发明名称 HIGH STRENGTH, HOT DIPPED GALVANIZED STEEL SHEET EXCELLENT IN SHAPEABILITY AND METHOD OF PRODUCTION OF SAME
摘要 A high strength hot dipped galvanized steel sheet is provided. By controlling the amount of addition of Ti instead of the addition of Nb or B, it is possible to obtain an effect of retarding recrystallization and grain growth even if annealing by a continuous annealing process in a temperature range of the general annealing temperature of 720° C. to a temperature of the lower of 800° C. or Ac3 temperature. By controlling the rolling and heat treatment conditions, it is possible to control the ferrite phase rate, grain size of the low temperature transformed phases, ratio of average values of the nano hardnesses of the ferrite phase and low temperature transformed phases, and fluctuations of hardnesses of the low temperature transformed phases in a composite structure steel of ferrite and low temperature transformed phases and obtain a high strength hot dipped galvanized steel sheet.
申请公布号 US2016002756(A1) 申请公布日期 2016.01.07
申请号 US201514857578 申请日期 2015.09.17
申请人 NIPPON STEEL & SUMITOMO METAL CORPORATION 发明人 TAKEDA Kengo;KUSUMI Kazuhisa;EGUCHI Haruhiko;HIROWATARI Jun;FUJII Shintarou
分类号 C22C38/38;C22C38/28;C22C38/26;C22C38/24;B32B15/01;C22C38/06;C22C38/02;C22C38/00;C23C2/06;C22C38/32;C22C38/22 主分类号 C22C38/38
代理机构 代理人
主权项 1. A high strength hot dipped galvanized steel sheet comprising, as ingredients of the steel, by mass %, C: 0.05 to 0.1%, Si: 0.1 to 1.0%, Mn: 2.0% to 2.5%, Al: 0.02 to 0.1%, Ti: 0.01 to 0.05%, Cr: 0.1 to 1.0%, Sn: 0.0010 to 0.1%, and a balance of Fe and unavoidable impurities, as the unavoidable impurities, P: 0.03% or less, S: 0.01% or less, Nb: 0.001% or less, V: 0.001% or less, W: 0.001% or less, Mo: 0.001% or less, Zr: 0.001% or less, B: 0.0001% or less, having a microstructure containing, by area %, 70-90% of ferrite and the balance being comprised of a low-temperature transformation phase containing martensite, having an average grain size of the low temperature transformed phase of 0.1 to 1 μm, having a ratio of average nano hardnesses of the ferrite phase and the low temperature transformed phase of 1.5 to 3.0, and having a nano hardness of the low temperature transformed phase at 80% or more of the measurement points of 1 to 5 times the average nano hardness of the ferrite phase.
地址 Tokyo JP