US2145020A - Nickel-chromium alloys - Google Patents

Nickel-chromium alloys Download PDF

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Publication number
US2145020A
US2145020A US213816A US21381638A US2145020A US 2145020 A US2145020 A US 2145020A US 213816 A US213816 A US 213816A US 21381638 A US21381638 A US 21381638A US 2145020 A US2145020 A US 2145020A
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US
United States
Prior art keywords
nickel
alloys
columbium
chromium
chromium alloys
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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
US213816A
Inventor
Frederick M Becket
Franks Russell
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.)
ELECTRO METALLURG CO
ELECTRO METALLURGICAL Co
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ELECTRO METALLURG 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.)
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Publication date
Application filed by ELECTRO METALLURG CO filed Critical ELECTRO METALLURG CO
Priority to US213816A priority Critical patent/US2145020A/en
Priority to FR844511D priority patent/FR844511A/en
Priority to GB29074/38A priority patent/GB511565A/en
Priority to CH209688D priority patent/CH209688A/en
Application granted granted Critical
Publication of US2145020A publication Critical patent/US2145020A/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
    • C22C19/00Alloys based on nickel or cobalt
    • C22C19/03Alloys based on nickel or cobalt based on nickel
    • C22C19/05Alloys based on nickel or cobalt based on nickel with chromium
    • C22C19/058Alloys based on nickel or cobalt based on nickel with chromium without Mo and W

Definitions

  • This invention concerns nickel-chromium al- TABLE I loys.
  • Such alloys have been used for a long time and have served well in resisting corrosion Composition (remainder Fe) and deterioration at high temperatures.
  • They M t N f 5 are suitable for heating elements because of their a 3:; 5g; 5g; 5:; 5g; Egg Big? high electrical resistivity and their excellent re- Cr Ni Mn c Cb sistance to oxidation.
  • the alloys contain atleast 60% nickel and or more chro- 12.9 77.4 2. 05 0.20 0.06 None 74 10 mium.
  • iron has been presis ⁇ 3 g; 8 3; 53 ent in a percentage as high as while in 12.2 74.4 1.95 0.29 0.06 2.02 othiers it has been held to a much lower per- Q3 it; 3122 3 3?; 33 cen age.
  • the forgeability of the alloy ingots can be im- Yield Tensile Percent, Percent proved to a considerable degree, but even under point Strength g u rgz g gc tgg the most carefully controlled conditions some difilculty is encountered from tearing, check- 1 58 0 76 5 9 31 ing, and cracking of the ingot during the hot 1 6610 106:7 a4 57 working operations.
  • To obtain a product of high 23 quality it is necessary to grind the partially 57:0 96:0 16 23 25 forged ingot frequently to remove such defects.
  • the invention comprises a nickelherently, the alloys treated with columbium chromium alloy containing 10% .t 30% would have less tendency to tear or check when mium, 0.2% to' 2% columbium, iron in an amount deformed either hot or cold.
  • the remainder nickel which may include incidental impurities and iresidual deoxidizers.
  • the chromium content is between 15% and 25% and the iron content is less than 5%.
  • the nickel-chromium alloys of the invention may be deoxidized, before the addition of the columbium, with manganese or silicon, or with other deoxidizers such as calcium, aluminum, zirconium, or titanium. Residual deoxidizer other than silicon and manganese should not exceed about 1%; manganese is preferably less than 3% and the silicon is preferably less than 1%.
  • the low percentages of phosphorus and sulphur and other incidental impurities usually present in commercial alloys 01' this type may also be present in the metal of the invention.
  • Alloy having substantially the composition 10% to 30% chromium, 0.2% to 2% columblum, iron in an amount not exceeding 15%, the remainder nickel.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Heat Treatment Of Steel (AREA)
  • Soft Magnetic Materials (AREA)
  • Treatment Of Steel In Its Molten State (AREA)
  • Manufacture And Refinement Of Metals (AREA)

