Product Description
Product Parameters
| Model | Motor Power | Maximum Working Pressure | Free Air Delivery | Air Outlet Pipe Diameter | Weight | Dimensions(L*W*H) | |||
| kW | hp | bar(g) | psig | m³/min | cfm | kg | mm | ||
| BG30APMII | 22 | 30 | 7 | 102 | 4.3 | 152 | G1-1/2″ | 650 | 1500*1000*1350 |
| 8 | 116 | 4.1Ā | 145 | ||||||
| 10 | 145 | 3.5Ā | 124 | ||||||
| 13 | 189 | 2.7Ā | 95 | ||||||
| BG40APMII | 30 | 40 | 7 | 102 | 6.0Ā | 212 | G1-1/2″ | 700 | 1500*1000*1350 |
| 8 | 116 | 5.9Ā | 208 | ||||||
| 10 | 145 | 4.7Ā | 166 | ||||||
| 13 | 189 | 3.9Ā | 138 | ||||||
| BG50APMII | 37 | 50 | 7 | 102 | 7.1Ā | 251 | G1-1/2″ | 750 | 1500*1000*1350 |
| 8 | 116 | 6.9Ā | 244 | ||||||
| 10 | 145 | 5.8Ā | 205 | ||||||
| 13 | 189 | 5.4Ā | 191 | ||||||
| BG60APMII | 45 | 60 | 7 | 102 | 10.0Ā | 353 | G2″ | 1250 | 2100*1300*1650 |
| 8 | 116 | 9.5Ā | 335 | ||||||
| 10 | 145 | 7.8Ā | 275 | ||||||
| 13 | 189 | 6.8Ā | 240 | ||||||
| BG75APMII | 55 | 75 | 7 | 102 | 13.0Ā | 459 | G2″ | 1300 | 2100*1300*1650 |
| 8 | 116 | 12.5Ā | 441 | ||||||
| 10 | 145 | 9.2Ā | 325 | ||||||
| 13 | 189 | 7.5Ā | 265 | ||||||
| BG100APMII | 75 | 100 | 7 | 102 | 15.5Ā | 547 | G2″ | 1350 | 2100*1300*1650 |
| 8 | 116 | 15.2Ā | 537 | ||||||
| 10 | 145 | 12.0Ā | 424 | ||||||
| 13 | 189 | 10.2Ā | 360 | ||||||
| BG125APMII | 90 | 125 | 7 | 102 | 19.8Ā | 699 | DN80 | 2700 | 2500*1650*1900 |
| 8 | 116 | 19.5Ā | 689 | ||||||
| 10 | 145 | 15.0Ā | 530 | ||||||
| 13 | 189 | 14.0Ā | 494 | ||||||
| BG150APMII | 110 | 150 | 7 | 102 | 24.0Ā | 848 | DN80 | 2800 | 2500*1650*1900 |
| 8 | 116 | 23.0Ā | 812 | ||||||
| 10 | 145 | 19.2Ā | 678 | ||||||
| 13 | 189 | 16.0Ā | 565 | ||||||
| BG180APMII | 132 | 180 | 7 | 102 | 27.5Ā | 971 | DN80 | 3000 | 2500*1650*1900 |
| 8 | 116 | 27.0Ā | 954 | ||||||
| 10 | 145 | 23.7Ā | 837 | ||||||
| 13 | 189 | 19.0Ā | 671 | ||||||
| BG220APMII | 160 | 220 | 7 | 102 | 33.0Ā | 1165 | DN80 | 4300 | 3000*1900*1950 |
| 8 | 116 | 32.5Ā | 1148 | ||||||
| 10 | 145 | 27.5Ā | 971 | ||||||
| 13 | 189 | 22.5Ā | 795 | ||||||
| BG250APMII | 185 | 250 | 7 | 102 | 39.0Ā | 1377 | DN80 | 4400 | 3000*1900*1950 |
| 8 | 116 | 36.0Ā | 1271 | ||||||
| 10 | 145 | 32.0Ā | 1130 | ||||||
| 13 | 189 | 27.5Ā | 971 | ||||||
| BG270APMII | 200 | 270 | 7 | 102 | 43.5Ā | 1536 | DN80 | 5000 | 3600*2200*2200 |
| 8 | 116 | 41.0Ā | 1448 | ||||||
| 10 | 145 | 35.5Ā | 1254 | ||||||
| 13 | 189 | 31.5Ā | 1112 | ||||||
| BG300APMII | 220 | 300 | 7 | 102 | 51.5Ā | 1819 | DN100 | 5500 | 3600*2200*2200 |
| 8 | 116 | 46.0Ā | 1624 | ||||||
| 10 | 145 | 38.5Ā | 1360 | ||||||
| 13 | 189 | 35.5Ā | 1254 | ||||||
| BG340APMII | 250 | 340 | 7 | 102 | 54.0Ā | 1907 | DN100 | 6000 | 3600*2200*2200 |
| 8 | 116 | 51.0Ā | 1801 | ||||||
| 10 | 145 | 45.0Ā | 1589 | ||||||
| 13 | 189 | 38.0Ā | 1342 | ||||||
| BG380APMII | 280 | 380 | 7 | 102 | 60.0Ā | 2119 | DN125 | 6800 | 4000*2300*2300 |
| 8 | 116 | 57.0Ā | 2013 | ||||||
| 10 | 145 | 50.0Ā | 1766 | ||||||
| 13 | 189 | 43.0Ā | 1519 | ||||||
| BG420APMII | 315 | 420 | 7 | 102 | 65.0Ā | 2295 | DN125 | 7000 | 4000*2300*2300 |
| 8 | 116 | 62.0Ā | 2190 | ||||||
| 10 | 145 | 56.0Ā | 1978 | ||||||
| 13 | 189 | 50.5Ā | 1783 | ||||||
| BG480APMII | 355 | 480 | 7 | 102 | 75.0Ā | 2649 | DN150 | 8500 | 4200*2200*2350 |
| 8 | 116 | 73.0Ā | 2578 | ||||||
| 10 | 145 | 64.0Ā | 2260 | ||||||
| 13 | 189 | 55.0Ā | 1942 | ||||||
