丙烷流量对火焰喷涂TiB2-50Co涂层抗热震性能的影响Influence of propane content on thermal shock property of high velocity oxygen fuel sprayed TiB2-50Co coatings
陈枭,王洪涛,纪岗昌,赖金坤,张良,李浩强
摘要(Abstract):
将在不同丙烷流量条件下采用超音速火焰喷涂技术制备的3种TiB2-50Co进行热震试验,研究3种涂层在600℃不同热震循环次数和800℃条件下的抗热震性能,通过扫描电子显微镜和X射线衍射仪对3种涂层在不同条件下热震后的表面和截面形貌及物相结构进行分析,通过水淬法测试涂层的抗热震性能。结果表明,在600℃条件下,随着热震次数的增加,涂层中的表面和截面裂纹扩展随之更长而深,并在热震循环次数为150次时涂层中出现了网状或交叉裂纹;在800℃条件下,涂层热震失效循环次数明显减少,涂层中裂纹扩展更为严重,其中No.3涂层(丙烷流量为36L/min)抗热震性能最差。通过对3种涂层在不同热震条件后的XRD分析可知,涂层的主要物相为TiB2和Co两相,并发现涂层中存在一定的TiO2氧化相。
关键词(KeyWords): 超音速火焰喷涂;TiB2-50Co;热震;丙烷流量
基金项目(Foundation): 国家自然科学基金(51461022);; 江西省自然科学基金,(20132BAB216014);; 江西省教育厅科技项目(GJJ12610,GJJ14723);; 九江学院校级科研项目(2013KJ12);; 江西省十二五重点学科“材料加工工程”资助
作者(Author): 陈枭,王洪涛,纪岗昌,赖金坤,张良,李浩强
DOI: 10.13289/j.issn.1009-6264.2015.09.031
参考文献(References):
- [1]Du B S,Zou Z D,Wang X H,et al.In situ synthesis of Ti B2/Fe composite coating by laser cladding[J].Materials Letter,2008,62:689-691.
- [2]刘开琪,徐强,张会军.金属陶瓷的制备与应用[M].北京:机械工业出版社,2008:35.
- [3]程汉池,栗卓新,崔丽.Ti B2涂层制备及其性能的研究进展[J].航空制造技术,2005(8):78-82.CHENG Han-chi,LI Zhuo-xin,CUI Li.Research progress of preparation and properties of Ti B2 coating[J].Aeronautical Manufacturing Technology,2005(8):78-82.
- [4]陈枭,纪岗昌,王洪涛,等.丙烷流量对火焰喷涂Ti B2-40Ni涂层组织和性能的影响[J].材料热处理学报,2014,35(8):163-170.CHEN Xiao,JI Gang-chang,WANG Hong-tao,et al.Influence of propane content on microstructure and properties of high velocity oxygen fuel sprayed Ti B2-40Ni coatings[J].Transactions of Materials and Heat Treatment,2014,35(8):163-170.
- [5]Lotfi B,Shipway P H,Mc Cartney D G,et al.Abrasive wear behavior of Ni(Cr)-Ti B2coatings deposited by HVOF spraying of SHS-derived ceramic powders[J].Wear,2003,254:340-349.
- [6]Wu Y S,Zeng D C,Liu Z W,et al.Microstructure and sliding wear behavior of nanostructured Ni60-Ti B2 composite coating sprayed by HVOF technique[J].Surface&Coatings Technology,2011,206:1102-1108.
- [7]陈枭,纪岗昌,王洪涛,等.氧气流量对超音速火焰喷涂Ti B2-40Co涂层组织和性能研究[J].材料科学与工艺,2013,21(6):136-143.CHEN Xiao,JI Gang-chang,WANG Hong-tao,et al.Influence of oxygen content on microstructure and performance of high velocity oxygen fuel sprayed Ti B2-40Co coatings[J].Materials Science&Technology,2013,21(6):136-143.
- [8]高凡.WC颗粒增强钢基表层复合材料的热震试验研究[D].昆明:昆明理工大学,2009:25.
- [9]Wang Y,Tian W,Yang Y.Thermal shock behavior of nanostructured and conventional Al2O3/13wt%Ti O2 coatings fabricated by plasma spraying[J].Surface&Coatings Technology,2007,201(18):7746-7754.
- [10]路学成,阎殿然,杨勇,等.等离子喷涂纳米Al2O3-13%Ti O2涂层热学特性研究[J].兵器材料科学与工程,2011,34(3):9-13.LU Xue-cheng,YAN Dian-ran,YANG Yong,et al.Thermal shock of nanostructured Al2O3-13%Ti O2ceramic coatings deposited by plasma spraying[J].Ordnance Material Science and Engineering,2011,34(3):9-13.
- [11]王继东,王智慧,冯萌.等离子喷涂Zr O2热障涂层的抗热震性能研究[J].焊接,2009,437(11):31-34.WANG Ji-dong,WANG Zhi-hui,FENG Meng.Thermal shock resistance of plasma-sprayed Zr O2thermal barrier coating[J].Welding&Joining,2009,437(11):31-34.
- [12]王东生.Ti Al合金表面等离子喷涂MCr Al Y及陶瓷涂层的激光重熔研究[D].南京:南京航空航天大学,2009:112.
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