One of the key features of this heat exchanger is its compact size, making it ideal for installations with limited space. Despite its small footprint, it delivers impressive heat transfer capabilities, ensuring optimal performance in various industrial processes.
The titanium plates used in this heat exchanger provide excellent resistance to corrosive environments, making it suitable for applications involving aggressive fluids or extreme temperature conditions. This corrosion resistance ensures a longer lifespan and reduces the need for frequent maintenance, resulting in cost savings for industrial operations.
The 30kW heat transfer capacity of this heat exchanger allows for efficient and precise temperature control in industrial processes. It effectively transfers heat between two fluids, optimizing energy utilization and enhancing overall system efficiency.
Another advantage of the Industrial Titanium Small 30kW Plate Heat Exchanger is its versatility. It can be used in a wide range of industrial applications, including chemical processing, oil refineries, HVAC systems, and marine applications. Its flexibility enables it to meet the diverse heat transfer requirements of different industries.
Furthermore, the removable plate design of this heat exchanger facilitates easy cleaning and maintenance. The plates can be accessed and cleaned individually, ensuring optimal heat transfer efficiency and prolonging the lifespan of the heat exchanger.
In summary, the Industrial Titanium Small 30kW Plate Heat Exchanger stands out for its compact size, corrosion resistance, efficient heat transfer, versatility, and ease of maintenance. It is a reliable and cost-effective solution for industrial processes that require precise temperature control and optimal energy utilization.
Frame material | Carbon steel/stainless stell |
Plate material | SS304, SS316L, Titanium, SMO254, Hastelloy C276 |
Plate thickness | 0.5mm, 0.6mm, 0.8mm, 1mm |
Gasket material | NBR, EPDM, HNBR, HEPDM, Viton A, Viton G |
Design pressure | 1.0M/Pa |
Testing pressure | 1.25M/Pa |
Delivery pictues
One of the key features of this heat exchanger is its compact size, making it ideal for installations with limited space. Despite its small footprint, it delivers impressive heat transfer capabilities, ensuring optimal performance in various industrial processes.
The titanium plates used in this heat exchanger provide excellent resistance to corrosive environments, making it suitable for applications involving aggressive fluids or extreme temperature conditions. This corrosion resistance ensures a longer lifespan and reduces the need for frequent maintenance, resulting in cost savings for industrial operations.
The 30kW heat transfer capacity of this heat exchanger allows for efficient and precise temperature control in industrial processes. It effectively transfers heat between two fluids, optimizing energy utilization and enhancing overall system efficiency.
Another advantage of the Industrial Titanium Small 30kW Plate Heat Exchanger is its versatility. It can be used in a wide range of industrial applications, including chemical processing, oil refineries, HVAC systems, and marine applications. Its flexibility enables it to meet the diverse heat transfer requirements of different industries.
Furthermore, the removable plate design of this heat exchanger facilitates easy cleaning and maintenance. The plates can be accessed and cleaned individually, ensuring optimal heat transfer efficiency and prolonging the lifespan of the heat exchanger.
In summary, the Industrial Titanium Small 30kW Plate Heat Exchanger stands out for its compact size, corrosion resistance, efficient heat transfer, versatility, and ease of maintenance. It is a reliable and cost-effective solution for industrial processes that require precise temperature control and optimal energy utilization.
Frame material | Carbon steel/stainless stell |
Plate material | SS304, SS316L, Titanium, SMO254, Hastelloy C276 |
Plate thickness | 0.5mm, 0.6mm, 0.8mm, 1mm |
Gasket material | NBR, EPDM, HNBR, HEPDM, Viton A, Viton G |
Design pressure | 1.0M/Pa |
Testing pressure | 1.25M/Pa |
Delivery pictues
Plate heat exchangers have been widely used in central heating, food, machinery, metallurgy, the petrochemical industry, and ships, and have become the leading heat exchange equipment in urban central heating projects. In order to ensure the normal operation of the plate heat exchanger and prolong the service life of key components, it is especially important to understand the failures of the plate heat exchanger, their causes, and treatment methods. The following is a description of how to deal with the heat exchanger when the pressure drop is too large.
Plate heat exchangers were first put into commercial production in the 1930s and are now being used more and more widely in water supply, heating, and air conditioning projects in industrial and civil buildings. The correct selection of plate heat exchangers can ensure the smooth implementation and use of the project. Here we introduce how to select the heat exchanger.
With increasing use, the heat exchanger's heat transfer efficiency will inevitably be affected, thus affecting normal operation. There are many reasons for the low heat transfer efficiency of plate heat exchangers. Because we all know that the plate heat exchanger heat transfer efficiency is very high, and this is one of the reasons why people often choose it. Today we will discuss this issue.
Even a plate heat exchanger can have problems during the course of a year and require maintenance, especially its seals, to see if it has loosened.
The plate heat exchanger is a new type of high-efficiency heat exchanger made of metal sheets with certain corrugated shapes stacked on top of each other. A thin rectangular channel is formed between the various plates, and heat is exchanged through the plates. The plate heat exchanger is an ideal equipment for liquid-to-liquid and liquid-to-vapor heat exchange.
Heat exchangers are devices used to transfer heat from a hot fluid to a cold fluid to meet specified process requirements and are an industrial application of convective heat transfer and heat conduction. Heat exchangers can be classified in different ways. Its operation process can be divided into three main categories: inter-wall, hybrid, and heat storage. According to its surface compactness can be divided into two categories: compact and non-compact. Next, let's learn about the history of heat exchanger development.
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