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粉末冶金碳化物強化鈮合金組織演變及其力學(xué)行為
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濰坊學(xué)院

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Microstructure evolution and mechanical behavior of powder metallurgy carbide-reinforced Niobium alloy
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Weifang University

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    摘要:

    采用機械球磨與熱壓燒結(jié)相結(jié)合的粉末冶金法對不同球磨時間Nb-35Ti-6Al-5Cr-8V-5C合金的粉末變形行為,微觀組織結(jié)構(gòu)和力學(xué)行為進(jìn)行研究。研究結(jié)果表明:隨著球磨時間的增加Nb-35Ti-6Al-5Cr-8V-5C復(fù)合粉末中的塊狀金屬顆粒首先變形為片狀后在碰撞擠壓作用下破碎成絮狀,TiC粉末均勻的分布于片狀金屬粉末表面;Nb-35Ti-6Al-5Cr-8V-5C合金由Nbss和(Nb, Ti)C兩相構(gòu)成,各合金碳化物體積分?jǐn)?shù)均為11%左右,Ti元素主要分布于Nbss晶界和碳化物內(nèi),Al、Cr、V元素主要分布于Nbss晶粒內(nèi),Nbss和(Nb, Ti)C相尺寸均隨球磨時間增加而尺寸減?。籒bss晶粒細(xì)化及強化相碳化物彌散化導(dǎo)致合金的室溫壓縮力學(xué)性能和塑性變形能力顯著提高,壓縮變形后合金Nbss與碳化物具有良好的界面結(jié)合能力,但是碳化物內(nèi)部存在明顯的近似平行分布的裂紋;數(shù)據(jù)對比表明粉末冶金法制備Nb-35Ti-6Al-5Cr-8V-5C合金的力學(xué)性能優(yōu)于電弧熔煉法。

    Abstract:

    The powder deformation behavior, microstructure evolution and mechanical properties of the Nb-35Ti-6Al-5Cr-8V-5C alloys after different ball milling time were investigated using powder metallurgy method by the combination of mechanical alloying and hot press sintering. The result show that the massive metal particles of Nb-35Ti-6Al-5Cr-8V-5C mixed powder are translated into flakes morphology firstly and then deformed into flocculent morphology during the action of impact extrusion as the ball milling time increasing, as well as the TiC powders are distributed uniformly on the surface of flake metal powder. The Nb-35Ti-6Al-5Cr-8V-5C alloy is consisted of Nbss phase and (Nb, Ti)C phase, and the volume of carbide for each alloy is about 11%. The element of Ti is mainly distributed in (Nb, Ti)C and the grain boundary of Nbss, however the element of Al, Cr, V is mainly distributed in Nbss grain. The size of Nbss and (Nb, Ti)C phase is decreased with the increasing of ball milling time. The compressive mechanical properties and plastic deformation capacity at room temperature is significantly increased causing by grain refinement of Nbss and reinforced phase dispersion of carbides. After compression deformation Nbss and carbide have good interfacial bonding, however, the obvious crack with a nearly parallel distribution inside carbides is existed. Furthermore, it is evident that the mechanical property of Nb-35Ti-6Al-5Cr-8V-5C alloy prepared by powder metallurgy is better than that prepared by arc melting method.

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引用本文

魏文慶,曹光明,劉炳強,崔大偉.粉末冶金碳化物強化鈮合金組織演變及其力學(xué)行為[J].稀有金屬材料與工程,2020,49(7):2380~2387.[Wei Wenqing, Cao Guangming, Liu Bingqiang, Cui Dawei. Microstructure evolution and mechanical behavior of powder metallurgy carbide-reinforced Niobium alloy[J]. Rare Metal Materials and Engineering,2020,49(7):2380~2387.]
DOI:10.12442/j. issn.1002-185X.20190420

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  • 收稿日期:2019-05-15
  • 最后修改日期:2019-07-29
  • 錄用日期:2019-08-21
  • 在線發(fā)布日期: 2020-08-31
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