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Curie temperature

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Journal Articles
Alloy Digest (1976) 25 (5): Ni-228.
Published: 01 May 1976
... NIMAG 105 is a wrought nickel alloy with a high magnetostriction coefficient. It is easily formed or drawn, has a high Curie temperature and has low oxidation at high temperatures. It is recommended for electronic and electrical applications. This datasheet provides information on composition...
Journal Articles
Alloy Digest (2007) 56 (6): Ni-651.
Published: 01 June 2007
... Langalloy 400 is a nickel-copper alloy for general use. It has an excellent combination of high strength, ductility, and corrosion resistance. The Curie temperature of the alloy is close to room temperature and varies with slight compositional changes. Langalloy 400 has been used as marine...
Journal Articles
Alloy Digest (1972) 21 (12): Co-67.
Published: 01 December 1972
... RAECO-15 is a magnet alloy of samarium and cobalt which offers 15-million energy product, an extremely high intrinsic coercive force (Hci = 15,000 Oe), and a Curie Temperature of 750 C. It is especially attractive for use in severe demagnetizing environments at elevated temperatures...
Journal Articles
Alloy Digest (1977) 26 (7): Ni-247.
Published: 01 July 1977
... TECHALLOY Nickel 205 is a wrought nickel-base alloy containing small additions of magnesium and titanium. It has a high Curie temperature and a high magnetostriction coefficient. It is used for many electrical and electronic components and for equipment employing magnetostrictive effects...
Journal Articles
Alloy Digest (1970) 19 (1): Fe-41.
Published: 01 January 1970
... saturation value of 24,500 gausses. *Registered trade mark. Composition: Cobalt Chromium Manganese Silicon Carbon Nickel Sulphur Phosphorus iron 33.5-36.5 0.3- 0.7 0.6 max. 0.3 max. 0.1 max 0.7 max. 0.1 mas. 0.1 max. Remainder Physical Constants: Density, Ib./cu.in. Specific gravity Curie temperature, oC...
Journal Articles
Alloy Digest (2016) 65 (12): Fe-166.
Published: 01 December 2016
...) Phytherm 260 10.5 (5.8) Specific heat, J/kg·K (Btu/lb·°F) Phytherm 230 120 (0.029) Phytherm 260 Typical Curie temperature, °C (°F) Phytherm 230 230 (446) Phytherm 260 280 (536) Curie temperature, °C (°F) Phytherm 260 120 248 (248 478) Mechanical Properties: (Typical values) Hardness, annealed temper, HV...
Journal Articles
Alloy Digest (1990) 39 (5): Ni-383.
Published: 01 May 1990
... gravity Melting point, OF ( C) Specific heat, cal/g/=C Thermal cocf. expansio@C (25-100°C) Thermal conductivity @ room temperature, Btu* lftZlhPF W/m*OK Curie temperature, OF( C) Magnetic saturation, Tesla Magnetostriction @ saturation, (B,) x 1V L/l* Electrical resistivity, ohm& mil/ft microhmcm...
Journal Articles
Alloy Digest (1975) 24 (12): Fe-55.
Published: 01 December 1975
... 0.0253 Electrical resistivity, microhm-cm 82 Curie temperature: oF 536 Modulus of elasticity, psi 21.0 x 106 PROPERTIES Table 1 - THERMAL EXPANSION Temperature Mean Thermal Coefficient Range, oF of Expansion Per oF -200 to 0 1.1 x 10-6 0 to 200 0.7 200 to 400 1.5 400 KO 600 6.4 600 to 800 8.6 800 to 1000...
Journal Articles
Alloy Digest (1955) 4 (8): Fe-8.
Published: 01 August 1955
.../in./oF./hr. (68-212°F.) Melting point, OF. Curie temperature, OF. Inktion temperature, F. Thermal coef. expansion, in/in/ F. @ 70 F. -200 to O F. 0 to 200 F. 200 to 400°F. 400 to 6OOOF. 600 to 800°F. 800 to 1000°F. Poissons ratio Modulus of elasticity, psi Modulus of rigidity, psi l Reg. U.S. Pat. Off...
Journal Articles
Alloy Digest (1967) 16 (4): Ni-123.
Published: 01 April 1967
...: Specific gravity Densiry, lb/cu.in. Thermal conductiviry, cal/cm2/cm/sec/% Thermal coef. expansion/% x 10-6 (25-200°C) Electrical resistiviry, microhm-cm Temperature coef. elect. resistivity/oC (-20 to 500°C) Curie temperature, C Specific heat, Cal/g/X Melring point, OF Modulus of elasticity, psi x 106...
Journal Articles
Alloy Digest (1957) 6 (10): Fe-15.
