Since our establishment, we have always focused on the R&D, production and sales of air blowers, and are committed to becoming the top brand in China’s air blower industry. After years of hard work by all employees, we have established a good product R&D and production system.Our major products:–turbo blowers,turbo blower for blast furnace,blower pneumatic conveying systems,mini turbo blower.wildly used in the following industries: sewage treatment etc.All of our products comply with international quality standards and clients come from a variety of different markets throughout the world.such as Wallis and Futuna,Namibia,Saudi Arabia,Belize,Turkmenistan,Maldives,Canada,Belgium etc
RAETTS has passed ISO9001 quality management system certification, ISO14001 environmental management system certification, ISO45001 occupational health and safety management system certification, ISO10012 measurement management system certification, five-star after-sales service system certification, intellectual property management system certification and other authoritative certifications.
Product name | air blower for petroleum and chemical industries |
Keyword | turbo blowers,turbo blower for blast furnace,blower pneumatic conveying systems,mini turbo blower |
Place of Origin | China |
Feature | RAETTS air bearing turbo blower is a brand-new concept blower, which integrates the main core technologies such as “air suspension bearing”, “permanent magnet ultra-high-speed motor”, “high-precision aviation-grade impeller”, and creates a new era of ultra-high efficiency ,low noise and low energy consumption. |
Dimensions | 778mm*774mm*840mm, (Contact us for specific information to confirm) |
Applicable Industries | environmental protection, etc. |
Weight | 511kg |
delivery date | the common delivery time will be 30-40 days. |
terms of paymen | RAETTS accept payment by T/T(30% advance payment,70% before shipment) |
Life span | 20 years (Contact us for specific information to confirm) |
After-sale service | RAETTS warranty time for air bearing blower and maglev turbo blower is 24months,for high speed centrifugal blower is 12 months. |
Advantage | We keep good quality and competitive price to ensure our customers benefit |
Packing | 801x832x819mm(Contact us for specific information to confirm) |
OEM/ODM | Customization Service Provided |
Sales country | All over the world for example:Wallis and Futuna,Namibia,Saudi Arabia,Belize,Turkmenistan,Maldives,Canada,Belgium |
MOQ | 4pcs(Contact us for specific information to confirm) |
production capacity | production capacity RAETTS production quantity for air bearing blower and maglev turbo blower is about 200pcs/month,for high speed centrifugal blower is about 700pcs/month. |
raw materials | RAETTS air blower impeller in made of aluminum alloy,enclosure material is carbon steel,rotor material is cast iron.If customers need other special materials,we can also customized according to customers requirements |
technology | RAETTS air bearing blower technology is originated from South Korea and maglev turbo blower technology is originated from Germany.RAETTS also have R&D team from Xi’an Jiaotong University |
quality system | RAETTS has quality management system certificate ISO9001:2015 and enviromental management system certificate ISO14001:2015 |
air blower for petroleum and chemical industries services FAQs Guide
Are you looking for a quick review guide about air blower for petroleum and chemical industriesservices?
An ultimate FAQ buying guide is available to help you.This guide contains all the information about all the important facts, figures, and various processes regarding air blower for petroleum and chemical industries services.
Let’s continue!
2.What are the Main Components of a Turbo Blower?
3.What is the Maximum Pressure and Flow Rate of a Turbo Blower?
4.What Are the Advantages of Choosing a High-Speed Turbo Blower?
5.About air blower for petroleum and chemical industries customization services
6.About air blower for petroleum and chemical industries production equipment
7.Can a Turbo Blower Be Used for Both Vacuum and Compression Applications?
8.Can a Turbo Blower Be Operated Remotely?
1.How Does a Turbo Blower Affected by Changes in Ambient Temperature?
We attach importance to the innovation ability and team spirit of employees, have advanced R & D facilities and laboratories, and have a good quality management system.
