Manufacturer
Pneumatic Components

Pneumatic Components

Components that are pneumatic are crucial elements of a pneumatic system, using compressed air to manage movements and carry out a range of tasks in industries like manufacturing, construction, and automation.

Found 18,789 products

578280
578280$5.97
Festo

push-in L-fitting NPQH-L-G18-Q4-P10 Size: Standard, Nominal size: 3 mm, Type of seal on screw-in stud: Sealing ring, Assembly position: Any, Container size: 10

4 in stock

24 hours

566496
566496$97.61
Festo

solenoid valve VUVG-L14-T32C-AT-G18-1P3 Valve function: 2x3/2 closed, monostable, Type of actuation: electrical, Valve size: 14 mm, Standard nominal flow rate: 560 l/min, Operating pressure: 1,5 - 8 bar

2 in stock

24 hours

173127
173127$238.41
Festo

solenoid valve MEH-5/2-1/8-B Midi Pneumatic, with solenoid coil and manual override, without socket. Valve function: 5/2 monostable, Type of actuation: electrical, Width: 17,8 mm, Standard nominal flow rate: 600 l/min, Operating pressure: 2,5 - 8 bar

2 in stock

24 hours

564795
564795$10.65
Festo

multiple distributor QBT3-3/8T-1/4-U Size: Standard, Nominal size: 0,197 ", Assembly position: Any, Design structure: Push/pull principle, Operating pressure complete temperature range: -13,8 - 145 Psi

7 in stock

24 hours

8030277
8030277$2.60
Festo

double nipple NPFC-D-2G12-M Material threaded fitting: Nickel-plated brass, Container size: 10, Operating pressure: -0,95 - 50 bar, Operating medium: Compressed air in accordance with ISO8573-1:2010 [-:-:-], Corrosion resistance classification CRC: 1 - Lo

4 in stock

24 hours

8030238
8030238$10.42
Festo

t-fitting NPFC-T-3G12-F Material threaded fitting: Nickel-plated brass, Container size: 10, Operating pressure: -0,95 - 50 bar, Operating medium: Compressed air in accordance with ISO8573-1:2010 [-:-:-], Corrosion resistance classification CRC: 1 - Low co

8 in stock

24 hours

130603
130603$8.50
Festo

push-in fitting QSW-3/8-12 male thread with external hexagon. Size: Standard, Nominal size: 9,5 mm, Type of seal on screw-in stud: coating, Assembly position: Any, Container size: 10

6 in stock

24 hours

150901
150901$12.08
Festo

central mounting SLZZ-25/16 Assembly position: Any, Corrosion resistance classification CRC: 2 - Moderate corrosion stress, Materials note: Free of copper and PTFE

2 in stock

24 hours

533279
533279$2.63
Festo

push-in fitting QB-3/8-1/4-U male thread with external hexagon. Size: Standard, Nominal size: 0,189 ", Type of seal on screw-in stud: coating, Assembly position: Any, Design structure: Push/pull principle

10 in stock

24 hours

573419
573419$129.38
Festo

solenoid valve VUVG-B10-P53C-ZT-F-1T1L Valve function: 5/3 closed, Type of actuation: electrical, Valve size: 10 mm, Standard nominal flow rate: 200 l/min, Operating pressure: -0,9 - 10 bar

4 in stock

24 hours

ItemManufacturerPriceStockDelivery
578280

578280

push-in L-fitting NPQH-L-G18-Q4-P10 Size: Standard, Nominal size: 3 mm, Type of seal on screw-in stud: Sealing ring, Assembly position: Any, Container size: 10

Festo

$5.97

4 in stock

24 hours

566496

566496

solenoid valve VUVG-L14-T32C-AT-G18-1P3 Valve function: 2x3/2 closed, monostable, Type of actuation: electrical, Valve size: 14 mm, Standard nominal flow rate: 560 l/min, Operating pressure: 1,5 - 8 bar

Festo

$97.61

2 in stock

24 hours

173127

173127

solenoid valve MEH-5/2-1/8-B Midi Pneumatic, with solenoid coil and manual override, without socket. Valve function: 5/2 monostable, Type of actuation: electrical, Width: 17,8 mm, Standard nominal flow rate: 600 l/min, Operating pressure: 2,5 - 8 bar

Festo

$238.41

2 in stock

24 hours

564795

564795

multiple distributor QBT3-3/8T-1/4-U Size: Standard, Nominal size: 0,197 ", Assembly position: Any, Design structure: Push/pull principle, Operating pressure complete temperature range: -13,8 - 145 Psi

Festo

$10.65

7 in stock

24 hours

8030277

8030277

double nipple NPFC-D-2G12-M Material threaded fitting: Nickel-plated brass, Container size: 10, Operating pressure: -0,95 - 50 bar, Operating medium: Compressed air in accordance with ISO8573-1:2010 [-:-:-], Corrosion resistance classification CRC: 1 - Lo

