Chemical Etching Printed Circuit Heat Exchanger - 600 Bar Pressure, 0.5-5.0mm Plate Thickness, Custom Micro-Channel Design
Price:
50-100USD
MOQ:
10
Delivery Time:
5-7 work days
Brand:
XHS/Customize
Product Description
Chemical Etching Printed Circuit Heat Exchanger
Xinhaisen's chemically etched PCHEs represent the next generation of compact heat exchangers, delivering unmatched thermal performance in critical applications. Utilizing proprietary photochemical etching technology, we create complex micro-channel patterns that achieve superior heat transfer efficiency while maintaining exceptional pressure resistance.
Key Features
- Ultra-high thermal efficiency
- Extreme pressure capability up to 600 bar
- Compact and lightweight design
- Corrosion resistant construction
- Custom flow channel designs
Technical Specifications
| Parameter | Specification |
|---|---|
| Materials | 316L SS, Titanium, and other alloys |
| Operating Temperature | -200°C to +900°C |
| Operating Pressure | Up to 600 bar |
| Tolerance | ±0.01mm |
| Plate Thickness | 0.5mm - 5.0mm |
Applications
- Supercritical CO₂ power cycles
- LNG and cryogenic processing
- Nuclear reactor systems
- Aerospace thermal management
- Hydrogen fuel cell systems
- Industrial waste heat recovery
Quality Assurance
- 100% dimensional inspection with optical measurement
- Material certificates (MTC, EN10204 3.1)
- Pressure testing to 1.5x design pressure
- ASME BPVC Section VIII Division 1 compliant
- ISO 9001 and AS9100 certified production
Manufacturing Advantages
- True micro-scale features without mechanical stress
- Perfect channel uniformity for balanced flow distribution
- Rapid prototyping with 2-3 weeks for test samples
Custom Solutions Available
Contact us to discuss your specific heat exchanger requirements and receive engineering support for your application.
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Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Shenzhen Xinhaisen Technology Limited
Location
ShaJing, Baoan, Shenzhen City, Guangdong Province, China
Contact Person
Haily Huang