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:–Textile printing and dyeing blower,Blowers for pneumatic conveying applications,TURBO BLOWER AND COMPRESSOR.wildly used in the following industries: high tower desulfurization etc.All of our products comply with international quality standards and clients come from a variety of different markets throughout the world.such as Sao Tome and Principe,Lesotho,Kiribati,Grenada,Seychelles,Belize,Saudi Arabia 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 | Blower Packages for Pneumatic Conveying Systems |
Keyword | Textile printing and dyeing blower,Blowers for pneumatic conveying applications,TURBO BLOWER AND COMPRESSOR |
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 | 766mm*720mm*801mm, (Contact us for specific information to confirm) |
Applicable Industries | cement, chemical, etc. |
Weight | 237kg |
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 | 15 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 | 864x846x834mm(Contact us for specific information to confirm) |
OEM/ODM | Customization Service Provided |
Sales country | All over the world for example:Sao Tome and Principe,Lesotho,Kiribati,Grenada,Seychelles,Belize,Saudi Arabia |
MOQ | 10pcs(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 |
Blower Packages for Pneumatic Conveying Systems services FAQs Guide
Are you looking for a quick review guide about Blower Packages for Pneumatic Conveying Systemsservices?
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 Blower Packages for Pneumatic Conveying Systems services.
Let’s continue!
2.Why Should I Choose a Turbo Blower for My Industrial Operation?
3.Can a Turbo Blower Be Used for Both Vacuum and Compression Applications?
4.What are the different types of Blower Packages for Pneumatic Conveying Systems available in the market?
5.About Blower Packages for Pneumatic Conveying Systems delivery date
6.How Does a Turbo Blower Handle Varying Inlet Conditions?
7.About Blower Packages for Pneumatic Conveying Systems patent
8.Can a Turbo Blower Be Operated Remotely?
9.About Blower Packages for Pneumatic Conveying Systems R&D capabilities
10.Are There Customizable Options Available for Turbo Blowers?
11.What are the common applications of an Blower Packages for Pneumatic Conveying Systems?
12.How Does a Variable Speed Drive Affect a Turbo Blower’s Performance?
13.Is a Turbo Blower More Efficient at Higher or Lower Speeds?
14.What Measures are in Place for Protecting Against Overloading a Turbo Blower?
1.About Blower Packages for Pneumatic Conveying Systems 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.
2.Why Should I Choose a Turbo Blower for My Industrial Operation?
We should enjoy a good reputation in the industry, and we can increase the added value of the products of cooperative customers through technological innovation.
1. Energy Efficiency: Turbo blowers are known for their high energy efficiency compared to traditional blowers. They use less energy to produce the same amount of air flow, resulting in lower operating costs and reduced energy consumption.
2. Compact Design: Turbo blowers have a compact design, making them ideal for industrial operations with limited space. They can be installed in tight spaces and still provide high air flow rates.
3. Low Maintenance: Turbo blowers have fewer moving parts compared to traditional blowers, resulting in lower maintenance requirements and costs. This also means less downtime for maintenance, resulting in increased productivity.
4. Variable Speed Control: Turbo blowers have variable speed control, allowing for precise control of air flow and pressure. This makes them suitable for a wide range of industrial applications.
5. Quiet Operation: Turbo blowers operate at a lower noise level compared to traditional blowers, making them ideal for industrial operations where noise levels need to be kept to a minimum.
6. Durability: Turbo blowers are designed to be durable and long-lasting, with minimal wear and tear on the components. This results in a longer lifespan and reduced replacement costs.
7. Environmental Benefits: Turbo blowers are environmentally friendly, as they produce less noise and vibration, and have lower energy consumption. This makes them a more sustainable option for industrial operations.
8. Easy Installation: Turbo blowers are easy to install and can be up and running in a short amount of time. This reduces installation costs and downtime for the operation.
9. High Air Flow Rates: Turbo blowers are capable of producing high air flow rates, making them suitable for a wide range of industrial applications that require high volumes of air.
