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Search Results for COBALT CHROME

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Journal Articles
Alloy Digest (1984) 33 (8): TS-427.
Published: 01 August 1984
... COBALT CHROME is an air-hardening,high-carbon, high-chromium die steel. The addition of approximately 3% to this steel gives it extra resistance to galling and pick-up and additional red hardness which is useful on semi-hot-work applications. It also is recommended when it is desirable to nitride...
Journal Articles
Alloy Digest (1953) 2 (2): TS-5.
Published: 01 February 1953
... wear should be made with a cobalt-chrome base alloy welding rod. Welds which do not have to withstand high abrasion should be made with 18-8 stainless rod. Grinding: Use a rather soft wheel of fairly coarse grain material. Under no circumstances force the grinding. Grinding cracks usually result from...
Journal Articles
Alloy Digest (2011) 60 (2): Co-121.
Published: 01 February 2011
... Jet Kote 117 is a premium quality tungsten carbide/cobalt powder for the deposition of high quality HVOF coatings. This datasheet provides information on composition, physical properties, and hardness. It also includes information on corrosion and wear resistance as well as surface treatment...
Journal Articles
Alloy Digest (1956) 5 (8): TS-49.
Published: 01 August 1956
... it may be welded by either the electric arc method or by acetylene welding; however, the former method seems to be the most desirable. Welds which are to be subjected to high wear should be made with a cobalt-chrome base alloy welding rod. Welds which do not have to withstand high abrasion should be made...
Journal Articles
Alloy Digest (1966) 15 (10): TS-184.
Published: 01 October 1966
... with a cobalt-chrome base alloy welding rod. Welds which do not have to withstand high abrasion should be made with 18-8 stainless rod. (Recommended by the editor.) Specification Equivalents: Al.9 Type D2 SAE Type D2 General Charoctcristics: Tri-Z is a high-carbon, high-chromium air hardening tool steel...
Journal Articles
Alloy Digest (1956) 5 (11): TS-52.
Published: 01 November 1956
... difficulry in machining in rawn condition due to high hardness and spring character of the steel. Cobalt high-speed steel or carbide-tipped cutting tools are recommended. High speed sreel turning tools should be ground to 8-12 deg. side rake, 6-10 deg. back rake, 7-9 deg. side relief, 7-9 deg. end relief, 8...
Journal Articles
Alloy Digest (2017) 66 (8): Ni-732.
Published: 01 August 2017
... Manganese 0.30 1.0 Chromium 20.0 24.0 Iron 3.0 max Molybdenum 1.0 3.0 Cobalt 3.0 max Tungsten 13.0 15.0 Lanthanum 0.01 0.05 Boron 0.015 max Aluminum 0.20 0.50 Nickel bal Physical Properties: Specific gravity 8.83 Density, kg/m3 (lb/in.3) 8830 (0.319) Electrical resistivity, RT, m ( circular-mil/ft) 1.25...
Journal Articles
Alloy Digest (1961) 10 (8): Fe-11.
Published: 01 August 1961
... THERLO, also known as D-H Alloy No. 373, is an iron-nickel-cobalt alloy ideally suited for sealing to glass. This datasheet provides information on composition, physical properties, hardness, elasticity, and tensile properties. It also includes information on forming, heat treating, machining...
Journal Articles
Alloy Digest (1995) 44 (8): Co-98.
Published: 01 August 1995
... metal products WALLEX Nos. 505 WALLEX Nos. 55 thermal properties WALLEX Nos. 55 81505 Filing Code: Cobalt Alloy Co-98 AUGUST 1995 - DIGEST- .- DATA ON WORLD WIDE METALS AND ALLOYS pJwu?wp-. P-by: Aby DigW. h I201477-9161 Eqllcwhwm&. 27 C&ii 6lmU. Orange. N.J. 070% I USA WALLEX NOS. 55 & 505...
Journal Articles
Alloy Digest (1953) 2 (10): Fe-3.
Published: 01 October 1953
... KOVAR A is a cobalt, nickel, iron alloy recommended for sealing into hard glass. Has similar expansion curve as glass, makes firm bond between metal and glass, is easy to machine and form, and has high resistance to thermal shock. This datasheet provides information on composition, physical...
Journal Articles
Alloy Digest (1955) 4 (3): Fe-6.
Published: 01 March 1955
... RODAR is a cobalt, nickel, iron alloy recommended for sealing into hard glass. Has similar expansion curve as glass, makes firm bond between metal and glass, is easy to machine and form, and has high resistance to thermal shock. This datasheet provides information on composition, physical...
