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磷、钛对含磷IF高强钢织构的影响 被引量:9

Effect of P and Ti on texture of containing phosphorus high strength IF steel
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摘要 借助电子背散射衍射(EBSD)技术,以罩退生产的冷轧Ti-IF钢及含磷Ti-IF高强钢为目标,分析不同磷、钛合金质量分数对产品特征织构的影响。结果表明,磷元素虽然有利于γ取向线上{111}〈112〉织构的增加,但也增加了组分强度差,不利于塑性应变比r值,并且磷元素对{111}织构发展的促进作用取决于钢中过剰钛的质量分数,过剩钛质量分数过高会促进FeTiP二相粒子的析出,从而阻碍{111}取向再结晶晶粒的长大,弱化{111}面织构的强度。研究结果对该材料合金成分的调整起到了指导作用。为了保证所生产的含磷IF高强钢获得一定的强度,同时兼备良好的冲压性能,应降低IF钢中的钛质量分数,适当加入铌以弥补因钛减少对间隙原子固定产生的影响。 The effects of the alloying elements of P and Ti on the recrystallization texture characteristics of Ti-IF steel and containing P high strength Ti-IF steel were researched by EBSD.The results showed that the P element was beneficial to the increase of{111}〈112〉texture on theγorientation line,but also increase the strength of the component which is not conducive to the r value,and the promoting effect of P element on the development of{111}texture depends on the mass fraction of excess Ti in steel,the high Ti mass fraction will promote the precipitation of FeTiP particles,which can hinder the growth of{111}oriented recrystallization grains,and weaken the intensity of{111}surface texture.The results can provide a guide to the adjustment of the alloying elements in the material.To ensure that the produced containing P high strength IF steel has certain intensity and good drawing property,the Ti mass fraction in IF steel should be reduced,and the Nb should be added to reduce the effect of the decrease of Ti on the fixation of the interstitial atom.
作者 王瑾 罗晓阳 赵小龙 张梁 WANG Jin LUO Xiao-yang ZHAO Xiao-long ZHANG Liang(Carbon Steel Strip Plant of Hongxing Iron and Steel Co. , Ltd. , JISCO, Jiayuguan 735100, Gansu, China)
出处 《中国冶金》 CAS 2017年第2期28-32,共5页 China Metallurgy
基金 嘉峪关市科技支撑计划资助项目
关键词 再结晶织构 含磷IF高强钢 过剩钛 晶粒取向 recrystalization texture IF high strength steel with P strengthening excess Ti grain orientation
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  • 1邱瑞青,沈汝美,陈名浩.IF钢相分析方法的研究及其应用[J].钢铁研究学报,1997,9(S1):80-84. 被引量:3
  • 2王昭东,郭艳辉,赵忠,孙大庆.应用铁素体区热轧工艺开发超低碳热轧深冲板[J].东北大学学报(自然科学版),2005,26(8):747-750. 被引量:16
  • 3Ray R K, Jonas J J, Hook R E. Cold roiling and annealing textures in low carbon and extra low carbon steels[J]. International Materials Reviews, 1994, 39:129 - 172.
  • 4Nagataki Y, Hosoya Y. Origin of the recrystallization texture formation in an interstitial free steel[J]. ISU Inter, 1996, 36:451 -460.
  • 5Eloot K, Okuda K,et al. Texture evolution during rolling and recrystallization of IF steel with a strong { 111 } hot band texture[Jl. ISIJ Inter, 1998, 38:602 - 609.
  • 6Jonas J J. Effects of shear band formation on texture development in warm-rolled IF steels[ J]. J of Materials Processing Technology, 2001, 17:293 - 299.
  • 7Barnett M R. Role of in-grain shear bands in the nucleation of (111) IIND recrystallization textures in warm rolled steel[ J]. ISIJ Inter, 1998, 38:78 - 85.
  • 8Inagaki H. Fundamental aspect of texture formation in low carbon steel[J]. ISIJ Inter, 1994, 34:313 -321.
  • 9M.R.Barnett, L.Kestens, Formation of {111}<110> and {111}<112> textures in cold rolled and annealed IF sheet steel, ISIJ International, 39(9), 923(1999).
  • 10Y.Nagataki, Y.Hosoya, Origin of the Recrystllization Texture Formation in an Interstitial Free Steel, ISIJ International, 36(4), 451(1996).

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