10. Customizable Options: Turbo blowers can be customized to meet the specific needs of an industrial operation. This includes options for different air flow rates, pressure levels, and control systems.
3.Can a Turbo Blower Be Used for Both Vacuum and Compression Applications?
We have broad development space in domestic and foreign markets. Blower Packages for Pneumatic Conveying Systems 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.
4.What are the different types of Blower Packages for Pneumatic Conveying Systems available in the market?
For the industrial air blower,normally it is including side channel blower(also called ring blower),roots blower(also called lobe blower),single-stage centrifugal blower,multi-stage centrifugal blower,air foil bearing blowers and maglev turbo blowers.
5.About Blower Packages for Pneumatic Conveying Systems delivery date
For the regular model air blowers(air suspension blower and maglev turbo blower) which RAETTS is producing,the common delivery time will be 30-40 days.For Super air blower and EXPLORER series high speed centrifugal air blower,delivery date is about 10 days.For some other R&D products,RAETTS delivery data is about 3-4 months.
6.How Does a Turbo Blower Handle Varying Inlet Conditions?
We maintain a certain amount of R&D investment every year and continuously improve operational efficiency to provide better services to our cooperative customers.
A turbo blower is designed to handle varying inlet conditions by adjusting its speed and flow rate to maintain a constant pressure at the outlet. This is achieved through the use of a variable frequency drive (VFD) which controls the speed of the blower motor.
When the inlet conditions change, such as an increase or decrease in air flow or pressure, the VFD will adjust the speed of the blower to maintain a constant pressure at the outlet. This is done by monitoring the pressure at the outlet and adjusting the speed of the blower accordingly.
In addition, turbo blowers are equipped with inlet guide vanes (IGVs) which can be adjusted to control the amount of air entering the blower. This allows the blower to handle varying inlet conditions without overloading the motor or causing damage to the blower.
Furthermore, some turbo blowers are equipped with advanced control systems that can automatically adjust the speed and flow rate based on the inlet conditions, ensuring optimal performance and energy efficiency.
Overall, a turbo blower is able to handle varying inlet conditions by continuously adjusting its speed and flow rate to maintain a constant pressure at the outlet, while also utilizing inlet guide vanes and advanced control systems for optimal performance.
7.About Blower Packages for Pneumatic Conveying Systems patent
RAETTS won 5 Patents for invention, 18 Patents for utility models,3 Design patents +2 software copyrights,Dozens of patents under application,and formulated 1 Industrial standard and 2 Technical standards.
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.
9.About Blower Packages for Pneumatic Conveying Systems R&D capabilities
RAETTS R&D team has more than 20 people,the chief team leader worked for BYD before,and the technique of whole team is supported by Xi’an Jiaotong University.
10.Are There Customizable Options Available for Turbo Blowers?
Being one of the top Blower Packages for Pneumatic Conveying Systems manufacturers in China, We attach great importance to this detail.
Yes, there are customizable options available for turbo blowers. Some of the common customizable options include:
1. Motor Size: The motor size can be customized to meet specific power requirements and operating conditions.
2. Impeller Size and Design: The impeller size and design can be customized to achieve the desired flow rate and pressure.
3. Material of Construction: The material of construction can be customized to suit the application and environment. For example, stainless steel or corrosion-resistant coatings can be used for applications in corrosive environments.
4. Inlet and Outlet Configurations: The inlet and outlet configurations can be customized to fit the existing piping system or to optimize the flow pattern.
5. Control System: The control system can be customized to include features such as variable speed drives, remote monitoring, and automation.
6. Sound Attenuation: Sound attenuation options can be added to reduce the noise level of the turbo blower.
7. Mounting Options: The mounting options can be customized to fit the available space and installation requirements.
8. Accessories: Various accessories such as filters, silencers, and dampers can be added to the turbo blower to enhance its performance and efficiency.
It is important to consult with the manufacturer or supplier to discuss the specific customization options available for a particular turbo blower model.
11.What are the common applications of an Blower Packages for Pneumatic Conveying Systems?
