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Improvement of Dynamic Characteristics of Torsion on the Marine Propulsion Shafting System with Elastic Rubber Coupling

고무 탄성커플링을 갖는 선박 추진축계 비틀림의 동특성 개선

  • 이돈출 (목포해양대학교 기관시스템공학부)
  • Published : 2003.12.01

Abstract

As for the marine propulsion shafting system using 4 stroke diesel engine, it is common to apply a reduction gear box between diesel engine and shafting to increase propulsion efficiency, which requires inevitably a certain elastic coupling to avoid chattering and hammering inside of gear box. In this study, the optimum method of rectifying propulsion shafting system in case of 750 ton fishing vessel is theoretically studied in a view of dynamic characteristics of torsion. After the replacement of diesel engine and gear box, the torsional vibration get worse and so some countermeasures are needed. The elastic coupling is modified from a present rubber coupling of block type having relatively high torsional stiffness to a rubber coupling haying two serially connected elements. Torsional vibration damper was installed at crankshaft free end additionally and moment of inertia of flywheel was adjusted. The dynamic characteristics of shafting system was improved by these modification. The theoretical analysis of torsional vibration are compared to measurement results using two laser torsion meters during the sea trial.

Keywords

References

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Cited by

  1. A study of structural analysis and dynamic characteristics of a sleeve spring torsional vibration damper vol.49, pp.1-4, 2010, https://doi.org/10.1007/s00170-009-2367-2
  2. Reduction Gear Stability Estimation due to Torque Variation on the Marine Propulsion System with High-speed Four Stroke Diesel Engine vol.25, pp.12, 2015, https://doi.org/10.5050/KSNVE.2015.25.12.815