Photochemical Etching 0.5mm To 5.0mm Heat Exchanger Plate For PCHEs
Product Details
| Materials: | Stainless Steel, Titanium Or Customized | Thickness: | 0.5-3.0mm |
|---|---|---|---|
| Tolerance: | +/- 0.005mm | Production Process: | Photo Chemical Etching, Plating, Stamping, Laser Cutting |
Product Description
Photochemical Etching 0.5mm To 5.0mm Heat Exchanger Plate For PCHEs
Description of Heat Exchanger Plates:
What is Printed Circiut Heat Exchangers?
The manufacturing of a printed circuit heat exchanger involves two key technologies: chemical etching and diffusion bonding. Flow channels are precisely etched onto metal plates, which are subsequently stacked and permanently joined through diffusion bonding to create a compact, monolithic unit.

Specifications of Heat Exchanger Plates:
| Material | Stainless Steel 316/316L, Aluminum, etc. |
| Thickness | 0.5mm to 5.0mm, or customized |
| Size | Max to 1800*600mm, support customization |
| General Tolerance | ±0.1mm |
| Processing | Photochemical machining/ metal etching/ Photo etching |
| Other Processing | Welding or other processing as requested |
Production Process Steps of Heat Exchanger Plates:
1.Chemical etching the channels of heat exchanger plate.

2. Diffusion bonded heat exchangers.
We offer end-to-end solutions for chemical etching and diffusion-bonded printed circuit heat exchangers. With our specialized expertise, we integrate both processes seamlessly to deliver high-quality and efficient results for our customers.
How to custom Heat Exchanger Plate from us?
1. Please send us your design.
We accept the following file formats:DWG, DXF, PDF, STP, Gerber, IGES, CorelDraw and Adobe Illustrator
2. Samples making lead time:3-10days
3. Express:By DHL, FedEx, TNT, around 3-7days.
Product Highlights
Photochemical Etching 0.5mm To 5.0mm Heat Exchanger Plate For PCHEs Description of Heat Exchanger Plates: What is Printed Circiut Heat Exchangers? The manufacturing of a printed circuit heat exchanger involves two key technologies: chemical etching and diffusion bonding. Flow channels are precisely ...
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