Brass, Copper & Bronze
Bar, sheet, tube and bushing stock in copper alloys.
Also searched as: brass barcopper sheetbronze barc360copper tube
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Bronze Bar
Length: 24 inRockwell Hardness: B86Standards: ASTM B505Tensile Strength: 85000 psiThickness: 0.375 in
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Bronze Bar
Length: 36 inRockwell Hardness: B86Shape: Rectangular BarThickness: 0.625 inThickness Tolerance: +0.067/+0.107 in
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from $8.50Alibaba $8.50 -
C Section Banded V-Belt, 3 Ribs
Ribs: 3Section: C
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C Section Banded V-Belt, 3 Ribs
Ribs: 3Section: C
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C Section Banded V-Belt, 3 Ribs
Ribs: 3Section: C
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C Section Banded V-Belt, 4 Ribs
Ribs: 4Section: C
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C Section Banded V-Belt, 4 Ribs
Ribs: 4Section: C
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C Section Classical Wedge V-Belt, 362 in Outside Length
Outside Length: 362 inSection: C
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C Section Classical Wedge V-Belt, 362 in Outside Length
Outside Length: 362 inSection: C
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C11000 ETP Copper Sheet
Length: 72 inThickness: 0.08 inWidth: 24.0 in
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C12200 Copper Tubing, 1/2 in OD x 7/16 in ID x 5 Ft
Inside Diameter: 0.4375 inLength: 5 ftOutside Diameter: 0.5 in
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C2680 Brass Bar
Alloy: C2680
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C2680 C28000 Copper Alloy Bar Brass Flat Bar Bus Bar
Thickness: 0.1 mm-300 mmWidth: 10 mm-2000 mm
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C360 Brass Flat Bar Stock 1/4" x 1"x 12"
Length: 12 in.Thickness: 1/4 in.Width: 1 in.
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C360 Brass Square Bar
Height: 4 inLength: 12 inWidth: 4 in
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C360 Brass Square Bar
Height: 6 inLength: 6 inWidth: 6 in
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C360 Free-Machining Brass Rectangle Bar
Length: 72 inThickness: 0.5 inWidth: 6.0 in
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C360 Free-Machining Brass Rectangle Bar
Length: 132 inThickness: 0.375 inWidth: 5.0 in
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C360 Free-Machining Brass Rectangle Bar
Length: 132 inThickness: 0.625 inWidth: 0.75 in
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C360 Free-Machining Brass Rectangle Bar, 1.5 in Thickness
Alloy: C360Thickness: 1.5 in
from $276.99Zoro $276.99 -
C5191 QSn6.5-0.1 Bronze Bar Rod
Grade: C5191 QSn6.5-0.1Shape: Rod
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C932 (SAE 660) Bearing Bronze Flat Bar
Length: 6 inThickness: 3 inWidth: 4 in
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C954 Aluminum Bronze Flat Bar
Length: 5 inThickness: 1.25 inWidth: 5 in
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C954 Aluminum Bronze Flat Bar
Length: 12 inThickness: 0.75 inWidth: 4.5 in
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C954 Aluminum Bronze Flat Bar
Length: 24 inThickness: 1.5 inWidth: 2 in
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C95400 Aluminum Bronze Round Bar 4 in Diameter 12.0 in Length
Diameter: 4 inLength: 12.0 in
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C95400 C6600 Bronze Bar Bronze Rod Alloy Copper Bars Brass Bar
Diameter: 25.4 mm
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CZ132 / Cw602n C35300 C352 Dezincification Dzr Brass Bar
Copper Content: 56%~68%
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Capillary Copper Tube
Outside Diameter: 0.3mm - 6mm
from $2.70eBay $2.70 -
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Copper Aluminum Sheet
Length: 36 inThickness: 0.020 inWidth: 24 in
About brass, copper & bronze
Copper alloys, encompassing brass, bronze, and pure copper, are widely utilized in applications requiring good electrical and thermal conductivity, corrosion resistance, and machinability. This category includes bar, sheet, tube, and bushing stock. Bar stock is available in various profiles such as round, square, hex, and flat, commonly in alloys like C360 (free-machining brass), C110 (electrolytic tough pitch copper), and C954 (aluminum bronze). Sheet and plate are offered in gauges from thin foil to heavy plate, with alloys like C260 (cartridge brass) and C110 being prevalent for their formability and conductivity. Tube stock, both seamless and welded, is specified by outside diameter, wall thickness, and length, with common applications including plumbing (e.g., C122, DHP copper) and heat exchangers. Bushing stock, often in continuous cast bronze alloys such as C932 (bearing bronze) or C954, is selected for its wear resistance and low friction properties in bearing applications. Material temper, such as annealed (O61) or half-hard (H02), significantly influences mechanical properties and formability. Dimensions are typically specified in imperial or metric units, with tolerances adhering to standards like ASTM B16, B42, or B152 depending on the product form and alloy.
How to choose
When selecting brass, copper, or bronze stock, first determine the required form: bar, sheet, tube, or bushing. Next, identify the primary performance requirement; for example, high electrical conductivity points to C110 copper, while wear resistance suggests C932 or C954 bronze. Third, specify the exact dimensions, including outer diameter, inner diameter (for tube/bushing), thickness (for sheet), or cross-section (for bar), along with the required length. Fourth, consider the necessary mechanical properties, such as tensile strength, yield strength, and hardness, which will dictate the appropriate alloy and temper (e.g., annealed for forming, half-hard for rigidity). Finally, evaluate any specific environmental or machining considerations, such as a need for lead-free material or enhanced machinability (e.g., C360 brass).