Productbeschrijving
Productbeschrijving
| Specificatie | ||||
| Power (KW) | 7.5 | 11 | 15 | 22 |
| Exhaust Pressure (Mpa) | 0.8 | |||
| Exhaust Volume (m³/min) | 0.36~1.35 | 0.46~1.8 | 0.8~2.6 | 1.0~3.8 |
| Koelmethode | Air-Cooling | |||
| Lubricant Quantity (L) | 4 | 9 | 16 | |
| Noise (dB(A)) | 62±2 | 65±2 | ||
| Voltage | 220V/380V/415V/3ph/50Hz/60Hz | |||
| Size (mm) | 900*600*820 | 1571*710*1571 | 1250*800*1120 | |
| Weight (KG) | 180 | 286 | 400 | 450 |
Gedetailleerde foto's
Permanent magnet variable freuency motor
Automatic control of power
consumption can greatly reduce operating costs
Twin screw host
High efciency, low noise, low energy consumption
Touch Screen
Operation monitoring, the operation status is clear at a glance
High efficiency oil separator
Reduced loss of compressed air during circulation
Microcomputer control system
Efficient cooling system
High heat dissipation efficiency, continuous operation in high humidity environment
Production Line
| Klantenservice na aankoop: | 1 Year |
|---|---|
| Garantie: | 1 Year |
| Lubrication Style: | Oil-free |
| Koelsysteem: | Luchtkoeling |
| Stroombron: | / |
| Cylinder Position: | Vertical |
| Aanpassing: |
Beschikbaar
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How are air compressors utilized in the aerospace industry?
Air compressors play a crucial role in various applications within the aerospace industry. They are utilized for a wide range of tasks that require compressed air or gas. Here are some key uses of air compressors in the aerospace industry:
1. Aircraft Systems:
Air compressors are used in aircraft systems to provide compressed air for various functions. They supply compressed air for pneumatic systems, such as landing gear operation, braking systems, wing flap control, and flight control surfaces. Compressed air is also utilized for starting aircraft engines and for cabin pressurization and air conditioning systems.
2. Ground Support Equipment:
Air compressors are employed in ground support equipment used in the aerospace industry. They provide compressed air for tasks such as inflating aircraft tires, operating pneumatic tools for maintenance and repair, and powering air-driven systems for fueling, lubrication, and hydraulic operations.
3. Component Testing:
Air compressors are utilized in component testing within the aerospace industry. They supply compressed air for testing and calibrating various aircraft components, such as valves, actuators, pressure sensors, pneumatic switches, and control systems. Compressed air is used to simulate operating conditions and evaluate the performance and reliability of these components.
4. Airborne Systems:
In certain aircraft, air compressors are employed for specific airborne systems. For example, in military aircraft, air compressors are used for air-to-air refueling systems, where compressed air is utilized to transfer fuel between aircraft in mid-air. Compressed air is also employed in aircraft de-icing systems, where it is used to inflate inflatable de-icing boots on the wing surfaces to remove ice accumulation during flight.
5. Environmental Control Systems:
Air compressors play a critical role in the environmental control systems of aircraft. They supply compressed air for air conditioning, ventilation, and pressurization systems, ensuring a comfortable and controlled environment inside the aircraft cabin. Compressed air is used to cool and circulate air, maintain desired cabin pressure, and control humidity levels.
6. Engine Testing:
In the aerospace industry, air compressors are utilized for engine testing purposes. They provide compressed air for engine test cells, where aircraft engines are tested for performance, efficiency, and durability. Compressed air is used to simulate different operating conditions and loads on the engine, allowing engineers to assess its performance and make necessary adjustments or improvements.
7. Oxygen Systems:
In aircraft, air compressors are involved in the production of medical-grade oxygen for onboard oxygen systems. Compressed air is passed through molecular sieve beds or other oxygen concentrator systems to separate oxygen from other components of air. The generated oxygen is then supplied to the onboard oxygen systems, ensuring a sufficient and continuous supply of breathable oxygen for passengers and crew at high altitudes.
It is important to note that air compressors used in the aerospace industry must meet stringent quality and safety standards. They need to be reliable, efficient, and capable of operating under demanding conditions to ensure the safety and performance of aircraft systems.
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Kunnen luchtcompressoren in geautomatiseerde systemen worden geïntegreerd?
Ja, luchtcompressoren kunnen worden geïntegreerd in geautomatiseerde systemen en vormen zo een betrouwbare en veelzijdige bron van perslucht voor diverse toepassingen. Hieronder vindt u een gedetailleerde uitleg over hoe luchtcompressoren in geautomatiseerde systemen kunnen worden geïntegreerd:
Pneumatische automatisering:
Luchtcompressoren worden veelvuldig gebruikt in pneumatische automatiseringssystemen, waar perslucht wordt gebruikt om geautomatiseerde machines en apparatuur aan te drijven en te besturen. Pneumatische systemen zijn afhankelijk van de gecontroleerde toevoer van perslucht om lineaire of roterende beweging te genereren, waarmee kleppen, cilinders en andere pneumatische componenten worden aangestuurd. Door een luchtcompressor in het systeem te integreren, is een continue toevoer van perslucht beschikbaar om het automatiseringsproces van stroom te voorzien.
