MODIFIKASI MOTOR RODA TIGA RADIUS BELOK 2,5 METER

Authors

  • Erwanto Polmanbabel
  • Dedy R. Harahap Polmanbabel
  • Irfan Azzam Polmanbabel
  • Reilibra Indienov Valka Polmanbabel
  • Vieri Andrian

Keywords:

Three-wheeled motorcycle, disability, turning radius, steering system

Abstract

This three-wheeled motorcycle is a follow-up research from a previous project entitled "Simplification of Three-Wheeled Motorcycles to Help People with Fisk Disabilities and Stunting". The specially designed vehicles aim to help people with physical disabilities and stunting. From the development and trial of previous projects, there are several problems that need to be corrected, such as the difference between the right and left turning radius is too large, the shockbreaker function does not function properly in construction which results in one of the tires lifting when turning, and the manufacture of custom components that lack precision. Thus, in this study, improvements and improvements were made aimed at providing a minimum turning radius limit of 2.5 meters measured from the inner wheel track and reducing the difference in turning radius by replacing some custom components into standard components so that construction is more precise than before. From the test results, the right and left turning radius results were less than 2.5 meters. When turning measured from the inner wheel track to the center point of the linkaran, turning right gets a turning radius of 2.1m and turning left of 2.17m. And also the difference in turning radius is smaller than before between turning right and left because, the shock absorber function is already functioning properly which can make the driver's body help when maneuvering and when turning one of the tires is not lifted back from the track surface.

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References

Abang, B., Rizki, N.S. and Viki, V. (2021) ‘Rancang Bangun Sistem Kemudi Sepeda Motor Roda Tiga’.

Adin Vidiatama, A.M. and Lazuardi, M.G. (2022) ‘Modifikasi Kemudi Pada Mobil Listrik Pengguna Bangka Belitung’.

Agustin Prayoga, Aldi Anugrah, N. (2022) ‘Simplifikasi sepeda motor roda tiga untuk membantu para penderita cacat fisik dan stunting’.

Artika, K.D., Syahyuniar, R. and Priono, N. (2017) ‘Perancangan Sistem Kemudi Manual Pada Mobil Listrik’, Jurnal Elemen, 4(1), p. 01.

I Made Mara, Anak Agung Alit Triadi, A.S.R. (2023) ‘ANALISIS SUDUT BELOK DAN KECEPATAN TERHADAP RADIUS BELOK MOBIL LISTRIK ANALYSIS OF TURNING ANGLE AND SPEED OF ELECTRIC VEHICLE TURNING’, pp. 99–106.

Jauhary, A. (2017) ‘Perbaikan Desain Turning Radius Melalui Lengan Knuckle Sistem Kemudi Ackermann’, Program Studi Pendidikan Teknik Mesin Fakultas Teknik Universitas Negeri Jakarta, pp. 1–74.

Kristyanto, B. (2016) ‘Perancangan Sepeda Motor Roda Tiga Untuk Kaum Difabel Daksa’, Seminar Nasional Multi Disiplin Ilmu Unisbank, pp. 284–290.

Prayoga, B.D., Poernomo, H. and Bisono, F. (2018) ‘Perancangan dan analisis sistem pengereman hydraulic pada mobil minimalis roda tiga’, Conference on design and manufacture and its aplication, 1(2), pp. 94–104.

Ramadani, R., Poernomo, H. and Setiawan, T.A. (2018) ‘Perancangan Sistem Pengereman Pada Kendaraan Bermotor Roda Tiga Sebagai Alat Bantu Transportasi Bagi Penyandang Disabilitas’, Proceedings Conference on …, pp. 148–154.

Rinaldy, M.R., Poernomo, H. and Setiawan, A. (no date) ‘Desain Kendaraan Bermotor Roda Tiga Sebagai Alat Bantu Transportasi Bagi Penyandang Disabilitas’, pp. 55–59.

Setyono, B. et al. (no date) ‘UJI EKSPERIMENTAL KINERJA E-CAR EASY PARKING’, pp. 1–8.

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Published

20-07-2023

How to Cite

Erwanto, R. Harahap, D., Azzam, I., Indienov Valka, R., & Andrian, V. (2023). MODIFIKASI MOTOR RODA TIGA RADIUS BELOK 2,5 METER. Prosiding Seminar Nasional Inovasi Teknologi Terapan, 3(01), 319–329. Retrieved from https://snitt.polman-babel.ac.id/index.php/snitt/article/view/506