ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM

ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM
ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM
ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM
ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM
ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM
ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM
ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM
ACE Adjustable Shock Absorber M 8x1, 8 mm Stroke - MA30EUM
Reference: P49N9
Brand: ACE
Mfr. Part: MA30EUM

ACE adjustable industrial shock absorber with M 8x1 body thread and 8 mm stroke rated for up to 3,5 Nm per stroke, 5650 Nm/h continuous, effective mass 0,23 - 15 kg, operating temperature 0 to +66 °C (32 to +151 °F). Damping is tunable on-absorber to the actual mass and impact velocity. Used as an end-of-stroke buffer on machine axes, pick-and-place arms, packaging machinery, and small automation cells where the mass or impact velocity varies between cycles and the damping must be tuned.

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Regular price
£98.08
excl VAT

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Description
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ACE adjustable industrial shock absorber with M 8x1 body thread and 8 mm stroke rated for up to 3,5 Nm per stroke, 5650 Nm/h continuous, effective mass 0,23 - 15 kg, operating temperature 0 to +66 °C (32 to +151 °F). Damping is tunable on-absorber to the actual mass and impact velocity. Used as an end-of-stroke buffer on machine axes, pick-and-place arms, packaging machinery, and small automation cells where the mass or impact velocity varies between cycles and the damping must be tuned.

Pros:

  • Tunable damping across 0,23–15 kg, so each cycle ends at the lowest reaction force
  • Rated 3,5 Nm/stroke, 5650 Nm/h on a compact M 8x1 threaded body, 8 mm stroke
  • Self-returning piston with integrated limit stop, no external return spring needed

Cons:

  • Requires re-tuning when mass or impact velocity changes
  • Operating range 0 to +66 °C (32 to +151 °F); derate or pick another series outside it
  • Free-falling vertical loads need a separate energy calculation