Mold Strength Analysis of Press Machine Composite Brake Using FEM Method on Train Brakes



DOI: https://doi.org/10.25077/metal.6.2.126-131.2022

Author(s)

Andhika Muhammad Kasyafa (Institut Teknologi Nasional Bandung)
Muhamad Juan Raffindo (Institut Teknologi Nasional Bandung)
Nuha Desi Anggraeni (Institut Teknologi Nasional Bandung) Orcid ID

Abstract


Press machine is a mechanism that works by compressing objects. It is powered by hydraulic machines, electric motors, or human power. Usually in the railway industry, presses are used in the manufacture of composite brake pads for railways. This study was conducted to find out how strong the mold of the composite brake press machine is if given the maximum load by hydraulics, this study also analyzes the mold of the press machine which plays an important role in the manufacture of composite brake linings using the Finite Element Methods (FEM). Therefore, the mold of the press must have sturdy characteristics and can withstand a lot of loads so that the structure will not deform while the process is in progress. The conclusion is that the maximum voltage amount in the mold is 33,596,928 N/m2 (using ASTM A36 as the reference material) which does not cause major deformation of the mold and is still considered safe.

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References


E. Popov and Z. Astaman. "Tegangan Normal Dan Tegangan Geser" in Mekanika Teknik. California, Jakarta: Erlangga, 1984, pp. 5-6, 140-141, 192.

P. A. Tipler and M. Gene. "Center Of Mass," in Physics For Scientist And Engineers, 6th ed., P. A. Tipler, & M.Gene. New York: W. H. Freeman and Company, 2008, pp. 149-50.

A. R. Fuad. "Meshing," in Mahir Solidworks simulation CAE, Sleman: Deepublish, 2020, pp.13.

Achmad Rachmadi, Fadli. Modifikasi dan Analisa Chassis Kendaraan Roda Tiga Menggunakan Software Solidworks, Itenas: Bandung, 2020.

Joseph, E. Shigley., Charles, R. Mischake., Richard, G. Budynas. Mechanical Engineering Design, 7th ed. McGraw-Hill. Education: United, States of America, 2003.

Sunaryo. Sistem Kontruksi Slider Mold, UMY: Yogyakarta, 2015.

Fardianyah Arif. Analisis Sifat Mekanik Pipa Carbon Steel Grade A A106 dan Grade B A53 Untuk Proses Produksi Pada Kilang LNG, Institut Sains dan Teknologi Nasional: Jakarta, 2018.


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