Product Description

Small Power Alloy Coating Industry Pneumatic Vacuum Diaphragm Type Mud Pump

 

Product Description

Aluminum alloy pump

Specifications Maximum working pressure (bar) Maximum dry suction lift (m) Maximum wet suction lift (m) Maximum flow rate (L/min) Maximum particle diameter (mm) Weight (kg) Common pump types
1/2" 6.9 3.5 7 62 2.5 4.5 A05APXXX
1" 8.3 6 8.5 172 3.2 8.2 A10AAXXX
1-1/2" 8.3 5.8 8.2 380 6.5 23 A15AAXXX
2" 8.3 7 9 680 6.5 30 A20AAXXX
3" 8.3 5.4 8 902 10 52 A30AAXXX

Specification L B H C D E F G I K
1/2" 225 160 305 51 229 157 120 10 1/4-18 NPT 1/2"BSPT
1" 241.5 210 351 34 287 124 120 10 1/4-18 NPT 1"BSPT
1-1/2" 386 310 500 39 431 261 160 10 3/4-14 NPT 1-1/2"BSPT
2" 467.5 330 651 48 565 330 220 17 3/4-14 NPT 2"BSPT
3" 597 420 792 60 678 387 240 17 3/4-14 NPT 3"BSPT

Stainless steel/cast iron pump

Specifications Maximum working pressure (bar) Maximum dry suction lift (m) Maximum wet suction lift (m) Maximum flow rate (L/min) Maximum particle diameter (mm) Weight stainless steel/cast iron (kg) Common pump types
1/2" 6.9 3.5 7 62 2.5 8.5 A05SPXXX
1" 8.3 6 8.5 172 3.2 14 A10SAXXX
1-1/2" 8.3 5.8 8.2 380 6.5 40 A15SAXXX
2" 8.3 7 9 680 6.5 63/60 A20SAXXX
3" 8.3 5.4 8 902 10 110/102 A30SAXXX

Specification L B H C D E F G I K
1/2" 230 160 294 51 229 157 120 10 1/4-18 NPT 1/2"BSPT
1" 241.5 210 346 34 291 124 120 10 1/4-18 NPT 1"BSPT
1-1/2" 341 310 500 39 431 261 160 10 3/4-14 NPT 1-1/2"BSPT
2" 445 330 651 48 565 330 220 17 3/4-14 NPT 2"BSPT
3" 527 420 792 60 678 387 240 17 3/4-14 NPT 3"BSPT

PP/PVDF plastic pump

Specifications Maximum working pressure (bar) Maximum dry suction lift (m) Maximum wet suction lift (m) Maximum flow rate (L/min) Maximum particle diameter (mm) Weight (kg)
PP/PVDF
Common pump types
1/4" 6.9 3 6 17 1 1 A02P(K)PXXX
1/2" 6.9 3.5 7 62 2.5 2.5 A05P(K)PXXX
1" 8.3 6 8.5 172 3.2 3.2 A10P(K)PXXX
1-1/2" 8.3 7 9 480 6.5 6.5 A15P(K)PXXX
2" 8.3 7 9 680 6.5 6.5 A20P(K)PXXX
3" 8.3 6.1 7.6 902 10 10 A30P(K)AXXX

Specification L B H C D E F G I K (ISO2852)
1/4" 145 114 163 25 115 61 53 6 1/8-27NPT 1/4"FNPT
1/2" 234 160 308 50 238 171 119 8 1/4-18NPT 1/2"BSPT
1" 349 205 432 63 313 139 102 13 1/4-18NPT 1"ANSI Flange
1-1/2" 455 330 738 90 575 340 240 18 1/2-14NPT 1-1/2"ANSI Flange
2" 455 330 745 90 575 340 240 18 1/2-14NPT 2"ANSI Flange
3" 661 420 1001 123 783 450 279 19 3/4-14NPT 3"ANSI Flange

 

