Hengshui Chiyue Technology Co., LTD., located in Jingxian, Hengshui City, Hebei Province, is a high-tech enterprise focusing on the research and development and production of plate heat exchanger gaskets. The park where the company is located has been rated as "Hebei Rubber and Plastic Industry Private Science and Technology Park", with perfect industrial supporting facilities and convenient logistics network. After more than 20 years of development, the company has become a well-known rubber gasket supplier at home and abroad, the products are exported to Europe and the United States market, well received by customers. The company has strong technical strength, has a number of professionals engaged in gasket R & D and production, and passed ISO9001:2015 quality management system certification, established a perfect quality control system.
Why Choose Us
High Quality
We produce rubber gaskets, covering a variety of specifications and models, can meet the needs of most heat exchanger brands at home and abroad. The rubber material independently developed by the company has excellent temperature resistance and medium resistance, and the product has high pressure and good market performance.
Professional Team
The company has strong technical strength, has a number of professionals engaged in gasket R & D and production, and passed ISO9001:2015 quality management system certification, established a perfect quality control system.
Production Market
Products are exported to Europe and the United States and other international markets, the annual output of more than 1 million, has been widely recognized by customers around the world. With high-quality products and services, the company has established a good brand image in the international market, and its performance has grown steadily.
Our Service
Professional marketing team in-depth understanding of customer needs, to provide customized solutions.
Strictly monitor the production process to ensure product quality.
The Brazed Plate Heat Exchanger is an innovative heat exchanger technology. The core structure consists of a series of metal plates with fine corrugated pattern.
Commercial Plate Heat Exchanger
Our Commercial Plate Heat Exchanger is an efficient and compact heat exchanger, which is specially designed for various commercial and industrial applications.
Double Wall Plate Heat Exchanger
We adopt the cutting-edge double-wall isolation design concept, accurately optimize the structure of the plates, and achieve a leap in heat transfer.
Plate Type Heat Exchangers is a common heat exchange equipment, which is widely used in industrial production and energy fields.
The Metal Plate Heat Exchanger consists of many corrugated metal plates, which are pressed into a shape to form a fluid channel.
Industrial Plate Heat Exchanger
Industrial Plate Heat Exchanger is a high efficiency heat exchanger widely used in industrial production.
Gasketed Plate And Frame Heat Exchanger
Gasketed Plate and Frame Heat Exchanger is an efficient heat exchanger. It consists of a series of metal plates and sealing gaskets, through the channel between the plates to allow two different temperature fluid heat exchange.
Removable Plate Heat Exchanger
High cost efficiency: the initial investment is relatively low, and the energy saving effect is significant, and the long-term operation cost is low.
Titanium Plate Heat Exchanger is widely used in chemical, pharmaceutical, food, environmental protection and other fields. In the chemical field, it can withstand high temperature, high pressure and highly corrosive working environment; In the pharmaceutical field, titanium plates are often used in the preparation of medical devices and pharmaceutical equipment due to their good biocompatibility.
The titanium plate heat exchanger is a novel type of high efficiency heat exchanger made out of a series of corrugated metal plates. Heat is transferred between the plates via a small rectangular channel produced between the several plates. When compared to the standard shell and tube heat exchanger, its heat transfer coefficient is considerably greater in the same flow resistance and pump power consumption, and it has the potential to replace the shell and tube heat exchanger in the relevant scale.
The main parts of the titanium plate heat exchanger are the frame and the titanium plates. The plates are made of titanium sheets that have been pressed into different shapes of corrugations. There are also holes in the four corners of the plate for the media flow. Rubber gaskets seal the holes around the edge of the plate and in each corner.
Benefits of Titanium Plate Heat Exchanger
High efficiency and energy saving: Its heat transfer coefficient is 3000~4500 kcal/m2-℃-h, which is 3~5 times higher than the thermal efficiency of shell and tube heat exchanger.
Compact structure: The heat exchanger's plate layout is exact. Plate heat exchangers cover less area and use less space than other types of heat exchangers.Shell and tube heat exchangers cover just 1/5 as much area as plate heat exchangers.
