Design Of A Coconut Shell Charcoal Briquette Mixer Machine With A Capacity Of 50kg

Authors

  • Asep Rachmat Universitas Majalengka, Indonesia
  • Gilang dwi Saputra Universitas Majalengka, Indonesia
  • Alwi Albaar Universitas Majalengka, Indonesia

DOI:

https://doi.org/10.31949/j-ensitec.v12i02.17946

Abstract

Coconut shell waste has not been optimally utilized, despite its potential to be processed into charcoal briquettes with higher economic value. One of the critical stages in briquette production is the mixing process, which requires an efficient and reliable mixing system to ensure homogeneity. This study aims to design a coconut shell charcoal briquette mixer machine with a capacity of 50 kg. The design methodology includes determining the mixer drum capacity, frame dimensions, and shaft specifications, followed by mechanical analysis to evaluate the torsional load acting on the shaft. Simulation analysis was conducted to assess the structural performance of the machine. The results indicate that the maximum stress due to torsional loading is 1.714 × 10⁵ Pa, while the resulting deformation is 3.306 × 10⁻⁵ m. These results demonstrate that the designed mixer machine meets the required safety criteria and is capable of operating effectively in the briquette mixing process. The proposed design is expected to improve efficiency and consistency in coconut shell charcoal briquette production.

Keywords:

Coconut shell charcoal Briquettes, Mixer machine, Simulation, Twisting moment shaft

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References

[1] Pahlawan, A. Restu, Rizal Hanifi, and Aa Santosa. "Analisis Perancangan Frame Gokart dari Pengaruh Pembebanan dengan Menggunakan CAD Solidworks 2016." J. METTEK 7.1 (2021): 1..

[2] Mulia, I. (2021). Pembuatan Mesin Pengaduk Bahan Baku Pelet Ikan (Doctoral dissertation, DIII Teknik mesin Politeknik Harapan Bersama).

[3] Syaifurrizal, D. A., & Mahmudi, H. (2024, July). Rancang Bangun Transmisi Mesin Pengaduk Pakan Kapasitas 50KG/2 Menit. In Prosiding SEMNAS INOTEK (Seminar Nasional Inovasi Teknologi) (Vol. 8, No. 2, pp. 1127-1133).

[4] Sifa, A., Endramawan, T., Badruzaman, B., Nurahman, I., Pangga, I. D., & Rachman, A. A. (2020, September). Rancang Bangun Mesin Pengaduk Dodol Karangampel. In Prosiding Industrial Research Workshop and National Seminar (Vol. 11, No. 1, pp. 114-118).

[5] Walidina, Muhammad Farhan, Kardiman Kardiman, and Iwan Nugraha Gusniar. "Analisis Tegangan Von Mises pada Poros Mesin Penggiling Sekam Padi Menggunakan Software Ansys." Jurnal METTEK (Jurnal Ilmiah Nasional Dalam Bidang Ilmu Teknik Mesin) 8.1 (2022).

[6] Ahya, R., Prasetyo, R., Sari, M. P., & Lestari, M. S. (2021). Rancang Bangun Mesin Pengaduk Sabun Cuci Cair Untuk Mengoptimalkan Waktu Produksi Pada Industri Rumah Tangga. Jurnal Inkofar, 5(1).

[7] Affandi, A., Umurani, K., & Siregar, C. A. P. (2020). Perancangan Mesin Pengaduk Bumbu Kripik Ubi Untuk Peningkatan Produksi Industri Rumah TanggaDi Desa Sidodadi Ramunia Kecamatan Beringin. IHSAN: Jurnal Pengabdian Masyarakat, 2(2), 123-128.

[8] Artono, B., Prakoso, D. N., & Lestari, T. A. W. (2023). Sistem Monitoring Mesin Pengaduk Adonan Roti Otomatis berbasis Internet of Things (IoT). Journal of Computer Science and Engineering (JCSE), 4(1), 25-41.

[9] Catrawedarma, I. G. N. B., Afandi, A., & Prastujati, A. U. (2022). Penerapan Teknologi Tepat Guna Mesin Pengaduk Pakan Puyuh dengan Metode Horizontal Screw Rotary System di Desa Kedungrejo Kecamatan Muncar. Jurnal Pengabdian Masyarakat (Abdira) Vol, 2(3).

[10] Herdian, R., & Syarifuddin, M. A. (2020, December). Perancangan Mesin Pengaduk Bubur 10 Liter/Jam Dengan Metode VDI 2221. In SEMNASTERA (Seminar Nasional Teknologi dan Riset Terapan) (Vol. 2, pp. 139-145).

[11] Siregar, A. M., Siregar, C. A., Umurani, K., & Surbakti, C. A. G. (2022). Desain Dan Pembuatan Mesin Pengaduk Srikaya Guna Membantu Meningkatkan.

[12] Syaifurrizal, D. A., & Mahmudi, H. (2024, July). Rancang Bangun Transmisi Mesin Pengaduk Pakan Kapasitas 50KG/2 Menit. In Prosiding SEMNAS INOTEK (Seminar Nasional Inovasi Teknologi) (Vol. 8, No. 2, pp. 1127-1133).

[13] Produktivitas Usaha Toko Roti di Kota Berastagi Sumatera Utara. Ihsan: Jurnal Pengabdian Masyarakat, 4(1), 28-38.

[14] Pujihadi, I. G. O., Arsawan, I. M., Negara, I. P. S., & Bangse, K. (2020, November). Rancang bangun mesin pengaduk bumbu yang tepat guna untuk meningkatkan produktifitas kerja perajin bumbu Bali. In Prosiding Seminar Nasional Terapan Riset Inovatif (SENTRINOV) (Vol. 6, No. 1, pp. 472-477).

[15] Pristisahida, A. O., & Muntahadi, A. (2023). Rancang bangun prototipe mesin pengaduk konblok berbasis Internet of Things: Design of a prototype mixing machine based on the Internet of Things. JITEL (Jurnal Ilmiah Telekomunikasi, Elektronika, dan Listrik Tenaga), 3(1), 57-64. [16] C. Shang and F. You, “Data Analytics and Machine Learning for Smart Process Manufacturing: Recent Advances and Perspectives in the Big Data Era,” Engineering, vol. 5, no. 6, pp. 1010–1016, 2019, doi: 10.1016/j.eng.2019.01.019.

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Published

2026-06-07

How to Cite

Rachmat, A., dwi Saputra , G., & Albaar, A. (2026). Design Of A Coconut Shell Charcoal Briquette Mixer Machine With A Capacity Of 50kg. J-ENSITEC , 12(02), 10469–10476. https://doi.org/10.31949/j-ensitec.v12i02.17946

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