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May 8, 2026The International Journal of Advanced Manufacturing Technology0 citationsOpen Access

Differential hot stamping of USIBOR® 1500 steel: effect of partial tool heating on phase transformation, hardness and springback

CLCamila Pereira LisboaUniversidade Federal do Rio Grande do SulRLRichard Thomas LermenMinistry of EducationRDRafael Luciano DalcinUniversidade Federal do Rio Grande do Sul

Key Points

  • This research aims to understand how partial tool heating in hot stamping affects phase transformation and mechanical properties of USIBOR 1500 steel.
  • Investigated thermo-mechanical responses via real-time temperature monitoring and microhardness mapping.
  • Analyzed cooling rates and microstructural changes under non-isothermal conditions.
  • Examined the influence of varying tool temperatures (100–300 °C) on the properties of the material.
  • A decrease in hardness from approximately 470 HV 0.2 to 326 HV 0.2 occurs as tool temperature increases.
  • Partial tool heating induces a measurable shift toward negative springback due to uneven thermal contraction.
  • The transition from martensitic to mixed martensitic-bainitic microstructures correlates with changes in cooling rates.

Abstract

Abstract This study investigates the thermo-mechanical response of USIBOR ® 1500 steel subjected to differential hot stamping using partial tool heating. Real-time temperature measurements, cooling rate analysis, microhardness mapping, and optical microscopy were employed to establish process–structure–property relationships under non-isothermal conditions. Increasing tool temperature (100–300 °C) reduces local cooling rates in the heated regions, promoting a transition from predominantly martensitic to mixed martensitic–bainitic and bainitic-dominated microstructures. This transition is accompanied by a decrease in hardness from approximately 470 HV 0.2 to 326 HV 0.2 . Partial tool heating also affects springback behavior, inducing a mensurable shift toward negative springback due to asymmetric thermal contraction and phase transformation-induced strains. The results demonstrate that partial tool heating provides an effective and controllable strategy for tailoring local mechanical properties and springback response in press-hardened steel components.

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Cite This Study

Lisboa et al. (2026) studied this question.

synapsesocial.com/papers/69fd7eb0bfa21ec5bbf06e11https://doi.org/10.1007/s00170-026-18250-y
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