Validation and Multi-response Optimization of Topological and Geometrical Parameters of Stainless Steel Cantilever Beam with Finite Element Analysis Subjected to Point Load Using Taguchi L9 Orthogonal Array Integrated with Utility Methodology

Author:

Sharma ShubhamORCID,Sharma Shalab,Singh J.ORCID,Singh Gursharan,Sharma Abhinav,Agarwal Vivek,Mehta Munish,Mahla S. K.ORCID,Singh Gurpreet

Publisher

Springer Singapore

Reference7 articles.

1. Yadav, S., Pathak, K., Shrivastav, R.: Shape optimization of cantilever beam using neural network. Appl. Math. Sci. 4(32), 1563–1572 (2010)

2. Darshan, S., Varik, A., Katti, A.N., Singh, A.K., Kamath, R.R.: Size and topological optimization of cantilever beam. Int. J. Eng. Trends Technol. 4(5), 2077–2082 (2013)

3. Equbal, M.I., Ohdar, R., Bhat, M.N., Lone, S.A.: Perform shape optimization of connecting rod using Finite element method and Taguchi method. Int. J. Modern Eng. Res. 2(6), 4532–4539 (2012)

4. Gunwant, D., Misra, A.: Topology optimization of continuum structures using optimality criterion approach in ANSYS. Int. J. Adv. Eng. Technol. 5(1), 470–485 (2012)

5. Sivanagendra, P., Anathasuresh, G.K.: Size optimization of cantilever beam under deformation-dependant loads with application to wheat stalks. Struct. Multidisc. Optim. 39(3), 327–336 (2009)

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