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公开(公告)号:US12270087B2
公开(公告)日:2025-04-08
申请号:US17771862
申请日:2020-10-20
Applicant: ArcelorMittal
Inventor: Raisa Grigorieva , Florin Duminica , Brahim Nabi , Pascal Drillet , Thierry Sturel
Abstract: press hardening method includes the following steps: A. the provision of a steel sheet for heat-treatment, precoated with a zinc- or aluminum-based pre-coating, B. the deposition of a hydrogen barrier pre-coating over a thickness from 10 to 550 nm, and comprising at least one element chosen from among: nickel, chromium, magnesium, aluminum and yttrium, C. batch annealing of the precoated steel sheet to obtain a pre-alloyed steel sheet, the cooling after the batch annealing being performed at a speed of 29.0° C.h−1 or less, D. the cutting of the pre-alloyed steel sheet to obtain blank, E. thermal treatment of the blank to obtain a fully austenitic microstructure in the steel, F. the transfer of the blank into a press tool, G. the hot-forming of the blank to obtain a part, H. the cooling of the part obtained at step G).
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公开(公告)号:US11773464B2
公开(公告)日:2023-10-03
申请号:US17275157
申请日:2019-09-20
Applicant: ArcelorMittal
Inventor: Pascal Drillet , Raisa Grigorieva , Thierry Sturel , Cédric Georges , Brahim Nabi , Florin Duminica
IPC: C21D9/46 , C21D1/673 , C21D1/70 , C23C2/28 , B32B15/01 , C22C21/02 , C22C38/54 , C22C38/50 , C22C38/46 , C22C38/44 , C22C38/00 , C22C38/02 , C22C38/04 , C22C38/06 , C22C38/42 , C22C38/48
CPC classification number: C21D9/46 , B32B15/012 , B32B15/013 , C21D1/673 , C21D1/70 , C22C21/02 , C22C38/001 , C22C38/002 , C22C38/008 , C22C38/02 , C22C38/04 , C22C38/06 , C22C38/42 , C22C38/44 , C22C38/46 , C22C38/48 , C22C38/50 , C22C38/54 , C23C2/28 , C21D2211/002 , C21D2211/005 , C21D2211/008
Abstract: A press hardening method includes the following steps providing a carbon steel sheet coated with a barrier pre-coating including nickel and chromium wherein the weight ratio Ni/Cr is between 1.5 and 9, cutting the sheet to obtain a blank, thermal treatment of the blank in an atmosphere having an oxidizing power equal or higher than that of an atmosphere consisting of 1% by volume of oxygen and equal or smaller than that of an atmosphere consisting of 50% by volume of oxygen, such atmosphere having a dew point between −30 and +30° C., transfer of the blank into a press tool, hot-forming of the blank to obtain a part, cooling of the part to obtain a microstructure in steel being martensitic or martensito-bainitic or made of at least 75 wt. % of equiaxed ferrite, from 5 to 20 wt. % of martensite and bainite in amount less than or equal to 10 wt. %.
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公开(公告)号:US12281366B2
公开(公告)日:2025-04-22
申请号:US17771874
申请日:2020-10-20
Applicant: ArcelorMittal
Inventor: Raisa Grigorieva , Florin Duminica , Brahim Nabi , Pascal Drillet , Thierry Sturel
IPC: C21D1/18 , C21D1/26 , C21D1/76 , C21D8/02 , C21D9/48 , C23C2/06 , C23C2/12 , C23C2/26 , C23C2/28
Abstract: A press hardening method includes the following steps: A. the provision of a steel sheet for heat treatment, precoated with a zinc- or aluminum-based pre-coating for anti-corrosion purpose, B. the deposition of a hydrogen barrier pre-coating over a thickness from 10 to 550 nm, C. the batch annealing of the precoated steel sheet in an inert atmosphere to obtain a pre-alloyed steel sheet, D. the cutting of the pre-alloyed steel sheet to obtain blank, E. the thermal treatment of the blank to obtain a fully austenitic microstructure in the steel, F. the transfer of the blank into a press tool, G. the hot-forming of the blank to obtain a part, H. the cooling of the part obtained at step G).
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公开(公告)号:US11162153B2
公开(公告)日:2021-11-02
申请号:US15748395
申请日:2016-07-11
Applicant: ARCELORMITTAL
Inventor: Tiago Machado Amorim , Christian Allely , Raisa Grigorieva , David Dussaussois
IPC: C21D9/46 , C22C21/10 , C23C2/12 , C23C2/28 , C23C2/40 , B32B15/01 , C21D8/00 , C21D6/00 , B21D22/02 , C23C2/26 , C21D1/673 , C22C21/02
Abstract: The present invention provides a method for the manufacture of a hardened part. The method includes the provision of a steel sheet pre-coated with a metallic coating including from 2.0 to 24.0% by weight of zinc, from 1.1 to 7.0% by weight of silicon, optionally from 1.1 to 8.0% by weight of magnesium when the amount of silicon is between 1.1 and 4.0%, and optionally additional elements chosen from Pb, Ni, Zr, or Hf, the content by weight of each additional element being less than 0.3% by weight, the balance being aluminum and unavoidable impurities and residuals elements, wherein the ratio Al/Zn is above 2.9. The method further includes the cutting of the coated steel sheet to obtain a blank, the thermal treatment of the blank at a temperature between 840 and 950° C. to obtain a fully austenitic microstructure in the steel, the transfer of the blank into a press tool, the hot-forming of the blank to obtain a part, the cooling of the part in order to obtain a microstructure in steel being martensitic or martensitic-bainitic or made of at least 75% of equiaxed ferrite, from 5 to 20% of martensite and bainite in amount less than or equal to 10%.
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