冷却速度对Fe-Cr-B合金显微组织的影响Effects of cooling rate on microstructure of Fe-Cr-B alloy
花晓燕,郭长庆,韩继炜,石安君
摘要(Abstract):
介绍了将Fe-Cr-B合金1050℃×30 min奥氏体化后经水冷、空冷和炉冷3种不同的冷却速度处理后对其显微组织和韧性的影响。采用光学显微镜、SEM、EDS和XRD对热处理后的组织进行了观察和分析。结果表明,奥氏体化后不同的冷却速度对基体组织的形貌没有产生明显的影响,并且,在晶界上呈连续分布的、粗大的网状硼化物也只是出现了局部断裂,边缘变得更加圆整。然而,冷却速度的变化对于基体上分布的析出相颗粒却有着显著的影响。随着冷却速度的下降,基体上析出相颗粒的数量逐渐增多、部分颗粒尺寸增大,并且,分布的不均匀性也在逐渐加强。其具体表现形式为:新析出相颗粒倾向于沿着在晶粒内部已经由析出相颗粒密集析出而形成的亚晶界或亚相界上优先析出。从而,使得这些部位逐渐由一根线条扩大为一个区域,这样的组织现象与Fe-C合金中析出相颗粒的析出规律是不相同的。XRD检测表明:这些析出相颗粒为M23(C,B)6和M6(C,B)。与Fe-C合金不同的是:Fe-Cr-B合金的韧性随奥氏体化后冷却速度的升高而增大,但增大的幅度不大。
关键词(KeyWords): Fe-Cr-B合金;冷却速度;显微组织;析出相;非平衡偏聚
基金项目(Foundation): 江苏大学高级人才基金资助(12JDG033)
作者(Author): 花晓燕,郭长庆,韩继炜,石安君
DOI: 10.13289/j.issn.1009-6264.2015.s1.010
参考文献(References):
- [1]陈华辉,邢建东,李卫.耐磨材料应用手册[M].北京:机械工业出版社,2006.
- [2]智小慧,韩彦军,彭纪云,等.钛细化过共晶高铬铸铁的研究[J].稀有金属材料与工程,2008,37(1):101-104.ZHI Xiao-hui,HAN Yan-jun,PENG Ji-yun,et al.Effect of titanium on the microstructure of hypereutectic high-chromium cast iron[J].Rare Metal Materials and Engineering,2008,37(1):101-104.
- [3]杨昭,张海峰,王爱民,等.半固态高铬铸铁的流变铸造组织的演变[J].稀有金属材料与工程,2003,32(1):23-26.YANG Zhao,ZHANG Hai-feng,WANG Ai-ming,et al.Evolution of rheocast structure of high chromium white iron[J].Rare Metal Materials and Engineering,2003,32(1):23-26.
- [4]ZHI Xiao-hui,XING Jian-dong,FU Han-guang.Effect of niobium on the as-cast microstructure of hypereutectic high chromium cast iron[J].Materials Letters,2008,62(6/7):857-860.
- [5]师文校,符寒光,蒋志强,等.热处理对高硼低碳铸钢显微组织和性能的影响[J].钢铁钒钛,2007,28(4):56-61.SHI Wen-xiao,FU Han-guang,JIANG Zhi-qiang,et al.Effect of heat treatment on microstructure and property high boron and low carbon cast steel[J].Iron Steel Vanadium Titanium,2007,28(4):56-61.
- [6]郭长庆,高守忠.新型铁基耐磨材料FCB合金[J].铸造,2004,53(10):761-764.GUO Chang-qing,GAO Sou-zong.New Fe-base wear-resistant material FCB alloys[J].Foundry,2004,53(10):761-764.
- [7]王琦环,郭长庆,P.M.Kelly.Fe-Cr-B合金的显微组织[J].金属热处理,2004,29(5):30-32.WANG Qi-huan,GUO Chang-qing,P.M.Kelly.Microstructures of the Fe-Cr-B alloys[J].Heat Treatment of Metals,2004,29(5):30-32.
- [8]刘锋,杜忠泽,符寒光,等.Fe-Cr-B合金研究与发展的探讨[J].热加工工艺,2013,42(4):37-42.LIU Feng,DU Zhong-ze,FU Han-guang,et al.Discussion on research and development of Fe-Cr-B alloy[J].Hot Working Technology,2013,42(4):37-42.
- [9]董占武,魏世忠,张国赏,等.高碳硼钢凝固组织研究[J].铸造技术,2005,30(5):610-613.DONG Zhan-wu,WEI Shi-zhong,ZHANG Guo-shang,et al.Research on solidified structure of high-carbon boron steel[J].Foundry Technology,2005,30(5):610-613.
- [10]崔怀洋,贺信莱.晶界非平衡偏聚与晶体缺陷构型的关系[J].金属学报,1999,35(3):239-244.CUI Huai-yang,HE Xing-lai.The relation of non-equilibrium segregation and crystal defects[J].Acta Metallurgical Sinica,1999,35(3):239-244.
- [11]GUO Chang-qing,WANG Cai-dong,LIU Xiao-ping,et al.Effect of variable heat treatment modes on microstructures of Fe-Cr-B cast iron alloy[J].China Foundry,2008,5(1):28-31.
- [12]余宗森,陈宁.固体中一种新发现的扩散机制—复合体扩散机制[J].金属学报,1994,30(1):A7-A9.YU Zong-sen,CHEN Ning.A newly discovered diffusion mechanism in solid[J].Acta Metallurgical Sinica,1994,30(1):A7-A9.
- [13]GUO Chang-qing.Improving the ductility and toughness of Fe-Cr-B cast irons[D].The University of Queensland,2002.
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