Introduction to Fan Features
Medium-Pressure Insulated Fan is a specialized ventilation device developed for industrial high-temperature ventilation, hot air circulation and high-temperature exhaust gas conveying conditions. The fan uses a thickened double-layer housing with a thermal insulation structure and is internally filled with high density thermal insulation materials, which can effectively prevent heat from the high-temperature airflow from being conducted outward, eliminate problems such as housing overheating, motor overheating and equipment aging, and significantly improve operating safety and service life. The fan is equipped with an optimized centrifugal impeller that provides stable and moderate air pressure and ample airflow rate. It is ideally suited to various medium ductwork resistance conditions and features stable operation, low vibration and low noise. It also provides high-temperature resistance, corrosion resistance, low energy consumption and no need for frequent maintenance, and supports continuous and stable operation for 24 hours. The fan can be customized into explosion-proof, stainless steel, corrosion-resistant and other special models according to customer operating conditions, making it suitable for diverse industrial applications.
Introduction to Fan Parameters
This fan can be designed with an airflow rate of 500 m³/h to 250,000 m³/h and a maximum designed air pressure of 3,500 Pa. It can be customized as a high-temperature-resistant model based on the operating conditions. Depending on the specific operating temperature, different heat-resistant materials can be selected. The insulation thickness options include 100 mm, 150 mm and 200 mm, which can be adjusted upon customer request. Its design temperature resistance ranges from 250 ℃ to 1,000 ℃.

Applicable Industries and Scenarios of the Fan
I. Applicable Industries
Coating and spraying industry: Constant-temperature hot air circulation and air supply and draft for paint baking booths and spraying production lines.
Drying and processing industry: Hot air conveying for food, pharmaceutical, textile, plastic and hardware drying production lines
Thermal kiln industry: High-temperature ventilation and hot air circulation for industrial kilns, heat treatment equipment, drying ovens and boilers
Environmental protection and exhaust gas industry: High-temperature exhaust gas collection, tail gas draft, and ductwork air supply for dust collection equipment
Chemical industry: Hot air supply for chemical equipment, ventilation under high-temperature conditions, and corrosion-resistant hot air conveying
II. Application Scenarios
Drying production lines, paint baking and spraying, kiln hot air circulation, high-temperature exhaust gas treatment, hot air conveying for food and chemical applications, industrial HVAC insulated air supply and other scenarios
Packaging and Shipping Method
Export Packaging Instructions
1. Packaging Type: Small-sized fans are packed in thickened export cartons;The medium and large-sized fans are packed in ISPM 15 fumigated solid wooden cases / wooden frames, compatible with sea freight containers.
2. Internal Protection: The entire unit is wrapped with anti-rust film and desiccant; the impeller and motor are individually cushioned with foam to protect against moisture, salt fog, and physical impact.
3. Securing: The package is fastened with steel straps, and the fan is secured with positioning blocks inside the crate to prevent movement or deformation during long-distance transportation.
4. Labeling & Marking Standards: The outer surface of the crate is printed with English shipping marks, and clearly indicated with model number, net weight, and handling symbols such as "Keep Dry", "Fragile" and "This Side Up / Sling Here".
5. Attached Documents: Bilingual (Chinese and English) installation manual and certificate of conformity delivered together with the package.
After-Sales Service and Maintenance
Warranty Period:
1. A 12-month international warranty is provided for the entire fan, excluding vulnerable parts;
2. Online Technical Support: 24/7 online support from English-speaking engineers for remote guidance on troubleshooting, fan commissioning, and routine maintenance;
3. Maintenance Manual: An English maintenance manual is included with the shipment, covering procedures for periodic cleaning, bearing lubrication, and impeller inspection;
4. Spare Parts Supply: Original spare parts are available for bulk export shipment, minimizing the downtime for overseas equipment;

5. Troubleshooting Solutions: Standardized repair guidelines are provided, and on-site engineer services are also available (with travel expenses charged as needed);
6. Key Points for Regular Maintenance: Regularly clean dust from the impeller, check belt tension, inspect insulation layer seals, replenish lubricating oil, and monitor motor temperature to extend the fan's service life.
External Medium-Pressure Backward-Curved High-temperature (250 ℃) Fan
When I design or recommend an industrial fan for a high-temperature process, I do not start with the motor power or the fan size alone. I first look at the actual working condition: air temperature, required airflow, system resistance, operating time, installation space, gas characteristics, and the way the fan will be connected to the equipment.
