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Spark plasma sintering of graphitized multi-walled carbon nanotube reinforced Ti6A14V

机译:石墨化多壁碳纳米管增强Ti6A14V的火花等离子体烧结

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Graphitized multi-walled carbon nanotubes (MWCNTGr) reinforced Ti6Al4V (Ti64) matrix composites prepared via the powder metallurgy route were synthesized by spark plasma sintering (SPS) technique. 1, 2 and 3 wt% MWCNTGr were dispersed in the Ti64 matrices by adapted high energy ball milling (HEBMA). Composite powder mixtures were sintered in vacuum at constant applied pressure, heating rate and isothermal holding time of 50 MPa, 100 degrees C/min and 5 min respectively. The sintering temperature was varied between 850 and 1000 degrees C. Scanning electron microscopy (SEM), transmission electron microscopy (TEM) and X-ray diffraction (XRD) were used to characterize the as-received MWCNTs, MWCNTGr, admixed composite powders and the bulk sintered composites. MWCNTGr evolution during graphitization treatment, dispersion in Ti64 matrix and in the sintered composites was analyzed using the characteristic Raman peak intensity ratio (I-D/I-G). The relative density of the sintered MWCNTGr/Ti64 composites was enhanced with increased sintering temperature, but deteriorated with increased wt% MWCNTGr in the metal matrix. Vickers microhardness of the consolidated composites improved with increasing sintering temperature and weight fractions of MWCNTGr over that of the unreinforced matrix alloy. The formation of crystalline TiC interfacial product during composite powder processing and consolidation is also discussed.
机译:通过火花等离子体烧结(SPS)技术合成了粉末冶金法制备的石墨化多壁碳纳米管(MWCNTGr)增强的Ti6Al4V(Ti64)基复合材料。通过适合的高能球磨(HEBMA),将1、2和3 wt%的MWCNTGr分散在Ti64基质中。在真空下以恒定的施加压力,50 MPa,100℃/ min和5 min的恒定施加压力,加热速率和等温保持时间烧结复合粉末混合物。烧结温度在850到1000摄氏度之间变化。使用扫描电子显微镜(SEM),透射电子显微镜(TEM)和X射线衍射(XRD)表征原样的MWCNT,MWCNTGr,混合的复合粉末和粉末。块状烧结复合材料。使用特征拉曼峰强度比(I-D / I-G)分析了石墨化处理过程中MWCNTGr的演化,在Ti64基体中和在烧结复合物中的分散性。随着烧结温度的升高,烧结后的MWCNTGr / Ti64复合材料的相对密度增加,但随着金属基体中MWCNTGr的wt%增加而降低。随着烧结温度和MWCNTGr重量分数的增加,固结复合材料的维氏显微硬度高于未增强基体合金。还讨论了复合粉末加工和固结过程中结晶TiC界面产物的形成。

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