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Rulon Bearings

Schmolz + Bickenbach UGIMA® 304 Cu Stainless Steel Bar
Categories: Metal; Ferrous Metal; Austenitic; Stainless Steel; T 300 Series Stainless Steel

Material Notes: 304Cu UGIMA® is an enhanced machining grade, providing the ultimate level of machinability available in an non-resulfurized austenitic stainless steel. 304Cu UGIMA® also features the added benefit of increased cold formability when compared with that of standard type 304 stainless steels. The increased copper content in 304Cu UGIMA® provides corrosion resistance superior to 304L and comparable to 316L. The unique combination of machinability, cold formability, and corrosion resistance afforded by 304Cu UGIMA® is unique in the industry, and provides the optimum solution for even the most difficult fabrication challenges. 304Cu UGIMA® builds upon the proprietary UGIMA manufacturing process with the addition of copper, allowing for good machinability across a wide range of operations and cutting conditions. It allows for superior machinabilty at both low and high speeds, cam-driven and CNC machines, and with high-speed steel or carbide tooling. Machine shops using 304Cu UGIMA® have experienced consistent success regardless of machine, operation, tooling, or cutting conditions.

Information provided by Schmolz + Bickenbach

Key Words: AISI 304Cu/XM-7; UNS S30430; AMS-QQ-S-763; EN 10088-3 1.4567, X3CrNcUS18-9-4
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Physical PropertiesMetricEnglishComments
Density 7.81 g/cc0.282 lb/in³
 
Mechanical PropertiesMetricEnglishComments
Hardness, Brinell  145 - 185
@Thickness >=25.4 mm
145 - 185
@Thickness >=1.00 in
Turned Bars
 180 - 210
@Thickness <=25.4 mm
180 - 210
@Thickness <=1.00 in
Cold Drawn Bars
Tensile Strength  483 - 621 MPa
@Thickness >=25.4 mm
70000 - 90000 psi
@Thickness >=1.00 in
Turned Bars
 586 - 724 MPa
@Thickness <=25.4 mm
85000 - 105000 psi
@Thickness <=1.00 in
Cold Drawn Bars
Tensile Strength, Yield  207 - 345 MPa
@Strain 0.2 %,
Thickness >=25.4 mm
30000 - 50000 psi
@Strain 0.2 %,
Thickness >=1.00 in
Turned Bars
 483 - 621 MPa
@Strain 0.2 %,
Thickness <=25.4 mm
70000 - 90000 psi
@Strain 0.2 %,
Thickness <=1.00 in
Cold Drawn Bars
Elongation at Yield  28 - 40 %
@Thickness <=25.4 mm
28 - 40 %
@Thickness <=1.00 in
Cold Drawn Bars
 48 - 62 %
@Thickness >=25.4 mm
48 - 62 %
@Thickness >=1.00 in
Turned Bars
Reduction of Area  68 - 75 %
@Thickness <=25.4 mm
68 - 75 %
@Thickness <=1.00 in
Cold Drawn Bars
 70 - 82 %
@Thickness >=25.4 mm
70 - 82 %
@Thickness >=1.00 in
Turned Bars
Tensile Modulus  200 GPa
@Temperature 20.0 °C
29000 ksi
@Temperature 68.0 °F
 200 GPa
@Temperature 500 °C
29000 ksi
@Temperature 932 °F
 
Thermal PropertiesMetricEnglishComments
CTE, linear  1.80 µm/m-°C
@Temperature 20.0 - 500 °C
1.00 µin/in-°F
@Temperature 68.0 - 932 °F
 16.5 µm/m-°C
@Temperature 20.0 - 200 °C
9.17 µin/in-°F
@Temperature 68.0 - 392 °F
Thermal Conductivity  16.7 W/m-K
@Temperature 20.0 °C
116 BTU-in/hr-ft²-°F
@Temperature 68.0 °F
 18.0 W/m-K
@Temperature 500 °C
125 BTU-in/hr-ft²-°F
@Temperature 932 °F
 
Processing PropertiesMetricEnglishComments
Hot-Working Temperature >= 954 °C>= 1750 °FForge
 999 - 1200 °C1830 - 2190 °FForging range
 1150 - 1220 °C2100 - 2230 °FHeat in range
 <= 1290 °C<= 2350 °FHeat of core during fast forging
 
Component Elements PropertiesMetricEnglishComments
Carbon, C <= 0.10 %<= 0.10 %
Chromium, Cr 17 - 19 %17 - 19 %
Copper, Cu 3.0 - 4.0 %3.0 - 4.0 %
Iron, Fe >= 63.825 %>= 63.825 %
Manganese, Mn <= 2.0 %<= 2.0 %
Nickel, Ni 8.0 - 10 %8.0 - 10 %
Phosphorus, P <= 0.045 %<= 0.045 %
Silicon, Si <= 1.0 %<= 1.0 %
Sulfur, S <= 0.030 %<= 0.030 %
 
Descriptive Properties
Corrosion ResistanceAcetic Acid2/4
 Humidity4/4
 NaCl (Saline Mist)3/4
 Nitric Acid2/4
 Petroleum2/4
 Phosphoric Acid3/4
 Sodium Carbonate2/4
 Sulfuric Acid3/4

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

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