欢迎登录材料期刊网

材料期刊网

高级检索

以WC颗粒为增强相,铁粉为基体,通过球磨、压制成型,微波烧结制备WC钢结硬质合金。结果表明:随着烧结温度的升高,硬质合金相对密度、显微硬度和抗弯强度均先升高后下降,在1280℃时达到最高值,即相对密度、显微硬度和抗弯强度分别达到94.85%、544 HV和847.37 MPa。1280℃烧结为液相烧结,烧结过程中WC和Fe发生相变,产生新的增强相Fe2W2C,新相以颗粒的形式存在,弥散分布在钢的基体中,对材料的性能起到强化作用。微波烧结比真空烧结温度更低,时间更短,力学性能更好。

WC steel-bonded cemented carbide was prepared by ball milling,press-shaping and microwave sintering with WC as reinforcement phase and iron powder as matrix and its microstructure and properties were examined.The results show that the relative density,microhardness and the bending strength of the steel-bonded cemented carbide increase with the increasing sintering temperature,and reach the maximum values at 1280 ℃,which is 94.85%,544 HV and 847.37 MPa,respectively,and then decrease.It is a liquid phase sintering process when the sintering temperature reaches to 1280 ℃,and chemical reactions occur between the WC and Fe during the sintering process forming a new Fe2W2C phase,of product which is evenly dispersed in the steel matrix and strengthens the material.The microwave sintering possesses the virtues of lower sintering temperature,shorter sintering time and better mechanical properties of product for preparation of WC steel-bonded cemented carbide compared with vacuum sintering.

参考文献

[1] Liu Sha .Study on rare-earth doped cemented carbides in China[J].International Journal of Refractory Metals & Hard Materials,2009(3):528-534.
[2] 尤显卿,宋雪峰,张成军,马建国,黄曼平.电冶稀土WC钢结硬质合金中碳化物特征的研究[J].材料热处理学报,2006(06):74-77,98.
[3] 熊拥军,李溪滨,赵福安.钢结硬质合金材料的研究进展[J].硬质合金,2005(02):121-124.
[4] 赵海锋,朱丽慧,马学鸣.纳米WC硬质合金制备新工艺[J].材料科学与工程学报,2003(01):130-133.
[5] 郭方方;李志杰;林枞 等.Mg-Be二元体系的微波烧结行为研究[J].材料导报,2007,21(11A):g8-94.
[6] Joanna R. Groza .Sintering of nanocrystalline powders[J].International Journal of Powder Metallurgy,1999(7):59-66.
[7] Agrawal D;Cheng J;Seegopaul P et al.Grain growth control in microwave sintering of uhrafine WC-Co composite powder compacts[J].Powder Metallurgy,2000,43(01):15-18.
[8] 鲍瑞,易健宏,杨亚杰,彭元东.超细WC-Co硬质合金的微波烧结研究[J].粉末冶金工业,2010(02):22-26.
[9] 史晓亮,杨华,邵刚勤,段兴龙,熊震,易忠来.微波烧结法制备WC-10Co硬质合金[J].中南大学学报(自然科学版),2006(04):665-669.
[10] 刘伟波 .微波烧结WC-10Co硬质合金工艺和性能的研究[D].武汉理工大学,2007.
[11] 何凤鸣,修稚萌,贺春林,茹红强.WC/FY-1烧结锻造钢基复合材料性能[J].东北大学学报(自然科学版),2004(01):51-54.
[12] Zhou C;Moon J R .Properties of high density iron based composites made by rotary forging and sintering[J].Powder Metallurgy,1991,34(03):205-211.
[13] 黄培云.粉末冶金原理[M].北京:冶金工业出版社,2004
[14] 高志国,杨涤心,魏世忠,龙锐.热处理对钢结硬质合金TLMW50覆层微观组织的影响[J].金属热处理,2006(03):62-64.
[15] 杨瑞成;王军民;王夏冰.颗粒复合材料中硬质相(WC)与钢基体的交互作用及其影响[J].金属热处理,1998(12):7-9.
[16] 李秀兵,方亮,高义民,邢建东.WC颗粒增强钢基表层复合材料中增强相和组织的演化[J].西安交通大学学报,2006(05):549-552.
[17] 高建平,李炎,魏世忠,张万红,龙锐.烧结温度对WC钢结硬质合金覆层/碳钢界面组织及性能的影响[J].机械工程材料,2008(01):21-23,43.
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%