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2017, 03, v.16;No.63 191-195
单位质量反应热对铝热法直接制备Ti-Al-V合金的影响
基金项目(Foundation): 国家自然科学基金项目(51422403,51674064);; 中央直属高校基本业务费优秀科技人才培育基金(N162505002);; 973计划项目(2013CB632606)
邮箱(Email):
DOI: 10.14186/j.cnki.1671-6620.2017.03.007
发布时间: 2017-09-15
出版时间: 2017-09-15
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摘要:

分别对Al-TiO2体系、Al-V_2O5体系、Al-V_2O5-TiO2体系以及Al-V_2O5-TiO2-CaO体系单位质量反应热(q,J/g)进行了计算.考察了单位质量反应热对实验结果的影响.利用XRD物相分析仪、SEM扫描电镜以及ICP对合金进行了系统的分析.结果表明:Al-V_2O5-TiO2-CaO体系的单位质量反应热小于2 700 J/g,发热量不足,反应不能靠自热进行,需要对体系进行补充热量才能保证自蔓延反应顺利进行;CaO的加入会降低体系的单位质量反应热.合金的主要物相为Ti、Al金属间化合物、Al_2O3及硅铁化合物.合金微观组织结构为基体相、板条状β相以及不规则的Al_2O3夹杂相,单位质量反应热对合金中含硅相的尺寸及分布有较大影响.随着单位质量反应热的增加,合金中Ti的含量呈下降趋势,合金中的铝呈上升趋势,V、Fe、Si元素含量(质量分数/%)随单位质量反应热的增加基本保持不变.制备合金中Al的质量分数最低为9.35%,Fe最低为2.17%,Si最低为0.78%,V最高含量为4.30%.

Abstract:

The reaction heats per unit mass for Al-TiO2,Al-V_2O5,Al-V_2O5-TiO2 and Al-V_2O5-TiO2-CaO systems were calculated. Effect of addition of aluminum powder and KClO3 on preparation of Ti-Al-V alloy was studied. The alloy was analyzed by XRD,SEM,Inductively Coupled Plasma Emission. The results showed that the heats per unit mass of Al-V_2O5-T iO2-CaO system is less than 2 700 J/g,indicating that the reaction can't occur spontaneously. Addition of CaO decreases the reaction heat per unit mass of the system. The main physical phases of the alloy prepared by the thermite process are Ti-Al intermetallic compound,Al_2O3 and Fe-Si compounds. The reaction heats per unit mass has a great effect on the the size and distribution of silicides.Content of titanium in the alloy decreases,with the content of aluminum increases,while the contents of vanadium,iron and silicon changes a little with increase of the reaction heat. The lowest contents of Al,Fe,Si in the alloy are 9. 35%,2. 17%,0. 78%. The highest content of vanadium is 4. 30%.

参考文献

[1]王金友,葛志明,周彦邦.航空用钛合金[M].上海:上海科学技术出版社,1985.(Wang Jinyou,Ge Zhiming,Zhou Yanbang.T itanium alloy applied in aviation[M].Shanghai:Shanghai Science and T echnology Press,1985.)

[2]张喜燕,赵永庆,白晨光.航空用钛合金[M].北京:化学工业出版社,2005.(Zhang Xiyan,Zhao Yongqing,Bai Chenguang.T itanium alloy applied in aviation[M].Beijing:Chemical Industry Press,2005.)

[3]颜鸣皋,吴学仁,朱知寿.航空材料技术的发展现状与展望[J].航空制造技术,2003(12):19-25.(Yan Minggao,Wu Xueren,Zhu Zhishou.T he present development situation and prospect of aviation materials technology[J].Aviation Manufacturing T echnology,2003(12):19-25.)

[4]彭艳萍,曾凡昌,王俊杰,等.航空材料技术的发展现状与展望[J].航空制造技术,1997(10):3-6.(Peng Yanping,Zeng Fanchang,Wang Junjie,et al.T he present development situation and prospect of aviation materials technology[J].Aviation Manufacturing T echnology,1997(10):3-6.)