That is especially important for a High-temperature-resistant Hot Air Circulating Fan. A fan working around 250 ℃ is not simply an ordinary Centrifugal Fan with a different label. Heat changes the way materials, bearings, seals, motors, and rotating parts behave. If these details are not considered at the design stage, a fan may run normally during a short test but become unreliable after long-term operation.
Our External Medium-Pressure Backward-Curved High-temperature (250 ℃) Fan is developed for this kind of working environment. I focus on practical industrial requirements: stable hot-air circulation, suitable medium pressure, controlled airflow, reliable structure, and easier integration with ovens, drying equipment, coating lines and other thermal process systems.
Zhejiang Shangyang Industrial Fan Co., Ltd. is a national high-tech enterprise and a technology-oriented small and medium-sized enterprise. Our sales company is located in Shanghai, while our manufacturing facility is in Jinyun County, Lishui, Zhejiang. Our technical, manufacturing and sales teams have around 20 years of industry experience. Over the years, we have continued to improve industrial fan designs based on coating fan and environmental protection fan technology, with particular attention to practical operating conditions rather than simply producing standard catalog models.
In simple terms, this fan is designed to move hot air through an industrial system where the process temperature can reach approximately 250 ℃, while providing the pressure needed to overcome resistance from ducts, heaters, filters, chambers, dampers and other equipment.
The phrase external medium-pressure describes the working range of the fan. It is intended for systems where the fan needs more pressure than a simple circulation fan but does not necessarily require the very high pressure associated with specialized High-Pressure Blowers.
The backward-curved impeller is another important part of the design. The blades curve backward relative to the direction of rotation. This type of impeller is widely used in Industrial Centrifugal Fan applications because it can provide a useful combination of airflow, pressure performance, efficiency and stable operation when properly matched to the system.
The 250 ℃ designation tells us something equally important: the fan must be selected and built around high-temperature operating conditions. The exact allowable temperature depends on the complete fan configuration, including materials, bearing arrangement, motor arrangement, cooling method, shaft design, sealing and installation conditions. I therefore recommend confirming the actual temperature profile and operating point before production rather than treating 250 ℃ as a universal value for every configuration.

For engineering projects, I also pay attention to the difference between air temperature at the fan inlet and the temperature inside the process chamber. They are not always the same. A well-designed system may place the motor outside the hot airflow or use a suitable cooling arrangement so that the motor does not experience the same temperature as the process air.
| Item | Typical Application Focus | What We Confirm Before Production |
|---|---|---|
| Fan type | Centrifugal fan | Airflow, pressure, speed and system resistance |
| Blade design | Backward-curved impeller | Operating point and impeller selection |
| Temperature | High-temperature air, up to approximately 250 ℃ for the specified configuration | Actual inlet temperature and temperature variation |
| Pressure range | Medium-pressure industrial air movement | Required static/total pressure and duct resistance |
| Installation | Ovens, dryers, coating and thermal equipment | Mounting position, connection size and available space |
Source: Zhejiang Shangyang Industrial Fan Co., Ltd. product and manufacturing information supplied for this product page. Final performance values should be confirmed against the selected model and project operating point. For standardized aerodynamic fan testing, ANSI/AMCA 210-25 provides methods covering airflow, pressure, power, air density, rotational speed and efficiency. :contentReference[oaicite:0]{index=0}
The operating principle is easier to understand than the engineering behind it. Air enters the fan through the inlet. The rotating backward-curved impeller accelerates the air and pushes it outward by centrifugal force. The air then passes through the volute or outlet section, where part of the velocity energy is converted into pressure before the hot air enters the connected duct or process equipment.
In a hot air circulation system, the fan does not simply “blow hot air.” Its real job is to keep the air moving through a controlled path.
For example, imagine an industrial oven. A heater raises the air temperature. The circulating fan moves the heated air through the oven chamber. The air transfers heat to the workpieces and then returns to the circulation path. The fan continues moving the air so that temperature differences inside the chamber can be reduced.
This is why hot air circulation fan selection can affect the quality of the final product. If airflow is too weak, some areas may heat slowly. If airflow is poorly distributed, one area can become hotter than another. If system resistance is underestimated, the fan may not reach the required airflow once the complete ductwork, filters and dampers are installed.
I normally recommend selecting the fan from the actual system curve instead of choosing a fan only by its nominal diameter. The operating point should consider both airflow and pressure.
ANSI/AMCA 210-25 specifically describes laboratory methods for determining fan aerodynamic performance in terms such as airflow rate, pressure developed, power consumption, air density, rotational speed and efficiency. That is a useful reminder that fan performance is not represented by one number alone. :contentReference[oaicite:1]{index=1}
The first requirement is obvious: the fan must be designed for hot air. Materials and structural details need to be considered according to the actual operating temperature. At elevated temperatures, thermal expansion becomes a practical issue, and components that perform well at room temperature may behave differently after continuous heating.
