Ultra-thin Chemical Etching Printed Circuit Heat Exchanger for Energy Industry
Product Details
| Material: | Aluminum, Alloy, Etc. | Thickness: | 0.5mm-5.0mm |
|---|---|---|---|
| Tolerance: | +/-0.01mm | Operating Temperature Range: | -50°C To 500°C |
| Certifications: | ASME, PED, TUV, And ISO 9001 Certified | Weight: | Up To 80% Lighter Than Traditional Heat Exchangers |
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Ultra Thin Printed Circuit Heat Exchanger,0.03mm Printed Circuit Heat Exchanger,Automotive Energy printed circuit exchanger |
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Product Description
Ultra-thin Chemical Etching Printed Circuit Heat Exchanger for Energy Industry
PCHE Overview
Xinhaisen Technology specializes in manufacturing high-performance etched metal plate heat exchangers through advanced chemical etching technology. Our precision-etched plates enable superior thermal transfer efficiency with optimized flow channels for various industrial applications.
Manufacturing Process
Our PCHEs are crafted through a state-of-the-art, multi-stage precision process:
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Design & Prototyping: We create digital designs of the intricate flow channel patterns based on your thermal and hydraulic specifications.
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Precision Metal Etching: Using our proprietary chemical etching technology, we precisely etch these complex, micrometer-scale flow channels onto thin metal plates (known as platesheets). This method ensures flawless, burr-free channels without stress or material deformation.
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Stacking & Alignment: The etched plates are meticulously cleaned and stacked in an alternating sequence to form the hot and cold fluid layers.
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Diffusion Bonding: The entire stack is placed in a vacuum furnace and subjected to high temperature and pressure. This causes the atoms at the contact surfaces to diffuse, permanently bonding the plates into a single, solid, monolithic block with exceptional strength and integrity.
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Finishing & Testing: The bonded block is machined to final dimensions, and ports/headers are attached. Each unit undergoes rigorous pressure, leak, and performance testing to meet or exceed industry standards.
PCHE Features
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Extreme Compactness: Exceptional heat transfer surface area per unit volume, offering significant space and weight savings.
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High Efficiency: Complex, optimized flow channel designs (e.g., zigzag, straight, or finned) maximize heat transfer.
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Superior Pressure & Temperature Resistance: Monolithic, all-metal construction allows operation at very high pressures (often >500 bar) and temperatures (cryogenic to 900°C).
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Wide Material Compatibility: Can be etched and bonded from stainless steels (304, 316L), nickel alloys (Inconel 600/625), titanium, and other special alloys for corrosion resistance.
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Customizable Designs: Flow patterns, port locations, and overall geometry can be fully customized for specific application needs.
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Reliability & Safety: No gaskets, welds, or joints in the core, eliminating common failure points and ensuring leak-proof performance.
PCHE Specification
| Parameter | Specification |
|---|---|
| Material Options | 316L Stainless Steel, Titanium, Nickel , Aluminum,etc. |
| Plate Thickness | 0.5mm - 5.0mm (standard) |
| Tolerance | ±0.01mm (high precision) |
| Surface Finish | Ra 0.8μm (standard), Ra 0.4μm (high polish) |



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FAQ Q2: What materials can you use for the etched plates? Q3: Can you create customized channel designs? Q4: Do you provide the complete, bonded PCHE unit? Q5: What information do you need for a quotation? |
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