| BG540APMII | 400 | 540 | 7 | 102 | 84.0Ā | 2966 | DN150 | 9000 | 4200*2200*2350 |
| 8 | 116 | 82.0Ā | 2896 | ||||||
| 10 | 145 | 72.0Ā | 2543 | ||||||
| 13 | 189 | 61.0Ā | 2154 | ||||||
Company Profile
Wallboge is a high-tech enterprise and is considered 1 of the leading manufacturers of air compressor products in China. Our goal is to provide exceptional customer service coupled with quality products and energy saving solutions.
Wallboge’ s primary businesses focus in following key areas:
Integrated screw air compressor for laser cutting
Permanent magnet variable frequency screw air compressor
Two-stage compression permanent magnet variable frequency screw air compressor
Low pressure two-stage compression permanent magnet variable frequency screw air compressor
Low pressure permanent magnet variable frequency screw air compressor
Water-lubricated oil-free screw air compressor
Fixed speed screw air compressor
Oil-free screw blower
Screw vacuum pump
At Wallboge, we earn our customers’ trust and satisfaction by manufacturing the superior quality compressed air products for all industries. All of our products are designed for reliable performance, easy maintenance, and maximum energy efficiency. CHINAMFG has been exporting to more than 150 countries across the globe.Ā
CHINAMFG continuously innovates product development and management to meet customers’ demand. The powerful enterprise culture and continuous innovation make CHINAMFG improved rapidly. Wallboge’ s vision is to be a world-renowned high-end energy-saving machinery brand, with sustainable development, constantly improving its own value and sharing it with our customers and staff, committed to continuously satisfying the needs of global companies by providing a full range of industrial air compression solutions.
Certifications
Exhibitions
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After Sales Service
1. 24/7 after sales service in different languages.
2. Online instruction for installation and commissioning.
3. On-site instruction for installation and commissioning provided by well-trained engineers or local authorized service center.
4. CHINAMFG agents and after sales service available.
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Our Advantages
1. Proven product quality.
2. Factory direct prices.
3. On-time delivery.
4. Prompt technical support in different languages before sales, in sales and after sales.
5. Small orders accepted to check quality first.
6. OEM & ODM service available.
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FAQ
Q1: Are you a factory or a trading company?Ā
A1: We are a factory. Please check our Company Profile.
Q2: What is the exact address of your factory?Ā
A2: No. 588, East Tonggang Road, Shaxi Town, HangZhou City, ZheJiang Province, China
Q3: What is your delivery time?
A3: For standard voltage, the delivery time is 15 working days after you confirm the order. For non-standard voltage, please contact our sales to confirm the delivery time.
Q4: What kind of payment terms do you accept?
A4: We accept T/T, L/C at sight.
Q5: How long is the warranty of your air compressor?
A5: 2 years for the whole air compressor except consumable spare parts.
Q6: How long could your air compressor be used?
A6: Generally, more than 10 years.
Q7: What is your MOQ requirement?