Description

Patented Jan. 24,- 1939 2,145,020 NIOKEL-CHROMIUM ALLOYS Frederick M. Becket, New York, and Russell Franks, Niagara Falls, N. Y., .assignors-to Electro Metallurgical Company, a corporation of West Virginia No Drawing. Application June 15, 1938, Serial N0. 213,816
This invention concerns nickel-chromium al- TABLE I loys. Such alloys have been used for a long time and have served well in resisting corrosion Composition (remainder Fe) and deterioration at high temperatures. They M t N f 5 are suitable for heating elements because of their a 3:; 5g; 5g; 5:; 5g; Egg Big? high electrical resistivity and their excellent re- Cr Ni Mn c Cb sistance to oxidation. As a rule, the alloys contain atleast 60% nickel and or more chro- 12.9 77.4 2. 05 0.20 0.06 None 74 10 mium. In some instances, iron has been presis} 3 g; 8 3; 53 ent in a percentage as high as while in 12.2 74.4 1.95 0.29 0.06 2.02 othiers it has been held to a much lower per- Q3 it; 3122 3 3?; 33 cen age.
The forging of ingots of such alloys is often Tensile tests on metal, as hot rolled, thousands l5 diflicult. By careful control of the melting pracof pounds per square inch tice, and by the use of appropriate deoxidizers,
the forgeability of the alloy ingots can be im- Yield Tensile Percent, Percent proved to a considerable degree, but even under point Strength g u rgz g gc tgg the most carefully controlled conditions some difilculty is encountered from tearing, check- 1 58 0 76 5 9 31 ing, and cracking of the ingot during the hot 1 6610 106:7 a4 57 working operations. To obtain a product of high 23 quality it is necessary to grind the partially 57:0 96:0 16 23 25 forged ingot frequently to remove such defects. 103'0 20 26 We have found that improved hot working properties can be imparted to the nickel-chro- Tliese lmproYements are i mium alloys by the addition of columbium in i g rgslstanci to g g g relatively small proportions, for example about 21 ag 2 2g; ggfi fg gf i 30 some improvement Occurs when proximately the same low rate of oxidation, when lumblum i is as as and 1t is heated in air at 1050" to 115m 0., to alloys made unnecessary to add more than 2% columbium under the same conditions but containing no We o ot d fi i e y w y columbium columbium. This is demonstrated by data of proves the hot working properties of the alloys, T m II. although it has been observed that the alloy TABLE II ingots treated with columbium do not pipe to as great an extent as those that contain no Composition rest Fe) Percentlossm columbium, even though the alloys have been weightofsamotherwise melted and deoxidizedin the same MmlN Per- Per- Per- Per- Per- Peri ggi jmanner. The columbium addition produces a a fig *5? 6 8? air definite refinement in grain size, which undoubtedly influences the hot working properties of the M7 M5 None 51 metal. As shown in the accompanying Table 45 No. I, the alloys treated with columbium possess 31 23 81% i: i
a higher degree of ductility and toughness in the hot-rolled condition, which means that, in- Accordingly the invention comprises a nickelherently, the alloys treated with columbium chromium alloy containing 10% .t 30% would have less tendency to tear or check when mium, 0.2% to' 2% columbium, iron in an amount deformed either hot or cold.
not exceeding 15%, the remainder nickel which may include incidental impurities and iresidual deoxidizers. Preferably, the chromium content is between 15% and 25% and the iron content is less than 5%.
The nickel-chromium alloys of the invention may be deoxidized, before the addition of the columbium, with manganese or silicon, or with other deoxidizers such as calcium, aluminum, zirconium, or titanium. Residual deoxidizer other than silicon and manganese should not exceed about 1%; manganese is preferably less than 3% and the silicon is preferably less than 1%. The low percentages of phosphorus and sulphur and other incidental impurities usually present in commercial alloys 01' this type may also be present in the metal of the invention.
We claim;
1. Alloy having substantially the composition: 10% to 30% chromium, 0.2% to 2% columblum, iron in an amount not exceeding 15%, the remainder nickel.
2. Alloy resistant to oxidation and deterioration at high temperatures and composed substantially of 15% to 30% chromium, 0.2% to 2% columbium, iron in an amount less than 5%, the remainder nickel.
FREDERICK M. BECKE'IT. RUSSELL F'RANKS.
US213816A 1938-06-15 1938-06-15 Nickel-chromium alloys Expired - Lifetime US2145020A (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
US213816A US2145020A (en) 1938-06-15 1938-06-15 Nickel-chromium alloys
FR844511D FR844511A (en) 1938-06-15 1938-10-07 Improvements to nickel and chromium based alloys
GB29074/38A GB511565A (en) 1938-06-15 1938-10-07 Improvements in and relating to nickel-chromium alloys
CH209688D CH209688A (en) 1938-06-15 1938-10-12 Nickel-chromium alloy.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US213816A US2145020A (en) 1938-06-15 1938-06-15 Nickel-chromium alloys

Publications (1)

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US2145020A true US2145020A (en) 1939-01-24

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US213816A Expired - Lifetime US2145020A (en) 1938-06-15 1938-06-15 Nickel-chromium alloys

Country Status (4)

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US (1) US2145020A (en)
CH (1) CH209688A (en)
FR (1) FR844511A (en)
GB (1) GB511565A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2469801A (en) * 1945-12-03 1949-05-10 Hotpoint Inc Electric heater
US2575915A (en) * 1945-05-21 1951-11-20 Gen Electric Nickel base high-temperature alloy
US2587275A (en) * 1949-09-23 1952-02-26 Driver Harris Co Furnace element
US2858208A (en) * 1955-12-16 1958-10-28 Hoskins Mfg Company Nickel base alloy for use as an electrical resistance element

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2909428A (en) * 1957-10-10 1959-10-20 Hoskins Mfg Company Thermocouple element

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2575915A (en) * 1945-05-21 1951-11-20 Gen Electric Nickel base high-temperature alloy
US2469801A (en) * 1945-12-03 1949-05-10 Hotpoint Inc Electric heater
US2587275A (en) * 1949-09-23 1952-02-26 Driver Harris Co Furnace element
US2858208A (en) * 1955-12-16 1958-10-28 Hoskins Mfg Company Nickel base alloy for use as an electrical resistance element

Also Published As

Publication number Publication date
GB511565A (en) 1939-08-21
FR844511A (en) 1939-07-26
CH209688A (en) 1940-04-30

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