Easy to clean and disassemble: Plate heat exchanger by the clamping bolts will be fastened solid plate clamping, allowing for easy disassembly and installation, as well as cleaning at any time. In addition, because the plate's surface is clean, scale formation is difficult.
Long service life: Plate heat exchangers made with pressed titanium alloy plates are resistant to a range of corrosive environments.Meanwhile, the rubber gasket may be changed as needed, and it is designed to be easily disassembled and maintained.
Well-adapted: Plates of plate heat exchanger are the self-reliance components.It may be raised or decreased based on the needs of the process.It can be applied to the requirements of a variety of different processes.
No string liquid:A drain channel is included in the plate heat exchanger sealing groove. As a result, there is no media collusion. The medium is always ejected outwardly, even when a leak develops.
Type of Titanium Plate Heat Exchanger

Direct contact heat exchanger
The main working principle of this type of heat exchanger is that two media transfer heat to each other through the contact surface to achieve heat transfer. The contact area directly affects the amount of heat transferred. The medium of this type of heat exchanger is usually one gas and the other liquid. It is a heat transfer equipment mainly based on tower equipment.

Energy storage heat exchanger
This type of heat exchanger is used less. The principle is that through a solid material, the hot medium first heats the solid material to reach the temperature, and then the cold medium is heated by the solid material to achieve the purpose of heat transfer.

Plate and tube heat exchanger
This type of heat exchanger is used in large quantities, accounting for more than 99% of the total. The principle is that the hot medium transfers heat to the cold medium through metal or non-metal. This type of heat exchanger is usually called shell and tube, plate, plate warp or plate and shell heat exchanger.
Reasons to Select Titanium Plate Heat Exchanger
Titanium is Corrosion-Resistant
Corrosion is a common problem in heat exchangers, which are exposed to high temperatures, pressure, and different types of fluids. Corrosion can reduce the lifespan of a heat exchanger, leading to costly repairs or replacements. Titanium is a highly corrosion-resistant material, which makes it an ideal choice for heat exchangers that handle aggressive or corrosive fluids. Titanium forms a thin, protective oxide layer that prevents further corrosion, even in harsh environments.
Titanium is Strong and Durable
Another advantage of titanium heat exchangers is their strength and durability. Titanium is one of the strongest metals, with a high strength-to-weight ratio. This means that titanium heat exchangers can withstand high pressures and temperatures, making them suitable for demanding applications. Additionally, titanium is a non-ferrous metal, which means it does not rust or corrode, even when exposed to water or humidity.
Titanium is Lightweight
Despite its strength and durability, titanium is a lightweight material, which makes it easier to transport and install heat exchangers. This is particularly important in applications where weight is a factor, such as aerospace or marine industries. A lighter heat exchanger also requires less support, reducing installation costs and complexity.
Titanium is Biocompatible
Titanium is a biocompatible material, which means it is not harmful to live tissues or organisms. This property makes it suitable for applications that involve contacts with the human body, such as medical implants or prosthetics. In heat exchangers, biocompatibility is important in applications that handle fluids that may come into contact with humans or animals, such as pharmaceutical or food processing industries.
Titanium is Efficient
Titanium heat exchangers are efficient in transferring heat between fluids, which can result in significant energy savings. The thermal conductivity of titanium is higher than many other metals, which means it can transfer heat more quickly and effectively. Additionally, the design of titanium heat exchangers can be optimized to improve their efficiency, resulting in lower operating costs and increased productivity.
Application of Titanium Plate Heat Exchanger
Heat exchangers play a vital role in both industrial production and everyday life, facilitating efficient transfer of heat. Among the various types of heat exchangers available, one particular device stands out - the titanium heat exchanger. Made from high-quality titanium tubes, this heat exchange equipment excels at transferring heat from one fluid to another, making it indispensable in industries such as chemical, petroleum, power, and food processing.
