DESIGN AND DEVELOPMENT OF A METAL FORGING PROTOTYPE USING A WHEEL-AXLE SYSTEM AND ELECTRIC MOTOR DRIVE

Authors

  • Sylvia Anjani Physics Education, Faculty of Teacher Training and Education, Riau University, Indonesia
  • Riza Andriani Physics Education, Faculty of Teacher Training and Education, Riau University, Indonesia
  • Teti Novrianti

Keywords:

Electric Motor, Forging, Mechanical System, Productivity, Wheel And Axle

Abstract

The increasing demand for metal products in industrial and agricultural sectors necessitates the development of efficient and accessible forging technologies, particularly for small-scale blacksmith industries. Traditional forging methods rely heavily on manual labor, resulting in low productivity, inconsistent output, and high physical strain on operators. This study aims to design and evaluate a prototype metal forging tool utilizing a wheel–axle mechanism integrated with an electric motor to enhance operational efficiency. The research adopts a Research and Development (R&D) approach using the ADDIE framework, encompassing design, fabrication, and experimental testing of the prototype. Performance evaluation was conducted by comparing the number of hammer strikes generated manually and by the prototype within identical time intervals. The results reveal a substantial improvement, with the prototype producing an average of 64.25 strikes per 10 seconds compared to 25.25 strikes using manual methods, corresponding to an efficiency increase of 154.46%. These findings demonstrate that the proposed system effectively improves productivity, reduces operator fatigue, and provides a cost-effective and practical solution for modernizing small- and medium-scale forging industries.

References

Afdillah, J. (2024). Etnografi Kehidupan Pengrajin Pandai Besi di Jorong Tangah Koto Nagari Sungai Pua. Jurnal Nomosleca, 10(1), 97–127. https://doi.org/10.26905/nomosleca.v10i1.12459

Dier, M. (2025). Analysis of Electric Field Distribution Patterns of Dipoles in Various Vacuum Mediums and Dielectric Materials. 3, 14–19

Fatullah, Y. (2022). Rancang Bangun Alat Mesin Tempa Pandai Besi Sistem Hammer Kapasitas 14 K. 2(2).

Fauza, N. (2025). The Influence of Dielectric Space on Materials Capacitance of Capacitor. 3, 33–38

Firbank, T. C. (1970). Mechanics of the belt drive. International Journal of Mechanical Sciences, 12(12), 1053–1063. https://doi.org/10.1016/0020-7403(70)90032-9

Goren, Y. (2008). The location of specialized copper production by the lost wax technique in the Chalcolithic southern Levant. Geoarchaeology, 23(3), 374–397. https://doi.org/10.1002/gea.20221

Guiggiani, M. (2018). Mechanics of the Wheel with Tire. In M. Guiggiani, The Science of Vehicle Dynamics (pp. 7–65). Springer International Publishing. https://doi.org/10.1007/978-3-319-73220-6_2

Gundlach, J. H., Schlamminger, S., Spitzer, C. D., Choi, K.-Y., Woodahl, B. A., Coy, J. J., & Fischbach, E. (2007). Laboratory Test of Newton’s Second Law for Small Accelerations. Physical Review Letters, 98(15), 150801. https://doi.org/10.1103/PhysRevLett.98.150801

Herry Setyawan. (2020). Modul Fisika Kelas XI, KD 3.1. Direktorat SMA, Direktorat Jenderal PAUD, DIKDAS dan DIKMEN.

Hessel, R., Canola, S. R., & Vollet, D. R. (2013). An experimental verification of Newton’s second law. Revista Brasileira de Ensino de Física, 35(2), 1–5. https://doi.org/10.1590/S1806-11172013000200024

Irasari, P., Widiyanto, P., Muqorobin, A., & Hikmawan, M. F. (2023). Feasibility analysis of the conversion of brushed to brushless direct current motor. International Journal of Electrical and Computer Engineering (IJECE), 13(1), 218. https://doi.org/10.11591/ijece.v13i1.pp218-228

Meidayanti, I. (2023). Memahami Jenis- Jenis Dari Pesawat Sederhana Serta Analisis Manfaatnya Bagi Banyak Orang. 1(2).

