Etched PCHE Plates Precision Chemical Etched Microchannel Heat Exchanger Plates
Etched PCHE Plates Precision Chemical Etched Microchannel Heat Exchanger Plates
PCHE Overview
Xinhaisen specializes in manufacturing high-precision Etched PCHE Plates using advanced Photo Chemical Machining (PCM) technology. Our chemical etching process produces complex microchannel structures with exceptional dimensional accuracy, burr-free edges, and stress-free surfaces, making it an ideal solution for Printed Circuit Heat Exchangers (PCHEs).
PCHE Features
Ultra-compact structure (up to 80% smaller than traditional heat exchangers)
High thermal efficiency microchannel design
Excellent pressure resistance
High precision photochemical etching process
Suitable for high-pressure hydrogen systems
- High precision chemical etching
- Burr-free microchannels
- No mechanical stress
- Excellent dimensional consistency
- Complex flow field patterns
PCHE Specifications
| Parameter | Specification |
| Product Name | Microchannel Heat Exchanger |
| Materials | 316L SS, Titanium, etc. |
| Operating Temperature | -200°C to +900°C |
| Operating Pressure | Up to 600 bar |
| Tolerance | +/-0.01mm |
| Plate Thickness | 0.5mm - 5.0mm |
PCHE Applications
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Oil & Gas / Petrochemical: Gas processing (LNG liquefaction & regasification), sulfur recovery, offshore platforms, compact gas compression cooling.
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Power Generation: Supercritical CO2 (sCO2) power cycles, waste heat recovery, hydrogen cooling.
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Aerospace & Defense: Environmental control systems, fuel/oil cooling, advanced thermal management.
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Industrial Processes: High-pressure synthesis reactors, heat recovery steam generators (HRSG), closed-loop cooling.
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Renewable Energy: Hydrogen production (electrolyzer cooling), concentrated solar power (CSP), fuel cells.
- Printed Circuit Heat Exchangers
- Hydrogen Production Systems
- PEM Electrolyzers
- Fuel Cell Systems
- Supercritical CO₂ Heat Exchangers
Our Advantages
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Precision at Core: Leverages our proven expertise in etching micro-features down to 0.03mm, ensuring perfect channel definition and thermal performance.
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Speed & Agility: Rapid prototyping and flexible production capacity to handle urgent development projects and large-volume orders.
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Vertical Integration: Control over the entire process from high-quality material sourcing to final bonding and testing ensures reliability and traceability.
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Cost-Effective: Our efficient manufacturing and sourcing provide competitive pricing without compromising on the high-end quality PCHEs require.
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Engineering Partnership: We work closely with clients to customize the PCHE design for their specific thermal, mechanical, and material challenges.
FAQ
- Q1: What is the advantage of using etched plates over machined plates for PCHE?
A: Etching produces burr-free, stress-free, and uniformly smooth channels without heat-affected zones. It also allows for much finer channel geometries (as small as 0.03mm) than traditional machining, and design changes are quick and inexpensive since no hard tooling is required. - Q2: What materials can you etch for PCHE plates?
A: We can etch stainless steel (SUS304, SUS316, SUS316L), titanium (Gr1, Gr2), Inconel, Hastelloy, copper, brass, and many other alloys commonly used in high-performance heat exchangers. - Q3: What is the minimum channel width you can achieve?
A: We can achieve channel widths as small as 0.03mm and ridge (wall) widths down to 0.015mm, depending on material thickness. - Q4: What is your typical lead time for PCHE prototype plates?
A: Prototype samples typically take 3–7 working days after design approval. Mass production lead times are 7–15 working days, with expedited options available for urgent orders. - Q5: Are your etched plates ready for diffusion bonding?
A: Yes. Because etching produces clean, burr-free, oxide-minimized surfaces, our plates are ideal for direct diffusion bonding or welding without additional surface preparation.
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