US567757A - Roger william wallace - Google Patents
Roger william wallace Download PDFInfo
- Publication number
- US567757A US567757A US567757DA US567757A US 567757 A US567757 A US 567757A US 567757D A US567757D A US 567757DA US 567757 A US567757 A US 567757A
- Authority
- US
- United States
- Prior art keywords
- chromium
- iron
- mass
- steel
- roger
- 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
Links
Classifications
-
- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21C—PROCESSING OF PIG-IRON, e.g. REFINING, MANUFACTURE OF WROUGHT-IRON OR STEEL; TREATMENT IN MOLTEN STATE OF FERROUS ALLOYS
- C21C7/00—Treating molten ferrous alloys, e.g. steel, not covered by groups C21C1/00 - C21C5/00
Definitions
- chromium is applicable to similar metals, such as molybdenum or tungsten.
- the hereinbefore-described improvements in the treatment of iron and steel with pure chromium or similar metals, such as molybdenum or tungsten in order to obtain alloys of these metals said improvements consisting in deoxidizing the molten mass of iron or steel almost completely by the addition to the iron or steel bath of such a quantity of aluminium as may be completely transformed into oXid, the deoxidation of the mass being finished when the chromium or like metal is introduced into said bath by the transformation of a small part of the chromium or like metal into oxid of chromium or like metal, the rest of such metal alloying itself with the iron or steel under treatment.
Landscapes
- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Materials Engineering (AREA)
- Metallurgy (AREA)
- Organic Chemistry (AREA)
- Treatment Of Steel In Its Molten State (AREA)
- Manufacture And Refinement Of Metals (AREA)
Description
UNITED STATES PATENT OFFICE.
ROGER WILLIAM WALLACE, OF LONDON, ENGLAND, ASSIGNOR. TO THE ELEOTRO-METALLURGIOAL COMPANY, LIMITED, OF SAME PLACE.
METHOD OF PRODUCING ALLOYS OF IRON AND CH ROMIU M.
SPECIFICATION forming part of Letters Patent No. 567,757, dated September 15, 1896. Application filed July 8, 1896. Serial No. 598,478. (No specimens.)
To all whom it may concern.-
Be it known that I, ROGER WILLIAM WAL- LACE, a citizen of the Kingdom of England, and a resident of London, in said Kingdom, have invented certain new and useful Improvements in the Treatment of Irons and Steels with Chromium in Order to Obtain Chrome Alloys, of which invention the following specification is a full, clear, and exact description. I
It is known that baths of molten iron or steel are rendered pasty by traces or by a certain quantity of oxid, which it is important to eliminate, so as to increase the fluidity of the mass, in order to obtain castings free from blow-holes. Further, pure chromium, such as is obtained, for example, by means of electrolytic processes, has a very great affinity for oxygen. From this it follows that in the preparation of alloys of iron and steel with pure chromium the affinity of chromium foroxygen can be utilized in order to effect the deoxidation of the mass at the moment of introducing the chromium.
In operating simply as just indicated it would be very difficult to effect exact proportions or dosages, and, moreover, a considerable quantity of chromium would be lost, which it is desirable to avoid when the high price of this metal is considered. To avoid the difficulties above indicated, the operation is carried on as follows:
It is begun by adding to the molten mass of iron or steel a quantity of aluminiumsuliicient to effect nearly complete deoxidation. It is important in this preliminary treatment not todeoxidize the mass completely, for'there would then be free aluminium which would become incorporated in the molten mass, and there would finally be obtained an alloy of aluminium, which should be avoided.
To the molten mass, almost completely deoxidized by the aluminium, is added the quantity of chromium which corresponds with the proportions of the alloy that it is desired to obtain, and also an excess of the same metal, designed to remove the small quantity of oxid which the mass still contains. By this process, without any considerable loss of chromium, a very fluid alloy is consequently obtained, which contains no trace of metallic aluminium.
What has been said above concerning chromium is applicable to similar metals, such as molybdenum or tungsten.
I claim as my invention or discovery- The hereinbefore-described improvements in the treatment of iron and steel with pure chromium or similar metals, such as molybdenum or tungsten in order to obtain alloys of these metals, said improvements consisting in deoxidizing the molten mass of iron or steel almost completely by the addition to the iron or steel bath of such a quantity of aluminium as may be completely transformed into oXid, the deoxidation of the mass being finished when the chromium or like metal is introduced into said bath by the transformation of a small part of the chromium or like metal into oxid of chromium or like metal, the rest of such metal alloying itself with the iron or steel under treatment.
In testimony whereof I have signed this specification in the presence of two subscribing witnesses.
ROGER WILLIAM WALLACE.
Witnesses EDWARD P. MAOLEAN, EDOUARD BARBERRY.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US567757A true US567757A (en) | 1896-09-15 |
Family
ID=2636463
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US567757D Expired - Lifetime US567757A (en) | Roger william wallace |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US567757A (en) |
-
0
- US US567757D patent/US567757A/en not_active Expired - Lifetime
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN105296867B (en) | A kind of smelting process of the martensitic stain less steel of low silicon low-aluminium high boron | |
| US4138249A (en) | Process for recovering valuable metals from superalloy scrap | |
| US3336132A (en) | Stainless steel manufacturing process and equipment | |
| US2696433A (en) | Production of high nitrogen manganese alloy | |
| Zhuchkov et al. | Physicochemical characteristics, production and application of boron-bearing complex ferroalloys | |
| US1376113A (en) | Method of producing ferro-silico-magnesium alloy | |
| US1075782A (en) | Method of raising the alloying qualification of titanium. | |
| US2488512A (en) | Cast iron | |
| US2069205A (en) | Method of producing iron chromium alloys of appreciable nitrogen content | |
| US1508032A (en) | Corrosion-resisting ferrous alloy | |
| US2370364A (en) | Alloy steel process | |
| US2336237A (en) | Alloy process | |
| US2025616A (en) | Process for producing beryllium alloys | |
| US1276978A (en) | Method of plating metal castings. | |
| US2920955A (en) | Aluminum-iron alloy production | |
| US1674438A (en) | Process of producing nickel alloys | |
| US3740211A (en) | Cu-fe system alloy | |
| SU655744A1 (en) | Casting steel | |
| Milyuts et al. | Assimilation of high-strength austenitic corrosion resistant nitrogen-containing steel melting technology using large-capacity equipment | |
| Bakin et al. | Influence of barium and strontium on calcium recovery degree upon ladle treatment of steel by complex modifiers with alkaline earth metals | |
| US2378397A (en) | Alloy process | |
| US993338A (en) | Process of reducing metallic oxids or other compounds of vanadium, molybdenum, tungsten, or similar metals and of producing alloys of these metals. | |
| US1839157A (en) | Titanium steel and the process of manufacturing the same | |
| US1335992A (en) | Process for producing zirconium steel | |
| CN110777293A (en) | Low-silicon low-titanium high-carbon ferrochromium and preparation method thereof |