Buckling patterns have been observed on the side wall structure of the passenger
train car body made by PT INKA. To address this issue, an optimization
of buckling performance was conducted using the Taguchi method and constrained
Bayesian optimization (CBO). Buckling performance was quantified
based on the out-of-plane buckling deformation obtained through finite element
simulations. These results were then analyzed using the Taguchi method and
CBO. Using the Taguchi method, it was concluded that, among the five parameters
considered, two have significant effect on the buckling performance.
Validation results confirm that the optimum configuration obtained using the
Taguchi method leads to improved buckling performance. Using CBO, it was
concluded that the optimum set of parameters were successfully obtained which
resulted in the smallest mass ratio while keeping the inter-spot-weld buckling
deformation under a predefined constraint value.
Perpustakaan Digital ITB