Analisis Mesin Mixer IKA Overhead Stirrer RW 20 Kecepatan dan Konsumsi Daya Putar Blade 70, 100, dan 130 rpm pada Produksi Resin Skala Laboratorium Kapasitas 1 kg
DOI:
https://doi.org/10.55606/juprit.v5i3.6842Keywords:
Energy Efficiency, IKA Overhead Stirrer RW 20, Power Consumption, Resin, Rotational SpeedAbstract
This study aims to analyze the effect of variations in the rotational speed of the IKA Overhead Stirrer RW 20 on electrical power consumption during the laboratory-scale resin mixing process with a capacity of 1 kg. The rotational speed variations used in this study were 70 rpm, 100 rpm, and 130 rpm. The research employed a quantitative experimental method by operating the mixer at each rotational speed and measuring several parameters, including rotational speed, electric current, voltage, power factor, and power consumption during the mixing process. The results indicate that rotational speed has a direct effect on the electrical power consumption of the mixer. As the blade rotational speed increases, greater electrical energy is required to maintain the rotational speed during the resin mixing process. Selecting an appropriate operating speed can improve energy efficiency while maintaining the quality of the mixing process at the laboratory scale. This study is expected to serve as a reference for determining the operating parameters of mixing machines in laboratory-scale resin production and to support further research on energy consumption optimization in mixing processes.
Downloads
References
Adji, F. P., Ridhani, U., & Ikhsan, M. (2023). Rancang bangun mixer untuk adonan roti. Jurnal Tematis (Teknologi, Manufaktur, Dan Industri), 5(1), 8–16.
Alexander, C. K., & Sadiku, M. N. O. (2017). Fundamentals of electric circuits (6th ed.). McGraw-Hill Education.
Al-Qatatsheh, A., Capricho, J. C., Raiteri, P., Juodkazis, S., Salim, N., & Hameed, N. (2023). Crosslinking Rapidly Cured Epoxy Resin Thermosets: Experimental and Computational Modeling and Simulation Study. Polymers, 15(5). https://doi.org/10.3390/polym15051325
Amelia Hendratta, L., & Tangkudung, H. (2019). Buku Ajar Mekanika Fluida. In Unsrat Press.
Anaam, I. K., Hidayat, T., Pranata, R. Y., Abdillah, H., Yhuto, A., & Putra, W. (2022). Vocational Education National Seminar (VENS) Pengaruh trend otomasi dalam dunia manufaktur dan industri. 46–50.
Astuti, S. I., Lestari, P., Aprianingsih, T., Sumardani, T. Z., Cesear, G., & Sholiah, A. (2022). Pengaruh suhu terhadap kelarutan dan viskositas pada gula pasir. 11(1), 19–21. https://doi.org/10.20961/inkuiri.v11i1.52179
Bayu, H. P., Gatut, R., & Untung, S. (2020). Pengaruh Jumlah Sudu Pengaduk Terhadap Pola Pencampuran dan Konsumsi Daya Listrik pada Mixer Vertikal. Jurnal V-Mac, 5(1), 9–12.
Bérubé, M. A., Lamothe, S., Bilodeau, K., & Carter, A. (2023). Laboratory Study of the Effects of the Mixer Type and Mixing Time on the Volumetric Properties and Performance of a HMA with 30 Percent Reclaimed Asphalt Pavement. Journal Materials, 16(3). https://doi.org/10.3390/ma16031300
Bisgaard, J., Muldbak, M., Tajsoleiman, T., Rydal, T., Rasmussen, T., Huusom, J. K., & Gernaey, K. V. (2021). Characterization of mixing performance in bioreactors using flow-following sensor devices. Chemical Engineering Research and Design, 174, 471–485. https://doi.org/10.1016/j.cherd.2021.08.008
Br Depari, S. S., Hamdani, D., & Medriati, R. (2024). Pengembangan Alat Peraga Viskositas Menggunakan Sensor Mini Reed Switch Magnetic Berbasis Arduino Uno. Jurnal Penelitian Pembelajaran Fisika, 15(1), 18–30. https://doi.org/10.26877/jp2f.v15i1.17461
Cengel, C. dan. (2017). Fluid MechanicsFundamental. In Applied Mathematical Sciences (Switzerland) (Vol. 176).