Food -grade pump

Specifications Maximum working pressure (bar) Maximum dry suction lift (m) Maximum wet suction lift (m) Maximum flow rate (L/min) Maximum particle diameter (mm) Weight (kg) Common pump types
1/2" 6.9 3.5 7 62 2.5 8.5 A05SPXXX-F
1" 8.3 6 8.5 172 3.2 14 A10SAXXX-F
1-1/2" 8.3 5.8 8.2 380 6.5 40 A15SAXXX-F
2" 8.3 7 9 680 6.5 63 A20SAXXX-F
3" 8.3 5.4 8 902 10 110 A30SAXXX-F

Specification L B H C D E F G I J K (ISO2852)
1/2" 230 160 294 51 229 157 120 10 1/4-18 NPT 34 21.3( 7/8")
1" 241.5 210 346 34 291 124 120 10 1/4-18 NPT 50.5 38 ( 1-1/2")
1-1/2" 341 310 500 39 431 261 160 10 3/4-14 NPT 64 51( 2")
2" 445 330 651 48 565 330 220 17 3/4-14 NPT 77.5 63.5(2-1/2")
3" 527 420 792 60 678 387 240 17 3/4-14 NPT 91 76.1( 3")

More picture

 

Application Range

Packaging & Shipping

Payment
GLOYEL accept different kinds of payment,such as T/T, L/C, Western Union, Money Gram.
Shipment
GLOYEL has established long-term and reliable cooperation with professional packing and shipping company.

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After-sales Service: Online Service
Warranty: 1 Year
Certification: CE
Rated Current: According to Product Size
Voltage: According to Product Size
Material: Aluminum Alloy
Customization:
Available

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vacuum pump

How Do You Maintain and Troubleshoot Vacuum Pumps?

Maintaining and troubleshooting vacuum pumps is essential to ensure their optimal performance and longevity. Here's a detailed explanation:

Maintenance of Vacuum Pumps:

1. Regular Inspection: Perform regular visual inspections of the pump to check for any signs of damage, leaks, or abnormal wear. Inspect the motor, belts, couplings, and other components for proper alignment and condition.

2. Lubrication: Follow the manufacturer's guidelines for lubrication. Some vacuum pumps require regular oil changes or lubrication of moving parts. Ensure that the correct type and amount of lubricant are used.

3. Oil Level Check: Monitor the oil level in oil-sealed pumps and maintain it within the recommended range. Add or replace oil as necessary, following the manufacturer's instructions.

4. Filter Maintenance: Clean or replace filters regularly to prevent clogging and ensure proper airflow. Clogged filters can impair pump performance and increase energy consumption.

5. Cooling System: If the vacuum pump has a cooling system, inspect it regularly for cleanliness and proper functioning. Clean or replace cooling components as needed to prevent overheating.

6. Seals and Gaskets: Check the seals and gaskets for signs of wear or leakage. Replace any damaged or worn seals promptly to maintain airtightness.

7. Valve Maintenance: If the vacuum pump includes valves, inspect and clean them regularly to ensure proper operation and prevent blockages.

8. Vibration and Noise: Monitor the pump for excessive vibration or unusual noise, which may indicate misalignment, worn bearings, or other mechanical issues. Address these issues promptly to prevent further damage.

Troubleshooting Vacuum Pump Problems:

1. Insufficient Vacuum Level: If the pump is not achieving the desired vacuum level, check for leaks in the system, improper sealing, or worn-out seals. Inspect valves, connections, and seals for leaks and repair or replace as needed.

2. Poor Performance: If the pump is not providing adequate performance, check for clogged filters, insufficient lubrication, or worn-out components. Clean or replace filters, ensure proper lubrication, and replace worn parts as necessary.

3. Overheating: If the pump is overheating, check the cooling system for blockages or insufficient airflow. Clean or replace cooling components and ensure proper ventilation around the pump.

4. Excessive Noise or Vibration: Excessive noise or vibration may indicate misalignment, worn bearings, or other mechanical issues. Inspect and repair or replace damaged or worn parts. Ensure proper alignment and balance of rotating components.

5. Motor Issues: If the pump motor fails to start or operates erratically, check the power supply, electrical connections, and motor components. Test the motor using appropriate electrical testing equipment and consult an electrician or motor specialist if necessary.