A7: 1 unit.
Q8: Can you offer OEM & ODM service?
A8: Yes, with a professional design team, we can offer OEM & ODM service.
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| After-sales Service: | Engineers Available to Overseas Service. |
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| Warranty: | 2 Years |
| Lubrication Style: | Lubricated |
| Customization: |
Available
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| Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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| Payment Method: |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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Are There Portable Screw Compressors Available?
Yes, portable screw compressors are available in the market to cater to various applications that require mobility and flexibility. Here’s a detailed explanation:
Portable screw compressors are compact and designed for easy transportation, allowing them to be used in different locations as needed. They offer the advantage of providing compressed air or gas on-site without the need for a fixed installation.
These compressors are typically designed with features that make them suitable for portable applications. Some key characteristics of portable screw compressors include:
- 1. Compact and Lightweight Design: Portable screw compressors are designed to be lightweight and compact, making them easy to transport and maneuver. They are often mounted on wheels or skids for enhanced mobility.
- 2. Durability and Robustness: Portable compressors are built to withstand the rigors of transportation and on-site use. They are constructed with sturdy materials and reinforced components to ensure durability in various working environments.
- 3. Engine-Powered: Many portable screw compressors are powered by internal combustion engines, such as gasoline or diesel. This eliminates the need for a fixed power source, allowing them to be used in remote locations or areas without access to electricity.
- 4. Integrated Controls and Safety Features: Portable compressors are equipped with user-friendly controls and safety features for easy operation and protection. These may include start/stop controls, pressure regulation systems, temperature monitoring, and safety shutdown mechanisms.
- 5. Noise and Vibration Reduction: Portable screw compressors often incorporate noise and vibration reduction technologies to minimize their operational noise levels and vibrations. This helps maintain a comfortable and safe working environment.
- 6. Versatility in Application: Portable screw compressors are designed to accommodate a wide range of applications. They can be used for construction projects, road repairs, mining operations, oil and gas exploration, emergency air supply, and other portable compressed air or gas requirements.
The capacity and performance of portable screw compressors can vary, ranging from smaller units suitable for light-duty tasks to larger compressors capable of delivering higher volumes and pressures for heavy-duty applications.
When selecting a portable screw compressor, it’s important to consider factors such as the required air or gas flow rate, operating pressure, power source availability, environmental conditions, and specific application needs. Consulting with manufacturers or suppliers can help in choosing the most suitable portable screw compressor for a particular use case.
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What Is the Role of Control Systems in Screw Compressor Operation?
Control systems play a crucial role in the operation of screw compressors. Here’s a detailed explanation:
Screw compressors are complex machines that require precise control and monitoring for optimal performance and efficiency. Control systems provide the necessary intelligence and automation to regulate various aspects of screw compressor operation. Here are the key roles of control systems:
1. Start-up and Shutdown Control:
Control systems manage the start-up and shutdown sequences of screw compressors. During start-up, the control system ensures a gradual ramp-up of motor speed and system pressure to prevent sudden surges and excessive wear on components. During shutdown, it safely brings the compressor to a stop and performs necessary cooling and ventilation processes.
2. Load and Unload Control:
Screw compressors often feature load and unload operation to match compressed air supply with demand. The control system monitors system pressure, flow requirements, and other parameters to determine when to load or unload the compressor. It engages or disengages the compressor’s capacity control mechanism, such as inlet modulation valves or variable-speed drives, to maintain optimal operation at varying loads.
3. Pressure Control:
Control systems regulate the discharge pressure of screw compressors. They continuously monitor the system pressure and adjust compressor operation to maintain the desired pressure setpoint. The control system modulates the compressor’s capacity, adjusts the speed of the drive motor, or controls the opening and closing of inlet or discharge valves to achieve the target pressure.
4. Temperature Control:
Control systems monitor and control various temperature parameters within the screw compressor system. They ensure that the compressor operates within safe temperature limits by monitoring coolant temperatures, lubricant temperatures, and interstage or discharge temperatures. If temperature limits are exceeded, the control system may activate cooling mechanisms, adjust operating parameters, or trigger alarms and shutdowns to prevent damage.
5. Monitoring and Protection:
Control systems provide comprehensive monitoring and protection functions for screw compressors. They continuously collect data from various sensors and instruments, such as pressure sensors, temperature sensors, vibration sensors, and current sensors. The control system analyzes this data to detect abnormalities, malfunctions, or potential failures. It can initiate alarms, shutdowns, or safety interlocks to protect the compressor and associated equipment.
