Geislinger Corporation is based out of Battle Creek, MI. For more than 50 years Geislinger has been designing torsional steel couplings, tuned torsional dampers, and composite misalignment couplings for the Marine industry. A new addition to the product portfolio, The Geislinger Silenco Acoustic Coupling, is an acoustic coupling designed to minimize the transfer of structure borne sound through the propulsion driveline. Geislinger products have proven to be unique, effective, and reliable solutions in order to reduce harmful natural frequencies and torsional vibrations prevalent in high horsepower engine applications. With industry leaders and experts in torsional vibrations, Geislinger looks forward to the opportunity to look at your system and design a complete system solution for your application.
The Geislinger Damper adjusts the natural frequency of a system in order to reduce the torsional vibrations in 2 & 4 stroke engines. The Geislinger Damper elasticity is determined by the internals of the Damper which are determined by the Torsional Vibration Analysis. The elasticity of the damper allows the torsional system to be detuned and the most critical resonances eliminated. Thus, the Geislinger Damper reliably protects the crankshafts, camshafts, and intermediate shafts of reciprocating systems.
The Geislinger Gesilco Misalignment Coupling product range combines over 20 years of experience of developing carbon fibre composite misalignment couplings and Shaftlines for your propulsion driveline system. The Geislinger Misalignment Couplings are designed to compensate for radial, axial, and angular misalignments in your driveline system. The combination of the Geislinger Torsional Coupling and a Gesilco misalignment coupling creates a superior coupling combination that isolates torsional damping (Geislinger Coupling) and high misalignment compensation (Gesilco Coupling) with extremely low reaction forces. The newly designed Gesilco "Butterfly" Misalignment Coupling will be on display in the Geislinger Booth.
The Geislinger Torsional Coupling is an all steel coupling that uses hydrodynamic damping to reduce torsional vibrations in your propulsion system driveline. The Geislinger Torsional Coupling uses either pressurized oil from the engine or gearbox, or it can be oil-filled if pressurized oil is not available. The all steel construction of the Geislinger Coupling ensures constant and superior performance in all operating conditions throughout the lifetime of the coupling. The Geislinger Torsional Steel Coupling is designed specifically for your propulsion driveline after the completion of the Torsional Vibration Analysis which is completed in house by a Geislinger expert. As a result, the integration of the Geislinger Torsional Steel Coupling results in lower crankshaft stresses, along with lower stresses in other shafts, gears, and downstream components.
Geislinger Silenco Coupling
The Geislinger Silenco is an acoustically optimized maintenance free misalignment coupling. The lightweight Geislinger Silenco is designed to minimize the transfer of structure borne sound in your propulsion driveline system. The modular system of the Geislinger Silenco is compromised of components with the best acoustical performance, and to further optimize the Silenco coupling special flanges made out of a combination of composite material, rubber, and steel have been specifically developed. The Geislinger Silenco can be combined with the Geislinger Torsional Steel Coupling to provide a complete propulsion driveline system that not only dampens torsional vibrations, but also reduces the transfer of structure borne sound in your application.
Geislinger Monitoring System
The Geislinger Monitoring System (GMS) is a continuous monitoring and measuring system for rotating components. The GMS is usually used in conjunction with a Geislinger Torsional Coupling or Geislinger Damper. The main task of the GMS is to monitor the components and recognize functional deviations. When programmed safety limits are reached or exceeded an alarm in the GMS is triggered. The GMS system allows the user to take appropriate measures when an alarm is triggered to prevent component and system failures.
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