6. Excessive Oil Consumption: If the pump is consuming oil at a high rate, check for leaks or other issues that may be causing oil loss. Inspect seals, gaskets, and connections for leaks and repair as needed.

7. Abnormal Odors: Unusual odors, such as a burning smell, may indicate overheating or other mechanical problems. Address the issue promptly and consult a technician if necessary.

8. Manufacturer Guidelines: Always refer to the manufacturer's guidelines and recommendations for maintenance and troubleshooting specific to your vacuum pump model. Follow the prescribed maintenance schedule and seek professional assistance when needed.

By following proper maintenance procedures and promptly addressing any troubleshooting issues, you can ensure the reliable operation and longevity of your vacuum pump.

vacuum pump

How Do Vacuum Pumps Contribute to Energy Savings?

Vacuum pumps play a significant role in energy savings in various industries and applications. Here's a detailed explanation:

Vacuum pumps contribute to energy savings through several mechanisms and efficiencies. Some of the key ways in which vacuum pumps help conserve energy are:

1. Improved Process Efficiency: Vacuum pumps are often used to remove gases and create low-pressure or vacuum conditions in industrial processes. By reducing the pressure, vacuum pumps enable the removal of unwanted gases or vapors, improving the efficiency of the process. For example, in distillation or evaporation processes, vacuum pumps help lower the boiling points of liquids, allowing them to evaporate or distill at lower temperatures. This results in energy savings as less heat is required to achieve the desired separation or concentration.

2. Reduced Energy Consumption: Vacuum pumps are designed to operate efficiently and consume less energy compared to other types of equipment that perform similar functions. Modern vacuum pump designs incorporate advanced technologies, such as variable speed drives, energy-efficient motors, and optimized control systems. These features allow vacuum pumps to adjust their operation based on demand, reducing energy consumption during periods of lower process requirements. By consuming less energy, vacuum pumps contribute to overall energy savings in industrial operations.

3. Leak Detection and Reduction: Vacuum pumps are often used in leak detection processes to identify and locate leaks in systems or equipment. By creating a vacuum or low-pressure environment, vacuum pumps can assess the integrity of a system and identify any sources of leakage. Detecting and repairing leaks promptly helps prevent energy wastage associated with the loss of pressurized fluids or gases. By addressing leaks, vacuum pumps assist in reducing energy losses and improving the overall energy efficiency of the system.

4. Energy Recovery Systems: In some applications, vacuum pumps can be integrated into energy recovery systems. For instance, in certain manufacturing processes, the exhaust gases from vacuum pumps may contain heat or have the potential for energy recovery. By utilizing heat exchangers or other heat recovery systems, the thermal energy from the exhaust gases can be captured and reused to preheat incoming fluids or provide heat to other parts of the process. This energy recovery approach further enhances the overall energy efficiency by utilizing waste heat that would otherwise be lost.

5. System Optimization and Control: Vacuum pumps are often integrated into centralized vacuum systems that serve multiple processes or equipment. These systems allow for better control, monitoring, and optimization of the vacuum generation and distribution. By centralizing the vacuum production and employing intelligent control strategies, energy consumption can be optimized based on the specific process requirements. This ensures that vacuum pumps operate at the most efficient levels, resulting in energy savings.

6. Maintenance and Service: Proper maintenance and regular servicing of vacuum pumps are essential for their optimal performance and energy efficiency. Routine maintenance includes tasks such as cleaning, lubrication, and inspection of pump components. Well-maintained pumps operate more efficiently, reducing energy consumption. Additionally, prompt repair of any faulty parts or addressing performance issues helps maintain the pump's efficiency and prevents energy waste.

In summary, vacuum pumps contribute to energy savings through improved process efficiency, reduced energy consumption, leak detection and reduction, integration with energy recovery systems, system optimization and control, as well as proper maintenance and service. By utilizing vacuum pumps efficiently and effectively, industries can minimize energy waste, optimize energy usage, and achieve significant energy savings in various applications and processes.

vacuum pump

What Industries Commonly Rely on Vacuum Pump Technology?

