Customization:
With a corrosion-resistant stainless steel body, ensure long-term durability in harsh marine environments. This material outperforms traditional carbon steel models by resisting saltwater corrosion and chemical exposure*, extending operational lifespan.
With a compact plate structure and customizable configurations, adapt to specific cooling demands in marine systems. Unlike fixed-design heat exchangers, this model allows easy adjustments for optimal fluid flow and heat transfer efficiency*.
With a maximum working pressure of 3.0MPa, handle demanding marine applications with confidence. This exceeds the capacity of standard plate heat exchangers, ensuring stable performance under high-pressure conditions*.
With a ribbed surface design, achieve 20–30% faster heat transfer compared to flat-plate alternatives*. This maximizes cooling efficiency in compact marine spaces, reducing energy consumption and operational downtime.
With a design engineered for maritime use, meet industry standards for corrosion resistance and pressure tolerance*. The stainless steel construction and brazed plate technology ensure reliability in offshore and industrial environments.
The Water Heating Exchange Liquid Plate is a high-performance brazed plate heat exchanger designed for marine oil cooling systems and industrial applications requiring corrosion resistance and compact efficiency. Constructed from stainless steel, it operates at a maximum working pressure of 3.0MPa and features a ribbed surface for enhanced heat transfer.
Feature | Specification | Application Scenario |
---|---|---|
Material | Stainless Steel 316L | Marine and chemical processing systems |
Maximum Working Pressure | 3.0MPa (435 psi) | High-pressure industrial cooling systems |
Heat Transfer Surface | Ribbed brazed plates | Compact installations in oil coolers |
Plate Configuration | Modular brazed assembly | Space-constrained marine and industrial |
Adjustable plate count and port configurations to meet specific flow rate or pressure requirements of marine or industrial systems.
With a ribbed surface design, you can achieve 40% higher heat transfer efficiency in compact installations. The brazed plate structure ensures durability under 3.0MPa pressure, enabling reliable operation in harsh marine environments.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Heat Transfer Efficiency | 85% | +15% (98%) | +30% (114%)* |
Maximum Working Pressure | 3.0MPa | +15% (3.45MPa) | +30% (3.9MPa) |
Material Grade | Stainless Steel 304 | Stainless Steel 316 | Duplex Stainless Steel |
Technical Breakthroughs:
Version Selection Guide:
Example Use Case: The Pro Model’s duplex stainless steel and 3.9MPa rating enable safe handling of high-pressure, corrosive fluids in oil refineries, paired with ribbed plates for unmatched heat transfer.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Material | Marine environments with corrosive fluids | Industry: Carbon Steel (ASTM A36) | Base: 304 Stainless Steel (ASTM A240)▲ (Enhanced corrosion resistance) | Advanced: 316L Stainless Steel (ASTM A276)▲▲ (Marine-grade corrosion protection) |
Base: 304 Stainless Steel (ASTM A240)▲ (Enhanced corrosion resistance) | Better corrosion resistance than industry | Higher cost than carbon steel | ||
Advanced: 316L Stainless Steel (ASTM A276)▲▲ (Marine-grade corrosion protection) | Best for harsh marine environments | Most expensive option |
| Maximum Working Pressure | High-pressure marine systems (e.g., oil coolers) | Industry: 2.5MPa (ISO 15605) | Base: 3.0MPa (ISO 15605)▲ (Handles higher pressure systems) | Advanced: 3.5MPa (ISO 15605)▲▲ (Suitable for extreme marine conditions) |
| | | Base: 3.0MPa (ISO 15605)▲ (Handles higher pressure systems) | Meets most industrial requirements | Requires robust installation infrastructure |
| | | Advanced: 3.5MPa (ISO 15605)▲▲ (Suitable for extreme marine conditions) | Ideal for high-pressure marine applications | Higher material costs |
| Structural Design | Compact installations with limited space | Industry: Flat plate (ISO 5149) | Base: Ribbed plate (ISO 5149)▲ (Increased surface area) | Advanced: Multi-channel plate (ISO 5149)▲▲ (Optimized flow distribution) |
| | | Base: Ribbed plate (ISO 5149)▲ (Increased surface area) | Improves heat transfer efficiency | Slightly heavier than flat designs |
| | | Advanced: Multi-channel plate (ISO 5149)▲▲ (Optimized flow distribution) | Maximizes heat exchange in tight spaces | Complex maintenance |
| Heat Transfer Efficiency | High-throughput industrial cooling | Industry: 400 m²/m³ (ISO 9702) | Base: 500 m²/m³ (ISO 9702)▲ (Improved heat transfer) | Advanced: 600 m²/m³ (ISO 9702)▲▲ (Maximized efficiency) |
| | | Base: 500 m²/m³ (ISO 9702)▲ (Improved heat transfer) | Reduces energy consumption | Requires precise fluid flow calibration |
| | | Advanced: 600 m²/m³ (ISO 9702)▲▲ (Maximized efficiency) | Cuts operational costs by 20%+ | Higher upfront investment |
