Analisis Pengaruh Parameter Terhadap MRR Pada Benda Kerja di Mesin CNC Turning dengan Metode Taguchi

Authors

  • Adin Gilbran Politeknik Manufaktur Negeri Bangka Belitung
  • Yudi Oktriadi
  • Eko Yudo

DOI:

https://doi.org/10.33504/jitt.v2i1.134

Keywords:

CNC, MRR, ST-60, Taguchi method

Abstract

A high material removal rate is one of the goals to be achieved when machining parts with CNC turning. However, slow processing affects product processing time and increases production costs. To overcome this problem, it is necessary to set the correct process parameters so that they provide the most influential contribution to the MRR and produce maximum parameter values. This research aims to determine the influence of parameters (spindle speed, feed speed, and feed depth) on MRR and to determine the correct process parameter settings to produce maximum MRR, namely in this experimental design using an orthogonal array L9 (33) with three replications. The material used is ST-60 steel, with the data analyzed using the Taguchi Larger Is a Better method in analysis software. From the results of the mean factor calculation, the percent contribution to feeding was found to be 19.53%, while the depth of feeding was found to be 64.56%. The optimum MRR value is obtained from a combination of parameters in the CNC Turning process on ST-60 steel which can make the response value optimally obtained at the spindle speed 3,184 [rev/min], feeding 0.22 [mm/rev] and depth of cut 2.5 [mm].

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References

K. Perindustrian, “Laju Sektor Manufaktur Lampaui Pertumbuhan Ekonomi,” Laju Sekt. Manufaktur Lampaui Pertumbuhan Ekon., no. July, pp. 1–23, 2020.

A. N. Akhmadi, R. Wulandari, and A. Mustofa, “Pengaruh Variasi Putaran Mesin Terhadap Waktu Pengeboran Dengan Material Aluminium Al 6063 Pada Mesin Bor Duduk,” J. Mech. Eng., vol. 10, no. 1, pp. 1–23, 2021.

C. T. Kartikasari, ““Analisis Efisiensi Dan Efektifitas Penggunaan Mesin Produksi Pada CV. Harapan Baru Surakarta,” 2009.

71–80. Indrawan, Eko, et al.Indrawan, Eko, et al. (2020). Analisis Kualitas Geometri Mesin Bubut Maximat Super 11. INVOTEK, “Analisis Kualitas Geometri Mesin Bubut Maximat Super 11,” INVOTEK, pp. 71–80, 2020.

F. B. Al Azib, “Pengaruh Variasi Kecepatan Potong, Gerak Makan, Dan Kedalaman Potong Pada Mesin Bubut Terhadap Tingkat Keausan Pahat Hss,” J. Rekayasa Mesin, pp. 1–10, 2017.

M. Sinaga, S. Ramadhan, and P. T. Mesin, “Inovasi Perancangan dan Pembuatan Alat Gagang Pintu Sanitizer Otomatis,” J. Kaji. Tek. Mesin, vol. 7, no. 1, pp. 1–17, 2022.

V. V.D. Sahithi, T. Malayadri, and N. Srilatha, “Optimization of turning parameters on surface roughness based on taguchi technique,” Mater. Today Proc., vol. 18, pp. 3657–3666, 2019, doi: 10.1016/j.matpr.2019.07.299.

S. Mukherjee, A. Kamal, and K. Kumar, “Optimization of material removal rate during turning of SAE 1020 material in CNC lathe using taguchi technique,” Procedia Eng., vol. 97, pp. 29–35, 2014, doi: 10.1016/j.proeng.2014.12.221.

A. Z. Sastal, Y. Gunawan, and B. Sudia, “Pengaruh Kecepatan Potong Terhadap Perubahan Temperatur Pahat Dan Keausan Pahat Bubut Pada Proses Pembubutan Baja Karbon Sedang,” Enthalpy, vol. 3, no. 1, pp. 1–11, 2018.

I. Prakoso, “Analisa Pengaruh Kecepatan Feeding Terhadap Kekasaran Permukaan Draw Bar Mesin Milling Aciera Dengan Proses Cnc Turning,” J. Tek. Mesin, vol. 3, no. 3, p. 1, 2017, doi: 10.22441/jtm.v3i3.1022.

F. Yasa Utama and T. Hartutuk Ningsih, “Optimasi Parameter Pemesinan dengan Proses Bubut pada Respon Kekasaran dan Kekerasan Permukaan Material S45-C Menggunakan Metode Taguchi - Grey - Fuzzy,” Rekayasa Energi Manufaktur, vol. 1, no. 1, Jul. 2016, doi: 10.21070/r.e.m.v1i1.169.

T. Wuryandari, T. Widiharih, and S. D. Anggraini, “Optimalisasi Produk… (Triastuti Wuryandari) METODE TAGUCHI UNTUK OPTIMALISASI PRODUK PADA RANCANGAN FAKTORIAL,” pp. 81–92, 2009.

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Published

28-02-2024

How to Cite

Gilbran, A., Oktriadi, Y., & Yudo, E. (2024). Analisis Pengaruh Parameter Terhadap MRR Pada Benda Kerja di Mesin CNC Turning dengan Metode Taguchi. Jurnal Inovasi Teknologi Terapan, 2(1), 9–14. https://doi.org/10.33504/jitt.v2i1.134

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