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Original scientific paper

https://doi.org/10.30765/er.3356

An integrated MEREC-MAIRCA-MARCOS MCDM approach for material selection in robotic prosthetic palm design

Ipsita Dhar orcid id orcid.org/0000-0002-8551-7353 ; Department of Mechanical Engineering, Indira Gandhi Institute of Technology, Sarang, Odisha, India; Biju Patnaik University of Technology, Rourkela, Odisha, India *
Bibhuti Bhusan Choudhury ; Department of Mechanical Engineering, Indira Gandhi Institute of Technology, Sarang, Odisha, India; Biju Patnaik University of Technology, Rourkela, Odisha, India
Bidyadhar Sahoo ; Department of Mechanical Engineering, Indira Gandhi Institute of Technology, Sarang, Odisha, India; Biju Patnaik University of Technology, Rourkela, Odisha, India
Sushil Kumar Sahoo orcid id orcid.org/0000-0002-8551-7353 ; Department of Mechanical Engineering, Indira Gandhi Institute of Technology, Sarang, Odisha, India; Biju Patnaik University of Technology, Rourkela, Odisha, India
Dragan Marinković ; Department of Structural Analysis, Technical University of Berlin, Berlin, Germany; Institute of Mechanical Science, Vilnius Gediminas Technical University, Vilnius, Lithuania; University College, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, Republic of Korea
Supriya Sahu ; Department of Mechanical Engineering, Indira Gandhi Institute of Technology, Sarang, Odisha, India; Biju Patnaik University of Technology, Rourkela, Odisha, India

* Corresponding author.


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Abstract

Materials are a critical factor in the functional, durability, and efficiency of robotic prostheses. In this study, an integrated multi-criteria decision-making approach is presented which integrates the three methods MEREC, MAIRCA and MARCOS for the identification of the most suitable material for the design of a robotic prosthetic palm. Twelve materials were considered and nine important criteria were evaluated based on mechanical properties, cost, deformation behavior, etc. MEREC was used to objectively calculate the criterion weights and the most influential factors were Price, Strength to Density Ratio and Tensile Yield Strength. The material ranking was then performed with the MAIRCA and MARCOS methods, after which the results were combined based on the Copeland voting principle. Low alloy steel proved to be the most suitable material because its properties were good in all aspects. The model was found to be robust by performing sensitivity analysis by rank reversal. The proposed method provides a robust and reliable decision-making tool based on data that will aid in selecting materials for prosthetic applications, ultimately leading to the creation of more efficient and user-friendly prosthetic devices.

Keywords

robotic prosthetic palm design; material selection; MCDM; MEREC; MAIRCA; MARCOS

Hrčak ID:

350929

URI

https://hrcak.srce.hr/350929

Publication date:

8.9.2026.

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