CRANK-PISTON MODEL OF INTERNAL COMBUSTION ENGINE USING CAD/CAM/CAE IN THE MSC ADAMS

Author:

BIAŁY Michał,SZLACHETKA Marcin

Abstract

The article presents the modeling and simulation of the crank-piston model of internal combustion engine. The object of the research was the engine of the vehicle from the B segment. The individual elements of  the  gasoline engine were digitizing using the process of reverse engineering. After converting the geometry, assembling was imported to  MSC Adams software. The crank-piston system was specified by boundary conditions of piston forces applied on the pistons crowns. This force was obtain from the cylinder pressure recorded during the tests, that were carried out on a chassis dynamometer. The simulation studies allowed t  determine the load distribution in a dynamic state for the selected kinematic pairs.

Publisher

Politechnika Lubelska

Subject

Artificial Intelligence,Industrial and Manufacturing Engineering,Computer Science Applications,Economics, Econometrics and Finance (miscellaneous),Mechanical Engineering,Biomedical Engineering,Information Systems,Control and Systems Engineering

Reference19 articles.

1. Apanowicz, J. (2002). Metodologia Ogólna. Gdynia: Wydawnictwo Diecezji IV pińskiej „BERNARDINIUM”.

2. Balyakin, V., & Kosenok, B. (2015). Study of the Dynamic Characteristics of a Two-Cylinder Internal Combustion Engine Using Vector Model. Procedia Engineering, 106, 183–191. https://doi.org/10.1016/j.proeng.2015.06.023

3. Basic ADAMS Full Simulation Training Guide (2001). Version 11.0 part number 110viewtr-03. Mechanical Dynamics, Incorporated Biały, M., Wendeker, M., Szlachetka, M., & Magryta, P. (2013). Knocking combustion influence on the load of the piston-crank system using MSC ADAMS software. Combustion Engines, 52(3), 421–427.

4. Bukovan, J., Jakubovicova, L., Sapieta, M., & Sapietova, A. (2017). Analysis and implementation of input load effects on an air compressor piston in MSC.ADAMS. Procedia Engineering, 177, 554-561. https://doi.org/10.1016/j.proeng.2017.02.260

5. Chang, K.-H., (2014). Assembly Modeling. Chapter 4. In Product Design Modeling Using CAD/CAE (pp. 169–232). Boston: Academic Press. https://doi.org/10.1016/B978-0-12-398513-2.00004-X

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