Dwiaji, Y. C., Aji Saputra, L., & Setiawan, F. (2021). Perancangan reaktor kapasitas 12 m3 untuk epoxy resin dengan tekanan kerja 3,8 kg/cm2 dan temperatur kerja 150℃. Jurnal Teknik, Elektronik, Engine, 7(1), 64–78. https://doi.org/10.56521/teknika.v7i1.301
Edward L. Paul, Victor A. Atiemo-Obeng, S. M. K. (2005). Handbook of Industrial Mixing. IEEE Electrical Insulation Magazine, 21(1). https://www.stxip.org/books/9.pdf
Effendi, F., Triyanto, A., Pamulang, U., & Selatan, T. (2024). Penerapan Metode Rcm Pada Mesin Super Mixer Dalam Industri Farmasi Sebagai Preventif Kerusakan Bearing Motor Listrik. Jurnal Ilmiah Sain Dan Teknologi, 2(12), 539–558.
Fahrudin, A. (2022). Pengaruh Penggunaan Software Treker Terhadap Hasil Belajar Fisika Mahasiswa Pada Pokok Bahasan Viskositas Fluida. Jurnal Pendidikan Sains Dan Komputer, 2(01), 41–48. https://doi.org/10.47709/jpsk.v2i01.1357
Ge, M., & Zheng, G. (2024). Fluid–Solid Mixing Transfer Mechanism and Flow Patterns of the Double-Layered Impeller Stirring Tank by the CFD-DEM Method. Journal Energies, 17(7). https://doi.org/10.3390/en17071513
Hari Prajitno, D., & Rohman Sholeh dan Baktias Fitriani, D. (2023). Pengaruh Jumlah Blade Dan Angle Impeller Terhadap Pola Aliran Dan Homogenitas Pada Proses Pencampuran CaCO3 Menggunakan Metode Computational Fluid Dynamic. Seminar Nasional TREnD Technology of Renewable Energy and Development, 3, 74–84.
Indiasih, P. A. Y., Almuhaimin, M. F., Taufiqurrahman, Muh. A., Airlangga, B., & Sumarno, S. (2023). Characterization of Type-III Resistant Starch Produced by High Shear Mixing Combined with Membrane Separation. IPTEK The Journal of Engineering, 9(2), 73. https://doi.org/10.12962/j23378557.v9i2.a17355
Indrawati, R. T., Putri, F. T., Safriana, E., Nugroho, W. I., Huda, M. R. N., & Amarta, R. Z. (2025). Penerapan Mixer Planetary Guna Meningkatkan Produktivitas Usaha Irt Pembuat Kue. Jurnal Hilirisasi Technology Pengabdian Masyarakat, 6(1), 11–19.