One notable characteristic of titanium heat exchangers is the stability of its metal ions. The minimal loss of titanium metal ions makes these heat exchangers non-magnetic, making them especially suitable for applications in pharmaceuticals and food processing, where magnetic interference must be avoided. Additionally, titanium exhibits exceptional corrosion resistance, extending the lifespan of titanium heat exchangers and reducing maintenance costs. Furthermore, their compact size and high heat transfer capacity contribute to lower investment and operating costs.
Titanium heat exchangers utilize high-quality titanium tubes known for their lightweight and superior mechanical properties. Titanium boasts high strength, with tensile strength reaching up to 180 kg/mm2. Its alloyed counterparts even surpass high-quality steel in terms of specific strength, showcasing excellent mechanical performance. Moreover, titanium alloys exhibit impressive heat resistance, low-temperature toughness, and fracture toughness, enabling stable operation in various extreme environments.
It exhibits remarkable corrosion resistance in many industrial solutions, making industrial-grade titanium the preferred material for refrigeration equipment components. Industrial-grade titanium can be widely used in organic compounds, alkaline solutions, salt solutions, and other media without reacting, showcasing its superior corrosion resistance. However, it is worth noting that industrial-grade titanium may undergo chemical reactions in certain inorganic acid environments, leading to reduced corrosion resistance. Therefore, when using titanium heat exchangers, it is crucial to consider the concentration of the media and operating temperatures to avoid unnecessary losses.
Leveraging the exceptional properties of industrial-grade titanium, titanium heat exchangers find extensive applications in numerous industries and fields, including seafood farming, seawater and brine heat exchange, chemical processing, food processing, pharmaceuticals, metallurgy, refrigeration, light industry, electroplating, aluminum oxide tanks, salt production, papermaking, ultrasonic technology, electronic communications, and centralized heating systems. Whether it's for high-efficiency heat exchange in industrial production processes or stringent temperature control in everyday life scenarios, titanium heat exchangers offer unique advantages, bringing convenience and comfort to our lives.

Thinner PHE plates: There is a growing demand for the use of titanium metal to make thinner, wider PHE plates to increase efficiency and performance.
PHE Thermal and Hydraulic Performance: All manufacturers' developed titanium PHE plates undergo thermal and hydraulic tests to obtain the required accurate correlations for the computer-based design of PHEs with these for commercial use.
Use in the shipping industry of titanium PHE: Due to salt corrosion that happens in ships often, titanium PHEs are becoming pretty common in the shipping industry to strengthen the corrosion treatment of sheet metal as titanium is less corrosive.
Welded Plate Heat Exchanger in eclectic power plants: In the electric power field, welded titanium tubes for power plant condensers or titanium sheets (hoops) used as materials for welded titanium tubes are the main applications for titanium. Welded titanium tubes for condensers are used in thermal power generation or nuclear power generation.
Principles of Titanium Plate Heat Exchangers and Heat Exchange Devices
The titanium plate heat exchanger unit automatically and continuously converts the heat obtained from the primary pipe network into domestic water and heating water required by users, that is, hot water enters the plate heat exchanger from the primary side inlet of the unit for heat exchange and flows out from the primary side outlet of the unit.
After the filter removes stains, the secondary side return water enters the heat exchanger through the secondary side circulation water pump for heat exchange, producing hot water of different temperatures, such as heating, air conditioning, floor heating or domestic water, to meet the needs of users.
After filtering and decontamination, the secondary water circulates into the heat exchanger and is heated by steam or high-temperature water. After entering the plate heat exchanger, the steam or high-temperature water becomes condensed water or high-temperature return water, and returns to the heat source for loop circulation of the primary and secondary heating systems. The feed pump pumps soft water into the system to keep the system pressure constant.
The titanium plate heat exchanger unit integrates heat machine, process instrument, network communication, electrical control and other designs. It can provide optimized design of titanium plate heat exchanger hardware and software according to different users, and customize plate heat exchangers and heat exchanger groups of different styles and specifications according to different working conditions to meet the requirements of users under different working conditions.
