IMI Norgren M/31142 Air Bellow - Single Acting, 61950 N
Part Number: M/31142
Quick Summary
Air bellow M/31142 delivers frictionless actuation for high-force, short-stroke needs in automated press, clamping, and isolation applications. Engineers often face maintenance overhead and lubrication challenges that disrupt throughput; this design minimizes service intervals. Industry-standard expectations such as CE compliance, SIL safety concepts, and robust ruggedness guide its use in harsh environments. In industrial automation, reliable pneumatic actuation translates to lower lifecycle costs, higher uptime, and simpler installation across the M/31000 range.
Product Information
Extended Description
M/31142 Norgren: Frictionless operation | No maintenance or lubrication | Ideal for short stroke, high-force applications | High vibration isolation level | Simple to install
Medium
Compressed air
Operating Temperature
-40 ... 70 °C, -40 ... 158 °F
Operating Pressure
0 ... 8 bar, 0 ... 116 psi
Port Size
G1/2
Nominal Diameter
14-1/2"
Number Of Convolutions
2
Stroke Length
265 mm
Operation
Single acting
Magnetic/Non-magnetic
Non-magnetic
Theoretical Force
61950 N
Dimensions - Height
200 mm
Dimensions - Length
400 mm
Dimensions - Width
400 mm
Weight
8.3 kg
Country of Origin
Germany
Range
M/31000
Brand
IMI Norgren
Frictionless operation and no maintenance or lubrication are built into this air bellow, delivering consistent performance with minimal user intervention. The result is reduced downtime, lower lubricant consumption, and predictable actuation in busy automation lines. Ideal for short-stroke, high-force tasks such as clamping, forming, and vibration-isolated movement, it integrates cleanly into existing pneumatic circuits and reduces the risk of lubrication-related contamination. Single-acting design with a 14-1/2 inch nominal diameter and a 265 mm stroke delivers a reliable, compact actuation profile. The G1/2 port size and two convolutions provide a stable, repeatable travel with straightforward installation in M/31000-compatible systems. This combination translates into faster setup, easier retrofits, and better chamber-to-chamber alignment in presses and actuators. High vibration isolation and a non-magnetic construction support stable operation in demanding environments. With a theoretical force of 61,950 N, this unit maintains position under load while absorbing ambient vibration, reducing wear on connected tooling. The rugged German engineering also enhances compatibility with heavy-duty automation lines and fixtures. Operating temperature -40 to 70 °C and pressure 0-8 bar enable versatile use across processes and climates. The 8.3 kg weight and compact footprint (200 mm height, 400 mm length and width) simplify mounting in confined spaces, while the 400x400 mm footprint aligns with standard mountings. Fits standard compressed-air systems and M/31000 range with G1/2 ports; installation is straightforward with clear documentation and robust compatibility for line integration.
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FAQs
The M/31142 uses a G1/2 port and features a 14-1/2 inch nominal diameter with a 265 mm stroke. Its footprint is 400 x 400 mm with a height of 200 mm, and it weighs 8.3 kg, making it compatible with standard pneumatic manifolds and M/31000-range systems for easy retrofits.
Theoretical force is 61,950 N. It operates from 0 to 8 bar (0 to 116 psi) of compressed air and is designed for a wide temperature range from -40 to 70 °C, enabling reliable performance across typical industrial environments.
Yes. It offers high vibration isolation and a non-magnetic construction, which helps maintain positioning accuracy and reduce wear when used in noisy, vibration-prone setups such as presses and clamping fixtures.
The provided data does not explicitly specify CE or IP certifications. For regulatory compliance, verify with the supplier and consult the official datasheet to confirm applicable certifications and enclosure ratings before deployment in regulated applications.
Frictionless operation with no lubrication requirements reduces maintenance intervals and lubricant-related contamination. This delivers lower operating costs, reduced downtime, and faster changeovers, improving overall line throughput in high-volume manufacturing.