processes, the cathodes "are melted down, preferably in a suitable reverberatory furnace," and from the furnace the" metal" is poured out into the proper molds. Thecathodes are substantially pure, but" carry nevertheless small amounts of occluded or entrapped electrolyte, and additional impurities also find their way into the mblten mass, as fromthe gases of combustron,jet c. These forelgn substances are removed'before the metal 1s cast Into the de- "sired" ingots or bars, and the removal is usually efl'ected by an oxidizing or scorifying process. For this purpose air is blown through .the molten metal, with the result that cnprous oxid is formed'which acts as a' s'corifying agent, the oxidized impuritiesfioating on the bath. Theresulting slag collects on the surface of the metal and is skimmed oil in the, usual way, the bath retaining considerable CUPIOHS oxid in solution. The degree of oxidation must now. be ascertained, and this can eifected by observing the set of the copper. When the metal cools in the open mold itshrinks more or less, giving the. top a wrinkled appearance, commonlyknown as the set. If the set isltoo low, that is, if the wrinkles or foldsare too deep, the presence of too much oxid is indicated, and more or less ofthe sam'e must be reduced. This is done usually poling is carried too far, too much of the oxids is reduced and the "set becomes high in'w'hich case ispews ,-oi" Worms]? may be thrust out 'ofthe solidifying metal,
oA's'rInG oo'PPEn BARS, rNeors,--=-ANn-orenn 'anrronnsi' the rate of casting.
n s'rn'rns ivrnr'Ats nnr'rnrnevcor/many or-oirnomn', 'nEW Horror new a'nnsny. i 1
Specification or LettersPatent. l PatentedtlaniB; 1911}? I, Application filedihme 23, 1910.: Serial Ho; 5618.355." l 1 5 i which, in the subsequent rolling of the bar or ingot, produce slivers or similar defects in the rolled product. The set isthus a criterion of the condition of the metal, showing whether or not it possesses the necessary degree of. dissolved oxid to make perfect castings-. 1 t
Heretofore the practice has always been to operate the furnace by charges, or. on the fill and empty principle, the peculiar sensitiveness of copper and the difficulty of controlling the set having led to the belief, universal among-foundrymen in this art, that it was impossible to make the process continuous, or even lengthen the period of operation without proportionately diminishing We have discovered however, that the o eration can be extended with the result 0 greatly increasing the per diem output, and can even be; continued indefinitely within limits set by the durability of the furnace, labor conditions, etc.
The essential feature of our processis the addition of solid metal to the molten metal in the furnace from timeto time during the casting, the'sum total of the additions being sufficient in amount to keep the furnace in operation for the desired length of time. For example, if the process'i's to be continuous the additions are made suflicient in amount to compensate, in the long-run, for
the withdrawals. t
.As a specific example of our processwe will now describe the procedure which we are employing with complete success, increasingv the output enormously without impairing the quality of the product. In starting, the furnace employed is char ed with cathode copper to the amount 0 340,000 pounds-or thereabout. When this charge is melted the molten metal-is scorified and in theusual way poled to bring the metal to the desired condition of purity as evidenced "by the set. Some 10,000 poundsof the metal 1 may be 330,000 pounds, more or less, 1n the furnace.
consumed in this step, leaving These operations take about eighteen hours more oril'ess. I The casting is now begun, atthe rate of about 70,000 pounds anhour, and after'half an hour unmelted cathode copper,
' to the amount of say 40,000 ounds, is -added tof 'thezz molten copper in t e furnace -,In making this, and subsequent additions of solid 1' metal, the-cathodes are stacked one on top of another and the stack or stacks are introduced through a suitable opening in the furnace wall, such opening being closed at othertimes. On being deposited in-the furnace the stack of cathodes sinks-into the molten metal and most of the stack, if not all, is submerged, the submerged portion being thus protected from oxidation or other efiects of the gases of combustion flowing through the furnace. The pouring or casting now proceeds'at the rate mentioned, and in about three quarters of an hour another addition of 40,000 poundsof cathode copper is made, and an hour and a quarter later a third addition of the same amount. 120,000 pounds have now been added to the 330,000 pounds remaining after the scorification, and, at the rate of 70,000 pounds per hour, 175,000 pounds have been withdrawn, leaving some 27 5,000 pounds of metal in the furnace. At this point the additions may cease and the casting continue, in which case the furnace is emptied within the next four hours, the total operation occupying twentyfour and a half hours withan output of 450,000pounds, as against twenty-two and a half or three-quarters hours and an output of 330,000 pounds by the old method, or, if desired, the additions may be continued in the same amounts, but preferably in smaller amounts so as to bring the run to an end gradually. During the operation care is exercised to keep up the fire to maintain the metal in the furnace at a suitable casting temperature, and if the set shows signs of becoming too low the metal is poled to the extent needed to keep the set within the limits of permissibledeparture from the standard. The set will hardly become too high except as the result of unskilful or too prolonged poling. v
As stated, the process may be continued as long as desired by keeping" up the additions of solid copper. In general we prefer to add enough solid metal, at suitable intervals, to increase the period of operation and the output in about the proportion described above. The method may also be employed to advantage in the casting o anodes from pig copper, anode scrap, etc.
'What is claimed is:
' 1. The herein described process of making ingots, bars, and other copper articles of a substantially constant degree of purity of the metal, comprisingmeltlng amass of copper having the requisite degree of purity,
drawing oif the molten copper in'relatively small amounts into suitablemolds, and from time to time adding solid copper to the molten mass,"'while maintaining the heat of the mass at a proper casting temperature.
2. The herein described process of making ingots, bars, and other copper articles of a substantially constant degree of purity of taining the heat of the mass at a the metal, comprising melting amass of electrolytically refined or cathode copper, drawing oil the molten copper in relatively small amount into suitable molds, and adding solid cathode copper to the molten mass from time to time, While maintaining the heat of the mass at a perature.
3. The herein described continuous rocess of making fine copper bars, ingots, an other articles, comprising melting a mass of electrolytically refined or cathode copper, drawingofi the molten copper into suitable molds, adding solid cathode copper to the molten mass to replenish the same, while maintaining the heat of the mass at a proper casting temperature, and from time to time treating the molten mass with suitable reagents to maintain the proper oxid content therein.
l. The herein described process of making ingots, bars, and other copper articles of a substantially constant degree of purity of the metal, comprising melting a mass of copproper casting tem-- per having the requisite degree of purity,
drawing off the molten copper in relatively .small amounts into suitable molds, and from time to time adding solid copper to the molingots, bars, and other copper'articles of a substantially constant degree of purity 'of the metal, comprising melting a mass of electrolytically refined or cathode copper,
drawing themolten copper in relatively small'amounts into suitable molds, and from time to time adding solid cathode copper to the molten mass by submerging the cathodes more or less in the molten metal, while mainproper casting temperature.
6. T heherein described process of making ingots, bars and other copper articles of a substantially constant degree of purity of the metal, comprising melting a mass of electrolytically refined. or cathode copper treating the molten mass to remove impurities therefrom, drawing off'the molten cop per in relatively small amounts into suitable molds, and addin solid cathode copper to the molten mass irom time to time, while maintaining the heat of the mass at a proper casting temperature.
In testimony whereof we afiixour signatures in the presence of two subscribing witnesses.
LAWRENCE ADDICKS,
Witnesses:
EDWARD J. B LFIN, A. XV. DEACOX.
AUGUST MARKS.
US56853510A 1910-06-23 1910-06-23 Process of casting copper bars, ingots, and other articles. Expired - Lifetime US980584A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US56853510A US980584A (en) 1910-06-23 1910-06-23 Process of casting copper bars, ingots, and other articles.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US56853510A US980584A (en) 1910-06-23 1910-06-23 Process of casting copper bars, ingots, and other articles.

