Globural or Spherical vibration dampers are ideal for situations where multidirectional vibrations need to be dampened, enhancing the stability of machines and protecting them from harmful vibrations.
Spherical or Globural Design
The spherical vibration damper has a spherical shape, providing unique flexibility and vibration damping capabilities. The spherical form allows vibrations to be evenly distributed in all directions, effectively damping the vibrations and absorbing shocks.
Vibration Damping
Spherical vibration dampers are typically made from flexible materials such as 55 ShA hardness natural rubber (NR) or specialized elastomers. These materials are excellent at absorbing vibrational energy, thus reducing vibrations generated by machines.
Excellent Stability
The spherical shape ensures that the vibration damper is evenly loaded regardless of the direction of machine movement. This form is particularly suitable for handling dynamic loads, as the sphere can dampen vibrations from any direction.
Durability
Spherical vibration dampers are durable and resistant to mechanical stress, allowing them to be used for long periods without significantly losing their vibration-damping capabilities. The combination of the materials used and the spherical shape ensures long-lasting performance and reliability.
These vibration dampers are commonly used in precision machines, electronic equipment, laboratory instruments, and other industrial environments where vibration damping from all directions is essential. The spherical shape is especially useful in situations where vibrations can originate from multiple directions.
Spherical vibration dampers are easy to install beneath machines or on mounting points. The spherical design simplifies installation and ensures that the damper can effectively absorb vibrational energy from all directions.
Inspection
Regularly check the condition of spherical vibration dampers, especially if they are subjected to intense dynamic loads.
Proper Fit
Ensure that the dampers are properly fitted to the machine and evenly loaded, maximizing the benefits of the spherical shape.