Rancang Bangun Mesin Pengayak Pasir Sistem Rotary Dengan Tiga Grade Hasil Ayakan

Agus Wijianto, Wahyu Wardana

Abstract


Sand is the main ingredient in the construction process, so based on its function, size separation is needed. This size separation is done by sifting sand. Based on the survey, many construction or industrial workers use traditional methods of sifting sand, and the results obtained are less effective in terms of capacity and working time.The rotary system sand sieving machine is planned as a tool to make it easier to sift sand. The sifter tube is designed with 2 sieves. The first filter uses a mesh size 6 and the second filter uses a mesh size 8. This is done to produce 3 grades of sand.This rotary system sand sifter machine aims to sift sand with 3 different sieve results, namely fine sand, medium sand, and gravel. Fine sand is used as a mixture of plaster for concrete walls, medium sand is used as a mixture in bricklaying, and gravel is used as a mixture of foundation casts. In the mechanical movement system using a 1 Hp AC motor as a source of rotation, then the rotation of the motor is transmitted through a reducer with a ratio of 1:40 and then forwarded to the shaft. On the shaft there is a filter for sifting the rotary system sand.This research was conducted with 3 variations of the angle of the sieve which is 10°, 15°, 20°. In testing the maximum capacity in one test is 30 kilograms. The best sieve results were obtained from testing with a 10° sieve angle using dry river sand and dry land sand.


Keywords


AC Motor; Sand Sieve; Wiremesh.

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References


Aditya, C., & Hermawati, A. (2018). Mesin Ayakan Getar Tipe Excentric Sebagai Pengayak Butiran Marmer Dan Batu Alam Pada Produksi Industri Teraso Dari Limbah Batu Alam Di Kabupaten Tulungagung. PEDULI-Jurnal Ilmiah Pengabdian Pada Masyarakat, 2(2), 22-31.

Astutik, Y., Widiyanto, D., & Dewi, C. N. P. (2022). Klasifikasi Jenis Pasir Material Bangunan Menggunakan Metode Support Vector Machine (Svm) Berdasarkan Ekstraksi Ciri Tekstur Dan Warna. In Prosiding Seminar Nasional Mahasiswa Bidang Ilmu Komputer dan Aplikasinya (Vol. 3, No. 2, pp. 914-924).

Cahyono, A. I., Qiram, I., & Rubiono, G. (2019). Pengaruh sudut kemiringan dan kecepatan putaran saringan pada unjuk kerja mesin pengayak pasir tipe rotary. V-MAC (Virtual of Mechanical Engineering Article), 4(1), 7-9.

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

Nuhgraha, Y. A., & Jordi, G. S. (2021). Rancang Bangun Transmisi Pada Mesin Pengayak Pasir Otomatis. Jurnal Tedc, 15(1), 64-68.

Polonia, B. S. E., Helanianto, H., & Kurniawan, H. (2022). Rancang Bangun Mesin Pengayak Pasir Otomatis. Injection: Indonesian Journal of Vocational Mechanical Engineering, 2(2), 64-69.

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.

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.




DOI: https://doi.org/10.18196/jqt.v4i2.16155

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