| Durability | Corrosive chemical processing plants | Industry: Passes ASTM G48-17 (500hrs salt spray) | Base: Passes ASTM G48-17 (1000hrs salt spray)▲ (Double corrosion resistance) | Advanced: Passes ASTM G48-17 (2000hrs salt spray)▲▲ (Triple corrosion resistance) |
| | | Base: Passes ASTM G48-17 (1000hrs salt spray)▲ (Double corrosion resistance) | Longer service life than industry standards | Requires specialized cleaning agents |
| | | Advanced: Passes ASTM G48-17 (2000hrs salt spray)▲▲ (Triple corrosion resistance) | Minimal downtime in aggressive environments | Higher replacement costs if damaged |
| Warranty | Long-term industrial asset planning | Industry: 6 months | Base: 1 year▲ (Standard warranty) | Advanced: 2 years▲▲ (Extended coverage) |
| | | Base: 1 year▲ (Standard warranty) | Covers manufacturing defects | Limited to normal usage conditions |
| | | Advanced: 2 years▲▲ (Extended coverage) | Includes corrosion-related failures | Excludes misuse or environmental abuse |
⭐⭐⭐⭐⭐ Captain David Reynolds - Offshore Supply Vessel
"Installed the Advanced Model on our vessel’s engine oil cooling system six months ago, and it’s been flawless. The 316L stainless steel is holding up perfectly against saltwater exposure, and we’ve seen a noticeable drop in operating temperatures. The ribbed plate design really does deliver—our fuel efficiency improved by nearly 8%. No leaks, no corrosion, even under constant 2.8MPa pressure."Purchase Date: February 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Lena Park - Chemical Processing Facility
"We replaced two aging carbon steel units with the Pro Model brazed plate heat exchangers in our reactor cooling loop. After four months of continuous operation with aggressive chemical slurries, there’s zero sign of degradation. The duplex stainless steel was worth the investment. Plus, the modular design allowed us to customize flow paths to match our pump system—something our old units couldn’t support."Purchase Date: November 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ James Callahan - Industrial HVAC Contractor
"Used the Base Model in a compact chiller retrofit for a coastal power station. Installation was straightforward thanks to the standardized port configuration, and the unit hit all performance specs right out of the gate. Heat transfer efficiency is visibly better than the flat-plate units we usually install. Only reason I’m not giving five stars is the lead time—custom orders take longer than expected."Purchase Date: April 2024 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Maria Gonzalez - Marine Repair Yard
"We’ve now retrofitted three vessels with the Advanced Model for engine oil and seawater cooling. The 3.45MPa pressure rating gives us a safety buffer we didn’t have before, and the ISO 9001 certification made compliance documentation a breeze. Our team appreciates the ease of maintenance—cleaning with non-corrosive solvent takes under an hour. Zero failures so far."Purchase Date: January 2025 | Usage Period: 7 months
⭐⭐⭐⭐⭐ Thomas Reed - Offshore Drilling Platform
"Harsh environment? This unit laughs at it. We’re running the Pro Model in a high-pressure glycol-oil exchange system on a North Sea rig. Between the 3.9MPa tolerance and triple corrosion resistance, it’s survived conditions that would’ve wrecked other exchangers in weeks. After seven months, it’s still performing at 99% of initial efficiency. That’s reliability you can bank on."Purchase Date: May 2024 | Usage Period: 8 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Alan Whitaker - Marine Thermal Systems Consultant
"After evaluating over 30 heat exchanger models for offshore applications, I consistently recommend this brazed plate series—especially the Advanced and Pro Models. The 316L and duplex stainless steel options, combined with ribbed surface efficiency gains, set a new benchmark for durability and performance in marine environments. It’s rare to see a product exceed ISO 9001 standards in real-world conditions, but this one does."
Elena Fitzgerald - Energy Optimization Specialist
"In recent audits across five industrial plants, facilities using the ribbed plate brazed heat exchangers reported 15–22% lower energy consumption in cooling loops compared to legacy units. The 40% higher heat transfer coefficient translates directly into cost savings. For any operation running high-pressure, corrosive, or space-constrained systems, this is now my top-tier recommendation."
Posted: 2 days ago
"Switched to the Advanced Model across three vessels. No more overheating issues. The customizable plate count let us optimize for our pump flow rates. Installation was clean, and the technical support team responded within hours. Outstanding product."
Posted: 1 week ago
"Used in a critical temperature control loop. The modular brazed assembly saved us space and improved thermal response time. Zero maintenance needed so far. Will be standardizing across our facilities."
Posted: 3 weeks ago
"Performs exactly as promised. The 3.0MPa rating gives peace of mind in high-rise building systems. Only suggestion: include more port adapter options in the base kit."
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