Pneumatics, Hydraulics

Image Part Number Description / PDF Quantity Rfq
MS4-LFR-1/4-D7-CRM-AS

MS4-LFR-1/4-D7-CRM-AS

Festo

FILTER REGULATOR

0

81551101

81551101

Crouzet

SUB-BASE DIN RAIL

44

GRLA-10-32-UNF-QB-1/4-U

GRLA-10-32-UNF-QB-1/4-U

Festo

ONE-WAY FLOW CONTROL VALVE

0

VUVG-LK14-M52-AT-G18-1R8L-S

VUVG-LK14-M52-AT-G18-1R8L-S

Festo

SOLENOID VALVE

0

HGL-M5-QS-4

HGL-M5-QS-4

Festo

PILOTED CHECK VALVE

0

MS4N-LFR-1/4-D6-ERM-AS

MS4N-LFR-1/4-D6-ERM-AS

Festo

FILTER REGULATOR

0

BM-92-530-HNR-122

BM-92-530-HNR-122

AIRTEC Pneumatics

5/3-WAY, ELECTRICALLY OPERATED P

10

BM-92-312/2-HNR-122

BM-92-312/2-HNR-122

AIRTEC Pneumatics

2 X 3/2-WAY NO, ELECTRICALLY OPE

5

DSBC-50-80-PPSA-N3

DSBC-50-80-PPSA-N3

Festo

ISO CYLINDER

0

BM-92-314/2-HNR-157

BM-92-314/2-HNR-157

AIRTEC Pneumatics

2 X 3/2-WAY NO/NC, ELECTRICALLY

5

MS4-LFM-1/4-AUV

MS4-LFM-1/4-AUV

Festo

MICRO FILTER

0

BM-91-520-HNR-131

BM-91-520-HNR-131

AIRTEC Pneumatics

5/2-WAY, ELECTRICALLY OPERATED P

20

BM-91-511-HNR-161

BM-91-511-HNR-161

AIRTEC Pneumatics

5/2 WAY, ELECTRICALLY OPERATED P

19

BM-91-312/2-HNR-156

BM-91-312/2-HNR-156

AIRTEC Pneumatics

2 X 3/2-WAY NO, ELECTRICALLY OPE

5

GRO-1/8-B

GRO-1/8-B

Festo

FLOW CONTROL VALVE

0

MS4-LFM-1/4-BUV

MS4-LFM-1/4-BUV

Festo

FINE FILTER

0

81529003

81529003

Crouzet

FLOW RESTRICT ONE-WAY FREE HANG

7

BM-92-530-HNR-152

BM-92-530-HNR-152

AIRTEC Pneumatics

5/3-WAY, ELECTRICALLY OPERATED P

8

H-QS-6

H-QS-6

Festo

NON-RETURN VALVE

0

GRLA-1/2-QB-5/16-U

GRLA-1/2-QB-5/16-U

Festo

ONE-WAY FLOW CONTROL VALVE

0

Pneumatics, Hydraulics

1. Overview

Pneumatics and hydraulics are core technologies in industrial automation, utilizing compressed air (pneumatics) and pressurized fluids (hydraulics) to generate, control, and transmit power. Pneumatics excels in high-speed, clean operations, while hydraulics delivers high force and precision for heavy-duty tasks. Both systems are critical in manufacturing, aerospace, automotive, and energy sectors due to their reliability, scalability, and adaptability to harsh environments.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Pneumatic ActuatorsConvert compressed air into linear/rotary motion; low maintenance, fast responseAssembly line robots, packaging machines
Hydraulic CylindersGenerate high force with precise control; suitable for heavy loadsExcavators, presses, aircraft landing gear
Directional Control ValvesRegulate fluid/air flow direction; enable system automationCNC machines, injection molding
Compressors/PumpsProvide pressurized air/fluid; define system capacityPower plants, construction equipment
Vacuum GeneratorsCreate suction for material handling; non-contact operationFood processing, semiconductor manufacturing

3. Structure and Components

A typical pneumatic system includes an air compressor, filters/regulators/lubricators (FRL units), directional control valves, actuators, and tubing. Hydraulic systems consist of a fluid reservoir, hydraulic pump, pressure valves, actuators (cylinders/motors), and hoses. Both systems integrate sensors and programmable logic controllers (PLCs) for automated control, with pneumatic systems emphasizing airflow management and hydraulic systems focusing on fluid pressure stability.

4. Key Technical Specifications

ParameterDescriptionImportance
Operating Pressure100-1,000 kPa (pneumatic), 7-35 MPa (hydraulic)Determines force output and safety margins
Flow Rate10-5,000 L/minImpacts actuator speed and system efficiency
Power DensityHydraulic: >10 kW/kg; Pneumatic: ~1 kW/kgDefines compactness for space-constrained applications
Response Time5-100 msDictates system performance in dynamic processes
Reliability IndexMTBF >10,000 hoursAffects maintenance intervals and downtime

5. Application Fields

  • Automotive: Robotic welding arms, paint-spraying systems
  • Food & Beverage: Sanitary vacuum grippers, conveyor belt control
  • Aerospace: Flight control surfaces, landing gear actuation
  • Construction: Excavator boom systems, hydraulic breakers
  • Energy: Wind turbine pitch control, offshore drilling equipment

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductTechnical Highlights
FestoDSNU Compact CylinderIntegrated position sensing, IP65 rating
SMC CorporationSY5000 Series Solenoid Valve3/2-way, 24V DC control with energy recovery
Bosch RexrothA10VO Axial Piston PumpVariable displacement, 280 bar max pressure
Parker HannifinCP10-12-210 Hydraulic CylinderCorrosion-resistant coating for marine environments
HydacDFH Filter SystemMultistage filtration for ISO 4406 V4 cleanliness

7. Selection Recommendations

Key considerations include load requirements (force/speed), environmental conditions (temperature/corrosion), energy efficiency targets, and maintenance accessibility. For example, a automotive plant selecting pneumatic grippers for robotic arms prioritized 0.1mm positional accuracy and 2Hz cycle speed, while a steel mill requiring hydraulic presses chose systems with 32MPa pressure rating and 95% volumetric efficiency. Always verify compliance with ISO 8573-1 (air quality) and NFPA T3.20.9 (hydraulic safety) standards.

8. Industry Trends

Key trends include: (1) Integration of IoT-enabled smart actuators with condition monitoring; (2) Development of water-hydraulics for environmentally sensitive applications; (3) Adoption of digital twins for system simulation; (4) Growth of electro-hydraulic hybrid systems for energy recovery; (5) Miniaturization of pneumatic components for collaborative robots (cobots). The market is projected to grow at 6.2% CAGR through 2030, driven by Industry 4.0 automation demands.

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