The backward-curved impeller is suitable for many industrial air-handling applications where stable airflow and pressure performance are important. It can be matched to different motor speeds and system requirements through proper engineering selection.
This fan is intended for applications where the air must pass through resistance in ducts and process equipment. Typical resistance may come from elbows, filters, heaters, dampers, heat exchangers and other equipment. I always recommend calculating these losses before selecting the fan.
For high-temperature applications, separating the motor from the hottest airflow can be an important part of the system design. It helps avoid exposing the motor directly to process heat. The exact arrangement depends on the selected configuration and customer requirements.

Industrial fans are often expected to work for long periods rather than just a few minutes. For that reason, we pay attention to impeller balance, shaft structure, bearing arrangement, welding quality, assembly accuracy and operating stability.
Industrial equipment rarely fits every project with one standard model. Different customers may need different airflow, pressure, inlet and outlet directions, materials, drive arrangements or installation dimensions. Our factory manufactures both standard and non-standard industrial fans, allowing the fan to be developed around the equipment rather than forcing the equipment to adapt to a fixed fan.
One thing I have learned from industrial fan projects is that a technically impressive specification is not always the most useful specification. What matters is whether the fan works properly after it is connected to the complete system.
Our approach starts with the operating conditions. I want to know the target airflow, pressure, temperature, medium, working time and installation conditions before discussing the final model.
For hot-air systems, temperature and airflow are closely connected. Hot air has a lower density than cooler air. This means the actual operating condition should be considered when calculating fan performance. The same fan may behave differently under different air densities.
Another important point is vibration. A rotating impeller must be manufactured and assembled carefully. If the impeller is poorly balanced or the shaft alignment is not controlled, vibration can increase. In long-running industrial equipment, vibration is not something I would ignore because it can affect bearings, couplings, mounting structures and surrounding equipment.
AMCA maintains separate standards covering fan aerodynamic performance, efficiency, sound testing and balance-related requirements. Its current standards list includes ANSI/AMCA 204 for fan balance quality and vibration levels, ANSI/AMCA 210 for aerodynamic testing, ANSI/AMCA 205 for fan efficiency classification and ANSI/AMCA 300 for fan sound testing. :contentReference[oaicite:2]{index=2}
| Performance Consideration | Why It Matters | How I Use It in Selection |
|---|---|---|
| Airflow | Determines how much air the process can circulate | Match the required process airflow |
| Pressure | Allows air to overcome system resistance | Calculate duct and equipment losses |
| Temperature | Affects materials, bearings, seals and motor arrangement | Confirm actual operating and peak temperature |
| Rotational speed | Influences airflow, pressure, noise and mechanical load | Select according to the required operating point |
| Balance and vibration | Influence mechanical stability and service life | Check during manufacturing and assembly |
| Sound | Important for indoor production environments | Consider fan speed, duct design and acoustic requirements |
Source: Technical selection guidance based on Zhejiang Shangyang Industrial Fan Co., Ltd. manufacturing practice and the published AMCA fan testing and performance standards. AMCA 300-24 covers laboratory methods for determining airborne sound emission from fans, while AMCA 210-25 covers aerodynamic performance testing. :contentReference[oaicite:3]{index=3}
I also avoid making a simple claim such as “higher pressure is always better.” It is not. If the pressure is much higher than the system needs, the motor may consume unnecessary power and the operating point may move away from the intended design condition. A properly selected fan is more useful than an oversized fan.
The External Medium-Pressure Backward-Curved High-temperature (250 ℃) Fan is mainly intended for industrial thermal and air-handling systems. The exact suitability should always be confirmed against the process conditions, but the following applications are common areas where this type of fan can make sense.
Industrial ovens need controlled air movement to distribute heat. The fan can be used as part of a hot-air circulation system to keep heated air moving through the chamber.
Drying processes often depend on both temperature and airflow. Stable air movement helps carry heat to the material and remove moisture from the working area.
Coating equipment commonly uses heating and drying sections. Our company has long focused on coating fans and environmental protection fans, so coating-related applications are an important part of our manufacturing experience.
Heat treatment systems require controlled thermal conditions. Fan selection should be based on the required air circulation pattern, temperature, pressure and process time.
Industrial food processing and drying equipment can require hot-air circulation. For these applications, the fan configuration and material selection should be discussed according to the specific process and hygiene requirements.