A turbo blower is a type of centrifugal blower that uses a high-speed impeller to generate air flow. The performance of a turbo blower can be affected by changes in ambient temperature in several ways:
1. Air Density: The density of air decreases as the temperature increases. This means that the same volume of air at a higher temperature will have a lower mass compared to the same volume of air at a lower temperature. As a result, the air entering the turbo blower will have a lower mass, which can affect the blower’s performance.
2. Air Viscosity: The viscosity of air also decreases with an increase in temperature. This means that the air will be less resistant to flow, resulting in a decrease in pressure and flow rate. This can affect the efficiency of the turbo blower, as it may require more power to achieve the desired flow rate.
3. Bearing Temperature: The bearings of a turbo blower can be affected by changes in ambient temperature. If the temperature is too high, it can cause the bearings to overheat, leading to premature wear and failure. On the other hand, if the temperature is too low, the bearings may not reach their optimal operating temperature, resulting in reduced efficiency and increased wear.
4. Motor Performance: The motor that drives the turbo blower can also be affected by changes in ambient temperature. If the temperature is too high, it can cause the motor to overheat, leading to reduced performance and potential damage. Similarly, if the temperature is too low, the motor may not reach its optimal operating temperature, resulting in reduced efficiency and increased wear.
To mitigate the effects of ambient temperature on a turbo blower, it is important to properly size and select the blower for the specific operating conditions. This may include using a larger blower or incorporating a cooling system to maintain optimal operating temperatures. Regular maintenance and monitoring of the blower’s performance can also help identify any issues caused by changes in ambient temperature and address them promptly.
2.What are the Main Components of a Turbo Blower?
Our air blower for petroleum and chemical industries products undergo strict quality control to ensure customer satisfaction.
1. Compressor: The compressor is the main component of a turbo blower and is responsible for compressing the air or gas that is being moved through the blower. It typically consists of a rotating impeller and a stationary diffuser.
2. Motor: The motor provides the power to drive the compressor and is usually an electric motor. The size and power of the motor will depend on the size and capacity of the turbo blower.
3. Inlet and Outlet: The inlet is where the air or gas enters the blower and the outlet is where it exits. These are usually designed to minimize turbulence and maximize efficiency.
4. Bearings: The bearings support the rotating shaft of the blower and allow it to spin smoothly. They are typically made of high-quality materials to withstand the high speeds and loads of the blower.
5. Control System: The control system is responsible for monitoring and regulating the speed and operation of the blower. It may include sensors, controllers, and other components to ensure optimal performance.
6. Cooling System: Turbo blowers generate a lot of heat during operation, so a cooling system is necessary to prevent overheating. This may include air or water cooling systems.
7. Housing: The housing or casing of the turbo blower encloses all the internal components and provides structural support. It is usually made of durable materials such as steel or aluminum.
8. Inlet Filter: An inlet filter is often used to remove any contaminants from the air or gas before it enters the blower. This helps to protect the internal components and maintain efficiency.
9. Sound Attenuator: Turbo blowers can be quite loud, so a sound attenuator is often used to reduce the noise level. This may be in the form of a silencer or other noise-reducing device.
10. Vibration Isolators: Vibration isolators are used to reduce the transmission of vibrations from the blower to its surroundings. This helps to minimize noise and prevent damage to nearby equipment.
3.What is the Maximum Pressure and Flow Rate of a Turbo Blower?
We should have a stable supply chain and logistics capabilities, and provide customers with high -quality, low -priced air blower for petroleum and chemical industries products.
The maximum pressure and flow rate of a turbo blower can vary depending on the specific model and manufacturer. However, in general, turbo blowers can achieve pressures up to 15 psi (1 bar) and flow rates up to 10,000 cubic feet per minute (cfm) (283 cubic meters per minute). Some high-performance turbo blowers may be able to achieve even higher pressures and flow rates. It is important to consult the manufacturer’s specifications for the specific turbo blower being used to determine its maximum pressure and flow rate capabilities.
4.What Are the Advantages of Choosing a High-Speed Turbo Blower?
