OVTW Wire-Rope Isolators

OVTW16-40-10 Wire Rope Vibration Isolator

OVTW16-40-10 vibration isolator with a Z-direction rated load of 23 N and Z-direction static stiffness of 10 N/mm. Review directional specifications and mounting requirements for your equipment.

OVTW16-40-10
Shared group rendering. Use this model’s specifications and corresponding drawings for dimensions and mounting configuration.
Z rated load (N)
23
Z static stiffness (N/mm)
10
Z deflection at rated load (mm)
0.5~3.5
Weight (kg)
0.03

Model specifications

Performance and key specifications

Weight (kg)
0.03
Damping ratio (C/Cc)
0.2
Z maximum allowed deflection (mm)
14.7
Z static stiffness (N/mm)
10
Max static load · Angled (N)
18
Max deflection · Angled (mm)
20.8
Vibration stiffness · Angled (N/mm)
11
Z deflection at rated load (mm)
0.5~3.5
Z natural frequency (Hz)
13.93
Shock stiffness · Angled (N/mm)
4.7
Z rated load (N)
23
Z shock stiffness (N/mm)
8.8

Load cases

Max deflection · Shear (mm)
15.7
Vibration stiffness · Shear (N/mm)
5.3
Vibration stiffness · Compression (N/mm)
17
Shock stiffness · Shear (N/mm)
5.3
Shock stiffness · Compression (N/mm)
8.8
Max static load · Shear (N)
16
Max deflection · Compression (mm)
14.7
Max static load · Compression (N)
31

X / Y direction specifications

X rated load (N)
11.2
X natural frequency (Hz)
10.83
Y maximum allowed deflection (mm)
15.7
Y deflection at rated load (mm)
0.5~3.5
Y static stiffness (N/mm)
3.12
X maximum allowed deflection (mm)
15.7
X static stiffness (N/mm)
3.12
X shock stiffness (N/mm)
5.3
X deflection at rated load (mm)
0.5~3.5
Y shock stiffness (N/mm)
5.3
Y natural frequency (Hz)
10.83
Y rated load (N)
11.2

Selection and installation

Check compression, 45° compression/roll and shear/roll values against the actual mounting direction. Rated load and maximum static load are different limits. Keep the full model suffix and specify the mounting-hole arrangement and loading direction with your inquiry.

Series working principle

Stranded steel cable deforms between mounting bars. Friction between the strands dissipates energy; stiffness varies with displacement and load direction.

Drawings and documents

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Specification sources

Specifications follow the current model catalogue, supported by the referenced catalogue pages and the product database model record.

  • Vibration isolator catalogue (Chinese, 2024) · pp. 13, 12
  • Product database: corresponding model record