International Journal of Mechanics and Materials in Design

Papers
(The H4-Index of International Journal of Mechanics and Materials in Design is 15. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2021-05-01 to 2025-05-01.)
ArticleCitations
New instability model leading the wrinkling at the positive-curvature arc part during the tube hydro-forging process35
Ultra-wideband outward-hierarchical metamaterials with graded design30
Prediction of compressive strength and tensile strain of engineered cementitious composite using machine learning28
A mode-matching analysis of flexible shells and waveguides with partitioning and muffler conditions26
Equivalent damper model for honeycomb structures25
Mechanical modeling of strain rate-dependent behavior of shear-stiffening gel23
Optimization of vibration analysis for functionally graded graphene platelets (FGGP) reinforced twisted cantilever thin shallow shell blades subjected to axial loading22
Kinematic and dynamic analysis of a 3-DOF parallel mechanism17
Advances in the development of superhydrophobic and icephobic surfaces17
Aeroelastic investigation and stability of small- and mid-scale wind turbine blades16
Application of artificial intelligence to optimize the process parameters effects on tensile properties of Ti-6Al-4V fabricated by laser powder-bed fusion16
Digital image correlation for measuring strain concentration and distribution mechanics in holed spacer fabrics for knee brace applications16
An efficient approximation algorithm for variance global sensitivity by Bayesian updating16
Multiple-phase materials topology optimization framework with buckling criteria15
Non-probabilistic reliability-based multi-material topology optimization with stress constraint15
A finite element computational framework for enhanced photostrictive performance in 0–3 composites15
Mesoscale analysis of rubber particle effect on young’s modulus and creep behaviour of crumb rubber concrete15
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