We have the leading technology and innovation capabilities, and attach importance to employee training and development, and provide promotion opportunities.
1. Energy Efficiency: High-speed turbo blowers are designed to operate at high speeds, which results in higher energy efficiency compared to traditional blowers. This means lower energy consumption and cost savings for the user.
2. Compact Size: High-speed turbo blowers are smaller in size compared to traditional blowers, making them ideal for applications where space is limited. This also makes them easier to install and maintain.
3. Low Noise Levels: High-speed turbo blowers operate at a much lower noise level compared to traditional blowers, making them suitable for use in noise-sensitive environments.
4. Low Maintenance: High-speed turbo blowers have fewer moving parts compared to traditional blowers, resulting in lower maintenance requirements and costs.
5. Wide Operating Range: High-speed turbo blowers have a wide operating range, allowing them to maintain a consistent flow and pressure even when there are fluctuations in demand.
6. Durability: High-speed turbo blowers are designed to be highly durable and have a longer lifespan compared to traditional blowers, resulting in lower replacement and maintenance costs.
7. Flexibility: High-speed turbo blowers can be used for a variety of applications, including aeration, ventilation, and pneumatic conveying, making them a versatile choice for different industries.
8. Environmentally Friendly: High-speed turbo blowers are designed to be environmentally friendly, with lower emissions and energy consumption compared to traditional blowers.
9. Faster Start-Up Time: High-speed turbo blowers have a faster start-up time compared to traditional blowers, allowing for quicker response to changes in demand.
10. Advanced Control Options: High-speed turbo blowers come with advanced control options, such as variable frequency drives, allowing for precise control of air flow and pressure. This results in better process control and energy savings.
5.About air blower for petroleum and chemical industries customization services
RAETTS has more than 20 peoples R&D team,which can help customer to do customization for the air blowers to meet the different applications
6.About air blower for petroleum and chemical industries production equipment
RAETTS production equipments are including:Germany imported HERMLE five-axis processing center,AFMING five-axis processing center,Japan Mazak CNC machine tool,sheet metal production and processing center,JIR fine CNC processing center,LEADMA CNC processing center,DOOSAN CNC machine tool,test center,accembly center,motor production center,MAKE laser cutting machine,LFK bending machine,Sweden HEXAGON three coordinate inspection instrument and so on.
7.Can a Turbo Blower Be Used for Both Vacuum and Compression Applications?
We have broad development space in domestic and foreign markets. air blower for petroleum and chemical industries have great advantages in terms of price, quality, and delivery date.
Yes, a turbo blower can be used for both vacuum and compression applications. Turbo blowers are versatile machines that can be used for a variety of applications, including both vacuum and compression. They are commonly used in industries such as wastewater treatment, pneumatic conveying, and industrial processes.
In vacuum applications, the turbo blower is used to create a negative pressure or suction to remove air or other gases from a system. This is commonly used in vacuum pumps for packaging, vacuum cleaners, and other industrial processes.
In compression applications, the turbo blower is used to increase the pressure of a gas or air stream. This is commonly used in pneumatic conveying systems, aeration systems, and other industrial processes.
The versatility of turbo blowers makes them a popular choice for many industries. They are energy-efficient, compact, and have a wide operating range, making them suitable for various applications. However, it is essential to ensure that the turbo blower is designed and selected specifically for the intended application to ensure optimal performance and efficiency.
8.Can a Turbo Blower Be Operated Remotely?
I have a comprehensive after -sales service system, which can pay attention to market trends in time and adjust our strategy in a timely manner.
Yes, a turbo blower can be operated remotely through the use of a remote control system. This system allows the operator to control the speed and other functions of the turbo blower from a distance, without the need to physically be near the blower. This can be useful in situations where the blower is located in a hard-to-reach or hazardous area, or when the operator needs to monitor and adjust the blower from a control room or other remote location. The remote control system typically consists of a control panel, sensors, and a communication system that allows for real-time monitoring and control of the blower.
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