Published: 01 October 1957
.... resistance ( 32-21Z°F) per OF 0.0007 Curie temperature, OF 300-390 Thermal conductivity, BTU/ft2/in/hrF (70-212 F) 80 Modulus of elastkiry, psi 22,000,000 PROPERTIES 1 - TEMPERATURE COMPENSATOR 32 Table 2 - TEMPEIWXRE COMPENSATOR 30 HIGH PERMEABILITY TYPE 1 AVERAGE PERMEABILIN TYPE 2 (Used for voltage...
Journal Articles
Alloy Digest (2008) 57 (5): Fe-146.
Published: 01 May 2008
..., 20 °C (68 °F), W/m · K (Btu/(ft · h · °F)) 9.2 (5.3) 14.2 (8.2) Curie temperature, °C (°F) 340 (644) 350 (662) Melting point, °C (°F) 1450 (2642) 1450 (2642) The magnetic properties of FeNiCr alloys are essentially dependent on preceding operations, particularly the final anneal and the maximum...
Journal Articles
Alloy Digest (1964) 13 (3): Fe-24.
Published: 01 March 1964
... heat, Bcu; Ib! oF (77-2120F) Thermal conductivity, Btu. ft2; in !oF? hr. (6%212OF) hlelting point, oF Curie temperature, oF Inflection temperature? oF Thermal coef. expansron, in. in OF x 10-6 -200 to OoF 0 to 2000F 200 to 4000F 400 to 6OOOF 600 to 800OF 800 to 1OOOoF Poissons ratio Modulus...
Journal Articles
Alloy Digest (1979) 28 (8): Fe-58.
Published: 01 August 1979
...) Thermal conductivity, Btu/ft /m&r/OF (68212oF) cal/cm2/cm/s/oC (20-1OOoC) Electrical resistivity, ohm/cir miI ft microhm-cm Temperature coef. resistivity/oF (70-212oF) oc (20-1OOOC) Inflection temperature, oF Curie temperature, oF Modulus of elasticity, psi (AnneaIed) PROPERTIES Table 1 - MEAN COEFFICIENT...
Journal Articles
Alloy Digest (1964) 13 (7): Fe-26.
Published: 01 July 1964
... and at temperatures above 950OF. It is used for high flux levels. *Registered trade mark. Composition: Physical Constants: Cobalt 26.0-28.5 Chromium 0.75 max. Nickel 0.75 max. Manganese 0.80 max. Silicon 0.45 max. Others, each 0.10 max. Others, total 0.30 max. Iron Remainder Density, lb/cu.in. Specific gravity Curie...
Journal Articles
Alloy Digest (2021) 70 (12): Ni-778.
Published: 01 December 2021
... 0.10 0.25 0.25 0.40 0.40 0.15 0.15 0.35 0.35 0.005 0.005 0.15 0.25 0.10 0.10 (a) Maximum values unless indicated otherwise. (b) Source: DIN 17740:2002 Physical Properties See Tables 1 and 2. Mechanical Properties See Tables 3 and 4. Table 1 Melting range, Curie temperature, and density Property Melting...
Journal Articles
Alloy Digest (1966) 15 (7): Fe-28.
Published: 01 July 1966
... 84.5 Specific gravity 7.1 Electrical resistivity, microhm-cm 80 Curie temperature, Oc 482 PROPERTIES D C MAGNETIC PROPERTIES Saturation induction, gauss 9000 Coercive force, oersteds (H max. = 2.0 oersteds) 0.05 Maximum kyermeability 100000 Heat Treatment: Heat at IOOOOC (1832oF) hold at temperature...
Journal Articles
Alloy Digest (2021) 70 (9): Ni-775.
Published: 01 September 2021
.... VDM 36 is not hardenable by heat treatment. Significant increases in strength can, however, be obtained by cold Table 1 Liquidus temperature, Curie temperature, working (see Table 5). and density Heating. Workpieces must be clean and free of any contami- Property Unit At Value nants before and during...
Journal Articles
Alloy Digest (2008) 57 (3): Fe-145.
Published: 01 March 2008
... seal. The addition of chromium to the iron-nickel alloys imparts higher expansion, a lower Curie temperature, a lower oxidation rate, and, a more adherent, more impermeable, less brittle, but more soluble oxide. Stability. Between the melting point and the lowest temperatures, the arrangement...
Journal Articles
Alloy Digest (1976) 25 (10): Ni-234.
Published: 01 October 1976
..., oF Specific heat, cal/g/oC (At OOC) Thermal coef. expansion/oC (27-1OOoC) Thermal conductivity, cal/cm2/crn/s/oC Electrical resistivity. ohm/& mil ft Modulus of elasticity, psi (Tension) Modulus of rigidity, psi (Torsion) Poisson s ratio Curie temperature, oF PROPERTIES Table 1 - TYPICAL ROOM-TEMPERATURE...