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              C92800 Leaded Tin Bronze

C92800 Leaded Tin Bronze   Copper Alloy No. C92800   C92800 Leaded Tin Bronze

Leaded Tin Bronze CDA 928

ASTM B 505
Chemical Composition % by weight
Element Nominal Minimum Maximum
Aluminum - - .005
Antimony - - .25
Copper 79 78 82
Iron - - .20
Lead 5 4 6
Nickel - - .50
Phosphorus - - .05
Silicon - - .005
Sulfur - - .05
Tin 16 15 17
Zinc - - .50
Applications
Piston rings.
Mechanical Properties
M07 - As Continuous Cast
Hardness* Brinell Hardness (500 kg load) 80
Tensile Strength** KSI 40
Yield Strength ** KSI (0.5% Ext. under load) 30
Elongation** % in 2 inch 1
**Test values are nominal approximations and depend on specimen size and orientation.
Physical Properties
Thermal Conductivity BTU/ (sq ft-ft-hr-F) N/A
Specific Heat BTU/lb/ºF @ 68F .09
Thermal Expansion Per °F from 68 F to 572 F N/A
Density lb/cu in @ 68 F N/A
Electrical Conductivity* (Annealed) % IACS @ 68 F N/A
Modulus of Elasticity KSI 16,000
*Volume basis
Fabrication Practices
Stress relieving temperature 500 F or 260 C
Time at temperature 1 hour per inch of section thickness
Responds to heat treatment No
Machinability rating (Free Cutting Brass=100) 70
Suitability for being joined by: Soldering/Excellent
Brazing/Good*
Oxyacetylene Welding/Not Recommended
Gas Shielded Arc Welding/Not Recommended
Coated Metal Arc Welding/Not Recommended
*Since brazing is performed at temperatures within the hot-short range, strain must be avoided during the brazing and cooling of this alloy.

The values listed above represent reasonable approximations suitable for general engineering use. Due to commercial variations in composition and to manufacturing limitations, they should not be used for specification purposes. See applicable A.S.T.M. specification references.

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C92800 Leaded Tin Bronze

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C92800 Leaded Tin Bronze


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