Analisis Knuckle Arm Mobil Listrik Anobrain AR-1 Dengan Menggunakan Metode Finite Element

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Hafidz El Fariz
Kardiman
Boni Sena

Abstract

The aim of this research is to analyze the mechanical strength of knuckles, made from aluminum 6061 and alloy steel, using static analysis at maximum load. This maximum load is obtained from calculating the tire reaction load. Finally, this research uses the finite element method which produces results in Solidwork software to produce static analysis of the knuckle model. From the results of the simulation and analysis of the components, the level of displacement, stresses and safety factors will be known. The main reference for the results of this analysis is the safety factor. This research is used as a reference for the electric car team. The knuckle arm is very important so it must be paid attention to because damage to the knuckle arm affects the stability of the vehicle.

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How to Cite
[1]
H. . El Fariz, Kardiman, and B. . Sena, “Analisis Knuckle Arm Mobil Listrik Anobrain AR-1 Dengan Menggunakan Metode Finite Element”, JSE, vol. 9, no. 1, pp. 7908 –, Dec. 2023.
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References

Jaya, Gede Serana, and Kadek Rihendra Dantes. "Analisa Pembebanan Statik Pada Rancangan Steering Knuckle Mobil Listrik Ganesha Sakti (Gaski)." Jurnal Pendidikan Teknik Mesin Undiksha 6.2 (2018): 88-96.

Karri, Sushant, et al. "CAE Analysis On Weight Optimization In Steering Knuckle Using Aluminium Alloy." Turkish Journal of Computer and Mathematics Education (TURCOMAT) 12.14 (2021): 771-778.

C. P and K. R, “Weight Optimization of Hub and Knuckle Using Topology Optimization,” Int. J. Mech. Eng., vol. 7, no. 6, pp. 20–23, 2020, doi: 10.14445/23488360/ijme-v7i6p103.

Yadav, Sanjay, et al. "Design and analysis of steering knuckle component." Int. J. Eng. Res. (2016): 4.

Tagade, Poonam P., Anil R. Sahu, and H. C. Kutarmare. "Optimization and finite element analysis of steering knuckle." Int. J. Comput. Appl 975 (2015): 8887.

V. Dhinakaran, A. R. Kumar, R. Ramgopal, S. Kannan, B. Stalin, and T. Jagadeesha, “Topology Optimization of Steering Knuckle,” Lect. Notes Mech. Eng., vol. 23, pp. 197–206, 2021.

A. Andira and D. Haryanto, “Analisis Penerapan Konsep Lean Manufacturing pada Penurunan Defect Knuckle Arm Steering dengan Metode PDCA di PT.PQR,” JIE Sci. J. Res. Appl. Ind. Syst., vol. 4, no. 1, p. 33, 2019.

Kashyap, S., and W. R. DeVries. "Finite element analysis and optimization in fixture design." Structural optimization 18 (1999): 193-201.

K. R. Kashyzadeh, K. Souri, A. G. Bayat, R. S. Jabalbarez, and M. Ahmad, “Fatigue Life Analysis of Automotive Cast Iron Knuckle under Constant and Variable Amplitude Loading Conditions,” Appl. Mech., vol. 3, no. 2, pp. 517–532, 2022.

Anderson, Kevin, John Weritz, and J. Gilbert Kaufman. "ASM Handbook, Volume 2A: Aluminum Science and Technology." ASM International (2018).

I. Tsamroh, A. Suprapto, and P. Eka Setyawan, “Optimasi Parameter Anodizing pada Aluminium 6061 dengan Metode Taguchi,” Semin. Nas. Teknol. Fak. Tek. Unmer Malang, pp. 113–116, 2020.

Wicaksena, Novfian Rekzy, and S. T. Agus Yulianto. Karakterisasi Material Besi Cor Kelabu Akibat Pengaruh Fesi 4%+ Femn 4% Pada Proses Casting Dengan Cetakan Logam Dan Pasir. Diss. Universitas Muhammadiyah Surakarta, 2021.

A. Restu Pahlawan, R. Hanifi, and A. Santosa, “Analisis Perancangan Frame Gokart dari Pengaruh Pembebanan dengan Menggunakan CAD Solidworks 2016,” J. METTEK, vol. 7, no. 1, p. 1, 2021.

Asep Muhamad Nurpalah, D. Rachmad Hartono, and D. Sugiharto, “Rancang Bangun Konstruksi Atap Yang Dapat Dibuka Tutup Secara Otomatis,” Institusional Repos. Sci. Journals, pp. 16–17, 2017.

S. Mubarok, “Pengaruh Variasi Material Dan Beban Keamanan Pada Desain Pencakar Inner Puller Bearing Berbasis Simulasi Menggunakan solidwork,” Unnes, pp. 22–66, 2019.