Kisuka, F., Rangel, R. L., Hare, C., Vivacqua, V., & Wu, C. Y. (2023). Experimental investigation of heat generation during the mixing of granular materials using an overhead stirrer. AIChE Journal, 69(12), 1–12. https://doi.org/10.1002/aic.18219
Komang Mega Ilda Utari, & Mohamad Mirwan. (2023). Pengaruh Bentuk Impeller pada Proses Koagulasi Flokulasi Terhadap Pola Aliran dan Penyisihan TSS. INSOLOGI: Jurnal Sains Dan Teknologi, 2(4), 824–833. https://doi.org/10.55123/insologi.v2i4.2483
Kusrini, D., Yudiantoro, I., Winarto, W., & Alfriyani, D. A. (2023). Pengaruh Material Resinex Terhadap Properties Hpht Filter Press Pada Temperature 200 ℉ Lumpur Kcl-Polymer. Jurnal Offshore: Oil, Production Facilities and Renewable Energy, 7(2), 77–88. https://doi.org/10.30588/jo.v7i2.1718
M.Ali Imron Rosyidi, Imam Tri Harsoyo, & Patrisius Kusi Olla. (2025). Heavy Dusty Over Head Stirrer Design and Construction. Journal of Engineering, Electrical and Informatics, 5(2), 96–102. https://doi.org/10.55606/jeei.v5i2.4715
Marianni, B., Polonini, H., & Oliveira, M. A. L. (2021). Ensuring homogeneity in powder mixtures for pharmaceuticals and dietary supplements: Evaluation of a 3-axis mixing equipment. Journal Pharmaceutics, 13(4). https://doi.org/10.3390/pharmaceutics13040563
Morena, Y., Tanjung, E., Novan, A., & Novianti, Y. (2021). Pengujian Kuat Lentur Dan Kuat Tekan Kayu Sengon Dengan Mengunakan Lapisan/ Coating Resin. Sainstek (e-Journal), 9(2), 137–142. https://doi.org/10.35583/js.v9i2.169
Mulyatno, M., Indriyanto, C., & Metere, S. (2021). Hot plate magnetic stirrer dengan tampilan temperatur dan kecepatan motor. J Hospital Technology and Mechatronics, 2(1), 25–44.
Mumtazah, N., Putraninghadi, A. R., & Nisbatul, N. (2021). Waktu Pencampuran Simulasi Dinamis Cairan Komputasi dari Tangki Pengaduk Masuk Samping. PROZIMA (Productivity, Optimization and Manufacturing System Engineering), 5(1), 30–40.
Nurhidayati, D. (2024). Application Effect of Hand Mixer and Overhead Mixer on Mixing Performance for the Manufacture of Artificial Leather. Berkala Penelitian Teknologi Kulit, Sepatu, Dan Produk Kulit, 22(1), 39–44. https://doi.org/10.58533/3jerca37
Prihananta, P. D., Mahardiananta, I. M. A., & Aryasa, I. W. T. (2022). Rancang Bangun Alat Overhead Stirrer Berbasis Arduino Uno Dengan Sistem Digital Berdaya Rendah. Jurnal RESISTOR (Rekayasa Sistem Komputer), 5(2), 143–149. https://doi.org/10.31598/jurnalresistor.v5i2.1165
Priono, A., Sujono Putro, D., Uffila Dewi, A., & Huda, M. (2025). Perancangan Sistem Kontrol Alat Ukur Viscositas Pada Fluida Menggunakan Arduino Sebagai Penunjang Praktikum Di Laboratorium Teknik Tata Air. Jurnal Pengembangan Potensi Laboratorium, 4(2 SE-Articles), 79–82. https://publikasi.polije.ac.id/jppl/article/view/5733
Putri, M. K., Asshaumi, R. U., Rahmadani, N. F., Kurnia, S. I., Mayasari, S., Martatino, R., Prastowo, S. H. B., & Dewi, N. M. (2024). Analisis Nilai Kecepatan Terhadap Viskositas Pada Fluida. Jurnal Pendidikan Fisika, 8(1), 89–96.
