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Meehanite HR

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Journal Articles
Alloy Digest (1958) 7 (4): CI-21.
Published: 01 April 1958
... MEEHANITE HR is a strong and dense heat resisting material of high rigidity. It is recommended for use up to a temperature of 1450 F. This type of Meehanite metal offers a high degree of resistance to growth and scaling. This datasheet provides information on composition, physical properties...
Journal Articles
Alloy Digest (1957) 6 (2): CI-18.
Published: 01 February 1957
... under alternating heating conditions at temperatures up to 1100 deg. F. Composition: Carbon ( total) over 3.0 Silicon over 1.0 Other elements Iron Remainder Physical Constants: Specific gravity 7.32 Thermal conductivity, BTU/hr/ft /in/ F. ( 50-450°F.) 350 Thermal coef. expansion per OF. (lOO-IOOO F...
Journal Articles
Alloy Digest (1961) 10 (10): CI-31.
Published: 01 October 1961
... conductivity, BTLJ/hr/ftz/ft/ F 68-212°F 290 PROPERTIES Table 1 - TYPICAL MECHANICAL PROPERTIES Tensile strength, psi Transverse strength, lbs. (1.2 dia. bar - 18 centers) Transverse deflection, inch Brine11 hardness Yield strength, psi Elongation, % in 2 60000 4000 0.40 196 45000 2-10 Table 2 - APPROXIMATE...
Journal Articles
Alloy Digest (1973) 22 (12): CI-41.
Published: 01 December 1973
.... expansion/OF (lOO-1000oF) 0.258 7.15 0.16 7.4 x 10-6 Thermal conductivity, Btu/ft2/hr/in./oF (50-4500F) 235 Modulus of elasticity, psi 25x106 *0.5 to 1.5% vanadium may be used in place of molybdenum. PROPERTIES Table I- TYPICAL ROOM-TEMPERATURE MECHANICAL PROPERTIES (As-cast condition) Tensile strength, psi...
Journal Articles
Alloy Digest (1959) 8 (9): CI-27.
Published: 01 September 1959
... to growth and scaling. Composition: carbon (total) Silicon Other elements Iron 2.30 min. 4.30 min. x.00 cu/Cr Remainder Physical Constants: Specific gravity Thermal conductivity, BTU/hr/ft?/in/ F. (50450 F.) Thermal coef. expansion/ F. (lOO-10OO F.) x 1O-6 ModuIus of elasticity, psi x 106 Modulus of rupture...
Journal Articles
Alloy Digest (1957) 6 (6): CI-19.
Published: 01 June 1957
... Constants: carbon (total) over 3.0 Specific gravity 7.38 SiiiCOll over 1.0 Thermal conductivity, BTU/hr/ft*/in/°F. 360 other elements cu; cr, MO (50450 F.) Iron Remainder Thermal coef. expansion, in/in/V. 0.00000728 ( 100-lOOO°F.) Modulus of elasticity, psi 2 1,000,000 Modulus of rupture, psi 76,000 Table 1...
Journal Articles
Alloy Digest (1961) 10 (3): CI-29.
Published: 01 March 1961
.... Composition: Carbon Silicon Other elements Iron 3.55 max. 1.90 min. Cu./Cr./Ma. Remainder Physical Constants: Specific gravity 7.16 Thermal conductivity, Btu/hr/ft2/io/OF (50-4500F) 298 Thermal coef. expansion/OF I lo-6 (lOO-10000F) 6.66 Modulus of elasticity, psi I 106 10 Modulus of rupture, psi x 103 61...
Journal Articles
Alloy Digest (1973) 22 (2): CI-39.
Published: 01 February 1973
... heat, Btu/lb/oF (At 75oF) 0.13 Thermal coef. expansion/OF (32-212oF) 6x lo-6 Thermal conductivity, Btu/sq ft/hr/oF/in. (At 212oF) 323 Modulus of elasticity, psi 9x106 Modulus of rigidity, psi 4x106 Poisson s ratio 0.24 PROPERTIES Tabk 1 - ROOM-TEMPERATURE MECHANICAL PROPERTIES (As-cast condition...
Journal Articles
Alloy Digest (1970) 19 (10): CI-36.
Published: 01 October 1970
... Specific heat, Btu/lb/oF Thermal coef. expansion/OF (RT to 2OOoF) 1.34 0.13 5.0x 10-6 (RT to 4OOoF) 5.65 x 10-6 (RT to 8OOOF) 6.50x10-6 (RT to 1200oF) 7.20x10-6 Thermal conductivity, Btu/sq ft/in./hr/oF (50 to 45OoF) 3OG330 Modulus of elasticity, psi (tension) 22x106 Modulus of rigidity, psi 9.5X106...
Journal Articles
Alloy Digest (1955) 4 (10): CI-12.
Published: 01 October 1955
...- Iron Remainder Thermal conduaiviry~ BTU/ft/in/hr/ F. 290 Thermal cod. erpansmn/ F. (100-1000°F.) Cod. of friction (Meehanice GE against smel ) 8:EF- Magnetic permeabiliy, kilolines-psi 40 ampere nuns per inch 38.1 100 ampere turns per inch 54.8 GJerc+Jc? fofw ;ga f-g; ;p 223 Modulus of elasticity. psi...
