AVG Flange mounts

(double acting), rubber and aluminium

 
 

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Technical specifications

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Main specifications

Flange body

Aluminium painted with nitrocellulose-based enamel in blue colour RAL 5010.

Threaded bushing

Black coated steel.

Vibration-damper body

NBR rubber.

Hardness 30, 50, 60 Shore A ±5.

General information

Features and applications

They are generally used for isolating strong vibrations, where axial holding force and resistance to compression is required.

Vibrations can cause:

  • malfunctioning and reduction of the machine lifespan and/or of the adjacent ones;
  • damage to health;
  • noise.

They are particularly suitable for use with machine tools, presses for moulding plastics materials, special machines and shock absorption.

See High performance vibration dampers - Characteristics and selection criteria.

The deflection curves shown in the graphs were obtained through static experimental tests adopting average values.

Actual values ​​may differ by approximately ±10% from those shown in the graph.

DescriptionResistance to compressionAxial holding force
Min load
[N]
Max load
[N]
Min deflection
[mm]
Max. deflection
[mm]
Min load
[N]
Max load
[N]
Min deflection
[mm]
Max. deflection
[mm]
300160013.5300140013
450258013.5450220013
750430013.5750390013
400250016400270016
600400016600450016
800500016800650016
140480016.5140290016.5
240810016.5240440016.5
5001750016.5500880016.5

The min. load is the value below which the vibration damper is not able to isolate the vibrations as it would be too rigid.

The max load is the value beyond which some type of failure may occur that compromises the functionality of the vibration damper.

The min. deflection is the crushing of the vibration-damping support corresponding to the min. load.

The max. deflection is the crushing of the vibration-damping support corresponding to the max. load.

Elesa
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