Analisa Economic Balance Pembuatan Alat Jemuran Pakaian Semi-otomatis Dengan Menggunakan Metode Lean Manufacturing

  • Sukendro Broto Sasongko Institut Teknologi Adhi Tama Surabaya
  • Rivallulloh Institut Teknologi Adhi Tama Surabaya
Abstract views: 11 , PDF downloads: 5
Keywords: cloth hanger semi-automatic, lean manufacturing method, manufacturing lead time, break event point, payback period

Abstract

The analysis of the economic perspective of the cloth hanger semi-automatic by using the lean manufacturing method was studied and analyzed. The economic balance was consider all cost of manufacturing effort. the cost manufacturing of the hanger is to the device, material, cutting, and drilling steps thus assembly. The investigation is to the manufacturing lead time (MLT), and the brake event point (BEP). Production time per unit (TP), the effective work hour per man-hour, the production capacity (PC), and the Payback Period (PBP). The result of economic balances shows are manufacturing lead time (MLT) of 3,38 hours/unit, and BEP (Q) of 1,65 units per month, further, Break break-even point (BEP) is about Rp. 5.345.740,94 per month. So, the profit taking back regards to production capacity is about Rp. 24,672,650,48 per month after selling. The effective work hour of the man-hour is 6 per shift hour per day. Thus, production time reveals 44,92 min per unit. The production capacity per month is to be 8 hours per day and reveals 20 units. The payback period of the clothes hanger will take back after 2 months for more than 2 units sold. That is, the cost of the engine manufacturing will be refunded after 1 month during normal selling.

References

. P. Anju, S. Syaechurodji. Rekayasa Perangkat Lunak Alat Kendali Jemuran Otomatis Menggunakan Arduino Dan Sensor Hujan/Air, Kelembaban Dht11 Dan Cahaya Ldr, J. Ilmiah. Sains dan Tek. Vol 4 (1), pp. 19-26. 2020.

. Y. Hendrian, Y. P. Yudatama, dan V.S. Pratama. Jemuran Otomatis Menggunakan Sensor LDR, Sensor Hujan Dan Sensor Kelembaban Berbasis Arduino Uno. Jurnal Teknik Komputer, Vol 6(1), pp. 21–30. 2020.

. M.R. Rahima, D. Indra, dan E.I. Alwi. Rancang Bangun Alat Jemur Pakaian Otomatis Menggunakan Microkontroler Arduino. Buletin Sistem Informasi dan Teknologi Islam, Vol 1 (4), pp. 251-258, 2020.

. D. Oktarina, A. Darmawan. Analisa Perbandingan Rangka Atap Baja Ringan Dan Rangka Atap Kayu Dari Segi Analisis Struktur Dan Anggaran Biaya. Jurnal Konstruksia, Vol 7 (1), pp. 27-36, 2015.

. S. Suryady, E.A. Nugroho. Simulasi Faktor Keamanan Dan Pembebanan Statik Rangka Pada Turbin Angin Savonius. Jurnal JUKIM, Vol 1 (2), pp. 42-48, 2022.

. A.P. Maulana, F. Putri, F. Arifin. Analisis Fatigue Menggunakan Autodesk Inventor Terhadap Konstruksi Mesin Pencacah Sabut Kelapa. Machinery Jurnal Teknologi Terapan. Vol 3 (1). 2022.

. H. Irawan, H. F. Zany, S.B. Sasongko. Simulasi Pembebanan Pada Rangka Mesin Fungsi Hybrid Pengupas Bijih Jagung Berbasis Elemen Hingga. Otopro. Vol. 17 (2), 2022.

. F. Anggara. Validasi Nilai Simulasi Faktor Keamanan Pada Putaran Kritis Poros ST41. Quantum Teknika. Vol. 2 (1), pp. 32-37, 2020.

. J.W. Dikaa, A. Suwitob, S. Sunardib, dan T. Sugiarti. Analisis Deformation, Stress, dan Safety Factor pada Geometric Properties Crane Hook. Transmisi, Vol. 18 (1), 2022.

. A. Pratama, D. Agusman. Analysis Kekuatan Kontruksi Rangka Pada Perancangan Design Belt Conveyor Menggunakan Ansys Workbench. Jurnal Sain dan Teknik, Vol. 5, (1), 2023.

. S. Sasongko, H.F. Zany. Simulai Pembebanan Pada Rangka Mesin Fungsi Hybrid Pengupas Bijih Jagung Berbasis Elemen Hingga. J. Otopro. Vol 17 (2). Pp. 57-61, 2022.

. S. Sasongko, D.P. Fadhilah. Analisa Kekuatan Rangka Jemuran Semi-otomatis pada Pembebanan Statis Berbasis Arduino Microcontroller. Prosid. SINASTITAN. Vol 4, 2024.

. S. Sasongko, M.D. Ferdiyansyah. Perancangan Economical Balance Dongkrak Ulir Elektrik Dwi Hasta. J. Otopro-Unesa. Vol 18 (2), 2023.

. S. Surhayatun, S. Asmara, A. Haryanto, B. Lanya, M.T.A, Syahputra, S. Anisa. Analisis Ekonomi Mesin Pemotong Padi (Paddymower) Tipe Glx 328-Rh. Prosid.Seminar Nasional PERTETA. Vol 2. Pp. 284-289. 2018.

PlumX Metrics

Published
2024-08-14