Analisa DFA Terhadap Rancangan Body Mesin Pencacah Plastik
DOI:
https://doi.org/10.33504/jitt.v4i2.377Keywords:
Design for Assembly (DFA), Body Design, Assembly Efficiency, Product Design, ManufacturabilityAbstract
Efficient product design not only focuses on functionality and structural strength but also emphasizes the ease of the assembly process. This study aims to analyze the application of the Design for Assembly (DFA) method in the body design process of a product to achieve a more efficient and easily assembled structure. The DFA method is used to evaluate the number of components, assembly sequence, assembly time, and the level of difficulty in installing each component. The analysis compares several body design alternatives based on criteria such as manufacturability, ease of maintenance, and assembly efficiency. The results show that the application of DFA principles can reduce unnecessary components, minimize assembly time, and improve structural efficiency by more than 20%. Therefore, implementing the Design for Assembly concept at the design stage can produce a simpler, more economical, and easily assembled product body without compromising its strength or functionality.
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References
Kementerian Lingkungan Hidup dan Kehutanan (KLHK), Statistik Persampahan Indonesia: Data Timbulan Sampah Plastik Nasional. Jakarta: KLHK, 2021.
D. Suryani and R. Hidayat, “Pengembangan mesin pencacah plastik skala rumah tangga untuk mendukung daur ulang,” Jurnal Teknologi Mekanis, vol. 12, no. 2, pp. 55–63, 2020.
A. Rahman and T. Widodo, “Analisis efisiensi perakitan pada mesin pencacah plastik menggunakan metode DFMA,” Jurnal Rekayasa Manufaktur, vol. 7, no. 1, pp. 22–30, 2019.
G. Boothroyd, P. Dewhurst, and W. Knight, Product Design for Manufacture and Assembly, 3rd ed. Boca Raton: CRC Press, 2011.
S. Prabowo and D. Santosa, “Desain body mesin pencacah plastik dengan analisis kekuatan struktur dan kemudahan perakitan,” Jurnal Teknologi Industri, vol. 9, no. 3, pp. 101–110, 2020.[6] G. Boothroyd and P. Dewhurst, Design for Assembly Handbook. Wakefield, RI: Boothroyd Dewhurst Inc., 1983.
A. Prasetyo, Y. Nugroho, and D. Setiawan, “Penerapan DFA pada desain mesin pertanian untuk peningkatan efisiensi perakitan,” Jurnal Rekayasa Pertanian, vol. 18, no. 1, pp. 45–54, 2022
R. Kurniawan, A. S. Putra, and M. Yusuf, “Perancangan mesin pencacah botol plastik menggunakan analisis kekuatan dan efisiensi perakitan,” Jurnal Teknik Mesin Indonesia, vol. 15, no. 2, pp. 77–85, 2021.
S. Handoko and B. Hartono, “Penerapan metode DFMA pada pengembangan produk berbasis plastik untuk meningkatkan kemudahan manufaktur,” Jurnal Riset Rekayasa, vol. 6, no. 1, pp. 12–20, 2020.
A. Wibowo, “Optimasi desain panel plastik menggunakan teknologi injection molding dan analisis struktural,” Jurnal Material dan Proses Manufaktur, vol. 4, no. 3, pp. 145–154, 2019.
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