Niyanti, P. E., Setyaningrum, F. P., Rachman, G. W., & Wandita, F. (2022). Implementasi Pembelajaran Fisika Topik Usaha dan Energi Berdasarkan Publikasi Ilmiah. Mitra Pilar: Jurnal Pendidikan, Inovasi, Dan Terapan Teknologi, 1(2), 99–118. https://doi.org/10.58797/pilar.0102.05

Nur Rohmat, Y., Rachmatullah, Maulana Akbar, R., Badruzzaman, Van Gunawan, L., & Ardhian Nugroho, O. (2022). Perancangan Mesin Penggulung Dinamo Semi-Otomatis. Journal of Applied Mechanical Technology, 1(1), 36–45. https://doi.org/10.31884/jamet.v1i1.13

Pratiwi, W., Wahyu, N., Yani, I., Dwi, R., Putri, A., & Desri, D. E. (2025). Transformation Of Electronic Communication Systems Into Optical Communication Systems. 3, 1–6

Rumiati, R., Handayani, R. D., & Mahardika, I. K. (2021). Analisis Konsep Fisika Energi Mekanik Pada Permainan Tradisional Egrang Sebagai Bahan Pembelajaran Fisika. Jurnal Pendidikan Fisika, 9(2), 131. https://doi.org/10.24127/jpf.v9i2.3570

Safitri, R. D., Rayhani, F., & Widya, H. (2024). Konversi Energi Magnetik Ke Energi Mekanik Pada Alat Peraga Menggunakan Kawat Besi. 06.

Septiawan, A., Mukhnizar, M., & Zulkarnain, Z. (2023). Pembuatan Mesin Tempa Logam Dengan System Forging Hammer. Jurnal Teknik, Komputer, Agroteknologi Dan Sains, 2(1), 1–8. https://doi.org/10.56248/marostek.v2i1.41

Siahaan, M. Y. R., Siregar, R. A., Tanjung, F. A., & Saktiawan, A. (2023). Analisis Karakteristik Bahan Tembaga Akibat Pengaruh Proses Penempaan Terhadap Kekuatan Impak. Jurnal Rekayasa Material, Manufaktur dan Energi, 6(1). https://doi.org/10.30596/rmme.v6i1.13709

Sofian, H. O. (2021). Development of Technology Ferrous Metal Melting Furnace Ancient Times in Indonesia. KALPATARU, 30(2), 141–152. https://doi.org/10.24832/kpt.v30i2.863

Sutrisno, O. D., Amirudin, A., Rokhman, T., & -, A. (2020). Rancang Bangun Dan Unjuk Kerja Tungku Tempa Portabel Berbahan Bakar Lpg. Jurnal Ilmiah Teknik Mesin, 8(1), 25–31. https://doi.org/10.33558/jitm.v8i1.2000

Wangchuk, S., & Madan, A. (2021). Recent Advances in Various Types of Forging—A Research Review. International Journal of Science and Research (IJSR), 10(11), 980–982. https://doi.org/10.21275/SR211116185549

Downloads

Published

2026-03-30

How to Cite

Sylvia Anjani, Riza Andriani, & Teti Novrianti. (2026). DESIGN AND DEVELOPMENT OF A METAL FORGING PROTOTYPE USING A WHEEL-AXLE SYSTEM AND ELECTRIC MOTOR DRIVE . Journal of Frontier Research in Science and Engineering, 4(1), 31–37. Retrieved from https://journal.riau-edutech.com/index.php/jofrise/article/view/192

Similar Articles

<< < 1 2 3 > >> 

You may also start an advanced similarity search for this article.