Aluminum Stock
Plate, bar, sheet, angle and round in 6061, 7075 and 5052.
Also searched as: 60617075aluminum platealuminum baraluminium sheet
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Ball Bushing, Self-Aligning, 0.6250 in Shaft Diameter
Overall Length: 2.500 inSeries: Super TWN
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4-Way Flow Direction Valve
Flow Direction: 4-WayManual Operation Type: Non-Locking PushMaximum Operating Pressure: 145 psi
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Base Mounted Subplate
Overall Height: 83.4 mmOverall Length: 114.9 mmOverall Width: 35 mmResponse Time: 26 ms
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D03 Valve to D05 Manifold
Max Pressure: 3000 psiPort Configuration: A & B Ports - AlignedValve Pattern: D03 Valve to D05 Manifold
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About aluminum stock
Aluminum stock encompasses a range of mill products, including plate, bar, sheet, angle, and round forms, primarily utilized for structural components, machining blanks, and general fabrication. Common alloys include 6061, a versatile heat-treatable alloy known for good machinability and weldability; 7075, a high-strength alloy often used in aerospace applications; and 5052, a non-heat-treatable alloy offering excellent corrosion resistance and formability. Selection is typically based on form factor (e.g., flat plate, square bar, round rod), dimensions (thickness, width, length, diameter), and alloy temper (e.g., T6 for 6061 and 7075, H32 for 5052). Surface finishes are generally mill finish, but can include brushed or polished options depending on supplier and form. These materials are fundamental for creating custom components through processes such as milling, turning, cutting, and welding, serving diverse industries from aerospace and automotive to machinery and consumer goods.
How to choose
When selecting aluminum stock, first define the required form factor: plate, sheet, bar (round, square, rectangular), or angle. Next, determine the critical dimensions such as thickness, width, length, or diameter, ensuring they meet structural or machining envelope requirements. The third step is to choose the appropriate alloy based on application demands: 6061 for general-purpose structural and machined parts, 7075 for high-strength applications where weight is critical, or 5052 for applications requiring superior corrosion resistance and formability. Finally, specify the required temper, such as T6 for heat-treated alloys or H32 for strain-hardened alloys, to achieve the desired mechanical properties.