Stress and Fatigue Life Simulation of Camshaft with Structural Static ANSYS Approach

Author:

Andoko 1,Prasetya Riduwan1,Gapsari Femiana2

Affiliation:

1. State of Malang University

2. Brawiijaya University

Abstract

The failure occurred in the camshaft of the minibus vehicle after 14 years of use and a failure analysis was carried out to find the cause. The purpose of this paper is to simulate a failed camshaft by evaluating stress and fatigue using the ANSYS structural static approach to find the cause of the failure. Camshaft meshed with a size of 5 mm for the outer part of the fracture and 3 mm on the fracture. The load given is force (1400 N) and torque (113 Nm) and the support is fixed support on the second bearing. The stress shows that the applied load does not because fracture based on the theory of maximum normal stress and Mohr's criteria, the location of the highest and lowest stresses is not in the fault area, and fatigue life without defects produces infinite cycles or will not fail, and fatigue life simulation with defects results in a reduction in life. Based on these parameters, failure is caused by defects in the fractured part with an indication of the location of the fracture beyond the greatest potential for fracture and lower fatigue life.

Publisher

Trans Tech Publications Ltd

Reference16 articles.

1. A. Halim, B. Mahat, M. Hafiz, B. Saleh, M. Akashah, and B. Fauthan, Investigation and Failure Analysis for Camshaft,, Adv. J. Tech. Vocat. Educ., vol. 2, no. 2, p.23–27, (2018).

2. A. Kurniawan and Andoko, Stress and Crack Simulation on Axle Housing Mitsubishi L300 Pickup Car using Finite Element Method,, IOP Conf. Ser. Mater. Sci. Eng., vol. 494, no. 1, p.1–7, (2019).

3. A. Andoko et al., Simulation of winglet with bend angles of 45, 60 and 90 degree,, in AIP Conference Proceedings, 2020, vol. 2262.

4. L. Ping, L. Fengjun, C. Anke, and W. Bokang, Fracture analysis of chilled cast iron camshaft,, vol. 6, no. 2, p.104–108, (2009).

5. A. S. Davale and V. R. Muttagi, ' Study of Modeling and Fracture Analysis of Camshaft ' A Review .,, vol. 2, no. 6, p.835–842, (2012).

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