Perencanaan Awal Mesin Cuci Mobil Semi Otomatis Menggunakan Autodesk Inventor

Authors

  • Samhuddin Jurusan Teknik Mesin, Universitas Halu Oleo
  • La Ode Ahmad Barata Jurusan Teknik Mesin, Universitas Halu Oleo
  • Jaka Seru Dwi Saputra Jurusan Teknik Mesin, Universitas Halu Oleo

DOI:

https://doi.org/10.55679/pistonjt.v9i2.78

Keywords:

Frame deflection, Stress, Strain, Arduino, Design

Abstract

A car wash is a facility used to clean the outside and inside of a car, which can be done manually and automatically. The use of an automatic system allows car washing to be faster than a manual washing system that still relies on human labor. The car washing machine pre-design article provides an overview of automatic car washing pre-design. This planning uses the Autodesk inventor application with 6061 aluminum material with a design size of 80 mm × 80 mm × 5 mm. In this plan, the planned water requirement is 300L/car, where the nozzle radius r1 = 25 mm, r2 = 10 mm, and nozzle pressure of 24,410 Pa with 24 nozzles. Electric power is used at 1310 watts where the pump pressure is 34,872 Pa. All frame loads and other supporting components were analyzed using Autodesk InventorTM software. The maximum stress and strain, deflection and safety factor of the frame were also analyzed. This article presents the design of the controller system using Arduino. The general design of the water circulation system is also shown in the design proposal of this machine.

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References

M. Emer, A. Manna, and Y. Saleh, “Automatic Car Washing Machine,” 2019.

M. Zhang, “Design of Automatic Car Washing Machine System based on Image Processing,” Acad. J. Eng. Technol. Sci., vol. 2, no. 4, pp. 30–35, 2019, doi: 10.25236/AJETS.2019.020405.

L. B. Pratama, S. Sumaryo, and Estananto, “PERANCANGAN PROTOTYPE PENGERINGAN PADA SISTEM PENCUCI MOBIL OTOMATIS ( DRYING PROTOTYPE DESIGN IN AUTOMATIC CAR WASHING SYSTEMS ),” 2019, pp. 10091–10096.

M. Aswan, I. P. S. Negara, and I. G. O. Pujihadi, “Analisis Tegangan Pada Design Frame Mini Crane Portable Menggunakan Software Autodesk Inventor,” Semin. Nas. Terap. Ris. Inov. Ke-XX, vol. 7, no. 1, pp. 9–16, 2021.

N. Endriatno, La Ode Ahmad Barata, and Salimin, “Analisis Kekuatan Rangka Mesin Pencacah Nilam dengan Menggunakan Metode Elemen Hingga,” Pist. J. Teknol., vol. 9, no. 2, pp. 56–64, Dec. 2024, doi: 10.55679/pistonjt.v9i2.74.

Sularso., Dasar Perencanaan Dan Pemilihan Elemen Mesin. Jakarta: PT. Pradnya Paramita, 2002.

S. Timoshenko, Strength of Materials. Van Nostrand, 1955.

A. E. Prasetiyanto and C. P. Hadisusila, “Aplikasi Arduino dalam Teknik I/O untuk Mengintegrasikan dan Mengendalikan Perangkat Elektronik,” Nusant. Eng., vol. 6, no. 2, pp. 96–102, 2023, doi: 10.29407/noe.v6i2.21308.

Published

2025-01-05

How to Cite

[1]
Samhuddin, L. O. A. Barata, and J. S. D. Saputra, “Perencanaan Awal Mesin Cuci Mobil Semi Otomatis Menggunakan Autodesk Inventor”, Piston-JT, vol. 9, no. 2, pp. 80–85, Jan. 2025.