[5]喇培清,卢学峰,申达,等.铝热法制备高钒铝合金的研究[J].粉末冶金技术,2012,30(5):371-375.(La Peiqing,Lu Xuefeng,Shen Da,et al.Study on high grade vanadium-aluminium alloy prepared by aluminothermic reaction[J].Powder Metallurgy T echnology,1997(10):3-6.)

[6]豆志河,张廷安,侯闯,等.自蔓延高温合成CaB6的基础研究[J].中国有色金属学报,2004,14(2):322-326.(Dou Zhihe,Zhang T ingan,Hou Chuang,et al.Elementary research on CaB6 prepared by SHS[J].T he Chinese Journal of Nonferrous Metals,2004,14(2):322-326.)

[7]肖翔鸿,刘名扬,罗发应.铝热法冶炼高钛铁工艺试验[J].钢铁钒钛,2001,22(4):47-51.(Xiao Xianghong,Liu Mingyang,Luo Faying.An investigation on melting ferrotitanium process in thermite method[J].Iron Steel T itanium Vanadium,2001,22(4):47-51.)

[8]许磊,竺培显,袁宜耀.高品位钛铁生产新工艺的研究与探讨[J].南方金属,2008(4):4-7.(Xu Lei,Zhu Peixian,Yuan Yiyao.A new process of making high titanium ferro alloy[J].South Metals,2008(4):4-7.)

[9]福尔克特G,弗兰克KD.铁合金冶金学[M].上海:上海科学技术出版社,1978.(Folkert G,frank K.D.T itanium alloy applied in aviation[M].Shanghai:Shanghai science and technology Press,2005.)

[10]梁英教,车荫昌.无机热力学数据手册[M].沈阳:东北大学出版社,1993:40-47.(Liang Yingjiao,Che Yinchang.Handbook of thermodynamic data of inorganic[J].Shenyang:Northeastern University Press,1993:45-47.)

[11]豆志河,张廷安,张含博,等.采用铝热自蔓延法制备低氧高钛铁合金[J].中南大学学报(自然科学版),2012,43(6):2108-2113.(Dou Zhihe,Zhang T ingan,Zhang Hanbo,et al.Preparation of high titanium ferrous with low oxygen content by thermit reduction-SHS[J].Journal of Central South University(Science and T echnology),2012,43(6):2108-2113.

[12]陈卫峰,石玉峰.T i6242S合金中硅化物出现的条件[J].稀有金属材料与工程,1999,28(5):323-325.(Chen Weifeng,Shi Yufeng.T he precipitating conditions of silicides in T i6242S alloy[J].Rare Metal Materials and Engineering,1999,28(5):323-325.)

[13]张尚洲,徐惠忠,刘子全,等.碳含量对T i 60合金时效过程中硅化物的影响[J].材料研究学报,2005,19(5):499-505.(Zhang Shangzhou,Xu Huizhong,Liu Zhiquan,et al.T he effects of C content on the silicides in the T i 60 during the alloy aging process[J].Chinese Journal of Materials Research,2005,19(5):499-505.)

[14]蔡建明,郝孟一,李学明.T i-60合金中硅化物的析出行为[J].金属学报,1999,35(增刊1):198-201.(Cai Jianming,Hao Mengyi,Li xuemingi.T he precipitation behavior of silicides in the T i-60 alloy[J].Journal of Nonferrous Metals,1999,35:198-201.)

[15]李文,张瑞林,余瑞璜.T i-Al合金相图及金属间化合物[J],材料导报,1995,12(4):14-18.(Li Wen,Zhang Ruilin,Yu Ruihuang.T he phase digram and intermetallies of T i-Al system[J].Materials Review,1995,12(4):14-18.)

基本信息:

DOI:10.14186/j.cnki.1671-6620.2017.03.007

中图分类号:TF823

引用信息:

[1]程楚,豆志河,张廷安,等.单位质量反应热对铝热法直接制备Ti-Al-V合金的影响[J].材料与冶金学报,2017,16(03):191-195.DOI:10.14186/j.cnki.1671-6620.2017.03.007.

基金信息:

国家自然科学基金项目(51422403,51674064);; 中央直属高校基本业务费优秀科技人才培育基金(N162505002);; 973计划项目(2013CB632606)

发布时间:

2017-09-15

出版时间:

2017-09-15

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