Design of a Hydraulic Plate Bending Machine
DOI:
https://doi.org/10.21063/jtm.2021.v11.i2.117-123Kata Kunci:
hydraulic plate bending machine, design and specification, stress analysisAbstrak
This study aims to analyze the design and specifications of a plate bending machine using hydraulic power based on the bending force of the selected plate dimensions. The method used in this research is to use a computational method known as Finite Element Analysis (FEA) with the help of the Stress Analysis feature of the Autodesk Inventor 2019 Software. The dimensions of the machine frame are 1600 mm in length, 600 mm in width and 1200 mm in height. Based on the bending force on the mild steel plate with a length of 500 mm and a thickness of 2 mm, namely 5750 N, the hydraulic system planning is a hydraulic power of 0.24 kw, a pump capacity of 6,475 cc / rev and the pressure received by the cylinder is 18,488 bar. Based on the load that occurs when the bending process occurs, both in the form of bending forces, loads from bender, clamp and loads from hydraulic. The results show that the bending of the court with a length of 500 mm and a thickness of 2 mm, the machine has a safety factor value of 1.323.
Referensi
S.A.B. Alchazin (2011): Modul Training Autodesk Inventor 2012, Lapan, Bogor.
Ambiyar d Purwanto (2008). Fabrikasi Logam, Padang : UNP Press.
K.J. Bathe, (1996): Finite Element Procedures. USA: Prentice Hall International Editions Inc.
W. Curtis (2014): Mastering Autodesk Inventor 2015 and Autodesk Inventor LT 2015, Indianapolis: Autodesk John Wiley & Sons, Inc.
A. Esposito (2002): Fluid Power with Applications 7th edition, New Jersey: Pearson International Inc.
E.P. Popov (1995): Mekanika Teknik, Jakarta : Erlangga.
R.L. Mott, E.M.V. & J.W. (2018). Machine Elements in Mechanical Design 6th Edition. USA: Pearson Education, Inc.
J.E. Shigley, L.D. Mitchell & H. Saunders (1985): Mechanical Engineering Design (4th Ed.).Journal of Mechanisms, Transmissions, and Automation in Design, 107(2), 145–145.
W. A. Siswanto, A. Wahyudi & T. Riyadi (2005): Simulasi Springback Benchmark Problem Cross Member Numisheet 2005. Media Mesin: Majalah Teknik Mesin, 7.
T.A. Wibowo, W.P. Raharjo & B. Kusharjanta (2014): Perancangan Dan Analisis Kekuatan Konstruksi Mesin Tekuk Plat Hidrolik.Mekanika, 12(2), 63–70.
A.G. Putra (2010): Pengaruh Variasi ProsesPeregangan Terhadap Sifat Mekanik danStrukturMikro BajaSt. 37 Pada Proses RollBending, Fakultas Teknik UniversitasJenderal Achmad Yani.
I.A. Schonmetz & K. Gruber. Pengetahuan Bahan Dalam Pengerjaan Logam, Bandung : Angkasa.
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Hak Cipta (c) 2021 Ismet Eka Putra, Khalid Ahsanul K

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