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February 20, 2026Journal of Materials Science Materials in Engineering0 citationsOpen Access

Geometrical optimization of aluminum alloy wheels for high fatigue and impact strength

SSShara ShahbazianAPAbdolreza PasharaveshAKAmir A. Khayyat

Key Points

  • The research aims to optimize the geometry of aluminum alloy wheels to enhance fatigue and impact resistance while meeting industry standards.
  • Developed an optimization methodology using finite element method in Abaqus.
  • Analyzed fatigue life using the modified Goodman criterion.
  • Conducted experimental validation through rotary fatigue and impact testing.
  • Reduced Von Mises stresses in critical spoke and hub regions by 18.7% and 22.4%.
  • Achieved a 98% increase in cycle life compared to baseline designs.
  • Optimized wheels survived 1.5 × 10^5 cycles without failure.
  • Enabled a 6.2% weight reduction while enhancing mechanical performance.

Abstract

Abstract This study presents a systematic approach to optimizing aluminum alloy wheel geometry to simultaneously improve fatigue life and impact strength while ensuring compliance with ISO 3006 standards. Using finite element method in Abaqus, an optimization methodology was developed that reduces Von Mises stresses in critical spoke and hub regions by 18.7% and 22.4%, respectively. Fatigue life analysis, based on the modified Goodman criterion, demonstrated a 98% increase in cycle life compared to baseline designs. Experimental validation via rotary fatigue and impact testing confirmed the simulation results, with optimized wheels surviving 1.5 × 10 5 cycles without failure. The proposed method enables a 6.2% weight reduction while enhancing mechanical performance, offering significant implications for automotive lightweighting strategies.

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Cite This Study

Shahbazian et al. (2026) studied this question.

synapsesocial.com/papers/6997fa03ad1d9b11b3452df3https://doi.org/10.1186/s40712-026-00418-9
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Cost reduction of aluminium alloy wheels by failure mode analysis-based mass optimisation2025
  2. 2Topology optimization of wheel spoke cavities for lightweight design under bending fatigue and impact load cases2026 · 1 citations
  3. 3Topology-Driven Structural Optimization and Cross-Material Robustness Assessment of Automotive Wheel Rims Using Finite Element Analysis2026
  4. 4Structural and Fatigue Analysis of Aluminium A356 Alloy Automotive Wheel Using Finite Element Method2026
  5. 5Design And Analysis Of A Car Wheel Rim2025