Vacuum pump technology finds applications in various industries where creating and controlling vacuum or low-pressure environments is crucial. Here's a detailed explanation:

1. Manufacturing and Production: Vacuum pumps are extensively used in manufacturing and production processes across multiple industries. They are employed for tasks such as vacuum molding, vacuum packaging, vacuum degassing, vacuum drying, and vacuum distillation. Industries like automotive, aerospace, electronics, pharmaceuticals, and food processing rely on vacuum pump technology to achieve precise and controlled manufacturing conditions.

2. Chemical and Pharmaceutical: The chemical and pharmaceutical industries heavily rely on vacuum pumps for numerous applications. These include solvent recovery, vacuum filtration, vacuum drying, distillation, crystallization, and evaporation. Vacuum pumps enable these industries to carry out critical processes under reduced pressure, ensuring efficient separation, purification, and synthesis of various chemical compounds and pharmaceutical products.

3. Semiconductor and Electronics: The semiconductor and electronics industries extensively use vacuum pumps for manufacturing microchips, electronic components, and electronic devices. Vacuum pumps are crucial in processes such as physical vapor deposition (PVD), chemical vapor deposition (CVD), etching, ion implantation, and sputtering. These processes require controlled vacuum conditions to ensure precise deposition, surface modification, and contamination-free manufacturing.

4. Research and Development: Vacuum pump technology is integral to research and development activities across scientific disciplines. It supports experiments and investigations in fields such as physics, chemistry, materials science, biology, and environmental science. Vacuum pumps facilitate processes like freeze drying, vacuum distillation, vacuum evaporation, vacuum spectroscopy, and creating controlled atmospheric conditions for studying various phenomena.

5. Food and Beverage: The food and beverage industry relies on vacuum pumps for packaging and preservation purposes. Vacuum sealing is used to extend the shelf life of food products by removing air and creating a vacuum-sealed environment that inhibits spoilage and maintains freshness. Vacuum pumps are also used in processes like freeze drying, vacuum concentration, and vacuum cooling.

6. Oil and Gas: In the oil and gas industry, vacuum pumps play a role in various applications. They are used for crude oil vacuum distillation, vacuum drying, vapor recovery, gas compression, and gas stripping processes. Vacuum pumps help maintain optimal conditions during oil refining, gas processing, and petrochemical manufacturing.

7. Environmental and Waste Management: Vacuum pumps are employed in environmental and waste management applications. They are used for tasks such as soil vapor extraction, groundwater remediation, landfill gas recovery, and wastewater treatment. Vacuum pumps facilitate the removal and containment of gases, vapors, and pollutants, contributing to environmental protection and sustainable waste management.

8. Medical and Healthcare: The medical and healthcare sectors utilize vacuum pumps for various purposes. They are used in medical equipment such as vacuum-assisted wound therapy devices, vacuum-based laboratory analyzers, and vacuum suction systems in hospitals and clinics. Vacuum pumps are also used in medical research, pharmaceutical production, and medical device manufacturing.

9. Power Generation: Vacuum pumps play a role in power generation industries, including nuclear power plants and thermal power plants. They are used for steam condensation, turbine blade cooling, vacuum drying during transformer manufacturing, and vacuum systems for testing and maintenance of power plant equipment.

10. HVAC and Refrigeration: The HVAC (Heating, Ventilation, and Air Conditioning) and refrigeration industries rely on vacuum pumps for system installation, maintenance, and repair. Vacuum pumps are used to evacuate air and moisture from refrigerant lines and HVAC systems, ensuring optimal system performance and efficiency.

These are just a few examples of industries that commonly rely on vacuum pump technology. The versatility and wide-ranging applications of vacuum pumps make them indispensable tools across numerous sectors, enabling precise control over vacuum conditions, efficient manufacturing processes, and scientific investigations.

China wholesaler Small Power Alloy Coating Industry Pneumatic Vacuum Diaphragm Type Mud Pump   vacuum pump belt	China wholesaler Small Power Alloy Coating Industry Pneumatic Vacuum Diaphragm Type Mud Pump   vacuum pump belt
editor by CX 2024-03-29