Descripción del Producto


 

Rated Voltage: 220-240/110V
Rated Frequency: 50/60Hz
Rated Input power: 2.0HP
No Load Speed: 2850R/MIN
Air Tank: 100L
Pressure: 8BAR

Feature:( belt driven air compressor ) :

1. Pressure cast iron pump, can be adapted to use large horsepower;
2. Is a foundry, steel factory, wood factory, cement plant, the best choice;
3. Different types of pump head configured in different storage tank, available to customers choose;
4. Crankcase than the old product, depressed, not easy in injection, wall thickness than the old products with low noise;
5. Convex oil standard, easy customer observation level.

Packing&Delivery:

Packing detail: Colour box and standard carton box

Delivery time: 35days after receive the deposite. First order 40days

Payment accept 30% TT and 70% according to copy of bill of lading

Product Show:

Workshop:

Sample Room:

Warehouse:

Exhibition:

Questions and Answers:
 

Q: Where is your market?
A:Present,we have cooperation with many areas,Middle East ,South East Asia,
   North Africa,Central Asia.South America 

Q: What’s your payment terms?
A: We could accept L/C sight, T/T and Paypal.(30% tt deposit and 70% according to copy of BL)
 

Q: What’s the delivery time?
A: For factory brand we could deliver the goods within 15 days after order
    confirmed.For OEM brand takes 35days after order confirmed. 
 

Q: What is the MOQ?
A: OEM brand require 500pcs ,for factory brand require 200-300pcs according
    to different models.
 

Q: Can I get  samples to test?
A:  Yes, we could provide 1 or 2 pcs free samples and deliver with freight collected. If you place oder ,we will return the cost within the order. 

Q: What Is your warranty term for product?
A: We provide 2% free of charge easy broken spare parts .And 12months 
    guarantee.

 

Servicio posventa: 1 año
Garantía: 1 año
Estilo de lubricación: Oil-free
Sistema de refrigeración: Refrigeración por aire
Cylinder Arrangement: Balanced Opposed Arrangement
Posición del cilindro: Vertical
Samples:
US$ 150/Piece
1 Piece(Min.Order)

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Request Sample

Personalización:
Disponible

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compresor de aire

¿Qué tecnologías de ahorro energético existen para los compresores de aire?

Existen diversas tecnologías de ahorro energético para compresores de aire que ayudan a mejorar su eficiencia y reducir el consumo de energía. Estas tecnologías buscan optimizar el funcionamiento de los compresores y minimizar las pérdidas de energía. A continuación, se presentan algunas de las tecnologías de ahorro energético más comunes:

1. Compresores con variador de velocidad (VSD):

Los compresores VSD están diseñados para ajustar la velocidad del motor según la demanda de aire comprimido. Al variar la velocidad del motor, estos compresores pueden adaptar el caudal a la demanda real de aire, lo que se traduce en un ahorro energético. Los compresores VSD son especialmente eficaces en aplicaciones con demandas de aire variables, ya que pueden operar a velocidades más bajas durante los periodos de menor demanda, reduciendo así el consumo de energía.

2. Motores de bajo consumo energético:

El uso de motores de bajo consumo en compresores de aire contribuye al ahorro energético. Los motores de alta eficiencia, como los de clasificación premium, están diseñados para minimizar las pérdidas de energía y funcionar de forma más eficiente que los motores estándar. Al utilizar motores de bajo consumo, los compresores de aire pueden reducir el consumo energético y lograr una mayor eficiencia general del sistema.

3. Sistemas de recuperación de calor:

Los compresores de aire generan una cantidad considerable de calor durante su funcionamiento. Los sistemas de recuperación de calor capturan y aprovechan este calor residual para otros fines, como la calefacción de espacios, el calentamiento de agua o el precalentamiento de aire o agua para procesos industriales. Al recuperar y aprovechar el calor, los compresores de aire pueden generar ahorros energéticos adicionales y mejorar la eficiencia general del sistema.

4. Tanques receptores de aire:

Los depósitos de aire comprimido se utilizan para almacenar aire comprimido y proporcionar una reserva durante periodos de demanda fluctuante. Al utilizar depósitos de aire comprimido del tamaño adecuado, el sistema de aire comprimido puede funcionar de forma más eficiente. Los depósitos ayudan a reducir la frecuencia de arranques y paradas del compresor de aire, lo que le permite funcionar a plena carga durante periodos más prolongados, lo que resulta más eficiente energéticamente que los ciclos frecuentes de encendido y apagado.

5. Control y automatización del sistema:

La implementación de sistemas avanzados de control y automatización permite optimizar el funcionamiento de los compresores de aire. Estos sistemas supervisan y ajustan el sistema de aire comprimido según la demanda, garantizando que solo se produzca la cantidad necesaria. Al mantener una presión óptima en el sistema, minimizar las fugas y reducir la producción innecesaria de aire, los sistemas de control y automatización contribuyen al ahorro energético.

6. Detección y reparación de fugas:

Las fugas de aire en los sistemas de aire comprimido pueden provocar importantes pérdidas de energía. Los programas regulares de detección y reparación de fugas ayudan a identificarlas y solucionarlas rápidamente. Al minimizar las fugas, se reduce la carga de trabajo del compresor, lo que se traduce en un ahorro energético. El uso de dispositivos ultrasónicos de detección de fugas permite localizarlas y repararlas con mayor eficacia.