The air blower can be applied for wastewater treatment aeration,pneumatic conveying,sandblaster,combustion support,galvanization,air knife drying,aquaculture oxygenation,fish farming,etc.
12.How Does a Variable Speed Drive Affect a Turbo Blower’s Performance?
We focus on innovation and continuous improvement to maintain a competitive advantage.
A variable speed drive (VSD) can have a significant impact on a turbo blower’s performance. Here are some ways in which a VSD can affect a turbo blower:
1. Energy Efficiency: One of the main benefits of using a VSD with a turbo blower is improved energy efficiency. By adjusting the speed of the blower to match the required air flow, a VSD can reduce the amount of energy consumed by the blower. This is because the blower does not have to run at full speed all the time, which can result in significant energy savings.
2. Improved Control: A VSD allows for precise control over the speed of the blower, which in turn allows for better control over the air flow. This is especially useful in applications where the air flow requirements vary, as the blower can be adjusted to meet the changing demands.
3. Reduced Wear and Tear: Running a turbo blower at full speed all the time can put a lot of strain on the equipment, leading to increased wear and tear. By using a VSD, the blower can be operated at lower speeds when the demand is lower, reducing the strain on the equipment and extending its lifespan.
4. Noise Reduction: Turbo blowers can be quite noisy when running at full speed. By using a VSD to adjust the speed of the blower, the noise level can be reduced significantly. This is especially beneficial in applications where noise levels need to be kept to a minimum.
5. Improved Process Control: In some applications, the air flow requirements may need to be adjusted constantly to maintain a specific process condition. A VSD allows for precise control over the air flow, making it easier to maintain the desired process conditions.
In summary, a variable speed drive can have a positive impact on a turbo blower’s performance by improving energy efficiency, control, reducing wear and tear, noise levels, and improving process control. It is a valuable tool for optimizing the performance of a turbo blower in various applications.
13.Is a Turbo Blower More Efficient at Higher or Lower Speeds?
We pay attention to the transformation of intellectual property protection and innovation achievements. Your OEM or ODM order design we have a complete confidentiality system.
A turbo blower is more efficient at higher speeds. This is because the higher the speed, the more air is being pushed through the blower, resulting in a higher volume of air being moved. This increased volume of air allows for more efficient operation and better performance. Additionally, at higher speeds, the blower is able to overcome any resistance or back pressure in the system more easily, resulting in a more efficient operation.
14.What Measures are in Place for Protecting Against Overloading a Turbo Blower?
We continue to improve Blower Packages for Pneumatic Conveying Systems products and processes to improve efficiency.
1. Design and Engineering: Turbo blowers are designed and engineered to withstand a certain amount of load and stress. The design includes factors such as material strength, bearing capacity, and rotor dynamics to ensure that the blower can handle the expected load without failure.
2. Load Monitoring: Most turbo blowers are equipped with load monitoring systems that continuously measure the load on the blower. This allows operators to keep track of the load and make adjustments if necessary to prevent overloading.
3. Safety Margins: Turbo blowers are designed with safety margins to account for unexpected increases in load. These safety margins provide a buffer to prevent overloading and protect the blower from damage.
4. Control Systems: Advanced control systems are used to regulate the speed and flow of the blower. These systems can adjust the blower’s output to match the required load, preventing overloading.
5. Vibration Monitoring: Vibration monitoring systems are used to detect any abnormal vibrations in the blower. Excessive vibrations can be an indication of overloading, and the system can automatically shut down the blower to prevent damage.
6. Temperature Monitoring: Turbo blowers generate a lot of heat, and excessive heat can be a sign of overloading. Temperature monitoring systems can detect any abnormal increases in temperature and shut down the blower to prevent damage.
7. Regular Maintenance: Regular maintenance and inspections are crucial for identifying any potential issues that could lead to overloading. This includes checking for wear and tear, lubrication levels, and any other signs of damage.
8. Training and Education: Proper training and education of operators is essential for preventing overloading. Operators should be familiar with the blower’s capabilities and know how to operate it within its limits to avoid overloading.
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