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Copper alloy no. 903

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Journal Articles
Alloy Digest (1977) 26 (12): Cu-345.
Published: 01 December 1977
... Copper Alloy No. 903 is a cast copper-tin-zinc alloy known also as G Bronze or 88-8-0-4 alloy. It has a good combination of strength and corrosion resistance and is often used in castings subject to liquid or gas pressures. Among its many uses are valves, pumps, bushings and gears. This datasheet...
Journal Articles
Alloy Digest (2020) 69 (1): Cu-903.
Published: 01 January 2020
.... A comparison of yield strength and electrical conductivity performance of select hard temper copper-based materials is shown in Fig. 1. Copyright © 2020, ASM International®. All rights reserved. OLIN BRASS ALLOY C10200 (Oxygen-Free Copper) Filing Code: Cu-903 Copper :: January 2020 Materials Park, Ohio 44073...
Journal Articles
Alloy Digest (2000) 49 (2): Cu-647.
Published: 01 February 2000
...). Figure 1 compares the formability of C654 with other spring alloys. Olin C654 is among the few copper alloys that maintain more than 70% of their initial stress (normal force) after 3000 h at 125 C (257 F). It is therefore suitable for elevated tempera- ture applications. The stress relaxation...
Journal Articles
Alloy Digest (2004) 53 (5): SS-903.
Published: 01 May 2004
... 8.5 10 9.5 Molybdenum 3 4 3.4 Copper 0.5 max 0.02 Nitrogen 0.14 0.25 0.17 Iron bal bal PREN(a) 36 40 38 Pitting resistance equivalent number, PREN = Cr 3.3Mo + 16N Mechanical Properties: (All-weld, as welded) Tensile strength, MPa (ksi) Minimum 690 (100) Typical 850 (123) Pipe butt weld 867 (126...
Journal Articles
Alloy Digest (1988) 37 (12): Zn-45.
Published: 01 December 1988
... UNS Z33520 is a zinc-base alloy containing about 4% aluminum. It has no intentionally added copper. It is a relatively ductile (bendable and shapable) die casting alloy. This datasheet provides information on composition, physical properties, hardness, tensile properties, and compressive and shear...
Journal Articles
Alloy Digest (1985) 34 (8): Ni-319.
Published: 01 August 1985
... CARPENTER NICKEL-COPPER ALLOY 400 combines high strength (comparable to structural steel) and toughness over a wide temperature range. It can be strengthened by cold working. It has excellent resistance to many corrosive environments. This alloy has excellent mechanical properties at sub-zero...
Journal Articles
Alloy Digest (1988) 37 (11): Zn-44.
Published: 01 November 1988
... UNS No. Z35840 is a zinc-aluminum-copper alloy that offers exceptionally high strength (58,000 to 64,000 psi tensile strength as cast) at modest cost. It performs best in thin-walled castings (down to 0.10 inch) which means reduced weight and lower material costs when castings are redesigned...
Journal Articles
Alloy Digest (2007) 56 (12): Ti-144.
Published: 01 December 2007
... tensile properties TIMETAL 230 workability thermal properties UNS R56260 Chemical Composition, wt Copper 2.00 3.00 Iron 0.20 max Oxygen 0.20 max Carbon 0.08 max Nitrogen 0.03 max Hydrogen 0.01 max Residual elements, each 0.10 max Residual elements, total 0.40 max Titanium bal TIMETAL® 230 Filing...
Journal Articles
Alloy Digest (1990) 39 (6): Zn-50.
Published: 01 June 1990
... bronzes and many ferrous and non-ferrous wrought alloys. Composition: Physical Constants: Ingot casting Density, lb/cu in. 0.181 ASTM (I3669-89) (ASTM B791-88) specific gravity 5.0 Aluminum 25.5-28.0 25.0-28.0 Melting range, F 708-903 Copper 2.0-2.5 2.0-2.5 Thermal coef. expansion/ F (68-212 F) 14.4 x...
Journal Articles
Alloy Digest (1981) 30 (6): Zn-36.
Published: 01 June 1981
... Tg 27 Zinc Alloy is a zinc-aluminum-copper high-strength foundry alloy that is well suited to structural applications, once the exclusive domain of malleable and cast iron, bronzes and aluminum. Tg 27 offers an as-sand-cast tensile strength of 58,000 to 64,000 psi at modest costs. It is extremely...
Journal Articles
Alloy Digest (2014) 63 (5): Ni-712.
Published: 01 May 2014
... containing hydrochloric acids, if the alloy is used to connect steel (iron) pipes or copper pipes, this alloy might be damaged by corrosion at an early stage. See Table 2 for corrosion data. High temperature resistance atmosphere. Since MA-B2 loses its ductility when it is exposed to temperatures between 538...
Journal Articles
Alloy Digest (1984) 33 (9): Ni-302.
Published: 01 September 1984
... family of companies. Composition: Nickel 52.0 Chromium 22.0 Cobalt 12.5 Molybdenum 9.0 Aluminum I.2 Carbon 0.07 Iron 1.5 Manganese 0.5 Silicon 0.5 Sulfur 0.008 Titanium 0.3 Copper 0.2 Nominal for De- posited Filler Metal PROPERTIES Table 1 -TYPICAL OPERATING CONDITIONS FOR 0.045-in. (I.l-mm) DIAMETER...
Journal Articles
Alloy Digest (1956) 5 (6): Zn-3.
Published: 01 June 1956
..., It is the most stable of the zinc but on aging ioses al&t 20%. of -its tensile- strength with practically no impact drop. Composition: Aluolioum Copper Magnesium h0 had cadolium Tin ZiOC 3.5-4.3 0.10 max. 0.03-0.08 0.10 max. 0.005 olax. 0.005 olax. 0.005 max. Remainder Physical Constants: Specific gravity...