Pelatihan Perancangan dan Pengaplikasian Alat INTENSOR
DOI:
https://doi.org/10.55123/abdikan.v2i1.1658Keywords:
Induction Heater, Intensor, Metal ProcessingAbstract
Technological developments have a role in the competition for metal processing in the home industry, namely the development of metal heating devices. However, the home industry needs to consider environmentally friendly metal heaters. One of the environmentally friendly metal heaters is an induction heater. Induction heater has a metal heating technique by utilizing electromagnetic induction which is more efficient than using a conventional metal heating furnace. Induction heaters have advantages in terms of easier use, efficient in terms of energy, time and temperature regulation. Induction heating is a metal heating technique by utilizing electromagnetic induction from high frequency AC waves, which is more efficient than using conventional metal heating furnaces. This problem is the basis for holding training on the design and application of the INTENSOR tool. This community service activity has had quite a good impact in: 1) increasing the knowledge and skills of metal processing business actors in designing INTENSOR tools; 2) increase the knowledge of metal processing business actors in making and applying INTENSOR tools. Community service activities are carried out for 6 months and are intended for metal processing business actors.
Downloads
References
Anggara, S., Herawati, A., Priyadi, I., & Anggraini, I. N. (2020). Analisis Perubahan Besaran Listrik Pada Pemanas Induksi Menggunakan Inverter Setengah Jembatan. Jurnal Amplifier : Jurnal Ilmiah Bidang Teknik Elektro Dan Komputer, 10(1), 1–8. https://doi.org/10.33369/jamplifier.v10i1.15167
Aswardi, Candra, O., & Saputra, Z. (2019). Sistem Pemanas Logam dengan Induction Heater berbasis Atmega32. Seminar FORTEI 2019, 5(1), 151–157.
Bangsa, I. A., Rahmadewi, R., & Wijaya, A. (2019). Rancang Bangun Pemanas Induksi Low Power Berbasis Mikrokontroler. Jurnal Ilmiah Teknologi Harapan (JITEKH), 7(2), 8–11.
Budiarto, A. W., & Gozali, M. S. (2019). Rancang Bangun Pemanas Induksi dengan Metode Multiturn Helical Coil. Journal of Applied Electrical Engineering, 3(1), 1–4. https://doi.org/10.30871/jaee.v3i1.1392
Hakiki, M. F., & Riandadari, D. (2018). Rancang Bangun Sistem Induction Heater berbasis Mikrokontroller Atmega 328. Jurnal Rekayasa Mesin, 4(3), 83–89.
Kurniati, S., Syam, S., & Bantoruan, F. L. (2021). Sistem Pemanas Induksi dengan Menggunakan Solenoid Coil dan Mikrokontroler. Jurnal Media Elektro, X(1), 44–52. https://doi.org/10.35508/jme.v0i0.3902
Kurniawan, I., Girawan, B. A., Muasih, I., & Susanto, Y. (2020). Rancang Bangun Alat Pemanas Induksi Proses Perlakuan Panas. Accurate: Journal of Mechanical Engineering and Science, 1(1), 21–30. https://doi.org/10.35970/accurate.v1i1.162
Sutarya, D., & Sartono, A. (2018). Perancangan Koil Pemanas Untuk Tungku Induksi Menggunkan Konduktor Tembaga. Majalah Ilmiah Pengelolaan Instalasi Nuklir (PIN), 11(21), 10.
Syafruddin, H. S., Harahap, R., Ali, H. R., & Jhon, M. P. (2022). Rancang Bangun Pemanas Induksi dengan Menggunakan NE555 sebagai Pembangkit Frekuensi. Buletin Utama Teknik, 17(3), 310–313.
Zamroni, M. (2017). Perkembangan Teknologi Komunikasi Dan Dampaknya Terhadap Kehidupan. Jurnal Dakwah, X(2), 195–211.
Kaufman, J. C., & Sternberg, R. J. (Eds.). (2010). The Cambridge handbook of creativity. Cambridge University Press.
Holis, A. (2017). Belajar Melalui Bermain Untuk Pengembangan Kreativitas dan Kognitif Anak.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2023 M. Dewi Manikta Puspitasari, Miftakhul Maulidina, Agus Suwardono, Elsanda Merita Indrawati, Kartika Rahayu Tri P. S

This work is licensed under a Creative Commons Attribution 4.0 International License.