Festo

$2.60

4 in stock

24 hours

8030238

8030238

t-fitting NPFC-T-3G12-F Material threaded fitting: Nickel-plated brass, Container size: 10, Operating pressure: -0,95 - 50 bar, Operating medium: Compressed air in accordance with ISO8573-1:2010 [-:-:-], Corrosion resistance classification CRC: 1 - Low co

Festo

$10.42

8 in stock

24 hours

130603

130603

push-in fitting QSW-3/8-12 male thread with external hexagon. Size: Standard, Nominal size: 9,5 mm, Type of seal on screw-in stud: coating, Assembly position: Any, Container size: 10

Festo

$8.50

6 in stock

24 hours

150901

150901

central mounting SLZZ-25/16 Assembly position: Any, Corrosion resistance classification CRC: 2 - Moderate corrosion stress, Materials note: Free of copper and PTFE

Festo

$12.08

2 in stock

24 hours

533279

533279

push-in fitting QB-3/8-1/4-U male thread with external hexagon. Size: Standard, Nominal size: 0,189 ", Type of seal on screw-in stud: coating, Assembly position: Any, Design structure: Push/pull principle

Festo

$2.63

10 in stock

24 hours

573419

573419

solenoid valve VUVG-B10-P53C-ZT-F-1T1L Valve function: 5/3 closed, Type of actuation: electrical, Valve size: 10 mm, Standard nominal flow rate: 200 l/min, Operating pressure: -0,9 - 10 bar

Festo

$129.38

4 in stock

24 hours

Pneumatic Components

General Guide & Overview

Pneumatic components are essential parts of a pneumatic system that utilizes compressed air to control movements and perform various tasks in industries such as manufacturing, construction, and automation. These components are designed to optimize automation and control and are favored by many industries for their cost-effectiveness and reliability.

Industrial pneumatic systems typically consist of a compressor, receiver, valves, and actuators. The compressor converts the air into compressed air, which is then stored in a receiver. Valves control the direction and flow of the air, while actuators are responsible for the required movement of the system.

Additionally, air preparation components such as filters, regulators, and lubricators play a crucial role in maintaining the performance and longevity of the pneumatic system.

Understanding the functions and applications of pneumatic components is key to harnessing the power of pneumatic systems effectively. In this guide, we will explore the various components of a pneumatic system and their functions, providing you with a comprehensive overview.

Advantages and Limitations of Pneumatic Systems

Pneumatic systems offer several advantages that make them popular in various industries. These include simplicity of design and control, reliability, and safety.

One of the key advantages of pneumatic systems is their simplicity. They can be easily designed and operated using standard components, making them cost-effective and efficient. This makes them a popular choice for industries that require automated processes.

Pneumatic systems are also known for their reliability. They can continue to function even if there is a loss of electrical power, ensuring uninterrupted operation. This is especially important in critical applications, where downtime can be costly and disruptive.

Additionally, pneumatic systems are considered safe to use. They are less prone to shock damage compared to hydraulic systems, reducing the risk of accidents. They also have a low risk of fire, making them suitable for applications where fire hazards are a concern.

However, it's significant to note that pneumatic systems also have limitations that need to be taken into account. One limitation is that they are prone to leakage. Air can escape from the system, leading to a decrease in performance and efficiency. Regular maintenance checks are necessary to detect and address any leakage issues in order to prevent potential problems.

Pneumatic systems also require maintenance and repairs to ensure their optimal functioning. Before any repairs, the system needs to be depressurized correctly to avoid accidents. Temperature and vibration changes can affect the performance of pneumatic systems, so it's important to consider these factors and take appropriate measures.

Components and Design of a Pneumatic System

A pneumatic system is composed of several essential components that work together to optimize its performance. The key components of a pneumatic system include an air compressor that converts the air into compressed air, an air tank that stores the compressed air, and an air filter that removes contaminants from the air before it enters the system.

To ensure stable and controlled operation, a regulator is used to adjust and maintain the desired pressure of the air within the system. Additionally, a lubricator is employed to provide lubrication, reducing friction and wear on the components, thus prolonging their lifespan.

The control valve is responsible for controlling the flow of air within the system, allowing for precision and flexibility in the movement of the actuators. These actuators, which can be in the form of cylinders or motors, convert the compressed air into mechanical movement, enabling the system to perform the desired tasks.

In designing a pneumatic system, careful consideration must be given to the arrangement and placement of these components. Proper positioning ensures an efficient and logical flow of air, reducing energy loss and optimizing performance. By strategically positioning the components, operators can achieve smooth operation and enhance the system's overall effectiveness.

FAQ

Pneumatic components are essential parts of a pneumatic system that utilize compressed air to control movements and perform various tasks in industries such as manufacturing, construction, and automation.

The main components of a pneumatic system include an air compressor, an air tank, an air filter, a regulator, a lubricator, control valves, and actuators.

Pneumatic systems offer advantages such as simplicity of design and control, reliability, and safety. They are easy to design and operate, even without electrical power, and are less prone to shock damage and fire.

Pneumatic systems can be prone to leakage and require regular maintenance checks. The system needs to be depressurized correctly before repairs, and temperature and vibration changes can affect its performance.