There are many models of titanium plate heat exchangers. Plate heat exchangers can be customized according to various working conditions. There is no fixed model for plate heat exchangers. The entire plate heat exchanger needs to be selected and customized according to inlet and outlet temperatures, flow rates, nozzle diameters, etc. The entire plate heat exchanger has 304 stainless steel and 304 plywood carbon steel, tubular, removable and fully automatic hybrid titanium plate heat exchangers.
How to Properly Install and Maintain a Titanium Plate Heat Exchanger?
As an efficient and durable heat exchange equipment, the correct installation and maintenance of the Titanium Plate Heat Exchanger is essential to ensure its long-term stable operation. This article will introduce the installation steps and maintenance points of the Titanium Plate Heat Exchanger in detail to help readers better master this technology.
When installing a Titanium Plate Heat Exchanger, you must first pay attention to choosing a suitable installation location. You should ensure that there is enough space around the heat exchanger to facilitate future maintenance and repair. At the same time, the installation location should be away from vibration sources and heat sources to avoid unnecessary damage to the heat exchanger. During the installation process, the equipment manual and installation drawings should be strictly followed to ensure the accurate installation and tightening of each component. When connecting the pipeline, pay attention to the cleanliness and sealing of the pipeline to prevent leakage and failure caused by pipeline problems.
The maintenance of the Titanium Plate Heat Exchanger is equally important. In daily use, the operating status of the heat exchanger should be checked regularly, including changes in parameters such as temperature and pressure. If any abnormality is found, the machine should be stopped for inspection in time to find out the cause of the problem and solve it. In addition, the heat exchanger should be cleaned and maintained regularly to remove dirt and sediment on the surface and maintain its good heat transfer performance. During the cleaning process, appropriate cleaning agents and tools should be used to avoid damage to the heat exchanger.
In addition to daily maintenance and care, Titanium Plate Heat Exchangers also need regular inspection and replacement. For vulnerable parts and aging parts, they should be replaced in time to ensure the normal operation of the equipment. When replacing parts, products that match the original equipment should be selected and installed in accordance with the prescribed operating procedures.
Correct installation and maintenance are of great significance to the stable operation of Titanium Plate Heat Exchangers. Through the introduction of this article, I believe that readers have a deeper understanding of the installation and maintenance of Titanium Plate Heat Exchangers. I hope that this knowledge can help you better use and maintain Titanium Plate Heat Exchangers.
Our Factory
Our factory covers an extensive area and is equipped with advanced production equipment, including 14 flat vulcanizing machines, and the maximum heating plate size can be adapted to various production requirements. The company has more than 750 sets of molds of various models, which can meet the specifications of most heat exchanger brands in the market.


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FAQ
Q: What are Titanium Plate Heat Exchangers?
Q: Why are Titanium Plate Heat Exchangers Preferred?
Q: How are Titanium Plate Heat Exchangers Constructed?
Q: What Maintenance is Required?
Q: How do They Compare to Shell and Tube Heat Exchangers?
Flexibility: Plate heat exchangers offer better adaptability to changing conditions and are easier to clean.
Heat Transfer Efficiency: Plate heat exchangers often have higher heat transfer coefficients due to the large surface area provided by the plates.
Q: What are the Common Issues with Titanium Plate Heat Exchangers?
Gasket Leakage: Gaskets can degrade over time or under extreme conditions, leading to leaks.
Cost: Titanium is more expensive than some other materials, making titanium plate heat exchangers a higher initial investment.
Q: How to Address Fouling in Titanium Plate Heat Exchangers?
Q: What is the Lifespan of a Titanium Plate Heat Exchanger?
Q: Can They Handle Extreme Temperatures and Pressures?
Q: Are There Any Special Considerations for Installation?
Q: What is the Cost of a Titanium Plate Heat Exchanger?
Q: What are the 4 main types of plate type heat exchanger?
Q: Why is titanium used in plate type heat exchangers?
Q: What is a titanium heat exchanger?
Q: Does titanium heat up faster than aluminum?
Q: What is the difference between titanium and steel plates?
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