Konvergensi Teknologi Mesin Las Listrik Low Temperature Sensor Sebagai Optimalisasi Dan Percepatan Waktu Produksi UMKM Las Kubah Trenggalek
Abstract
Kata Kunci—mesin las listrik, low temperature sensor, produktivitas, pelatihan, teknologi pengelasan
Abstract
This community service activity was conducted at UMKM Las Kubah Putra Mandiri, located in Sugihan Village, with the aim of improving welding efficiency and quality through the implementation of a Low Temperature Sensor Electric Welding Machine. The community service methods included three main stages: machine fabrication, training and mentoring on machine use and maintenance, and a technology socialization session on welding innovations. The activity involved 20 people and UMKM employees and took place from Juny to August 2024. The training was conducted intensively to ensure employees understood the machine's operation and maintenance. Additionally, a socialization session was held to broaden the workers' understanding of modern technology applications in improving productivity. The results showed a significant improvement in welding efficiency and product quality. The evaluation, which included observations and interviews, revealed that the machine helped increase the UMKM’s productivity while reducing production errors. By adopting this technology, the UMKM has gained a stronger competitive edge in the market.
Keywords—electric welding machine, low-temperature sensor, productivity, training, welding technology
Full Text:
PDFReferences
hirawa, W. T., Studi, P., Industri, T., & Suryadarma, U. (2013). Proses Pengelasan Menggunakan Electric Welding Machine. Jurnal TeknikIndustri, 4(1), 72–83. https://doi.org/10.35968/jtin.v4i1.830
Eryantono, A. E., Fauzi, M. N., & Fathurrohman, M. (2020). Sistem Monitoring Temperatur Tuang Logam dan Penggunaan Energi Berbasis IoT di MIDC. Jurnal Nasional Teknik Elektro Dan Teknologi Informasi, 9(2), 123–131. https://doi.org/10.22146/jnteti.v9i2.106
Huda, R. B. M., & Kurniawan, D. W. (2022). Analisa Sistem Pengendalian Temperatur Menggunakan Sensor Ds18B20 Berbasis Mikrokontroler Arduino. Rekayasa Mesin, 7(02), 18–23.
Kah, P., Shrestha, M., Hiltunen, E., & Martikainen, J. (2015). Robotic arc welding sensors and programming in industrial applications. International Journal of Mechanical and Materials Engineering, 10(1). https://doi.org/10.1186/s40712-015-0042-y
Pattiasina, ST., MT, N. H. (2018). Pelatihan Proses Pengelasan Menggunakan Mesin Las Listrik dalam Upaya Peningkatan Ketrampilan Pekerja di Desa Rumahtiga. Jurnal Simetrik, 8(1), 77–83. https://doi.org/10.31959/js.v8i1.90
Siswanto, R. (2018). Teknologi Pengelasan. Teknik Mesin Univeristas Lambung Mangkurat, 1–20.
Utomo, W. (2011). Universitas diponegoro perbaikan dan rancang bangun instalasi mesin las listrik tugas akhir. November.
Yuliyanto, A., Dian Eka, F., & Supratno, S. (2023). Pelatihan Penggunaan Mesin Las Listrik Di Desa Karangpatri. An-Nizam, 2(2), 141–145. https://doi.org/10.33558/an-nizam.v2i2.6896
Zhu, J., Wang, H., Zhang, F., & Ding, Q. (2022). High-Performance SAW Low Temperature Sensors with Double Electrode Transducers Based on 128° YX LiNbO3. Micromachines, 13(11). https://doi.org/10.3390/mi13111912
Zulhajji, Z. (2020). Konsep Dasar Penggunaan Las Listrik Pada Besi Cor. Prosiding Seminar Nasional Fakultas Teknik UNM. http://ocs.unm.ac.id/ft/semnasft2019/paper/view/102
Refbacks
- There are currently no refbacks.