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NICKEL COPPER ALLOYS 506

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Journal Articles
Alloy Digest (1975) 24 (2): Ni-215.
Published: 01 February 1975
... Nickel-Copper Alloys 505 and 506 are strong castings alloys. Both alloys combine high strength with good wear resistance. Alloy 505 (4% silicon) is employed where exceptional resistance to galling is needed. Alloy 506 (3% silicon) is recommended where good (but not exceptional) galling resistance...
Journal Articles
Alloy Digest (1962) 11 (8): Ni-73.
Published: 01 August 1962
... MONEL alloy 506 is an intermediate cast nickel-copper alloy that has higher hardness than cast Monel alloy 410 and better machinability than Monel alloy 505. This datasheet provides information on composition, physical properties, hardness, elasticity, and tensile properties as well as fracture...
Journal Articles
Alloy Digest (1963) 12 (8): Ni-85.
Published: 01 August 1963
... resistance, Nickel Copper Alloy 505 or Nickel Copper Alloy 506 should be used in irs place. It does not become brittle at subzero temperatures. AC such temperatures the tensile strength and hardness will increase co a limited degree, while rhe ductility and impact strength may decrease an insignificant...
Journal Articles
Alloy Digest (1996) 45 (5): Ni-509.
Published: 01 May 1996
... Be Overlaid. All steels having less than 0.25% carbon and gray cast iron nickel, nickel/copper alloy 400. nickel-chromium-iron alloy 600. Nichrome. Chromel. and most high-temperature alloys may be overlaid without special precau- tions. Steels with more than 0.25% carbon content may also be overlaid...
Journal Articles
Alloy Digest (1996) 45 (4): Ni-506.
Published: 01 April 1996
... thmugboucrhtCoimonoyalloynIaUixconrainingsmallactrromium&ides to decrease at higher tempemtums. Cohnonoy No. 705 is unre- sponsive to heat treatment and is not forgeable. Base Metals That Can Be Overlaid: AU steels having less than 0.25% carbon and gray cast iron, nickel, nickel/copper alloy 400. nickel-chromium-iron alloy 600, Nichrome. Chromel...
Journal Articles
Alloy Digest (2000) 49 (12): SA-506.
Published: 01 December 2000
... is an improved version of the older grade A 709 grade 70W. Chemical Composition, wt Carbon 0.11 max Manganese 1.15 1.30 Phosphorus 0.020 max Sulfur(a) 0.006 max Silicon 0.35 0.45 Copper 0.28 0.38 Nickel 0.28 0.38 Chromium 0.50 0.60 Molybdenum 0.04 0.08 Vanadium 0.05 0.7 Aluminum 0.010 0.040 Nitrogen 0.015 max...
Journal Articles
Alloy Digest (2003) 52 (8): SA-518.
Published: 01 August 2003
... 0.07 max 0.07 max 0.07 max Manganese 0.40 0.70 0.75 1.15 0.75 1.15 0.75 1.15 0.90 1.40 Chromium 0.60 0.90 0.45 0.75 0.45 0.75 0.45 0.75 0.40 -0.60 Nickel 0.70 1.00 1.50 2.00 3.35 3.65 2.40 3.00 0.65 0.85 Molybdenum 0.15 0.25 0.30 0.55 0.55 0.65 0.45 0.65 0.40 0.60 Copper 1.00 1.30 1.00 1.30 1.15 1.75...
Journal Articles
Alloy Digest (2009) 58 (5): SS-1035.
Published: 01 May 2009
..., and lower costs than similar-strength alloys. S240® is a registered trademark of ATI Properties, Inc. Chemical Composition, wt (Typical values) Carbon 0.03 max Manganese 0.25 max Silicon 0.25 max Phosphate 0.010 max Sulfur 0.010 max Chromium 11.00 12.50 Nickel 9.25 10.75 Molybdenum 0.75 1.75 Aluminum 0.7...
Journal Articles
Alloy Digest (2013) 62 (3): SS-1138.
Published: 01 March 2013
... NITRONIC 30® Chemical Composition, wt (Maximum) Carbon 0.03 Manganese 7.0 9.0 Phosphorus 0.040 Sulfur 0.030 Silicon 1.00 Chromium 15.0 17.0 Nickel 1.5 3.0 Nitrogen 0.15 0.30 Copper 1.00 Iron bal Physical Properties: Density, 21 °C (70 °F), kg/m3 (lb/in.3) 7862 (0.283) Mechanical Properties: Modulus...