欢迎登录材料期刊网

材料期刊网

高级检索

在1450℃下通过低压烧结制备5种0.83~15.03μm不同WC粉末粒度的WC-15%Fe-5%Ni(质量分数)硬质合金,并通过 SEM、XRD、EDS、力学性能测试仪、磨损试验机和电化学工作站研究 WC 粉末粒度对合金的显微组织和性能的影响。结果表明:随WC粉末粒度的减小,合金的WC晶粒尺寸减小,抗弯强度和硬度升高,断裂韧性降低,耐磨性能提高,耐酸性溶液腐蚀性能变差;当WC粒度较大时,合金的断裂方式主要为穿晶断裂;当WC粒径较小时,断裂方式主要为沿晶断裂;当WC粉末粒度为1.31μm时,硬质合金的综合性能最好,抗弯强度、硬度、断裂韧性、磨损率和自腐蚀电流密度分别达到2717MPa、960 MPa、10.7MPa?m1/2、6.986003×10?7 mm3/(N?m)和3.43698×10?5 A/cm2。

TheWC-15%Fe-5%Ni cemented carbides with five different WC particle sizes rangingfrom 0.83?15.03μm were fabricated by 1450℃sinter-HIP sintering.The effects of WC particle size on the microstructure and properties of cemented carbides were investigated by SEM, XRD, EDS,mechanical property tester, wear testing machine and electrochemical workstation.The results show that,withtheparticle sizeof WCdecreasing,the WC grain size decreases, the bending strength and hardness increase,the fracture toughness decreases,theacidic corrosion resistance decreases, wear resistance increases.The fracture mold of cemented carbides with larger WC grain sizeismainly transgranular fracture,butthe fracture mold of cemented carbideswith smaller WC grain sizeismainly intergranular fracture. When WC particle size is 1.31μm,the combination properties of alloy are the best. The bendingstrength,hardness,fracture toughness,wear rate and the corrosion current densities are 2717MPa,960 MPa,10.7MPa?m1/2,6.986003×10?7 mm3/(N?m) and3.43698×10?5A?cm?2, respectively.