Publications (1)

Publication Number Publication Date
US980584A true US980584A (en) 1911-01-03

Family

ID=3048955

Family Applications (1)

Application Number Title Priority Date Filing Date
US56853510A Expired - Lifetime US980584A (en) 1910-06-23 1910-06-23 Process of casting copper bars, ingots, and other articles.

Country Status (1)

Country Link
US (1) US980584A (en)

Similar Documents

Publication Publication Date Title
US4076605A (en) Dichromate leach of copper anode slimes
US3960681A (en) Method for producing electrolytic high purity lead using large-sized electrodes
CN104947146B (en) The method of high Bi crude aluminum electrolytic recovery valuable metal
US980584A (en) Process of casting copper bars, ingots, and other articles.
CA1075472A (en) Process for the recovery of antimony values from ores containing sulfo-antimony compounds of copper, and arsenic
US4468302A (en) Processing copper-nickel matte
SU1735408A1 (en) Process for treating slags for production of heavy nonferrous metals
US3755112A (en) Electrowinning of copper
WO2012143719A2 (en) Methods and apparatus for the production of metal
FR2527644A1 (en) PROCESS FOR SEPARATING IRON AND ITS ALLIED METALS FROM GRAY OXIDE END PRODUCTS
US931513A (en) Electrode.
US2839461A (en) Electrolytic recovery of nickel
US2322786A (en) Process of electrolytic parting
US3102807A (en) Method of producing crude metal
US2286240A (en) Refining of nonferrous metals
US1351877A (en) Method of separating nickel and copper from copper-nickel mattes or materials
US438117A (en) Method of purifying lead or alloys thereof
US1574043A (en) Process for the separation and recovery of the copper, tin, and lead content of brass or bronze secondary metals and their residues
SU1673619A1 (en) Method of alloying lead
US2966407A (en) Electrolytic recovery of nickel
US4376754A (en) Pyrometallurgical smelting of lead and copper
SU901368A1 (en) Method of lead production from its sulphate by electrolysis
CA1333664C (en) Method for softening lead bullion
US1538431A (en) Copper-nickel anode and method of preparing the same
US874707A (en) Electrolytic refining of tin.