Mesin Ayak Dua Saluran Dilengkapi Pengarah untuk Produk Beras Jagung

Authors

  • Yohanes B Yokasing Teknik Mesin, Politeknik Negeri Kupang, Kupang-Nusa Tenggara Timur
  • Amiruddin Abdullah Teknik Mesin, Politeknik Negeri Kupang, Kupang-Nusa Tenggara Timur
  • Stanislaus Tamelab Teknik Mesin, Politeknik Negeri Kupang, Kupang-Nusa Tenggara Timur

DOI:

https://doi.org/10.18196/jqt.v4i1.14360

Keywords:

Ground Corn, Sieve, Rice Corn.

Abstract

A sieve machine is used to separate groups of granules based on size. Most separation sieves on two groups of sifted/filtered grains move immediately, but the unfiltered grains are removed by the operator turning the sieve sideways or lifting the unfiltered material. In addition, the sifted material is usually poured directly on the sieve wire. This slows the sifting process, and the buildup can damage the sieve. On the other hand, sieve materials, such as corn rice products, require two sizes of sieve wire holes. Design, make, and study the function, "The Sieve Machine's two-channel Equipped with Directions for Rice Corn". The specification of the sieve machine is as follows; it has two sifting channels, the sieve filter can be replaced, a swing arm drives the filter, the dynamo operates on 3/4 hp, rotation 1400 rpm, the capacity for one stage is ± 44.8 kg/hour, the capacity for corn rice ± 22 kg/hour (it's time to change the sieve). The study of engine performance on several variables showed that the smaller the lightening angle, the capacity increases; it is inversely proportional to the length of the spring and rotation. At angle 50 sieve capacity is 23.3 kg/hour, with the length of the spring being 90.5 mm, and on the size of the spring becoming 100.5 mm, the sieva capacity of 24.6 kg/hour. For angle 150, the capacity is reduced by 20.4 kg/hour. At rotation 230 rpm, 50 angles, decreased capacity, only 20.3 kg/hour, spring length 90.5 mm

References

Asrul, A. 2020. Desain Bangun Ayakan Alat Mesin Tanaman Perkebunan. Jutkel: Jurnal Telekomunikasi, Kendali dan Listrik, 2(1), 12-22.

Dahlan, D. 2012. Elemen mesin. Untuk Perguruan Tinggi, Penerbit Citra Harta Prima: Jakarta.

Hamaisa, A. 2018, Prospek Teknologi Pengolahan Beras Jagung Instan Di Provinsi Nusa Tenggara Timur. Prosiding Seminar Nasional Agroinovasi Spesifik Lokasi Untuk Ketahanan Pangan Pada Era Masyarakat Ekonomi ASEAN, 430-436.

Handra, N., David, A., & Randa, J. 2016. Mesin Pengayak Pasir Otomatis dengan Tiga Saringan. Jurnal Teknologi Mesin Institusi Teknologi Padang, VI (1), 1-8.

Kumalasari, R., Setyoningrum, F., & Ekafitri, R. E. 2015. Karakteristik Fisik dan Sifat Fungsional Beras Jagung Instan Akibat Penambahan Jenis Serat dan Lama Pembekuan Physical Characteristics and Functional Properties of Instant Corn Rice due to the Addition of Fiber Type and Duration of Freezing. Jurnal Pangan, 24(1), 37-48.

Raharjo, I. Y., & Sutapa, I. N. 2018. Meminimalisasi Frekuensi Downtime pada Mesin Ayakan Pellet 7 di PT Charoen Pokphand Indonesia Feedmill Balaraja. Jurnal Titra, 6(2), 107-114.

Sateria, A., Yudo, E., Zulfitriyanto, Z., Sugiyarto, S., Melati, R., Saputra, B. E., & Naufal, I. 2019. Rancang Bangun Mesin Pengayak Pasir Untuk Meningkatkan Produktivitas Pengayakan Pasir Pada Pekerja Bangunan. Manutech: Jurnal Teknologi Manufaktur, 11(01), 8-13.

Shigley, J. E., Mischke, C. R., & Brown Jr, T. H. 2004. Standard handbook of machine design. McGraw-Hill Education.

Sularso, K. S., & Suga, K. 2008. Dasar Perencanaan dan Pemilihan Mesin. Jakarta: Pradnya Paramita.

Syamsiro, M., Nurwiyanta, E. U. H., Marsakti, M. L., & Muafi, A. 2017. Rancang Bangun dan Penerapan Mesin Ayakan Gula Semut di Kabupaten Kulonprogo, Daerah Istimewa Yogyakarta. Jurnal Mekanika dan Sistem Termal, 2(2), 27-32.

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Published

2022-12-19

How to Cite

Yokasing, Y. B., Abdullah, A., & Tamelab, S. (2022). Mesin Ayak Dua Saluran Dilengkapi Pengarah untuk Produk Beras Jagung. Quantum Teknika : Jurnal Teknik Mesin Terapan, 4(1), 45–54. https://doi.org/10.18196/jqt.v4i1.14360

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