Our 6061-T6 aluminum linear motion mounting plate is a precision-engineered component designed for high-accuracy positioning systems, automation equipment, and industrial motion applications.
Manufactured from premium 6061-T6 aluminum alloy, this component delivers an ideal combination of lightweight structure, mechanical strength, corrosion resistance, and machining stability.
Through advanced CNC milling technology, every mounting surface, hole position, and structural feature is precisely machined to ensure excellent assembly accuracy and reliable operation.
The component is finished with natural anodizing treatment, providing a smooth surface appearance, enhanced corrosion protection, and long-term durability in industrial environments.
Precision CNC Machined Structure | Advanced CNC machining ensures tight dimensional control, accurate mounting |
6061-T6 Aluminum Alloy Performance | 6061-T6 aluminum provides excellent strength-to-weight ratio, good machinability, and corrosion resistance, making it ideal for industrial precision components. |
Smooth Natural Anodized Finish | The natural anodized surface improves corrosion resistance while maintaining a clean, smooth, and professional appearance. |
Stable Motion System Support | Designed to provide stable support for linear sliders, ensuring accurate positioning and smooth movement during equipment operation. |
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This precision aluminum component is widely used in:
Industrial Automation Equipment
Linear Motion Systems
Smart Manufacturing Equipment
Precision Assembly Machines
Material Handling Systems
Inspection Equipment
6061-T6 Aluminum Alloy
CNC Milling
→ Deburring
→ Surface Finishing
→ Natural Anodizing
→ Quality Inspection
Smooth Surface / Natural Anodized Finish
We support customized production according to customer drawings, including:
Dimensions
Mounting hole patterns
Structural design
Surface treatment requirements
From prototype machining to batch production, we provide reliable CNC manufacturing solutions for global customers.
Send your drawings or 3D models for a machining evaluation.