Controle en regulering:
In geautomatiseerde systemen zijn luchtcompressoren vaak aangesloten op een regel- en besturingssysteem om de persluchttoevoer te beheren. Dit systeem omvat componenten zoals drukregelaars, kleppen en sensoren om de luchtdruk, -stroom en -verdeling te bewaken en aan te passen. Het besturingssysteem zorgt ervoor dat de luchtcompressor binnen de gewenste parameters werkt en de juiste hoeveelheid perslucht levert aan de verschillende onderdelen van het geautomatiseerde systeem, al naar gelang de behoefte.
Sequentiële bewerkingen:
De integratie van luchtcompressoren in geautomatiseerde systemen maakt het mogelijk om opeenvolgende bewerkingen efficiënt uit te voeren. Perslucht kan worden gebruikt om de timing en volgorde van verschillende pneumatische componenten te regelen, waardoor het geautomatiseerde systeem taken in de gewenste volgorde en met de juiste timing uitvoert. Dit is met name nuttig in productie- en assemblageprocessen waar nauwkeurige coördinatie van pneumatische actuatoren vereist is.
Energie-efficiëntie:
Luchtcompressoren kunnen bijdragen aan energiezuinige automatiseringssystemen. Door energiebesparende functies zoals frequentieregelaars (VSD) te integreren, kunnen luchtcompressoren hun vermogen aanpassen aan de vraag, waardoor het energieverbruik tijdens perioden met weinig activiteit wordt verminderd. Daarnaast helpen efficiënte regel- en besturingssystemen het gebruik van perslucht te optimaliseren, verspilling te minimaliseren en de algehele energie-efficiëntie te verbeteren.
Monitoring en diagnostiek:
De integratie van luchtcompressoren in geautomatiseerde systemen omvat vaak bewakings- en diagnosemogelijkheden. Sensoren en bewakingsapparatuur kunnen worden geïnstalleerd om gegevens te verzamelen over parameters zoals luchtdruk, temperatuur en systeemprestaties. Deze informatie kan worden gebruikt voor realtime bewaking, preventief onderhoud en probleemoplossing, waardoor de betrouwbare werking van het geautomatiseerde systeem wordt gewaarborgd.
Bij de integratie van luchtcompressoren in geautomatiseerde systemen is het cruciaal om rekening te houden met factoren zoals de specifieke eisen van het automatiseringsproces, de gewenste luchtdruk en het volume, en de compatibiliteit van de compressor met het besturings- en regelsysteem. Overleg met experts op het gebied van automatisering en persluchtsystemen kan helpen bij het ontwerpen van een efficiënte en betrouwbare integratie.
Samenvattend kunnen luchtcompressoren naadloos worden geïntegreerd in geautomatiseerde systemen. Ze leveren de benodigde perslucht voor de aandrijving en aansturing van pneumatische componenten, maken sequentiële bewerkingen mogelijk en dragen bij aan energiezuinige automatiseringsprocessen.
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What is the purpose of an air compressor?
An air compressor serves the purpose of converting power, typically from an electric motor or an engine, into potential energy stored in compressed air. It achieves this by compressing and pressurizing air, which can then be used for various applications. Here’s a detailed explanation of the purpose of an air compressor:
1. Powering Pneumatic Tools: One of the primary uses of an air compressor is to power pneumatic tools. Compressed air can be used to operate a wide range of tools, such as impact wrenches, nail guns, paint sprayers, sanders, and drills. The compressed air provides the necessary force and energy to drive these tools, making them efficient and versatile.
2. Supplying Clean and Dry Air: Air compressors are often used to supply clean and dry compressed air for various industrial processes. Many manufacturing and production operations require a reliable source of compressed air that is free from moisture, oil, and other contaminants. Air compressors equipped with appropriate filters and dryers can deliver high-quality compressed air for applications such as instrumentation, control systems, and pneumatic machinery.
3. Inflating Tires and Sports Equipment: Air compressors are commonly used for inflating tires, whether it’s for vehicles, bicycles, or sports equipment. They provide a convenient and efficient method for quickly filling tires with the required pressure. Air compressors are also used for inflating sports balls, inflatable toys, and other similar items.
4. Operating HVAC Systems: Air compressors play a crucial role in the operation of heating, ventilation, and air conditioning (HVAC) systems. They provide compressed air for controlling and actuating dampers, valves, and actuators in HVAC systems, enabling precise regulation of air flow and temperature.
5. Assisting in Industrial Processes: Compressed air is utilized in various industrial processes. It can be used for air blow-off applications, cleaning and drying parts, powering air-operated machinery, and controlling pneumatic systems. Air compressors provide a reliable and efficient source of compressed air that can be tailored to meet the specific requirements of different industrial applications.
6. Supporting Scuba Diving and Breathing Systems: In scuba diving and other breathing systems, air compressors are responsible for filling diving tanks and supplying breathable air to divers. These compressors are designed to meet strict safety standards and deliver compressed air that is free from contaminants.
Overall, the purpose of an air compressor is to provide a versatile source of compressed air for powering tools, supplying clean air for various applications, inflating tires and sports equipment, supporting industrial processes, and facilitating breathing systems in specific contexts.


editor by CX 2023-10-04