Performance Analysis and Platform Development of Passenger Car Chassis

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This thesis exploits chassis dynamic performance analysis platform of the passenger carmodule on the basis of based on the VC#.Net software. Its purpose is to significantly shorten thedevelopment cycle of other models located on the same platform in the process of change. It mainlyadopts the interactive form of menu and dialogue to build the platform. Through the way by usinginternal call Adams/Car module to build a similar Car model file and altering some design variables,the suspension and chassis models of required models can be built quickly. In accordance with thepre-designed suspension and vehicle stability analysis project as the model, it achieves rapidsimulation analysis and access to the analysis results in time. The accuracy of the platform wasproved by the K&C test of the developed model. It provides great reference significance for laterproduct development.

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116-120

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July 2019

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© 2019 Trans Tech Publications Ltd. All Rights Reserved

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[1] C. Du, G. Du, Y. Zhu, H. Li, Remote Monitoring Technology Research and Platform Development foe Electric Vehicle. Automotive Engineering, 37(09) (2015) 1071-1076+1083.

Google Scholar

[2] L. Zhang, X. L. Yang, W. D. Liu, K. Xu, Y. H. Wang, Matching Suspension System of MPV Based on SUV Platform. Automobile Technology, 03 (2017) 53-57.

Google Scholar

[3] H. Dou, C. Shi, L. Qin, G. Wu, Detector for Electric Vehicle Based on Android Platform, Automot. Eng. 39(2) (2017) 220-224.

Google Scholar

[4] P. Zhang, H. Wang, L. Chen, Optimization of a Certein Torsion Beam Suspension Based on Sensitivity Analysis. China Mech. Eng., 1(27) (2016) 46-51.

Google Scholar

[5] T. Ding, Y. Liu, Z. Zhang, W. Yu, T. Du, Flanging Process Synchronized Simulation for Automobile Panels Based on CATIA Platform. China Mech. Eng., 26 (01) (2015):120-124.

Google Scholar

[6] X. S. Fan, H. Shao, J. J. Xing, Test System Platform of New Energy Vehicle Powrtrain .Automobile Technology, 09 (2014) 39-43.

Google Scholar

[7] X. H. Zeng, Y. J. Peng, D. F. Song, G. Bai, Q. N. Wang, Multi-platform control strategy architecture for hybrid electric vechicles, J. Jilin University (Eng. Technol. Edition), 45(1) (2015) 7-15.

Google Scholar

[8] Z. Linxuan, X. Xianjie, C. Bing, N. Lebo, L. Jun, X. Tianyuan, Research on Automotive Product Design Oriented Virtual Reality Service Platform, J. Syst. Simul. 26(10) (2014) 2407-2411.

Google Scholar

[9] L. Jin, C. Song, Y. Peng, Theory for Optimization Design of Steer Wheel Alignment Based on Returnability and Handiness, Transac. Chinese Soc. Agricult. Machinery, 11(37) (2006) 20-23.

Google Scholar

[10] G. Qin, Y. Zhang, Development of Multidisciplinary Co-Simulation Platform for Five Axles' All-terrain Crane with Hydro-pneumatic Suspension and Electro-Hydraulic Steering System. Mech. Sci. and Tech. for Aerospace Eng., 30 (08) (2011) 1335-1342.

Google Scholar