International Journal of Automotive Engineering
Online ISSN : 2185-0992
Print ISSN : 2185-0984
ISSN-L : 2185-0992
Technical Paper
Crankshaft Design Optimization to Improve Dynamic Balancing and Fatigue Strength
Khasnis VijaykumarUkhande ManojTilekar GirishMane RajeshShegavi Girish
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JOURNAL OPEN ACCESS

2015 Volume 6 Issue 2 Pages 59-66

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Abstract
This study demonstrates crankshaft counterweight profile optimization to achieve better dynamic balancing. Balancing simulation was carried to predict initial unbalance. During balancing of actual crankshaft, the position of unbalance is sometimes shifted due to machining stock distribution towards non-favorable direction resulting into more number of balancing holes, thus productivity loss. To reduce this, counterweight profile optimized. After balancing, bending fatigue test carried out. Crankshaft exhibited pre-mature failure at unusual location. To determine the reason of failure, stress analysis was performed using FEA. Design enhancement solution proposed to reduce the stresses & subsequently enhance bending fatigue strength.
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© 2015 Society of Automotive Engineers of Japan, Inc

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