Custom Lithium Battery Enclosure Metal Fabrication for Energy Storage Systems

Product Specification
Place of Origin: china
Brand Name: custom
Minimum Order Quantity: 100 pieces
Payment Terms: T/T,Western Union
Supply Ability: 5,000 units/month
Product Details
Highlight:

Lithium Battery Metal Enclosure

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Energy Storage Battery Enclosure

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Perforated Ventilation Design Enclosure

Name: Custom Lithium-Ion Battery Enclosure
Materials: Stainless Steel, Aluminium, Etc.
Process: Laser Cutting, Bending, Etc.
Surface Treatment: Wire Drawing, Polishing, Etc.
Fabrication Services: OEM/ODM Custom Metal Fabrication
Application Type: Energy Storage Battery System
Handling Design: Side Handles
Cooling Method: Perforated Ventilation Design
Product Description

Custom Lithium Battery Enclosure Metal Fabrication for Energy Storage Systems

The lithium-ion battery enclosure is manufactured using precision sheet metal fabrication techniques and is specifically designed for energy storage battery systems and portable power devices. The front panel features a mounting slot for a 4.3-inch battery level display, which can integrate voltage, capacity, and charge/discharge status indicators. The side panel is equipped with main circuit connection ports and multi-purpose cutouts for easy connection to inverters, power supply equipment, and communication modules. The enclosure is fitted with carrying handles and swivel casters for easy movement and deployment.

Technical Specifications
Material Types Carbon Steel / Stainless Steel / Aluminium / Iron, etc.
Fabrication Method Laser Cutting / Metal Bending / Tube Bending / Stamping / Machining / Welding / Riveting, etc.
Surface Treatment Wire Drawing / Surface Grinding / Polishing / Electroplating / Anodising / Powder Coating / Baking Finish / High-temperature Coating / Sand Blasting / Enamelling / Pickling & Passivation, etc.
Cutting Precision ±0.1 mm (±0.004 in)
Bending Range 0.3-10 mm (0.012 - 0.394 in)
Pressure Tonnage Range 35T - 150T
Pipe Bending Diameter Range 6-200 mm (0.236 - 7.87 in)
Acceptable Drawing Formats PDF / DWG / DXF / STEP (.step/.stp) / IGES (.iges/.igs) / SolidWorks files (.sldprt/.sldasm)
Production Support Prototype to Mass Production

Uses

Energy storage battery systems, lithium-ion battery packs, power management equipment, off-grid power supply systems, photovoltaic energy storage equipment, and mobile energy solutions.

One-Stop Sheet Metal Solutions, From Concept to Production

  • Product Development Support
    We help turn product concepts into manufacturable products.
  • DFM Cost Optimization
    We reduce production costs through design and process optimization.
  • Consistent Quality Control
    We maintain consistent dimensions and quality from prototyping through mass production.
  • Multi-Process Integration
    We minimize communication overhead associated with working with multiple suppliers.
  • Flexible Production Capacity
    We accommodate both small-batch pilot production and mass production needs.
  • Dedicated Project Management
    We provide end-to-end project management and rapid communication and response.

Custom Lithium Battery Enclosure Metal Fabrication for Energy Storage Systems 0

FAQ

Q1: Can the display and interface cutouts be customized as needed?
A1: Yes, we use laser cutting to precisely create cutouts according to the specifications of the screen and connectors, ensuring compatibility with the entire assembly.

Q2: Can the thermal management structure be optimized to accommodate the battery system?
A2: Yes, we can adjust the layout of the ventilation holes as needed to balance enclosure strength with thermal performance.

Q3: Does the internal structure support custom installation of battery modules?
A3: Yes, both mounting brackets and cable routing space can be customized to facilitate assembly and maintenance.

Q4: What factors should be considered when selecting sheet metal materials?
A4: Strength, corrosion resistance, formability, the operating environment, and cost should all be taken into account to achieve optimal product performance and cost-effectiveness.

Q5: How does the bending radius affect the quality of sheet metal fabrication?
A5: A proper bending radius helps prevent material cracking, improves dimensional accuracy, and ensures consistent forming quality.

Q6: How can deformation during sheet metal welding be minimized?
A6: By optimizing weld design, controlling the welding sequence, and using specialized fixtures, welding deformation can be effectively reduced and assembly accuracy improved.

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