6. Energy Management:
Control systems optimize energy efficiency in screw compressor operation. They analyze system demand, performance characteristics, and energy consumption to make intelligent decisions regarding load modulation, capacity control, and motor speed adjustments. By optimizing the compressor’s operation, the control system helps reduce energy consumption, operating costs, and environmental impact.
7. Remote Monitoring and Control:
Modern control systems often offer remote monitoring and control capabilities. They can be integrated into supervisory control and data acquisition (SCADA) systems or connected to networked platforms. Remote access allows operators to monitor compressor performance, adjust operating parameters, receive alarms, and perform diagnostics from a central control room or via mobile devices.
In summary, control systems play a vital role in the operation of screw compressors by providing intelligent control, monitoring, and protection. They manage start-up and shutdown sequences, regulate load and unload operation, control pressure and temperature, monitor system parameters, optimize energy efficiency, and enable remote monitoring and control. By effectively managing the compressor’s operation, control systems contribute to reliable performance, energy efficiency, and overall system optimization.
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How Do Screw Compressors Compare to Piston Compressors?
Screw compressors and piston compressors are two common types of compressors used for various applications. Here’s a detailed comparison between these two types:
1. Working Principle:
Screw Compressors: Screw compressors use intermeshing rotors (usually a male and female rotor) to compress air or gas. The rotors rotate in opposite directions, creating compression chambers that gradually reduce in volume, compressing the air or gas. Piston Compressors: Piston compressors, also known as reciprocating compressors, use a piston and cylinder arrangement to compress air or gas. The piston moves back and forth within the cylinder, creating compression by reducing the volume of the chamber.
2. Continuous vs. Intermittent Compression:
Screw Compressors: Screw compressors provide continuous compression, which means they can deliver a steady flow of compressed air or gas without pulsations. The compression process is smooth and continuous, resulting in less vibration and noise. Piston Compressors: Piston compressors provide intermittent compression due to the reciprocating motion of the piston. The compression process is characterized by pulsations, resulting in pressure fluctuations and higher vibration levels compared to screw compressors.
3. Efficiency:
Screw Compressors: Screw compressors are known for their relatively high efficiency. They can achieve higher isothermal and adiabatic efficiency compared to piston compressors. The smooth and continuous compression process in screw compressors minimizes energy losses and heat generation, resulting in improved efficiency. Piston Compressors: Piston compressors have lower overall efficiency compared to screw compressors. The reciprocating motion of the piston leads to energy losses due to friction, heat generation, and pressure pulsations. These factors can reduce the efficiency of piston compressors, especially at higher compression ratios.
4. Size and Portability:
Screw Compressors: Screw compressors are generally more compact and require less space compared to piston compressors of similar capacity. They have a simpler design with fewer moving parts, making them relatively lightweight and easier to install. Screw compressors are often mounted on a skid or integrated into compact packages, offering convenient portability. Piston Compressors: Piston compressors are typically larger and bulkier compared to screw compressors of similar capacity. They have more complex designs with multiple moving parts, including pistons, connecting rods, and valves. The larger size and weight of piston compressors make them less portable and require more installation space.
5. Maintenance and Service:
Screw Compressors: Screw compressors generally require less maintenance compared to piston compressors. They have fewer moving parts, reducing the chances of wear and tear. Screw compressors often have longer service intervals and lower maintenance costs. However, proper lubrication and regular inspections are still necessary to ensure optimal performance and efficiency. Piston Compressors: Piston compressors require regular maintenance due to the higher number of moving parts. Components such as pistons, rings, valves, and bearings may require more frequent inspections, lubrication, and replacements. Maintenance costs and service intervals for piston compressors are typically higher compared to screw compressors.
6. Noise and Vibration:
Screw Compressors: Screw compressors operate with lower noise and vibration levels compared to piston compressors. The continuous and smooth compression process in screw compressors results in reduced vibrations and quieter operation, making them suitable for noise-sensitive environments. Piston Compressors: Piston compressors can generate higher noise levels and vibrations due to the reciprocating motion of the piston and the pulsations during compression. Additional measures, such as sound insulation and vibration dampening, may be required to minimize noise and vibration in piston compressors.
Both screw compressors and piston compressors have their advantages and disadvantages depending on specific application requirements. Screw compressors are favored in applications that demand continuous and efficient compression with minimal pulsations and lower noise levels. Piston compressors are suitable for applications that require intermittent compression, lower initial investment, and simplicity. Factors such as desired flow rate, pressure range, operating conditions, and cost considerations play a crucial role in selecting the appropriate compressor type for a given application.


editor by CX 2024-05-07