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Plate

Plate heat exchanger

The design of wide and narrow flow passes and various angles can achieve the optimal combination of plates through precise calculation of fluid flow and viscosity under the given pressure drop to obtain the best NTU value.

Features

Performance Advantages

Plate heat exchanger

why choose our products

 

This plate heat exchanger has been comprehensively optimized in both structure and performance. It uses a combination of wide and narrow channels, together with different high and low theta-angle plate patterns, and is precisely calculated based on flow rate and viscosity parameters to achieve a more ideal NTU value and improve overall heat transfer efficiency.

The distribution area is specially optimized to reduce low-efficiency heat transfer zones and flow resistance, ensuring more effective use of the entire heat transfer surface. Depending on the model requirements, the plates are manufactured using matched precision pressing processes and high-quality tooling, which helps minimize mechanical damage and excessive plate thinning while maintaining structural strength and long-term stability.

To further ensure product reliability, all heat transfer plates undergo 100% penetrant testing to strictly verify sealing integrity and leak-free performance. In addition, the plate heat exchanger can be flexibly matched with more than 20 types of pumps and control systems, allowing it to integrate more effectively into different processes and operating conditions and providing users with highly adaptable, customized heat transfer solutions.

 

Design

 

This plate heat exchanger has been specially optimized in its structural details to better meet the needs of applications with high requirements for hygiene, sealing performance, and operational stability. The connections feature stainless steel sleeves, which help prevent the fluid from coming into direct contact with the frame and make the unit more suitable for hygienic operating conditions.

At the same time, the overall unit is manufactured using a cold-forming process, which helps reduce the risk of thermal deformation that may occur during welding and contributes to better dimensional accuracy and structural stability. The gaskets use an optimized positioning design to further improve sealing performance, while the leak detection port design allows any potential leakage to be identified quickly, helping reduce operating risk.

In addition, the clamping system adopts a locked guiding design, which effectively prevents bolt loosening and enhances safety and reliability during long-term operation.

 

Sales And Service Network

 

Sales And Service Network

 

Certifications

 

Certifications-11
Certifications-21
Certifications-31
FAQ

Q: Why do so many systems use a plate heat exchanger?

A: Because it transfers heat very efficiently without taking up much room. For many users, it's a smart option when they want strong heat exchange performance but do not have space for bulkier equipment.

Q: Is a plate heat exchanger easy to expand later?

A: In many cases, yes. One practical advantage of this design is that capacity can often be adjusted by adding or removing plates, depending on the model. That gives users more flexibility if the system load changes in the future.

Q: Does this type of heat exchanger work well with temperature-sensitive processes?

A: Yes, it often does. Since the heat transfer is fast and controlled, a plate heat exchanger is commonly used in systems where accurate temperature management is important. It can respond well when the process needs stable and predictable thermal performance.

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