Chemical processing, building material production and other thermal processes may involve hot air movement through ducts, chambers or drying systems. The gas composition should be confirmed before selecting materials.
Because our factory also manufactures induced draft fans, axial fans, High-Pressure Fans, stainless steel centrifugal fans, mixing fans and explosion-proof centrifugal fans, we can compare different fan structures when a project has more complicated requirements.
| Industry | Typical Fan Role | Key Selection Question |
|---|---|---|
| Industrial oven | Hot-air circulation | What airflow is required throughout the chamber? |
| Drying line | Heat and moisture movement | What temperature and pressure are required? |
| Coating equipment | Drying and thermal circulation | What is the process temperature and duct resistance? |
| Heat treatment | Controlled hot-air movement | What temperature profile must be maintained? |
| Food processing | Drying and hot-air circulation | What material and process requirements apply? |
| Chemical processing | Process air movement | What is the gas composition and temperature? |
| Building materials | Drying and thermal air handling | What pressure loss exists in the complete system? |
Source: Application categories are based on Zhejiang Shangyang Industrial Fan Co., Ltd. supplied company and product information. The table is an application guide rather than a claim that every configuration is suitable for every process. Final selection should be made from the actual operating conditions.
I believe manufacturing quality starts long before the final assembly. A centrifugal fan is made from many parts, and small errors can become larger problems when the fan runs continuously.
Our factory in Jinyun, Zhejiang, manufactures various standard and non-standard industrial fans. The production process starts with reviewing the technical requirements. For a customized high-temperature fan, we confirm the working temperature, airflow, pressure, fan rotation direction, installation method, motor arrangement and other important details before production.

The impeller is one of the key components. Its dimensions and blade geometry affect the aerodynamic performance. Welding also needs attention because heat can cause deformation if the process is not controlled properly.
After fabrication, assembly accuracy becomes important. The shaft, impeller, bearings, motor and other parts must work together as one system. The rotating assembly needs to be checked for balance and smooth operation.
For high-temperature applications, I also pay attention to thermal expansion. A component that looks perfectly aligned at room temperature may experience different stresses after heating. That is why the fan configuration must be considered as a complete system.
Before delivery, the fan can undergo appropriate operation and performance checks according to the project requirements. The customer's technical conditions determine what should be tested and recorded. For formal performance verification, standardized fan testing methods can be referenced where applicable.
AMCA 210-25 explains that fan aerodynamic testing can include airflow rate, developed pressure, power consumption, air density, rotational speed and efficiency. This gives customers a useful framework for understanding what performance information can be measured rather than relying only on a single rated value. :contentReference[oaicite:4]{index=4}
For sound requirements, AMCA 300-24 provides laboratory methods for measuring airborne sound emissions from fans under specified test conditions. It also makes clear that acoustic measurements depend on the test setup and operating point. :contentReference[oaicite:5]{index=5}
There are many Industrial Fan Manufacturers in the market, so I understand why buyers ask about experience, manufacturing capability and after-sales support before placing an order.
Our strength is not simply producing one type of fan. We have developed a broader industrial fan product range covering centrifugal fans, high-temperature fans, induced draft fans, axial fans, Low-Noise Centrifugal Fans, high-pressure fans, stainless steel centrifugal fans, hot air circulating fans, mixing fans and explosion-proof centrifugal fans.
This range is useful when a project has several air-handling points. Instead of looking at each fan separately, I can look at the complete process and help determine whether the selected fan type matches the actual duty.
Our company has technical design and manufacturing teams with around 20 years of experience. We have spent more than a decade continuously improving fan products based on coating fan and environmental protection fan development experience.
The company has obtained national test reports for specialized products and has successively obtained explosion-proof certification, energy efficiency certification and other certifications for applicable products. Certification is always product- and configuration-specific, so I recommend customers ask for the relevant certificate when it is required by a project.
Our products are used in coating, kiln, boiler, environmental protection and dust collection, thermal energy, printing, coating equipment, medical latex equipment, air-supported membrane, separation, cement, chemical and food industries. They are supplied across China and also exported as supporting equipment to overseas projects.
More importantly, we follow a practical approach to customer communication. If the information provided for fan selection is incomplete, I would rather ask for the missing operating data than give a random model number. For industrial equipment, a technically honest answer at the beginning can save much more time later.
The product is designed for high-temperature applications with a specified temperature capability of approximately 250 ℃, but the actual allowable operating condition depends on the complete configuration. Before ordering, we need to confirm the inlet air temperature, temperature fluctuation, operating time, airflow, pressure and installation arrangement.
Not necessarily. High-temperature fan systems can use different motor and drive arrangements. An external motor arrangement can help keep the motor away from the hottest airflow. The actual configuration should be selected according to the project conditions.