Journal Articles
Alloy Digest (1973) 22 (12): CI-41.
Published: 01 December 1973
... removed from service at temperature above 120CPF. Bar #I is alloy steel (25% chrome-12% nickel). Bar #5 is cast in HSV. Note freedom from growth and distortion. DOI: 10.31399/asm.ad.ci0041 Copyright © ASM International® 1996 Heat Treatment: MEEHANITE HSV is used in the as-cast condition which has...
Journal Articles
Alloy Digest (1998) 47 (10): Ni-546.
Published: 01 October 1998
.... Chrome1 is a trademark of Hoskins Manufacturing Company. Chemical Composition, wt (Nominal) Carbon 3.10 Chromium 6.50 Boron 1.35 Silicon 1.80 Iron 1.90 Tungsten 43.50 Cobalt 6.25 Nickel Balance Physical Properties: Density, kg/m3 (lbiin.3) Specific graviq 13,800 (0.5) 10.15 Solidus temperature, matrix, C...
Journal Articles
Alloy Digest (1988) 37 (4): Ni-330.
Published: 01 April 1988
... desulfurization systems and the pulp and paper industries. *JESSOP is a registered trademark of Jessop Steel Company. The data herein are typical of average values but should not be used for specification nor final design. Carbon Phosphorus Manganese Sulfur Chromium Iron Molybdenum Tungsten Silicon Cobalt...
Journal Articles
Alloy Digest (2004) 53 (4): Ni-620.
Published: 01 April 2004
... properties fracture toughness heat treatability high-temperature alloys microstructure turbine blades turbine discs UDIMET 720 Chemical Composition, wt (Nominal) Nickel 56.0 Cobalt 14.7 Molybdenum 3.0 Tungsten 1.25 Chromium, disk applications 16.0 Chromium, blade applications 18.0 Titanium 5.0...
Journal Articles
Alloy Digest (1986) 35 (1): Cb-22.
Published: 01 January 1986
.... 532N WC-6% Co WC-12% co Stellite 6B Chrome Oxide D2 Tool Steel, 59-60 Rockwell C 17-4 PH Stainless Steel, 43 Rockwell C 31.5 225. Microstructure: Nitriding of the base alloy of TRIBOCOR 532N results first in the formation of titanium nitride platelets growing in from the surface. As the alloy becomes...
Journal Articles
Alloy Digest (1991) 40 (4): SA-458.
Published: 01 April 1991
... - DIGEST- APRIL 1991 DATA ON WORLD WIDE METALS AND ALLOYS CCqzyr&ht 1991. AlbyD&sl. .kAUrghlsraserved. Ptiishedby: Aloy Dii. Inc. /201-677-9161 Llarashownere~mtmheu%dlor 27 Oanfiild street. Orange. N.J. 07060 I USA spEdcetioncrw&ls~n. UNS G61200 (Chrome-Vanadium Steel) UNS G62100 is a tough, shock...
Journal Articles
Alloy Digest (1962) 11 (9): TS-124.
Published: 01 September 1962
... bIolybdenual cobalt ClUOdUm iron 1.2-1.3 0.20-O-40 0.20-O-40 1.4-1.6 2.5-3-O 12.0-13.0 Remainder Therms1 coef. expansion/oF x 1Od (80-10OOOF) Modulus of elarticity, p8i x 106 PROPERTIES 6.71 29-30 Tde 1 - IMPACT STRENGTH VERSUS HARDNESS (Oil or air hsrdened, then tempered 2 hours at indicated temperscures...
Journal Articles
Alloy Digest (2010) 59 (4): Cu-781.
Published: 01 April 2010
... nozzles and manifolds for hot runner systems. BOEHLER UDDEHOLM ALLOY BeCu172 (Beryllium Copper Mold Material) BOEHLER UDDEHOLM ALLOY BeCu172 Chemical Composition, wt (Typical) Beryllium 1.9 Cobalt + nickel 0.25 Copper bal Physical Properties: Age-hardened to 30 or 40 HRC. Data at room and elevated...
Journal Articles
Alloy Digest (1969) 18 (12): Ni-149.
Published: 01 December 1969
... the highest quality of the nuclear industry. Composition: Copper Chromium Iron Manganese Silicon Carbon Sulphur Nickel Cobalt 0.50 max. 14.G17.0 6.0-10.0 1.00 max. 0.50 max. 0.10 max. 0.015 max. 72.0 min. 0.10 max. Physical Constants: Specific gravity Density, lb./cu.in. Melting point, oF Specific heat, Btu...