Rong, S., Tang, X., Guan, S., Zhang, B., Li, Q., Cai, B., & Huang, J. (2021). Effects of impeller geometry on the 11α-hydroxylation of canrenone in rushton turbine-stirred tanks. Journal of Microbiology and Biotechnology, 31(6), 890–901. https://doi.org/10.4014/jmb.2104.04002
Salho, A. K., & Hamzah, D. A. (2024). A Review of Stirred Tank Dynamics: Power Consumption, Mixing Time and Impeller Geometry. International Journal of Heat and Technology, 42(3), 1081–1092. https://doi.org/10.18280/ijht.420335
Senda Astara, M., & Buwono, H. (2025). Analisis Tingkat Homogenitas Pencampuran Pada Mesin Mixing Dengan Menggunakan Metode ANOVA. Journal of Mechanical Engineering, 2(2), 9. https://doi.org/10.47134/jme.v2i2.4016
Simanjorang, M. R., Susanto, H., & Luqman Bukhori, M. (2022). Design and Construction of Mixer with Variable Speed for Manufacturing Nanoparticle Composite Materials. Teknika STTKD: Jurnal Teknik, Elektronik, Engine, 8(2), 257–266. https://doi.org/10.56521/teknika.v8i2.653
Son, K. J. (2023). Numerical Analysis of Viscous Polymer Resin Mixing Processes in High-Speed Blade-Free Planetary Blender Using Smoothed Particle Hydrodynamics. Processes, 11(9). https://doi.org/10.3390/pr11092555
Sukanto, H., Raharjo, W. W., Ariawan, D., Triyono, J., & Kaavesina, M. (2021). Epoxy resins thermosetting for mechanical engineering. Open Engineering, 11(1), 797–814. https://doi.org/10.1515/eng-2021-0078
Tafrant, D., Rasid, M., Alimedi, A., Safei, S., & Sampurno, R. D. (2024). Analisis Pengaruh Persentase Campuran Resin dan Katalis Terhadap Ketahanan Korosi Pada Pelapisan Material Poros ST 37. Jurnal INOVATOR, 7(1), 15–18. https://doi.org/10.37338/inovator.v7i1.291
Tremblay, J., Regnerus, M. D., Educação, S. D. A. S. N. D. E., Júnior, F. T., Sanfelice, J. L., Tavares Júnior, F., Dourado, L. F., Brito, M. M. A. de, Maiti, Bidinger, Sposito, M. P., Dubet, F. F., Ribeiro, C. A. C., Silva, N. do V., Barbosa, M. L. de O., Cunha, N. M., Dayrell, J., Rogošić, S., Baranović, B., … Alves, S. (2016). 1(1), 1689–1699.
Vahid, S., Burattini, V., Afshinjavid, S., & Dashtkar, A. (2021). Comparison of rheological behaviour of bio-based and synthetic epoxy resins for making ecocomposites. Journal Fluids, 6(1). https://doi.org/10.3390/fluids6010038
Wang, S., Wang, P., Yuan, J., Liu, J., Si, Q., & Li, D. (2022). Simulation Analysis of Power Consumption and Mixing Time of Pseudoplastic Non-Newtonian Fluids with a Propeller Agitator. Journal Energies, 15(13). https://doi.org/10.3390/en15134561
Wilewska, J., Orciuch, W., Dudała, A., Gierycz, P., & Makowski, Ł. (2025). Power Consumption and Mixing Intensity of Jet Flow Mixer in Industrial Tank. Journal Energies, 18(15), 1–19. https://doi.org/10.3390/en18153975
Wu, M., Jurtz, N., Hohl, L., & Kraume, M. (2024). Multi-impeller mixing performance prediction in stirred tanks using mean age theory approach. AIChE Journal, 70(1), 1–16. https://doi.org/10.1002/aic.18247
Wulandari, S. (2023). Effect of chitosan nano gel addition on the hardness of heat polymerization acrylic denture base resin. Jurnal Kedokteran Gigi Universitas Padjadjaran, 35, 269–274. https://doi.org/10.24198/jkg.v35i2.50414
Zhang, X., Zhang, Q., Meng, X., Ye, Y., Feng, D., Xue, J., Wang, H., Huang, H., Wang, M., & Wang, J. (2021). Rheological and mechanical properties of resin-based materials applied in dental restorations. Polymers, 13(17). https://doi.org/10.3390/polym13172975
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Indra Herlambang Bramantio Musa, Adin Adin

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