Journal Articles
Alloy Digest (1958) 7 (9): CI-22.
Published: 01 September 1958
... conductiviy, BTU/ftr/in/hr/ F. (50450°F.) 345 Thermal coef. expansion/OF. ( lOO-1000°F.) x 1W 6.84 Magnetic permeability, kiloIines-psi 40 ampere turns per inch 44.2 100 ampere turns per inch 61.3 Coercive force, ampere turns per inch at 645 kiIoIines-psi 41.2 PROPERTIES Table 1 -TYPICAL MECHANICAL PROPERTIES...
Journal Articles
Alloy Digest (1959) 8 (1): CI-25.
Published: 01 January 1959
... conductiviy, BTU/ft2/in/hr/oF. (50450°F. ) Thermal coef. expansion/ F. x 1O-6 (100.IOOO F.) Modulus of elasticity, psi x lo6 (tension) ModuIus of eIasticiy, psi x 106 (compression) Modulus or rupture, psi x lo3 Coef. of friction (GM against steeI) Magnetic permeabih y, kilolines-psi 40 ampere turns per inch...
Journal Articles
Alloy Digest (1964) 13 (1): CI-32.
Published: 01 January 1964
... section depending onits location and must therefore be regarded as such when determining mass effect. Specific gravity 7.22 Density, lb/cu.ia 0.264 modulus of elasticity, psi x 106 14.5 Modulus of rupture, psi x 103 74.1 Coef. of friction (Meehanite GD against steel) 0.1695 Thermal conductivity Btu/hr/ft2...
Journal Articles
Alloy Digest (1954) 3 (9): CI-8.
Published: 01 September 1954
... of rupture. psi Coeflicient of friction (against steel) Thermal conductivity, BTU/hr/ft /in (50-400 F) Coef. thermal expansion, OF (lOO-10OO F) Magnetic permeability, kilolines-psi 40 ampere turns per inch 100 ampere turns per inch Coercive force, ampere turns per inch at 645 kilolines-psi 7.25 0.26...
Journal Articles
Alloy Digest (1975) 24 (6): Ni-218.
Published: 01 June 1975
.../oF (70-2 12oF) 0.11 Thermal coef. expansion/OF (122.12020F) 8.4 x lo-6 Thermal conductivity, Btu/ft2/hr/in./oF 104 Coefficient of friction (6 micro-inch surface finish) 0.10 Magnetic permeability 1.005 Modulus of elasticity, psi (Tension or Compression) 32x106 PROPERTIES Table 1 - ROOM AND ELEVATED...
Journal Articles
Alloy Digest (1976) 25 (7): Ni-230.
Published: 01 July 1976
... 2020F) 8.10 x 10-6 Thermal conductivity, Btu/ft2/in./hr/oF (At 680F) 103 Electrical resistivity, ohms/cir mil ft (At 680F) 620 Coefficient of friction (6.microinch surface finish) 0.10 Magnetic permeability 1.005 Modulus of elasticity, psi (Tension and Compression) 32 x 106 PROPERTIES Table 1 - ROOM...
Journal Articles
Alloy Digest (1976) 25 (5): Ni-227.
Published: 01 May 1976
... 2.50 1 122-12020F) Thermal conductivity, Btu/ft /hr/in./oF Nickel Remainder Coefficient of friction (6 micro-inch surface finish) Magnetic permeability Modulus of elasticity, psi (Tension & Compression) 0.294 8.22 2025 0.10 8.56 x 10-6 104 0.10 1.005 32 x 106 PROPERTIES Table 1 - ROOM AND ELEVATED...
Journal Articles
Alloy Digest (1974) 23 (7): Ni-206.
Published: 01 July 1974
... heat. Btu/lb/oF (77-112oF) Thermal coef. expansion/OF ( I 1202oF) Thermal conductivity. Btu/ft2/hr/in./oF Coefficient of friction (6-micro-inch surface finish) Magnetic permeability Modulus of elasticity. psi (Tension or Compression) 0.284 7.90 1900 1040 0.11 8.1 x 10-6 104 0.10 1 .oos 32 x 106...
Journal Articles
Alloy Digest (1974) 23 (10): Ni-210.
Published: 01 October 1974
...) No. 70 No. 72 Density, Ib/cu in. 0.307 Specific gravity 8.50 Melting point, oF (Solidus, min.) 1775 (Liquidus, max.) 2025 Specific heat, Btu/lb/oF 0.11 Thermal coef. expansion/OF 1 122-l 2020F) 8.1 x 10-6 Thermal conductivity, Btu/ft /in./hr/oF 104 Coefficient of friction 0.10 Magnetic permeability 1.005...
Journal Articles
Alloy Digest (1975) 24 (5): Ni-217.
Published: 01 May 1975
... 2.50 Remainder Density, lb/cu in. 0.294 Specific gravity 8.14 Melting point, oF 1950 Specific heat, Btu/lb/oF (70-2 12oF) 0.11 Thermal coef. expansion/OF (122-l 2020F) 8.4 x 10-6 Thermal conductivity, Btu/ft2/hr/in./oF 104 Coefficient of friction (6 micro-inch surface finish) 0.10 Magnetic permeability...