参考文献

[1] Shih-Hsien Chang;Song-Ling Chen.Characterization and properties of sintered WC-Co and WC-Ni-Fe hard metal alloys[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2014:407-413.
[2] Xiaoyong Ren;Hezhuo Miao;Zhijian Peng.A review of cemented carbides for rock drilling: An old but still tough challenge in geo-engineering[J].International Journal of Refractory Metals & Hard Materials,2013Jul.(Jul.):61-77.
[3] 高建祥;范景莲.无粘结相WC基硬质合金研究进展[J].中国钨业,2011(6):22-26.
[4] Shih-Hsien Chang;Po-Yu Chang.Study on the mechanical properties, microstructure and corrosion behaviors of nano-WC-Co-Ni-Fe hard materials through HIP and hot-press sintering processes[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2014:56-62.
[5] Xu Wang;Zhigang Zak Fang;Hong Yong Sohn.Grain growth during the early stage of sintering of nanosized WC-Co powder[J].International Journal of Refractory Metals & Hard Materials,20083(3):232-241.
[6] S.G. Huang;L. Li;K. Vanmeensel.VC, Cr_3C_2 and NbC doped WC-Co cemented carbides prepared by pulsed electric current sintering[J].International Journal of Refractory Metals & Hard Materials,20075/6(5/6):417-422.
[7] Lan Sun;Tian'en Yang;Chengchang Jia.VC, Cr_3C_2 doped ultrafine WC-Co cemented carbides prepared by spark plasma sintering[J].International Journal of Refractory Metals & Hard Materials,20112(2):147-152.
[8] 苏伟;孙业熙;杨海林;张贤其;阮建明.TaC含量对WC-9Co粗晶硬质合金显微组织和力学性能的影响[J].中国有色金属学报(英文版),2015(4):1194-1199.
[9] 娄静;易健宏;周承商.微波烧结WC-Co硬质合金致密化与晶粒生长[J].中国有色金属学报,2012(7):1976-1983.
[10] 鲍瑞;易健宏.微波烧结技术在硬质合金制备中的应用[J].中国有色金属学报,2014(6):1544-1561.
[11] Ida Borgh;Peter Hedstrdm;Tomas Persson.Microstructure, grain size distribution and grain shape in WC-Co alloys sintered at different carbon activities[J].International Journal of Refractory Metals & Hard Materials,2014Mar.(Mar.):205-211.
[12] Lining Gu;Jiwu Huang;Chenhui Xie.Effects of carbon content on microstructure and properties of WC-20Co cemented carbides[J].International Journal of Refractory Metals & Hard Materials,2014Jan.(Jan.):228-232.
[13] Hiroyuki Saito;Akira Iwabuchi;Tomoharu Shimizu.Effects of Co content and WC grain size on wear of WC cemented carbide[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20062(2):126-132.
[14] 吴冲浒;谢海唯;郑爱钦;肖满斗.Co含量与烧结温度对纳米晶WC-Co硬质合金结构与性能的影响[J].粉末冶金材料科学与工程,2013(02):309-314.
[15] 周新华;王力民.球磨时间对粗晶硬质合金性能的影响[J].硬质合金,2008(1):23-27.
[16] 谢宏;肖逸锋;贺跃辉;丰平;黄自谦.低压烧结对硬质合金组织和性能的影响[J].中国钨业,2006(6):27-31.
[17] 李晨辉;余立新;熊惟皓.WC的粒度对WC-Co硬质合金断裂韧性的影响[J].硬质合金,2001(3):138-141.
[18] S. Okamoto;Y. Nakazono;K. Otsuka.Mechanical properties of WC/Co cemented carbide with larger WC grain size[J].Materials Characterization,20054/5(4/5):281-287.
[19] 沈志农;杨立.细WC配比对非均匀YG20C合金性能的影响[J].硬质合金,2011(3):163-165,176.
[20] Deng Jianxin;Zhang Hui;Wu Ze.Friction and wear behaviors of WC/Co cemented carbide tool materials with different WC grain sizes at temperatures up to 600 °C[J].International Journal of Refractory Metals & Hard Materials,2012Mar.(Mar.):196-204.
[21] F.J.J. Kellner;H. Hildebrand;S. Virtanen.Effect of WC grain size on the corrosion behavior of WC-Co based hardmetals in alkaline solutions[J].International Journal of Refractory Metals & Hard Materials,20094(4):806-812.
[22] 林春芳;杜玉国;孙丹;陈蓓瑾;刘莹华.Ni、Cr对碳化钨基硬质合金耐腐蚀性能的影响[J].腐蚀与防护,2010(9):678-681,728.
[23] L. Espinosa-Fernandez;A. Borrell;M. D. Salvador;C. F. Gutierrez-Gonzalez.Sliding wear behavior of WC-Co-Cr_3C_2-VC composites fabricated by conventional and non-conventional techniques[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20131/2(1/2):60-67.
[24] Tran Bao Trung;Hussain Zuhailawati;Zainal Arifin Ahmad;Keiichi N. Ishihara.Sintering characteristics and properties of WC-10AISI304 (stainless steel) hardmetals with added graphite[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2014:210-214.
[25] 陈振华;姜勇;陈鼎;张忠健;徐涛;彭文.硬质合金的疲劳与断裂[J].中国有色金属学报,2011(10):2394-2401.
[26] Farid Akhtar;Islam S. Humail;S.J. Askari.Effect of WC particle size on the microstructure, mechanical properties and fracture behavior of WC-(W, Ti, Ta) C-6 wt percent Co cemented carbides[J].International Journal of Refractory Metals & Hard Materials,20075/6(5/6):405-410.
[27] 胡山;张忠健;徐涛;彭文;金鹏;陈鼎;陈振华.疲劳预裂SENB法测试硬质合金的断裂韧性[J].硬质合金,2013(4):217-222.
[28] 易丹青;陈丽勇;刘会群;王斌;聂灿.硬质合金电化学腐蚀行为的研究进展[J].硬质合金,2012(4):238-253.
[29] 王向龙 .不锈钢耐腐蚀性测量技术的研究[D].浙江工业大学,2013.
[30] 王恒 .低碳球铁的耐磨和耐腐蚀性能研究[D].昆明理工大学,2002.
[31] Juri Pirso;Sergei Letunovits Mart Viljus.Friction and wear behaviour of cemented carbides[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20043/4(3/4):257-265.
[32] J. Y. Sheikh-Ahmad;J. A. Bailey.The wear characteristics of some cemented tungsten carbides in machining particleboard[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,19991(1):256-266.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%