Pengaruh Variasi Beban terhadap Faktor Kekuatan Rangka Sepeda dari Bahan AISI 1035 Steel (SS) dengan Simulasi Solidworks
DOI:
https://doi.org/10.28926/briliant.v9i1.1822Keywords:
AISI 1035 Steel, Bicycle Frame, SolidWorks SimulationAbstract
This research aims to investigate the impact of load variations in the range of 140 Kgf to 240 Kgf on the strength factor of bicycle frames made of metal material, namely AISI 1035 Steel (SS), through Solidworks simulations. The parameters used in the simulation evaluation are the load or force that occurs, stress or von Mises, displacement and factor of safety. The main focus of the research is to evaluate the structural response of the bicycle frame to these load variations and identify the most optimal loading, taking into account a safety factor of 2.5 applied to the design. The Solidworks simulation method is used to analyze the maximum stress that occurs (114.3 N/mm2) and maximum displacement (0.245 mm) in the bicycle frame. This simulation includes the application of gradual loads to a bicycle frame model, and stress and displacement calculations are carried out in detail. The results show that the most ideal loading occurs below 220 Kgf, indicating optimal structural stability and safety. The conclusions from these findings provide deep insight into the performance of bicycle frames in the face of certain load variations. Potential implications include the development of more efficient and safer bicycle frame designs, contributing to increased safety and comfort for bicycle users.
References
Albana, M. H., Praja, F., & Irawan, B. H. (2015). Simulasi Tegangan pada Rangka Sepeda Motor. Batam, 7(2).
Desnica, E., ÄurÄ‘ev, M., VaÅ¡Äić, B., Turmanidze, R., & DaÅ¡ić, P. (2022). DETERMINATION OF A SAFETY FACTOR OF A CAR WHEEL RIM USING FINITE ELEMENT ANALYSIS IN SOLIDWORKS. Applied Engineering Letters, 7(4). doi: 10.18485/aeletters.2022.7.4.4
Diinil Mustaqiem, A. (2020). ANALISIS PERBANDINGAN FAKTOR KEAMANAN RANGKA SCOOTER MENGGUNAKAN PERANGKAT LUNAK SOLIDWORK 2015. Jurnal Teknik Mesin, 9(3), 164. doi: 10.22441/jtm.v9i3.9567
Firdaus, K., Dantes, K. R., & Nugraha, I. N. P. (2020). Analisis Perbandingan Tegangan Statik Material Galvanized Steel Dengan Material Aluminium Alloys 7076-T6 (Sn) Pada Frame Ganesha Scooter Underwater (GSU) Menggunakan Software Solidworks. Jurnal Pendidikan Teknik Mesin Undiksha, 8(1). doi: 10.23887/jptm.v8i1.27302
Hesthi, A., Ningtyas, P., Pahlawan, I. A., & Putra, R. P. (2022). Pemilihan Material Yang Aman Untuk Frame Sepeda Listrik. Jurnal Sains, Teknologi Dan Industri, 20(1), 314–318.
Ismail, R., Munadi, M., Ahmad, Z. K., & Bayuseno, A. P. (2019). Analisis Displacement dan Tegangan von Mises Terhadap Chassis Mobil Listrik Gentayu. ROTASI, 20(4). doi: 10.14710/rotasi.20.4.231-236
Jamaludin. (2019). Perencanaan Pembebanan Statis Rangka Sepeda Listrik Menggunakan Software Solid Work 2016. Journal of Chemical Information and Modeling, 53(9).
Lin, C.-C., Huang, S.-J., & Liu, C.-C. (2017). Structural analysis and optimization of bicycle frame designs. Advances in Mechanical Engineering, 9(12), 168781401773951. doi: 10.1177/1687814017739513
Mardika, A. B., Febritasari, R., & Widi, I. K. A. (2022). Analisa Pengaruh Kekuatan Material pada Rangka Sepeda Listrik dengan Profil Rectangular Tube terhadap Material Aluminium 6061 dan Baja Aisi 1020 menggunakan Software Ansys Workbench. JURNAL MESIN MATERIAL MANUFAKTUR DAN ENERGI (JMMME), xx(x). Retrieved from https://eprints.itn.ac.id/8863/9/jurnal%20JMMME%20ajiman.pdf
Prabowo, D., Satria Jati, U., Ulikaryani, U., & Hardini, P. (2023). Simulasi Tegangan (Stress) Pada Komponen Rangka Mesin Uji Tarik Sealent Menggunakan Solidworks. Infotekmesin, 14(2). doi: 10.35970/infotekmesin.v14i2.1947
Sapto, A. D., & Mulyana, I. S. (2021). Perancangan Desain Rangka Dan Analisis Pembebanan Statik Sepeda Listrik Roda 3. Irvansepty.Staff.Gunadarma.Ac.Id, 1.




