碳化硼陶瓷烧结技术的研究进展Research Progress on Sintering Technology of Boron Carbide Ceramics
邓如意,曹宇,何金秀,胡继林,陈占军,周虹伶
摘要(Abstract):
碳化硼(B_4C)陶瓷具有熔点高、硬度大、耐酸碱腐蚀性好、热膨胀系数小等一系列优良性能,被广泛应用于机械、冶金、化工、军事、国防、航天航空、核能等众多领域。本文综述了国内外碳化硼陶瓷各种烧结技术(无压烧结、热压烧结、放电等离子烧结、微波烧结等)的研究进展,并对这些烧结技术的发展趋势进行了展望。
关键词(KeyWords): B_4C;陶瓷;烧结技术;研究进展
基金项目(Foundation): 湖南省重点研发计划项目(2021GK2015);; 湖南省科技计划项目(2016TP1028)
作者(Author): 邓如意,曹宇,何金秀,胡继林,陈占军,周虹伶
DOI: 10.13958/j.cnki.ztcg.2023.01.007
参考文献(References):
- [1]王冰. B4C-CNTs复合陶瓷的制备及强韧化机理研究[D].湘潭大学,2019.
- [2]黄明,曹峰,彭志航,等.防弹装甲用碳化硼陶瓷材料的研究进展[J].现代技术陶瓷,2021,42(4):213-224.
- [3]谢志鹏.结构陶瓷[M].北京:清华大学出版社,2010.
- [4]关长斌,郭英奎,刘玉成.陶瓷材料导论[M].哈尔滨:哈尔滨工程大学出版社,2005.
- [5]孟凡然,王琨,冯荣.无压烧结碳化硼材料研究进展[J].中国陶瓷工业,2020,27(6):15-18.
- [6]赵亮,李艳国,邹芹,等. B4C的研究现状及发展前景[J].金刚石与磨料磨具工程,2019,39(5):123-129.
- [7]聂丹,王帅,邢鹏飞,等.碳化硼陶瓷的制备工艺及其应用现状[J].铁合金,2019,50(3):33-39.
- [8]尹邦跃,王零森,方寅初. B4C超细粉末的制备及烧结[J].无机材料学报,2002,17(2):343-347.
- [9]KUMAZAWA T,HONDA T,ZHOU Y,et al. Pressureless sintering of boron carbide ceramics[J]. Journal of the Ceramic Society of Japan,2008,116(12):1319-1321.
- [10]LEE H,SPEYER R F. Pressureless sintering of boron carbide[J]. Journal of the American Ceramic Society,2004,86(9):1468-1473.
- [11]李文新,李文辉.碳化硼陶瓷相对密度与性能的关系[J].哈尔滨理工大学学报,2002,7(3):52-54.
- [12]LI X G,JIANG D L,ZHANG J X,et al. Pressureless sintering of boron carbide with Cr3C2 as sintering additive[J].Journal of the European Ceramic Society,2014,34(5):1073-1081.
- [13]袁义鹏,姜宏伟,郑友进.葡萄糖助剂对无压烧结碳化硼性能的影响[J].牡丹江师范学院学报(自然科学版),2016(3):36-38.
- [14]SUBRAMANIAN C,ROY T K,MURTHY T S R C,et al.Effect of zirconia addition on pressureless sintering of boron carbide[J]. Ceramics International,2008,34(6):1543-1549.
- [15]ROY T K,SUBRAMANIAN C,SURI A K. Pressureless sintering of boron carbide[J]. Ceramics International,2006,32(3):227-233.
- [16]MASHHADI M,TAHERI-NASSAJ E,SGLAVO V M.Pressureless sintering of boron carbide[J]. Ceramics International,2010,36(1):151-159.
- [17]李文辉,李文新.铝、硅对碳化硼陶瓷性能的影响[J].哈尔滨理工大学学报,2002,7(4):30-32.
- [18]XU C M,ZENG H,ZHANG G J. Pressureless sintering of boron carbide ceramics with Al-Si additives[J]. International Journal of Refractory Metals&Hard Materials,2013,41:2-6.
