1-1/2 inch C110 H04 Full Hard Copper Round Rods are most commonly known for its sublime electrical conductivity and formability. Having a variety of purposes, Copper 110 can be used anywhere from plumbing hardware, wiring and electrical components to telecommunication materials. C110 is commonly referred to as Electrolytic Tough Pitch (ETP) and is both solderable and brazed. It is not heat treatable.

MTR MTR Available
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Product Information

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Please note:

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Please note that this data is to be used ONLY FOR REFERENCE, NOT FOR DESIGN, and by using it,you agree that any decisions you make regarding materials for your project are at your own discretion.
Diameter
1.5
Max Length
144
Alloy
110
Temper
H04
Metal Type
Copper
Shape
Bar-Round
Yes
RoHS
Yes
REACH
Yes
Custom Cut Warehouse
1
Weight/Lineal Foot
6.83 pounds
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Mechanical Properties

Density g/cm^3
9
Brinell Hardness 500 kg load
83
Ultimate Tensile Strength KSI
50
Yield Tensile Strength KSI
45
Rockwell Hardness B Scale
50
Elongation % in 2 in.
20
Machinability %
20
Melting Point °F
1949 - 1981
Shear Strength KSI
28
Electrical Conductivity % IACS
100
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Chemistry Information : 110 Copper

Element
Percentage
Element
Percentage
Element
Percentage
Cu
99.9
O
0.04

Yes, the 1.5 inch Copper Round Bar 110-H04 is available for custom cutting with lengths up to 144 inches. Custom cuts are processed at the warehouse to meet your size requirements.

Absolutely. This copper round bar is known for its excellent electrical conductivity (100%) and is commonly used in wiring, electrical components, and telecommunication materials.

The bar is made from 110 alloy copper with an H04 full hard temper, providing good strength with an ultimate tensile strength of 50 ksi and excellent formability, making it ideal for plumbing hardware and electrical uses.

Yes, the 110-H04 Copper Round Bar complies with RoHS and REACH standards, ensuring it meets important environmental and safety regulations.

Yes, a material test report (MTR) is available for this product, providing detailed certification of its material properties.

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