Chemical Etched Metallic Bipolar Plates With Perfect Flatness for Fuel Cell Stacking
उत्पाद विवरण
| सामग्री: | स्टेनलेस स्टील या अनुकूलित | मोटाई: | 0.5 मिमी - 3.0 मिमी |
|---|---|---|---|
| MOQ: | समतल | सहनशीलता: | +/- 0.05 मिमी |
| समय सीमा: | 1-2 सप्ताह | सतह: | ब्यूरो से मुक्त |
| अधिकतम आकार: | 1800मिमी*650मिमी | प्रसंस्करण प्रौद्योगिकी: | फोटो रासायनिक नक़्क़ाशी |
| प्रमुखता देना |
Chemical etched metallic bipolar plates,Fuel cell stacking bipolar plates,Metallic bipolar plates with flatness |
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उत्पाद वर्णन
Chemical Etched Metallic Bipolar Plates With Perfect Flatness for Fuel Cell Stacking
Overview
Xinhaisen specializes in high-precision chemical etching of metallic bipolar plates. Using advanced photochemical machining (PCM), we produce burr-free, stress-free bipolar plates for proton exchange membrane fuel cells (PEMFC), solid oxide fuel cells (SOFC), and PEM electrolyzers. Our process ensures ultra-flat channels, tight tolerances, and rapid prototyping to mass production.
Product Features
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Ultra-high precision channels – Minimum line/space width down to 0.015mm; flow field depth uniformity within ±0.05mm
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Micro-hole capability – Coolant/distribution holes as small as 0.03mm diameter
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Thickness range – From 0.5mm to 3.0mm (thin foils for lightweight stacks or thicker plates for rigid designs)
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Material versatility – Stainless steel (304, 316L, 430), titanium (Grade 1/2), nickel-based alloys (Inconel, Hastelloy), copper, and other conductive/corrosion-resistant metals
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Burr-free & stress-free – No mechanical deformation, no micro-cracks, perfect for gasket sealing and membrane contact
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Cost-effective for medium-to-large volumes – Rapid turnaround on prototypes and high-volume orders
Technical Specifications
| Parameter | Specification |
| Material thickness | 0.5mm – 3.0mm |
| Minimum line/space | 0.015mm (15µm) |
| Minimum hole diameter | 0.03mm (30µm) |
| Max. part size | 1800mmx650mm |
| Lead time (prototype) | 5–7 days |
| Lead time (mass production) | 7–15 days |
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Typical Bipolar Plate Designs We Produce
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Anode & cathode flow field plates – Parallel, interdigitated, pin-type, or custom patterns
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Cooling plates – Internal cooling channel structures for thermal management
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Single plates & bonded pairs – Etched on one or both sides; alignment features for lamination/welding
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Perimeter sealing grooves – Integrated grooves for O-rings or laser welding
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Manifold/distribution holes – Uniform arrays for reactant/coolant distribution
Why Choose Etching for Bipolar Plates?
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Lower cost than CNC milling (especially for thin metals and fine channels)
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Shorter lead time – No hard tooling wear; design changes via phototool only
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No heat-affected zones – Preserves material conductivity and corrosion resistance
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Scalable – From 10 pieces (R&D) to 500,000+ pieces/month
Quality Assurance
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Inspection – 2.5D/3D measuring microscope, CMM, surface roughness tester
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Standards – ISO 9001:2015 certified processes
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Traceability – Full material certification (mill test reports available)
Industries Served
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Hydrogen fuel cell stacks (automotive, stationary power)
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PEM electrolyzers (green hydrogen production)
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Aerospace & UAV power systems
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Metal-air batteries
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Custom electrochemical cells
FAQ
- Q: Can you etch bipolar plates for fuel cells or electrolyzers?
A: Yes, we specialize in precision etching of bipolar plates for fuel cells, electrolyzers, and other energy applications using metals like stainless steel and titanium. - Q: What thickness of metal can you etch for bipolar plates?
A: We can etch bipolar plates from 0.5mm to 3.0mm thick, with high precision and consistent channel depth. - Q: How precise are the flow channels on your bipolar plates?
A: Our etched flow channels achieve uniformity within ±0.05mm, and we can create micro-channels with line widths as fine as 0.015mm. - Q: Can you produce both anode and cathode sides of a bipolar plate?
A: Yes, we can etch both sides of a bipolar plate simultaneously or separately, depending on your design requirements. - Q: What materials do you use for bipolar plate etching?
A: We work with a range of corrosion-resistant metals including 304, 316L stainless steel, titanium, and nickel-based alloys. - Q: Do you support low-volume prototyping or only mass production?
A: We support both — from small R&D batches to large-volume production, with fast turnaround and no tooling costs.


Welcome to contact us at any time!
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