- [19]LEE C H,KIM C H. Pressureless sintering and related reaction phenomena of Al2O3-doped B4C[J]. Journal of Materials Science,1992,27:6335-6340.
- [20]姜宏伟,付斯年,黄海亮,等.添加氧化铝烧结助剂的碳化硼陶瓷无压烧结工艺研究[J].粉末冶金技术,2017,35(6):462-468.
- [21]ZORZI J E,PEROTTONI C A,JORNADA J A H. Hardness and wear resistance of B4C ceramics prepared with several additives[J]. Materials Letters,2005,59(23):2932-2935.
- [22]LIU G Q,CHEN S X,ZHAO Y W,et al. The effect of transition metal carbides MeC(Me=Ti,Zr,Nb,Ta,and W)on mechanical properties of B4C ceramics fabricated via pressureless sintering[J]. Ceramics International,2020,46(17):27283-27291.
- [23]TURATTI A M,PEREIRA A S. Wear resistant boron carbide compacts produced by pressureless sintering[J]. Ceramics International,2017,43(11):7970-7977.
- [24]薄睿恬. B4C-TiB2复合陶瓷材料的制备及性能研究[D].牡丹江师范学院,2019.
- [25]宋绍翠.碳化硼复相陶瓷的制备与表征[D].哈尔滨工业大学,2021.
- [26]李西南,刘小兵.热压烧结碳化硼的性能研究[J].长沙电力学院学报(自然科学版),2002,17(4):64-67.
- [27]LIU Y Y,QIAO Y J,WANG Y,et al. Preparation of homogeneous B4C ceramics with high toughness by tape casting[J]. Materials Science and Engineering:A,2012,549(15):144-148.
- [28]ZHANG X R,GAO H J,ZHANG Z X,et al. Effects of pressure on densification behaviour,microstructures and mechanical properties of boron carbide ceramics fabricated by hot pressing[J]. Ceramics International,2017,43(8):6345-6352.
- [29]尹邦跃,王零森.热压烧结B4C陶瓷的物理性能研究[J].原子能科学技术,2004,38(5):429-431.
- [30]杜程,闫琪,魏智才.用于烧结碳化硼陶瓷的低温快速直流烧结设备[J].真空科学与技术学报,2021,41(4):385-390.
- [31]徐璟玉,吴文远,边雪,等. GdB6对热压烧结B4C材料性能的影响[J].稀土,2005,26(4):10-14.
- [32]刘维良,刘硕琦,林幸,等.水基流延成型和热压烧结制备碳化硼陶瓷及性能研究[J].人工晶体学报,2009,38(4):989-993.
- [33]陈碧霜.热压烧结B4C、ZrB2/B4C陶瓷材料的组织与性能研究[D].东北大学,2009.
- [34]杜贤武.聚碳硅烷及氧化锆对B4C热压致密化、结构及性能的影响[D].武汉理工大学,2015.
- [35]BAI W H,LIU W,WANG W M,et al. Drucker-prager-cap modelling of boron carbide powder for coupled electrical-thermal-mechanical finite element simulation of spark plasma sintering[J]. Ceramics International,2021,47(15):21536-21545.
- [36]ZHANG M,LI R D,YUAN T C,et al. Effect of low-melting-point sintering aid on densification mechanisms of boron carbide during spark plasma sintering[J]. Scripta Materialia,2019,163:34-39.
- [37]章嵩. SPS反应烧结碳化硼陶瓷[D].武汉理工大学,2007.
- [38]ZHANG X R,ZHANG Z X,WEN R L,et al. Comparisons of the densification,microstructure and mechanical properties of boron carbide sintered by hot pressing and spark plasma sintering[J]. Ceramics International,2018,44(2):2615-2619.
- [39]FRAGE N,HAYUN S,KALABUKHOV S,et al. The effect of Fe addition on the densification of B4C powder by spark plasma sintering[J]. Powder Metallurgy and Metal Ceramics,2007,46(11):533-538.
