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Oven Pintar Berbasis Kontrol Elektonik Modul untuk Pengeringan Bahan Praktek di Laboratorium Pengecatan

Jurusan Teknik Mesin Fakultas Teknik, Universitas Negeri Surabaya, JL Kampus Ketintang Surabaya, Indonesia

Open Access Copyright 2023 Jurnal Pengelolaan Laboratorium Pendidikan

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Abstract

Extreme climate change makes the situation and environmental conditions uncertain, causing the painting practice lecture process to be less than optimal. Weather that tends to be cloudy has the potential to damage the paint from student practicum results. Referring to these problems, in this research an LPG-assisted automatic paint dryer was made as the solution offered. The purpose of this research is to make an oven to support the acceleration of drying of student paint. This research is a design type, which is carried out to support effective and efficient learning in accordance with the planned learning series. The instruments used in this study were: (1) paint drying oven machine assessment sheet; and (2) the target audience's response questionnaire. Indicators of research success are based on process and results. This smart oven based on electronic control module is very suitable to be used as a tool in improving the quality of painting results, especially in automotive painting. Making a smart oven based on electronic control of this module does not require too much money and is very easy to understand in operating the system because of the simplicity of how the oven machine system works. Questionnaire responses of students who have used smart ovens show results that agree and strongly agree with the existence of this smart oven. 

 

 

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Keywords: Painting practicum, learning, smart oven based on electronic control

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  1. Arif, Y. C., Eviningsih, R.P., & Widyanto, A. V. (2023). Pengaturan Suhu Ruangan Oven Pengering Cat Panel Box menggunakan Logika Kontrol Fuzzy. Jurnal Teknik Energi Elektrik. Vol II. 2
  2. Farhan, M. (2021, June 8). Ini Kelebihan Cat Oven di Bodi Motor Dibandingkan Dijemur Langsung. Retrieved from www.gridoto.com
  3. Hermianto, K. B., & Utama, F. Y. (2018). Pengaruh Drying Process Terhadap Finishing Top Coat Pada Pengecatan Komponen Bodi Kendaraan Bermotor. Jurnal Pendidikan Teknik Mesin, 7(1)
  4. Iqbal, M., & Susetyo, F. B. (2022). Pengaruh Variasi Temperatur Pengeringan Terhadap Daya Kilap Cat Pada Komponen Kendaraan Bermotor. METALIK: Jurnal Manufaktur, Energi, Material Teknik, 1(1), 16-21
  5. Leu, B. (2021). Dampak Pemanasan Global Dan Upaya Pengen-Daliannya Melalui Pendidikan Lingkungan Hidup Dan Pendidikan Islam. At-Tadbir: Journal of Islamic Education Management, 1(2), 1–15
  6. Nugroho, S., Febriamansyah, R., Ekaputra, E. G., & Gunawan, D. (2019). Analisis Iklim Ekstrim untuk Deteksi Perubahan Iklim di Sumatera Barat. Jurnal Ilmu Lingkungan, 17(1), 7–14. https://doi.org/10.14710/jil.17.1.7-14
  7. Pratama, R., & Parinduri, L. (2019). Penaggulangan Pemanasan Global. Buletin Utama Teknik, 3814, 91–95
  8. Rifai, S., & Suwahyo, S. (2021). Pengaruh Variasi Jenis Cat Primer dan Temperatur Terhadap Laju Korosi pada Pengecatan Menggunakan Oven. Automotive Science and Education Journal, 10(1), 11-17
  9. Rozie, F. (2020). Sekolah Rusak Berat Akibat Hujan, Siswa SDN Cirimekar 02 Cibinong Belajar di Tenda Darurat. Liputan 6. https://www.liputan6.com/news/read/4148888/sekolah-rusak-berat-akibat-hujan-siswa-sdn-cirimekar-02-cibinong-belajar-di-tenda-darurat
  10. Setianita, O. T., Liliawati, W., & Muslim. (2019). Identifikasi miskonsepsi siswa SMA pada materi pemanasan global menggunakan four – tier diagnostic test dengan analisis confidence discrimination quotient ( CDQ ). Prosiding Seminar Nasional Fisika 5.0, 1, 186–192
  11. Suhardi, B., Saputra, H., & Haswan, L. (2018). Pengaruh Madden Julian Oscillation Terhadap Kejadian Curah Hujan Ekstrem Di Provinsi Jawa Barat (Studi Kasus Di Kabupaten Sukabumi). Jurnal Geografi,Edukasi Dan Lingkungan (JGEL), 2(2), 65–77
  12. Surmaini, E., & Runtunuwu, E. (2015). Upaya sektor Pertanian dalam Menghadapi Perubahan Iklim. Upaya Sektor Pertanian Dalam Menghadapi Perubahan Iklim, 30(1), 1–7. https://doi.org/10.21082/jp3.v30n1.2011.p1-7
  13. Sya’roni, I., Hartanto, A., Rahman, N. R., & Subiantoro, I. (2022). MICROCONTROLLER BASE SPIN COATING DESIGN AND IoT DATA MONITORING AND STORAGE. Indonesian Physical Review, 6(1), 33–41. https://doi.org/10.29303/ipr.v6i1.194
  14. Zakki, A. F., & Said, S. D. (2018). Implementasi Penggunaan Ruang Oven untuk Kelompok Pengrajin Mebel Kecamatan Pedurungan Semarang. Jurnal Pengabdian Masyarakat Multidisiplin, 2(3), 224–229
  15. Zongxing, L., He, Y., Wang, P., Theakstone, W. H., An, W., Wang, X., Lu, A., Zhang, W., & Cao, W. (2012). Changes of daily climate extremes in southwestern China during 1961–2008. Global and Planetary Change, 80–81, 255–272. https://doi.org/10.1016/j.gloplacha.2011.06.008

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