I recommend providing at least the required airflow, required pressure, operating temperature, gas or air characteristics, working hours, power supply, installation position, inlet and outlet dimensions and any special material requirements. A system drawing is even better if one is available.
Yes. Our factory produces both standard and non-standard industrial fans. Customized requirements may include dimensions, airflow, pressure, materials, rotation direction, inlet and outlet arrangement, motor configuration and installation structure.
For standard orders, the typical production period is around 7–15 working days. The actual lead time depends on fan size, materials, motor configuration, quantity and customization requirements. We confirm the production schedule before order confirmation.
Testing depends on the product configuration and customer requirements. Typical checks can include operating condition, temperature-related checks where applicable, rotation, vibration, performance and assembly condition. If a project requires specific test documentation, this should be agreed before production.
Land transportation and professional logistics are common choices. For export orders, the transportation method is selected according to destination, package size, delivery time and customer requirements. The fan is protected against moisture, impact and movement during transportation, with key components fixed appropriately.
Packaging depends on fan size and transportation method. The general principle is to protect the equipment against collision, moisture and movement. Important parts are fixed, and the external package is selected according to whether the shipment is domestic or overseas.
Wire transfer is commonly used for industrial equipment orders. Payment terms are normally confirmed in the commercial contract according to order value, customization level and project requirements.
Do not assume that a standard high-temperature fan is automatically suitable for an explosive environment. Explosion-proof requirements involve the complete equipment configuration and the hazardous-area classification. Our company also manufactures explosion-proof centrifugal fans and has obtained applicable explosion-proof certifications for specialized products, so the project conditions should be reviewed before selection.
If you are purchasing a 250 ℃ High Temperature Fan, I recommend starting with five basic questions.
First, what is the actual temperature? Do not provide only the normal temperature if the system occasionally reaches a higher peak. We need to know both normal and maximum conditions.
Second, how much air do you need? Airflow is normally expressed as a volume flow requirement. If you are replacing an existing fan, the existing airflow and operating data can be useful.
Third, what pressure does the system need? Include the resistance of ducts, elbows, filters, heaters, dampers, heat exchangers and other components. This is one of the most common areas where fan selection goes wrong.
Fourth, what is the air or gas being moved? Clean hot air is different from dusty air, corrosive gas or solvent-containing process gas. The medium can affect materials and fan construction.
Fifth, how will the fan be installed? Space limitations, inlet and outlet direction, motor position, maintenance access and foundation conditions all matter.
Once these details are clear, selecting the External Medium-Pressure Backward-Curved High-temperature (250 ℃) Fan becomes much easier. Instead of comparing fans only by price, I can compare them by the conditions under which they are expected to operate.
For a normal order, our standard production cycle is approximately 7–15 working days, subject to the final technical specification and production schedule. Customized high-temperature fans may require additional time when special materials, motors, structures or testing are involved.
Before production, we confirm the technical parameters with the customer. During manufacturing, the fan is fabricated and assembled according to the agreed configuration. Before shipment, appropriate inspections and operational checks are completed.
For packaging, our basic goal is simple: the fan should arrive in the same condition in which it left the factory. We therefore consider moisture protection, impact protection, component fixation and transportation stability.
For international customers, we can discuss the appropriate logistics method according to the destination and shipment requirements. Since different countries and projects have different import, electrical and certification requirements, these details should be confirmed before production rather than after the fan is completed.
When I talk about a High-temperature-resistant Hot Air Circulating Fan, I do not see it as just another industrial blower. It is part of a larger thermal process system. Its performance affects airflow distribution, heating uniformity, drying efficiency and the stability of the equipment around it.
The External Medium-Pressure Backward-Curved High-temperature (250 ℃) Fan is designed for industrial users who need controlled hot-air movement, medium pressure and reliable operation in demanding thermal environments. Its backward-curved centrifugal structure, high-temperature-oriented design and flexible configuration make it suitable for industrial ovens, drying systems, coating equipment, heat treatment equipment and other process applications.
At Zhejiang Shangyang Industrial Fan Co., Ltd., we focus on practical engineering requirements. Our goal is not simply to supply a fan that looks correct on paper. We want the selected fan to match the actual working condition, connect properly with the customer's equipment and remain stable during long-term industrial operation.
If you are planning a new hot-air circulation system or replacing an existing 250 ℃ industrial fan, send us the required airflow, pressure, temperature, medium, operating time and installation information. With these details, we can work from the real application and recommend a suitable fan configuration instead of making a selection based on a single parameter.
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