Durable Aluminum Profile Battery Case for E-bike & Electric Scooters
Specifications
| Item | Battery case aluminum profile |
| Brand | Aolijie |
| Material | 6063 \ 6061 \ 6060 |
| Temper | T5/T6 |
| Thickness | 0.8-5.0mm |
| Length | 6m ( customizable) |
| Surface treatment | Mill finish \ Power coating \ Anodizing \ Electrophoresis \ Fluorocarbon coating \ Wood grain, etc. |
| Color | According to customer requirements (customizable) |
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Service support |
Drilling \ Milling \ Cutting \ Welding \ Bending \ Assembling \ CNC |
| Packing details | Inside: packed with protective film to protect each piece |
| Outside:wrap to be bundles by shrink plastic bag | |
| Delivery time | Die developing and sample testing :7-10 days |
| Mass production completed :15-30 days | |
| MOQ | 500kg |
surface treatment

Product application
Production Process for Extruded Aluminum Battery Housings
The manufacturing of extruded aluminum battery housings is a multi-stage process that transforms aluminum alloy billets into strong, lightweight, and precisely formed enclosures. This method is favored for creating long, robust profiles with a constant cross-section, ideal for battery packs in various applications.
1. Billet Preparation & Heating:
The process begins with cylindrical logs of a specific aluminum alloy (commonly from the 6000 series, like 6061 or 6063, for their good strength and extrudability). These billets are pre-heated in a furnace to a precise temperature (typically between 400-500°C). This thermal treatment softens the metal, making it pliable enough for extrusion without melting it.
2. The Extrusion Process:
The heated billet is loaded into the extrusion press. A hydraulic ram applies immense pressure, forcing the softened aluminum through a precision-engineered steel die. The die's opening defines the housing's final cross-sectional profile, including its external walls, internal ribs for structural support, and channels for thermal management or cable routing. The emerging profile is a continuous length of the shaped aluminum.
3. Quenching & Stretching:
rofile exits the die, it is rapidly cooled using air or water quenching. This "freezes" the profile's shape and initiates the strengthening process. The long, straight profile is then mechanically stretched. This critical step corrects any twisting or dimensional irregularities and aligns the metal's grain structure.
4. Aging & Cutting to Length:
The profiles undergo artificial aging (precipitation hardening) in an oven. This heat treatment allows the alloy's microstructure to fully develop, bringing the aluminum to its specified temper (e.g., T5 or T6) and achieving its final mechanical strength and hardness. The hardened profiles are then cut to the precise required lengths for individual battery housings.

Quality Inspection

Manufacturing technique

Your success is our responsibility
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Save your time
Quickly provide accurate samples for testing.
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Save your costs
Provide pre-processing services, such as cutting, drilling, milling, etc.
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Meet your client's requirements
Provide RAL or Pantone color cards precise color matching
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Easy to carry out your sales work
Provide product images, videos, and technical parameter manuals.
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Improve Your Efficiency
Provide guidance on profile application, such as assembly process and hardware accessory adaptation suggestions.
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Shorten the supply cycle
Cooperative warehouses can be set up in your region.
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Order process