- [40]张永财.放电等离子烧结碳化硼陶瓷的高温力学性能[J].耐火与石灰,2018,43(4):61-64.
- [41]VASYLKIV O,DEMIRSKYI D,BADICA P,et al. Room and high temperature flexural failure of spark plasma sintered boron carbide[J]. Ceramics International,2016,42(6):7001-7013.
- [42]BADICA P,BORODIANSKA H,XIE S M,et al. Toughness control of boron carbide obtained by spark plasma sintering in nitrogen atmosphere[J]. Ceramics International,2014,40(2):3053-3061.
- [43]DIATTA J,TORRESANI E,MAXIMENKO A,et al. Peltier effect during spark plasma sintering of boron carbide[J].Results in Physics,2021,29:104719.
- [44]ZHANG M,YUAN T C,LI R D,et al. Densification mechanisms and microstructural evolution during spark plasma sintering of boron carbide powders[J]. Ceramics International,2018,44(4):3571-3579.
- [45]WANG C B,ZHANG S,SHEN Q,et al. Investigation on reactive sintering process of boron carbide ceramics by XRD[J].Materials Science and Technology,2009,25(6):809-812.
- [46]LI X G,JIANG D L,ZHANG J X,et al. Densification behavior and related phenomena of spark plasma sintered boron carbide[J]. Ceramics International,2014,40(3):4359-4366.
- [47]PRAMANICK A,DEY P P,DAS P K,et al. Microstructure,phase and electrical conductivity analyses of spark plasma sintered boron carbide machined with WEDM[J]. Ceramics International,2020,46(3):2887-2894.
- [48]XIE K Y,TOKSOY M F,KUWELKAR K,et al. Effect of alumina on the structure and mechanical properties of spark plasma sintered boron carbide[J]. Journal of the American Ceramic Society,2014,97(11):3710-3718.
- [49]SUN C,LI Y K,WANG Y F,et al. Effect of alumina addition on the densification of boron carbide ceramics prepared by spark plasma sintering technique[J]. Ceramics International,2014,40(8):12723-12728.
- [50]CHEN M D,YIN Z B,YUAN J T,et al. Microstructure and properties of a graphene platelets toughened boron carbide composite ceramic by spark plasma sintering[J]. Ceramics International,2018,44(13):15370-15377.
- [51]周梓良.基于放电等离子烧结的碳化硼陶瓷致密化研究[D].重庆交通大学,2019.
- [52]赵梓有.碳化硼复相陶瓷的SPS烧结制备及性能研究[D].西南交通大学,2019.
- [53]李忠轲,黄紫豪,郑家舜,等.微波烧结法制备碳化硼-石墨化炭黑复合粉体[J].耐火材料,2020,54(1):37-40.
- [54]张世豪. B4C微波合成技术及B4C/Al复合材料力学性能的研究[D].郑州大学,2017.
- [55]唐锋.微波低温烧结制备B4Cp/Al复合材料的微观组织与性能研究[D].江苏大学,2020.
- [56]DYATKIN B,GAMACHE R M,ROCK B Y,et al. Microwave-assisted pressureless sintering of silicon-reinforced boron carbide composites[J]. Journal of Solid State Chemistry,2020,292:121659.
- [57]高思伟. Ti-43Al-9V-Y合金粉末热等静压工艺及组织性能研究[D].哈尔滨工业大学,2020.
- [58]朱郎平.复杂薄壁钛合金构件粉末热等静压近净成形与性能调控[D].北京科技大学,2021.
- [59]滕庆.热等静压制备镍基粉末高温合金的工艺与组织性能研究[D].华中科技大学,2020.
- [60]陈锦,熊宁,葛启录,等.热等静压法制备大尺寸铝基碳化硼复合材料及性能研究[J].粉末冶金技术,2020,38(2):132-137.
- [61]庞晓轩,鲜亚疆,罗昊,等.半固态热等静压Al/B4C复合材料液相流动行为与致密化机理[J].稀有金属材料与工程,2019,48(10):3102-3107.