[1] 马正和,阿达依·谢尔亚孜旦,刘俊杰,等.45钢的激光淬火温度场与相变硬化区[J].金属热处理,2023,48(9):258-264. [2] 李 杰.在电热罩式退火炉生产冷轧薄板45钢的工艺研究[J].山西冶金,2007(1):10-11,19. [3] YE D Y,WANG Z L.Change characteristics of static mechanical property parameters and dislocation structures of 45# medium carbon structural steel during fatigue failure process[J].Materials Science and Engineering A,2001,297(1/2):54-61. [4] 耿春丽.超声振动对45钢表层组织及摩擦性能影响的实验研究[D].青岛:中国石油大学(华东),2020. [5] 张永军,王九花,李新鹏,等.石墨化钢压缩温变形行为的试验研究[J].哈尔滨工程大学学报,2021,42(3):433-438. [6] 黄 俊,罗海文.退火工艺对含Nb高强无取向硅钢组织及性能的影响[J].金属学报,2018,54(3):377-384. [7] NASIRI Z,GHAEMIFAR S,NAGHIZADEH M,et al.Thermal mechanisms of grain refinement in steels:a review[J].Metals and Materials International,2021,27:2078-2094. [8] KARMAKAR A,GHOSH M,CHAKRABARTI D.Cold-rolling and inter-critical annealing of low-carbon steel:Effect of initial microstructure and heating-rate[J].Materials Science and Engineering A,2013,564:389-399. [9] REN Q Q,BAIK S I,AN D,et al.The effects of heat-treatment parameters on the mechanical properties and microstructures of a low-carbon dual-phase steel[J].Materials Science and Engineering A,2023,888:145801. [10] PODDAR D,CHINTHA A R,JAYABALAN B,et al.Effect of low-temperature annealing on two-different severely cold-rolled steels[J].Materials Today Communications,2022,32:103907. [11] LESCH C,ÁLVAREZ P,BLECK W,et al.Rapid transformation annealing:a novel method for grain refinement of cold-rolled low-carbon steels[J].Metallurgical and Materials Transactions A,2007,38:1882-1890. [12] MASSARDIER V,NGANSOP A,FABREGUE D,et al.Identification of the parameters controlling the grain refinement of ultra-rapidly annealed low carbon Al-killed steels[J].Materials Science and Engineering A,2010,527:5654-5663. [13] CHBIHI A,BARBIER D,GERMAIN L,et al.Interactions between ferrite recrystallization and austenite formation in high-strength steels[J].Journal of Materials Science,2014,49:3608-3621. [14] 罗 婵,任慧平,金自力,等.退火加热速度对CSP稀土冷轧钢板再结晶的影响[J].金属热处理,2015,40(4):125-128. [15] KUBIN L P,MORTENSEN A.Geometrically necessary dislocations and strain-gradient plasticity:a few critical issues[J].Scripta Mater,2003,48:119-125. [16] GAO H,HUANG Y,NIX W D,et al.Mechanism-based strain gradient plasticity—I.Theory[J].Journal of the Mechanics and Physics of Solids,1999,47:1239-1263. [17] 刘剑锋.低碳低合金高强汽车钢组织性能调控[D].沈阳:东北大学,2018. [18] 颜礼功,彭 澎,李 增,等.冷轧丝杆用45钢球化退火工艺研究[J].金属热处理,2000,4:34-35. [19] 李朝阳,郭呈宇,康永林,等.船用高强韧钢二次淬火过程对屈强比的影响[J].哈尔滨工程大学学报,2022,43(10):1478-1482. |