ANALISIS GETARAN PADA LOBES THIN-WALLED TI6AL4V MENGGUNAKAN SOFTWARE SOLIDWORKS

SALSABILA, AUDREY ALMIRA and Mohruni, Amrifan Saladin (2019) ANALISIS GETARAN PADA LOBES THIN-WALLED TI6AL4V MENGGUNAKAN SOFTWARE SOLIDWORKS. Undergraduate thesis, Sriwijaya University.

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Abstract

Vibration is a repetitive motion in certain time interval that is common in machining process. Value of the vibration can be measured by deflection of the work piece during machining process. Ti6Al4V is a material with low rigidity, which cause high vibration during its machining process. This cause difficulty in producing products with desired geometry and surface quality while accuracy is crucial in manufacturing. Vibration is influenced by mechanical properties of work piece material and the parameter used in machining process. Therefore, machining must use the right parameter. The right parameter is obtained by doing vibration simulation regulated by variables, cutting force calculation, frequency, static loading, and dynamic loading analysis. The main purpose of this research is to analyze vibration occurred on thin-wall Ti6Al4V lobes during machining process using Finite Element Method based software, SolidWorks. SolidWorks is used to sketch work piece and simulate the vibration in one spindle rotation. The result shows that natural frequencies and amplitude obtained is far from spindle rotation frequency. This shows that the possibility of errors to happen during machining are very small, which means the parameters used in this research is safe for thin-wall Ti6Al4V machining process.

Item Type: Thesis (Undergraduate)
Uncontrolled Keywords: Getaran, Lobes, Thin-Walled, Ti6Al4V, Frekuensi, SolidWorks.
Subjects: T Technology > TJ Mechanical engineering and machinery > TJ1-1570 Mechanical engineering and machinery
Divisions: 03-Faculty of Engineering > 21201-Mechanical Engineering (S1)
Depositing User: Prof Amrifan Saladin Mohruni
Date Deposited: 31 Jan 2020 05:08
Last Modified: 12 Feb 2020 04:15
URI: http://repository.unsri.ac.id/id/eprint/26415

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