Analysis of Screwed Shaft Failure using the Process Simulation of Loaded Torsion

The paper present the result of the study on the use of simulation software of ANSYS R15.0 version in attempt to simulate the load which is working on a screwed shaft of a shaping machine. This shaft was broken down during normal working and within limit of its life time. Therefore, the simulation w...

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Main Authors: Vita Mustika, Agus Triono, Koekoeh K. Wibowo
Format: Article
Language:English
Published: University of Muhammadiyah Malang 2020-09-01
Series:JEMMME (Journal of Energy, Mechanical, Material, and Manufacturing Engineering)
Online Access:http://ejournal.umm.ac.id/index.php/JEMMME/article/view/12551
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spelling doaj-d50e2f3b9154459cb0a418b8d31488682020-11-25T04:10:49ZengUniversity of Muhammadiyah MalangJEMMME (Journal of Energy, Mechanical, Material, and Manufacturing Engineering)2541-63322548-42812020-09-015291210.22219/jemmme.v5i2.125516936Analysis of Screwed Shaft Failure using the Process Simulation of Loaded TorsionVita Mustika0Agus Triono1Koekoeh K. Wibowo2University of JemberUniversity of JemberUniversity of JemberThe paper present the result of the study on the use of simulation software of ANSYS R15.0 version in attempt to simulate the load which is working on a screwed shaft of a shaping machine. This shaft was broken down during normal working and within limit of its life time. Therefore, the simulation would try to find out the cause of the failure. In order to simulate the load, the mechanical properties and chemical composition of the shaft were used as the input for modeling. The shaft is made of medium carbon steel of S 45 C in round shape. The finite element method (FEM) was used for analyzing. The modeling was started with a 3D redrafting the real dimension of the shaft in a computer aided design (CAD) model, then imported to the ANSYS system into FEM format. The mechanical and physical properties of the material was entered as the engineering data. Meshing was made to divide the component into several small elements. A combination of static and torsion load was applied to the shaft with a fixed position. The simulation results shown that von mises stress of 4.546 MPa was achieved. While, the first principal stress of 4.518 MPa, the third principal stress of 0.538 MPa. Other result revealed that the displacement was 0.001602 mm. Simulation also indicate that failure occurs at the slot a place where the pin was inserted to lock between the shaft and the bevel gear. The result is in accordance with the real failure of the shaft. To conclude, the ANSYS with FEM modeling has succeeded to simulate the failure of the screwed shaft.http://ejournal.umm.ac.id/index.php/JEMMME/article/view/12551
collection DOAJ
language English
format Article
sources DOAJ
author Vita Mustika
Agus Triono
Koekoeh K. Wibowo
spellingShingle Vita Mustika
Agus Triono
Koekoeh K. Wibowo
Analysis of Screwed Shaft Failure using the Process Simulation of Loaded Torsion
JEMMME (Journal of Energy, Mechanical, Material, and Manufacturing Engineering)
author_facet Vita Mustika
Agus Triono
Koekoeh K. Wibowo
author_sort Vita Mustika
title Analysis of Screwed Shaft Failure using the Process Simulation of Loaded Torsion
title_short Analysis of Screwed Shaft Failure using the Process Simulation of Loaded Torsion
title_full Analysis of Screwed Shaft Failure using the Process Simulation of Loaded Torsion
title_fullStr Analysis of Screwed Shaft Failure using the Process Simulation of Loaded Torsion
title_full_unstemmed Analysis of Screwed Shaft Failure using the Process Simulation of Loaded Torsion
title_sort analysis of screwed shaft failure using the process simulation of loaded torsion
publisher University of Muhammadiyah Malang
series JEMMME (Journal of Energy, Mechanical, Material, and Manufacturing Engineering)
issn 2541-6332
2548-4281
publishDate 2020-09-01
description The paper present the result of the study on the use of simulation software of ANSYS R15.0 version in attempt to simulate the load which is working on a screwed shaft of a shaping machine. This shaft was broken down during normal working and within limit of its life time. Therefore, the simulation would try to find out the cause of the failure. In order to simulate the load, the mechanical properties and chemical composition of the shaft were used as the input for modeling. The shaft is made of medium carbon steel of S 45 C in round shape. The finite element method (FEM) was used for analyzing. The modeling was started with a 3D redrafting the real dimension of the shaft in a computer aided design (CAD) model, then imported to the ANSYS system into FEM format. The mechanical and physical properties of the material was entered as the engineering data. Meshing was made to divide the component into several small elements. A combination of static and torsion load was applied to the shaft with a fixed position. The simulation results shown that von mises stress of 4.546 MPa was achieved. While, the first principal stress of 4.518 MPa, the third principal stress of 0.538 MPa. Other result revealed that the displacement was 0.001602 mm. Simulation also indicate that failure occurs at the slot a place where the pin was inserted to lock between the shaft and the bevel gear. The result is in accordance with the real failure of the shaft. To conclude, the ANSYS with FEM modeling has succeeded to simulate the failure of the screwed shaft.
url http://ejournal.umm.ac.id/index.php/JEMMME/article/view/12551
work_keys_str_mv AT vitamustika analysisofscrewedshaftfailureusingtheprocesssimulationofloadedtorsion
AT agustriono analysisofscrewedshaftfailureusingtheprocesssimulationofloadedtorsion
AT koekoehkwibowo analysisofscrewedshaftfailureusingtheprocesssimulationofloadedtorsion
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