Design of Shoes Production Tool

Authors

  • Popy Yuliarty Department of Industrial Engineering,Universitas Mercu Buana,Jl.Meruya Selatan No.1 Kembangan, Jakarta Barat 11650
  • Rizky Ramadhan Department of Industrial Engineering,Universitas Mercu Buana,Jl.Meruya Selatan No.1 Kembangan, Jakarta Barat 11650
  • Aulia Naro Department of Industrial Engineering,Universitas Mercu Buana,Jl.Meruya Selatan No.1 Kembangan, Jakarta Barat 11650
  • Reza Afrizal Department of Informatic Engineering, Universitas Indraprasta PGRI, Jln. Nangka No 58 Jagakarsa, Jakarta Selatan 12530

DOI:

https://doi.org/10.22441/ijiem.v6i2.28641

Keywords:

Design, Production tools, Fixture, NIDA

Abstract

This research was conducted on MSMEs that produce shoes and the like. Some production processes are carried out manually, which has an impact on employee occupational health. The uppersole installation process takes a long time with manual work which is certainly less effective because the position of the shoe changes and produces many unnecessary movements to position the shoe, impacting the condition of workers who experience several complaints such as pain in the thighs, back, and hands. This study aims to design a work aid for installing shoe uppersoles so that they can work effectively and avoid fatigue due to work positions. The design was carried out using the NIDA method. The results of the fixture design show that the fixture is able to withstand 12 directions of object movement, so that the processed upper sole can be maintained in a stationary state and no longer requires repeated positioning efforts. The results of this design can simplify the work process from previously 19 processes with a total time of 62 minutes to 15 processes with a total time of 54 minutes.

Downloads

Download data is not yet available.

Author Biographies

Popy Yuliarty, Department of Industrial Engineering,Universitas Mercu Buana,Jl.Meruya Selatan No.1 Kembangan, Jakarta Barat 11650

Industrial Engineering Department

Rizky Ramadhan, Department of Industrial Engineering,Universitas Mercu Buana,Jl.Meruya Selatan No.1 Kembangan, Jakarta Barat 11650

Industrial Engineering Department

Aulia Naro, Department of Industrial Engineering,Universitas Mercu Buana,Jl.Meruya Selatan No.1 Kembangan, Jakarta Barat 11650

Industrial Engineering Department

Reza Afrizal, Department of Informatic Engineering, Universitas Indraprasta PGRI, Jln. Nangka No 58 Jagakarsa, Jakarta Selatan 12530

Informatic Department

References

Adji Sasongko, D., & Purnomo, H. (2018). Work System Design Analysis and Improvement Using the Participatory Ergonomics Approach to Reduce Musculoskeletal Disorder Complaints and Risk Exposure at a Workshop Unit. International Journal of Ergonomics (JEG), 8(1), 9.

Ali Ashgar, S. K., Gungat, L., Mohd Sarman, A., & Bolong, N. (2025). Comparative Analysis of BIM Tools and Manual Practices in Enhancing Energy Efficiency for Achieving a Sustainable Campus. International Journal of Built Environment and Sustainability, 12(2), 59–69. https://doi.org/10.11113/ijbes.v12.n2.1394

Amalia Yunia Rahmawati. (2020). Peningkatan Produktivitas Pembuatan Keripik Salak Pondoh dengan Menggunakan Mesin Pengupas Kulit Salak. July, 1–23. https://eprints.upnyk.ac.id/23999/1/26. 34.pdf

Badoozadeh, E., Arefi, M. F., & Babaei-Pouya, A. (2021). Job safety risk assessment in the printing industry using job safety analysis method and offering control recommendations. Pakistan Journal of Medical and Health Sciences, 14(4), 1785–1789. https://pjmhsonline.com/2020/oct_dec/1785.pdf

Basager, A., Williams, Q., & Johnson, H. (2020). A User-Centered Ergonomic Keyboard Design To Mitigate Work-Related Musculoskeletal Disorders. Prasanna Mahajan International Journal of Ergonomics (IJEG), 10, 27.

Dawson, M. K., & Aparicio, I. (2018). Influence of additive to bulk viscosity ratio on inline blending in laminar flow. Chemical Engineering Research and Design, 134, 434–442.

Elandri, A. (2022). Redesign meja las di cv. cipta karya. 22(2), 51–54.

