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Copper alloy no. 878

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Journal Articles
Alloy Digest (1979) 28 (12): Cu-386.
Published: 01 December 1979
... Copper Alloy No. 878 is a copper-zinc-silicon alloy for die castings. Among the brass die-casting alloys, it has the highest strength, hardness and wear resistance; however, it is the most difficult to machine. It is used where very high requirements must be met for strength and wear resistance...
Journal Articles
Alloy Digest (2018) 67 (8): Cu-878.
Published: 01 August 2018
...) Soft annealing, 1 3 h, °C (°F) 600 800 (1112 1472) Age hardening Upon request Fabricability See Table 3. Surface treatment polishing shown in next column. Copyright © 2018, ASM International®. All rights reserved. WIELAND-K60 (High-Copper Alloy) Filing Code: Cu-878 Copper :: August 2018 Materials Park...
Journal Articles
Alloy Digest (1983) 32 (6): Cu-460.
Published: 01 June 1983
... Copper Alloy No. C90700 is a cast copper-tin alloy known also by names formerly used (but not recommended): Tin Bronze, 205 and 89-11. It is a medium-strength alloy and has a good combination of strength, ductility and resistance to corrosion. Among its many uses are gears, bearings, bushings...
Journal Articles
Alloy Digest (1979) 28 (8): Cu-378.
Published: 01 August 1979
... hardness heat treatability joinability machinability physical properties tensile properties UNS C84500 Copper Alloy No. 845 Filing Coda: Cu-878 copper Alloy AUGUST 1879 - DATA ON WORLD WIDE METALS AND ALLOYS Upper MaurIair, New Jv Copper Alloy No. 845 (Cast Semi-Red Brass) Copper Alloy No. 845...
Journal Articles
Alloy Digest (1966) 15 (9): Cu-168.
Published: 01 September 1966
... Copper Alloy 720 is a copper-nickel alloy having high corrosion resistance and retention of strength at moderately elevated temperatures. It is recommended for heat exchangers, salt water piping and relays. This datasheet provides information on composition, physical properties, hardness...
Journal Articles
Alloy Digest (2018) 67 (4): Mg-83.
Published: 01 April 2018
... properties thermal properties UNS M11919 AZ91E is a general-purpose sand and investment casting alloy. Chemical Composition, wt.% (Nominal) Designation AZ91E UNS M11919 Aluminum 8.1 9.3 Copper 0.015 Manganese 0.17 0.35 Iron 0.005 Nickel 0.001 Silicon 0.2 Zinc 0.40 1.0 Total impurities, max 0.3 Magnesium...
Journal Articles
Alloy Digest (1970) 19 (12): Cu-223.
Published: 01 December 1970
... heat treatability joinability Lukens AR-350 machinability physical properties tensile properties workability CDA Alloy 544 Filing Code: cu-223 Copper Alloy DECEMBER 1970 DIGEST 81 - DATA ON WORLD WIDE METALS AND ALLOYS Published by Engineering Alloys Digest, Inc. Upper Montclair. New Jersey...
Journal Articles
Alloy Digest (1960) 9 (7): Al-93.
Published: 01 July 1960
...) BA. 703 is a heat treatable aluminum extrusion alloy having high tensile and fatigue strengths. Composition: Copper Magnesium Manganese ZillC chromium Alumillurn 0.3 - 0.7 2.2 - 3.2 0.3 max. 5.2 - 6.2 0.08 - 0.25 Remainder Physical Constants: Specific gravity Density, Ib/cu. in. Thermal conductivity...
Journal Articles
Alloy Digest (1997) 46 (8): SS-505.
Published: 01 August 1997
... Project 70 and Project 7000 Type 203 stainless steels are alternative materials to AISI Type 303, resulfurized stainless steel having improved machinability. High manganese and copper are substituted for some nickel resulting in a stable austenitic structure having low magnetic permeability...
Journal Articles
Alloy Digest (2022) 71 (1): CS-215.
Published: 01 January 2022
... States and Canada are given in Table 10. Source: Ref 23 24 Liquid-Metal Corrosion. Non-alloy steels can be embrittled by contact with liquid brass, aluminum bronze, copper, zinc, lead-tin solders, lithium, cadmium and indium. The degree of embrittlement is greater for steels that have been heat treated...
Journal Articles
Alloy Digest (2022) 71 (8): CS-229.
Published: 01 August 2022
... Corrosion. Non-alloy steels can be embrittled by contact with liquid brass, aluminum bronze, copper, zinc, lead-tin solders, lithium, cadmium and indium. The degree of embrittlement is greater for steels that have been heat treated to produce higher strength. Source: Ref 21 Corrosion in Fresh Water...