Effect of Calcination Process on Platy Potassium Magnesium Titanate by Molten Salt Method
- Corresponding author: SHANG Shaoming, smshang@jiangnan.edu.cn
Citation:
LIU Hao, ZHAO Beibei, SHANG Shaoming, GU Dan. Effect of Calcination Process on Platy Potassium Magnesium Titanate by Molten Salt Method[J]. Chinese Journal of Applied Chemistry,
;2017, 34(10): 1195-1201.
doi:
10.11944/j.issn.1000-0518.2017.10.160504
LU Xiaohua, WANG Changsong, ZHAO Lishun, et al. A Method for Preparing the Magnesium Potassium Titanate from Carnallite:CN, 200810023312.9[P], 2008-09-03(in Chinese).
Ogawa H, Inada K, Takahashi S, et al. The Preparation Method of Lepidocrocite Potassium Magnesium Titanate and Friction Materials:CN, 01813460.2[P], 2003-07-27(in Chinese).
GAO Xian, YANG Kunpeng, YAO Wenjun. Performances Comparison of Resin-based Brake Pads Filled with Potassium Magnesium Titanate and Iron Sodium Titanate Platelets[J]. J Nanjing Univ Technol(Nat Sci Ed), 2016,38(2):94-99.
Cho K H, Cho M H, Kim S J. Tribological Properties of Potassium Titanate in the Brake Friction Material; Morphological Effects[J]. Tribol Lett, 2008,32(1):59-66. doi: 10.1007/s11249-008-9362-x
WANG Changsong, YANG Bo, WU Xunkun, et al. Effect of Potassium Titanate Whisker and Potassium Magnesium Titanate as Fillers on the Brake Performance[C]//The Tenth International Symposium on Technical Exchange and Product Exhibition of Friction Materials and the First International Symposium on Technical Exchange and Product Exhibition of the Patents about Auto and Motorcycle Parts. Tianjing, 2008, 19:26-28(in Chinese).
ZOU Xinjian, LI Liang. Process and Equipment for Production of Vanadium and Titanate[M]. Beijing:Chemical Industry Press, 2014:175-176(in Chinese).
Novel Environment-friendly Friction Materials of Platy Titanate[Z]. Institute of Metal Research, Chinese Academy of Science, 2009(in Chinese).
SHEN Yutian, XU Yanji, SHEN Sibo, et al. A Method for Preparing Potassium Titanate Magnesium Directly Using the Magnesium Oxide:CN, 201110161396.4[P]. 2011-06-16(in Chinese).
YU Yuhua, LIN Xin, GUO Jiguang. A Preparation Method of Potassium Hexatitanate:CN, 201510173467.0[P], 2015-08-19(in Chinese).
Hideaki N, Kunimitsu K, Junji A, et al. Titanate Compound, Alkalimetal Titanate Compound, Method for Producing the Same, and Electricity Storage Device Using Them as the Active Material:CN, 201532965[P], 2015-09-01.
FU Wang. Preparation and Characterization of Titanate Materials[D]. Dalian:Dalian University of Technology, 2014(in Chinese).
Tan Y N, Song N, Liu Y. Synthesis of Platy Potassium Magnesium Titanate and Its Application in Removal of Copper Ions from Aqueous Solution[J]. Trans Nonferr Met Soc China, 2015,25(3):981-990. doi: 10.1016/S1003-6326(15)63688-3
CHEN Jinmin, WANG Qilin, HUANG Zhiliang. The Research of K2Ti4O9 Whisker Prepared by a Sintering Method[J]. J Wuhan Inst Technol, 2007,29(2):54-56.
Yasuyoshi S. Alkali Metal-containing Niobate-based Piezoelectric Material Composition and a Method for Producing the Same:US, 20000511316[P], 2002-05-14.
ZHANG Yanghong, ZENG Jiangtao, LI Guorong. Synthesis of Plate-like K0.5Bi0.5TiO3 Particles by Topochemical Method[J]. Chem J Chinese Univ, 2009,30(10):1930-1934. doi: 10.3321/j.issn:0251-0790.2009.10.004
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a.1000 ℃/h; b.200 ℃/h; c.200 ℃/h( < 800 ℃) and 100 ℃/h( > 800 ℃)
A.1000 ℃/h; B.200 ℃/h; C.200 ℃/h( < 800 ℃) and 100 ℃/h( > 800 ℃)
temperature/℃:a.950; b.1000; c.1050; d.1150
temperature/℃:A.950; B.1000; C.1050; D.1150
a.1 h; b.2 h; c.3 h; d.5 h
A.1 h; B.2 h; C.3 h; D.5 h