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April 10, 2026The International Journal of Advanced Manufacturing Technology0 citationsOpen Access

Thickness effects on profile and surface in micro deep drawing of stainless-steel foils

DPDi PanFJFanghui JiaDZDaiyan Zhao

Key Points

  • This research aims to explore how thickness and nanolubrication affect the micro deep drawing process of stainless steel foils.
  • Investigated micro deep drawing of SUS301 stainless-steel foils with thicknesses of 30-50 µm.
  • Compared dry conditions with 2 wt% TiO₂ nanolubrication under fixed tool configuration.
  • Developed a size-effect-based constitutive model to analyze thickness-dependent responses.
  • TiO₂ nanolubrication significantly reduced drawing forces across all foil thicknesses.
  • Improved microcup morphology under nanolubrication by reducing wrinkling and enhancing accuracy.
  • EDS analysis indicated thickness-dependent lubrication behavior, with optimal nanoparticle distribution at 40 µm.

Abstract

Micro deep drawing (MDD) enables the precise production of microscale hollow, thin-walled components for aircraft and medical applications. MDD of SUS301 stainless-steel foils with thicknesses of 30–50 μm was investigated under dry and TiO₂ nanolubrication conditions using a fixed tool configuration. A size-effect-based constitutive model was developed to describe the thickness-dependent forming response in MDD. Compared with dry conditions, 2 wt% TiO₂ nanolubrication reduced drawing forces across all thicknesses. Nanolubrication improved microcup morphology by suppressing wrinkling and enhancing dimensional accuracy. EDS analysis revealed a thickness dependence in lubricant behaviour, with uniform nanoparticle distribution at 40 μm and unstable accumulation at 30 and 50 μm. These results elucidate the coupled effects of foil thickness and nanolubrication on MDD performance and provide a quantitative basis for optimising microforming of austenitic stainless steels.

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Cite This Study

Pan et al. (2026) studied this question.

synapsesocial.com/papers/69d892d16c1944d70ce0401bhttps://doi.org/10.1007/s00170-026-17879-z
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