STATIC STRESS AND DEFORMATION ANALYSIS OF GANESHA PORTABLE ELECTRIC SCOOTER (E-GASPOL) FRAME USING SOLIDWORKS SOFTWARE

Komang Purnayasa(1), I Gede Wiratmaja(2), Nyoman Arya Wigraha(3),


(1) Universitas Pendidikan Ganesha
(2) Universitas Pendidikan Ganesha
(3) Universitas Pendidikan Ganesha

Abstract

This study aims to determine and minimise static stress and increase the safety factor on the Electric Ganesha Scooter Portable (E-GASPOL) vehicle frame. The type of development research used is the R2D2 type (Reflective,  Recursive, Design and Development). The data analysis technique used is the finite element method, this method can solve static problems. From the data of the static stress analysis results on the four designs, the results of the modified vehicle frame design 3 have the best value, namely obtaining a maximum stress value of 1,255 x N/m conditions without rider load, this result has a decrease of 58.55% from the standard design and with a rider load of 7,699x N/m, this result has a decrease of 58.56% from the standard design. The maximum displacement value was 1,453 x mm in the condition without rider load, this result decreased by 77.718% from the standard design and with rider load it was 8,791 x mm, this result decreased by 78.10% from the standard design. In this study, the smaller the stress and displacement values, the better the frame strength, so it can be concluded that the modified frame is better and stronger than the standard frame.

Keywords

STATIC STRESS, DEFORMATION, SOLIDWORKS

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References

J. Cao, X. Chen, R. Qiu, and S. Hou, “Electricvehicle industry sustainable development with a stakeholder engagement system,”Technol. Soc., vol. 67, p. 101771, 2021, doi: 10.1016/j.techsoc.2021.101771.

F. Millo, L. Rolando, L. Tresca, and L. Pulvirenti, “Development of a neural network-based energy management system for a plug-in hybrid electric vehicle,” Transp. Eng., vol. 11, no. November 2022, p. 100156, 2023, doi: 10.1016/j.treng.2022.100156.

L. M. Gómez-López, V. Miguel, A. Martínez, J. Coello, and A. Calatayud, “Simulation and modeling of single point incremental forming processes within a solidworks environment,” Procedia Eng., vol. 63, no. 2005, pp. 632–641, 2013, doi:10.1016/j.proeng.2013.08.253.

V. Nieminen, A. Tuohineva, and M. Autio,“Wheel load reconstruction using straingauge measurements on the bogie frame for strain prediction and fatigue assessment,” Int. J. Fatigue, vol. 170, no. November 2022,p. 107533, 2023, doi: 10.1016/j.ijfatigue.2023.107533.

K. Budarma, K. R. Dantes, and G. Widayana,“Analisis Komparatif Tegangan Statik Pada Frame Ganesha Electric Vehicles 1.0 Generasi 1 Berbasis Continous Variable Transmission (Cvt) Berbantuan Software Ansys 14.5,” J. Pendidik. Tek. Mesin Undiksha, vol. 4, no. 1, 2020, doi: 10.23887/jjtm.v4i1.8043.

M. Taufiq, “ANALISIS KEKUATAN RANGKA MESIN HAMMER MILL LIMBAH KACA MENGGUNAKAN SOLIDWORKS 2021,” 2021.

C. C. Hong, C. L. Chang, and C. Y. Lin, “Static structural analysis of great five-axis turning–milling complex CNC machine,”Eng. Sci. Technol. an Int. J., vol. 19, no. 4, pp.1971–1984, 2016, doi:10.1016/j.jestch.2016.07.013.

C. Hennebold, K. Klöpfer, P. Lettenbauer, and M. Huber, “Machine Learning based Cost Prediction for Product Development in Mechanical Engineering,” Procedia CIRP, vol. 107, no. March, pp. 264–269, 2022, doi:10.1016/j.procir.2022.04.043.

A. Kešner, R. Choteborský, M. Linda, M. Hromasová, E. Katinas, and H. Sutanto, “Stress distribution on a soil tillage machine frame segment with a chisel shank simulated using discrete element and finite element methods and validate by experiment,” Biosyst. Eng., vol. 209, pp.125–138, 2021, doi:10.1016/j.biosystemseng.2021.06.012.

M. F. Dzulfiqar, A. R. Prabowo, R. Ridwan, and H. Nubli, “Assessment on the designed structural frame of the automatic thickness checking machine - Numerical validation in FE method,” Procedia Struct. Integr., vol. 33, no. C, pp. 59–66, 2021, doi:10.1016/j.prostr.2021.10.009.

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