Fadli Arsi, Gayuh Lemadi, Resy Kumala Sari, Dian Eko Adi Prasetio, N. Y., Hasti Hasanati Marfuah, Riri Nasirly, Anastasia Febiyani, A. B. S., & Wibawa Prasetya, A. W. (2025). Ergonomi Industri (F. Arsi (ed.); 1st ed.). Widina Media

Utama. https://repository.penerbitwidina.com/media/publications/618955-ergonomi-industri-f4652ba9.pdf

IISE. (2021). Industrial and Systems Engineering BoK. https://www.iise.org/details.aspx?id=43631

Kaban, S. I., Dwi Astuti, R., & Pujiyanto, E. (2021). Perancangan Alat Pemotong Label untuk Meminimasi Gerakan Repetitive Pekerja di Industri Jago Jaya Shuttlecock Surakarta. Matrik, 22(1), 65. https://doi.org/10.30587/matrik.v22i1.1527

Komara, A. I., Melinda, I. A., Djawari, M., Ghifari, A., Teknik, J., Manufaktur, P., Program, M., Teknologi, S., & Perkakas, P. (2019). Perancangan Ulang Fixture Komponen Main. Jurnal Teknologi Terapan, 5(September), 64–71. https://jurnal.polindra.ac.id/index.php/jtt/article/view/226/pdf

Mahdi, M. I. (2022). Berapa Jumlah UMKM di Indonesia? DataIndonesia.id. https://dataindonesia.id/industri-perdagangan/detail/berapa-jumlah-umkm-di-indonesia

Nurrachman, A. P., Syahliantina, A., Iqbalnur, M., Rinjani Hananta, S. K., Laksono, P. W., & Damayanti, R. W. (2023). Workbench Design Based on the NIDA Method in The Finishing Stage of Leather Bag Production. 426–434. https://doi.org/10.46254/eu05.20220097

Pratiwi, A. I., Hakim, A., & Santoso, R. Y. (2020). Development of Operation Process Map and Analysis Of Inventory Control Based on Material Requirement Planning in Assembly Line. Journal of Industrial Engineering and Halal Industries 1, 1(1), 30–38. https://doi.org/doi:10.14421/jiehis.1800

Soekarta, R., & Suharsono, S. (2021). Perancangan Penutup Jemuran Otomatis Multifungsi Menggunakan Metode QFD (Quality Fungsional Deploymen). Metode : Jurnal Teknik Industri, 7(2), 79–87. https://doi.org/10.33506/mt.v7i2.1654

UUD 1945. (2019). Undang-Undang Usaha Mikro, Kecil dan Menangah. Pustaka Mahardika, Yogyakarta, 53(9), 1689–1699.

Wibowo, N. A., Nadhira, A. G., Agustina, A., & Zidni, M. I. (2023). Design of Work Facilities in Warehouses and Work Stations for SME Dwarr Leather Cutting Leather. Proceedings of the 3rd Asia Pacific International Conference on Industrial Engineering and Operations Management, Johor Bahru, Malaysia, September 13-15, 2022

(PDF) Design of Work Facilities in Warehouses and Work Stations for SME Dwarr Leather Cutting Leather. Available from: https://www.researchgate.net/publication/377746864_Design_of_Work_Facilities_in_Warehouses_and_Work_Stations_for_SME_Dwarr_Leather_Cutting_Leather [accessed Nov 03 2025]. https://doi.org/10.46254/ap03.20220241

Yuliarty, P., & Wibowo, A. (2019). Tingkat Risiko Pekerja Pada Mesin Piercing Tube Dengan Menggunakan Metode Rapid Entire Body Assessment (Reba) Dan Rapid Upper Limb Assessment (Rula) Di Departemen Press Shop Pt. X. Industri Inovatif : Jurnal Teknik Industri, 9(1), 30–37. https://doi.org/10.36040/industri.v9i1.379

Downloads

Published

2025-10-31

How to Cite

1.
Yuliarty P, Ramadhan R, Naro A, Afrizal R. Design of Shoes Production Tool. IJIEM [Internet]. 2025 Oct. 31 [cited 2026 May 28];6(2):291-7. Available from: https://training-ojs3-publikasi.mercubuana.ac.id/index.php/ijiem/article/view/28641

Issue

Section

Articles