7. Optimización y mantenimiento del sistema:

La optimización adecuada del sistema y el mantenimiento rutinario son esenciales para el ahorro de energía en los compresores de aire. Esto incluye la limpieza y el reemplazo periódicos de los filtros de aire, la optimización de los ajustes de presión, la correcta lubricación y el mantenimiento preventivo para que el sistema funcione con la máxima eficiencia.

Mediante la implementación de estas tecnologías y prácticas de ahorro energético, los sistemas de compresores de aire pueden lograr mejoras significativas en la eficiencia energética, reducir los costos operativos y minimizar el impacto ambiental.

compresor de aire

How do you maintain proper air quality in compressed air systems?

Maintaining proper air quality in compressed air systems is essential to ensure the reliability and performance of pneumatic equipment and the safety of downstream processes. Here are some key steps to maintain air quality:

1. Air Filtration:

Install appropriate air filters in the compressed air system to remove contaminants such as dust, dirt, oil, and water. Filters are typically placed at various points in the system, including the compressor intake, aftercoolers, and before point-of-use applications. Regularly inspect and replace filters to ensure their effectiveness.

2. Moisture Control:

Excessive moisture in compressed air can cause corrosion, equipment malfunction, and compromised product quality. Use moisture separators or dryers to remove moisture from the compressed air. Refrigerated dryers, desiccant dryers, or membrane dryers are commonly employed to achieve the desired level of dryness.

3. Oil Removal:

If the compressed air system utilizes oil-lubricated compressors, it is essential to incorporate proper oil removal mechanisms. This can include coalescing filters or adsorption filters to remove oil aerosols and vapors from the air. Oil-free compressors eliminate the need for oil removal.

4. Regular Maintenance:

Perform routine maintenance on the compressed air system, including inspections, cleaning, and servicing of equipment. This helps identify and address any potential issues that may affect air quality, such as leaks, clogged filters, or malfunctioning dryers.

5. Air Receiver Tank Maintenance:

Regularly drain and clean the air receiver tank to remove accumulated contaminants, including water and debris. Proper maintenance of the tank helps prevent contamination from being introduced into the compressed air system.

6. Air Quality Testing:

Periodically test the quality of the compressed air using appropriate instruments and methods. This can include measuring particle concentration, oil content, dew point, and microbial contamination. Air quality testing provides valuable information about the effectiveness of the filtration and drying processes and helps ensure compliance with industry standards.

7. Education and Training:

Educate personnel working with compressed air systems about the importance of air quality and the proper procedures for maintaining it. Provide training on the use and maintenance of filtration and drying equipment, as well as awareness of potential contaminants and their impact on downstream processes.

8. Documentation and Record-Keeping:

Maintain accurate records of maintenance activities, including filter replacements, drying system performance, and air quality test results. Documentation helps track the system’s performance over time and provides a reference for troubleshooting or compliance purposes.

By implementing these practices, compressed air systems can maintain proper air quality, minimize equipment damage, and ensure the integrity of processes that rely on compressed air.

compresor de aire

Are there portable air compressors available for home use?

Yes, there are portable air compressors specifically designed for home use. These portable models offer convenience, versatility, and ease of use for various tasks around the house. Here are some key points about portable air compressors for home use:

1. Compact and Lightweight: Portable air compressors are typically compact and lightweight, making them easy to transport and store. They are designed with portability in mind, allowing homeowners to move them around the house or take them to different locations as needed.

2. Electric-Powered: Most portable air compressors for home use are electric-powered. They can be plugged into a standard household electrical outlet, eliminating the need for gasoline or other fuel sources. This makes them suitable for indoor use without concerns about emissions or ventilation.

3. Versatile Applications: Portable air compressors can be used for a wide range of home applications. They are commonly used for inflating tires, sports equipment, and inflatable toys. They are also handy for operating pneumatic tools such as nail guns, staplers, and paint sprayers. Additionally, portable air compressors can be used for cleaning tasks, powering airbrushes, and other light-duty tasks around the house.

4. Pressure and Capacity: Portable air compressors for home use typically have lower pressure and capacity ratings compared to larger industrial or commercial models. They are designed to meet the needs of common household tasks rather than heavy-duty applications. The pressure and capacity of these compressors are usually sufficient for most home users.

5. Oil-Free Operation: Many portable air compressors for home use feature oil-free operation. This means they do not require regular oil changes or maintenance, making them more user-friendly and hassle-free for homeowners.

6. Nivel de ruido: Portable air compressors designed for home use often prioritize low noise levels. They are engineered to operate quietly, reducing noise disturbances in residential environments.

7. Cost: Portable air compressors for home use are generally more affordable compared to larger, industrial-grade compressors. They offer a cost-effective solution for homeowners who require occasional or light-duty compressed air applications.

When considering a portable air compressor for home use, it’s important to assess your specific needs and tasks. Determine the required pressure, capacity, and features that align with your intended applications. Additionally, consider factors such as portability, noise level, and budget to choose a suitable model that meets your requirements.

Overall, portable air compressors provide a practical and accessible compressed air solution for homeowners, allowing them to tackle a variety of tasks efficiently and conveniently within a home setting.

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editor by CX 2023-10-09