摘要:以颜料级TiO2、分析纯无水CaCl2和金属钙为原料,探索一种真空钙热还原制备金属钛粉的新方法,并借助XRD,SEM/EDS等设备对产物成分和钛粉进行表征。结果表明,添加的CaCIz可有效地减弱烧结影响并增大了气一固反应界面有助于还原反应。当CaCl2与Ti02比例为1:4时,片状原料在1000℃下和钙蒸气充分反应6h,还原产物酸洗干燥后制备出低杂质含量的钛粉。粒度分布在10-20μm之间,粉末颗粒呈不规则形状,分布均匀且无大块团聚现象。
Preparation of Ti powders by calciothermic reduction of titania and calcium chloride(AR) in vacuum furnace was investigated by XRD, SEM/EDS. The result indicates that calcium chloride was added which could effectively reduced the sintering effect and help to increase the gas-solid reduction reaction interface. The mass ratio of CaCl2 and TiO2 was about 1:4, and pieces were reduced by calcium vapor at 1273K for 6h. after leaching with hydrochloric acid, the Ti powders with low impurities was prepared. The Ti powders were irregular shape(10-20μm particle size) and the surface of powder was homogeneous and loose agglomeration.
参考文献
[1] | 洪艳,曲涛,沈化森,王兆林,车小奎.氢化脱氢法制备钛粉工艺研究[J].稀有金属,2007(03):311-315. |
[2] | 郝向阳,盖国胜,邹欣,吴运新,张以河,Emmanuelle Reynaud.氢化脱氢钛粉末颗粒的整形及其机理研究[J].稀有金属材料与工程,2009(z3):264-266. |
[3] | Okabe TH.;Sadoway DR. .Metallothermic reduction as an electronically mediated reaction[J].Journal of Materials Research,1998(12):3372-3377. |
[4] | Gerdemann S J .[J].Current Advances in Materials and Processes,2001,159(07):41. |
[5] | Kraft E H .Opportunities for Low Cost Titanium in Re-duced Fuel Consumption,Improved Emissions,and En-hanced Durability Heavy-duty Vehicles[R].Washington:EHK Technologies,2002. |
[6] | 王志,袁章福,郭占成.金属钛生产工艺研究进展[J].过程工程学报,2004(01):90-96. |
[7] | Okabe T H;Oda T;Mitsuda Y .[J].Journal of Alloys and Compounds,2004,364:56-163. |
[8] | 郑海燕,卢金文,沈峰满.TiO2直接制备金属钛技术新进展[J].过程工程学报,2009(z1):448-452. |
[9] | Xu Baoqiang;Yang bin;Wan heli.Preparing Tita-nium Powders by Calcium Vapor Reduction Process of Ti-tanium Dioxide[A].New Jersey,2011:501-508. |
[10] | Froes F H;Trindade B .[J].Journal of Materials Pro-cessing Technology,2004,153-154:472. |
[11] | Froes F H;Eranezhuth B G;Prisbrey K .Mechano-chemical Processing for Metals and Metal Alloys[P].USP:6231636,2001-5-15. |
[12] | 洪艳;沈化森;王兆林 等.[J].中国有色金属学报,2005,15(02):343. |
[13] | Ryosuke S;Kobayashi N;Kobayashi K.Electrol-ysis of CaO in the Molten CaCl2for Direct Reduction ofTiO2[A].北京,2011 |
[14] | 翁启钢,周志辉,林洪波,袁继维,袁铁锤.熔盐电解法制备高纯钛粉[J].粉末冶金材料科学与工程,2010(01):70-73. |
[15] | Wang W E;Kim Y S.[J].Journal of Nuclear Materials,1999(270):242-247. |
[16] | 李泽全,张娜,白晨光,陈小亮,陶长元.TiO_2电极中O~(2-)的形成及迁移过程研究[J].稀有金属材料与工程,2010(03):473-476. |
[17] | 周宁波,肖华,陈白珍,侯朝辉.铵光卤石热脱水及热分解动力学[J].中南大学学报(自然科学版),2008(02):311-316. |
[18] | 果世驹.粉末烧结理论[M].北京:冶金工业出版社,1998:61-85. |
[19] | 陈刚,沈培智,高海燕,贺跃辉,黄伯云,徐南平.真空烧结Fe-Al多孔材料的元素挥发及其对孔结构的影响[J].粉末冶金材料科学与工程,2010(03):229-235. |
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