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Technical Paper

Study of Bolt Model to Improve Accuracy of Engine Vibration Analysis

2010-09-28
2010-32-0026
To improve the accuracy of engine vibration analysis, the bolt model which fastens an engine head and an engine block had been developed. In the conventional method of engine vibration analysis, the bolt was modeled with a rigid bar. However, it is seen that the power plant rigidity becomes higher in proportion to the rigid bar bolt length. So, to precisely predict the vibration property of engine parts, the elastic deformation of the bolt was considered in this paper. It is known that the parameters, which are Young's modulus, the length of bolts, the distance between bolts, the area of contact plane, the tightening torque and so on, have a great influence on the performance of the engine vibration model. This paper describes a study of FE bolt model to correlate eigenvalue and mode shapes with the test result. The effects of following parameters were investigated: 1) Bolt model with elastic material 2) Rigidity of bolted-connection in tightening plane.
Technical Paper

Prediction of Engine Mount Vibration using Multi Body Simulation with Finite Element Models

2005-10-12
2005-32-0006
This paper discusses the prediction method of engine mount vibration using multi body simulation (MBS) with FE models in power plant assembly. In this analysis, some parts of the power plant were modeled with shell type elements and solid type elements, and modal parameters from FEA were imported into MBS, which method is called “Component Mode Synthesis”. For this analysis, the computational models of Suzuki 660cc in-line 3-cylinder engine with 4-speed automatic transmission were used. The flexibility of some engine parts was considered using FE models regarding the cylinder block, the crankshaft, the transmission case, etc. Also the properties of stiffness and viscous damping of the engine mount bushings were considered and the properties of the hydrodynamic oil film at the journal bearings were modeled with “Enhanced Short Bearing Model”. Accelerations at each engine mount were calculated.
Technical Paper

Estimating of Motorcycle Frame Strength by Virtual Durability Test

2009-11-03
2009-32-0143
The computational method and the CAE technique have been developed to evaluate durability performance of a motorcycle body. The computational method in this study consists of three parts of simulation. The first is the mode analysis of the body parts. The second is the multi body dynamics simulation, which calculates forces loaded into the frame of a motorcycle body equivalent to actual durability tests. The third is the static structure analysis, which calculates stress distribution using the forces calculated by the multi body dynamics simulation as boundary conditions. Also, two kinds of durability tests, that are the chassis durability test and the falling durability test, are simulated in this study.
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