Journal of the Chinese Ceramic Society, Volume. 50, Issue 12, 3236(2022)
Effect of Microwave Sintering Process on Mechanical Properties of Sialon Ceramic Tool Materials
[1] [1] TU Guizhao, WU Shanghua, LIU Jia, et al. Cutting performance and wear mechanisms of Sialon ceramic cutting tools at high speed dry turning of gray cast iron[J]. Int J Refract Met Hard Mat, 2016, 54: 330-334.
[2] [2] LONG Ying, ZENG Junjie, YU Donghai, et al. Microstructure of TiAlN and CrAlN coatings and cutting performance of coated silicon nitride inserts in cast iron turning[J]. Ceram Int, 2014, 40(7): 9889-9894.
[4] [4] SUN Jianfei, HUANG Shun, DING Haitao, et al. Cutting performance and wear mechanism of Sialon ceramic tools in high speed face milling GH4099[J]. Ceram Int, 2020, 46(2): 1621-1630.
[5] [5] HUANG Xianghui, ZOU Fan, MING Weiwei, et al. Wear mechanisms and effects of monolithic Sialon ceramic tools in side milling of superalloy FGH96[J]. Ceram Int, 2020, 46(17): 26813-26822.
[6] [6] XU C H, FENG Y M, ZHANG R B, et al. Wear behavior of Al2O3/Ti(C,N)/SiC new ceramic tool material when machining tool steel and cast iron[J]. J Mater Process Tech, 2009, 209(10): 4633-4637.
[7] [7] GRZESIK W, MALECKA J. Documentation of tool wear progress in the machining of nodular ductile iron with silicon nitride-based ceramic tools[J]. Cirp Ann-Manuf Techn, 2011, 60(1): 121-124.
[8] [8] NEKOUEE K A, AZARI K R. Preparation and characterization of β-SiAlON/TiN nanocomposites sintered by spark plasma sintering and pressureless sintering[J]. Mater Design, 2016, 112: 419-428.
[10] [10] MANDAL H, KARA F, TURAN S, et al. Novel SiAlON ceramics for cutting tool applications[J]. Key Eng Mater, 2003, 237: 193-202.
[11] [11] BITTERLICH B, BITSCH S, FRIEDERICH K. SiAlON based ceramic cutting tools[J]. J Eur Ceram Soc, 2008, 28(5): 989-994.
[13] [13] ESER O, KURAMA S. A comparison of sintering techniques using different particle sized β-SiAlON powders[J]. J Eur Ceram Soc, 2012, 32(7): 1343-1347.
[14] [14] LAO Xinbin, XU Xiaoyang, JIANG Weihui. Effects of various sintering additives on the properties of β-SiAlON-SiC ceramics obtained by liquid phase sintering[J]. Ceram Int, 2021, 47(9): 13078-13092.
[15] [15] ZYMELKA D, SAUNIER S, GOEURIOT D, et al. Densification and thermal gradient evolution of alumina during microwave sintering at 2.45GHz[J]. Ceram Int, 2013, 39(3): 3269-3277.
[16] [16] YIN Zengbin, YUAN Juntang, WANG Zhenhua, et al. Preparation and properties of an Al2O3/Ti(C, N) micro-nano-composite ceramic tool material by microwave sintering[J]. Ceram Int, 2016, 42(3): 4099-4106.
[17] [17] XU G F, ZHUANG H R, WU F Y, et al. Microwave reaction sintering of α+β sialon composite ceramics[J]. J Eur Ceram Soc, 1997, 17(5): 675-680.
[18] [18] PANNEERSELVAM M, RAO K J. A microwave method for the preparation and sintering β-SiAlON[J]. Mater Res Bull, 2003, 38(4): 663-374.
[19] [19] CHOCKALINGAM S, TRAVER H K. Microwave sintering β-SiAlON-ZrO2 composites[J]. Mater Des, 2010, 31(8): 3641-3646.
[22] [22] LI Yin, JONES M L. Fabrication and properties of Sialon-ZrN composites by two-step sintering[J]. Int J Refract Met H, 2020, 92: 105292.
[23] [23] HAKEEM A S, KHAN M, AHMED B A, et al. Synthesis and characterization of alkaline earth and rare earth doped sialon ceramics by spark plasma sintering[J]. Int J Refract Met Hard Mat, 2021, 97: 105500.
[24] [24] LETWABA L J, TLHABADURA I, DANIYAN I A, et al. Development and microstructural analysis of beta-SiAlONs produced by spark plasma sintering[J]. Mater Today: Proceedings, 2021, 38: 590-594.
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CHEN Peng, ZOU Bin, XUE Kai. Effect of Microwave Sintering Process on Mechanical Properties of Sialon Ceramic Tool Materials[J]. Journal of the Chinese Ceramic Society, 2022, 50(12): 3236
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Received: Jun. 10, 2022
Accepted: --
Published Online: Jan. 20, 2023
The Author Email: Peng CHEN (a13256357191@163.com)