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原料粉末對SPS燒結(jié)W10Ti合金組織及性能的影響
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西安理工大學 陜西省電工材料與熔滲技術(shù)重點實驗室,西安理工大學 陜西省電工材料與熔滲技術(shù)重點實驗室,西安理工大學 陜西省電工材料與熔滲技術(shù)重點實驗室,西安理工大學 陜西省電工材料與熔滲技術(shù)重點實驗室

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國家自然科學基金資助(51174161);陜西省電工材料與熔滲技術(shù)重點科技創(chuàng)新團隊(2012KCT-25)


Effect of raw material powders on the microstructures and properties of W-10Ti alloy prepared by spark plasma sintering
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    摘要:

    原料粉末對SPS燒結(jié)有重要的影響。本文分別采用兩類粉末為原料:一類粉末是將球磨前后的W和鈦源Ti或TiH2進行機械混合,另一類粉末是將未球磨的W粉和鈦源TiH2粉進行機械合金化。之后選用SPS燒結(jié)技術(shù)(Spark plasma sintering)來制備W10Ti合金。通過XRD、SEM、納米壓痕等檢測手段研究了原料粉末對W10Ti合金組織及性能的影響。結(jié)果表明:較未球磨W粉,采用球磨W粉所制備的WTi合金組織中無純鈦相,且富鈦相含量減少了44%,同時合金的納米硬度提高了55.7%。細小、均勻的TiH2粉末有利于獲得富鈦相較少、均勻、細小的微觀組織,用其制備的WTi合金致密度高達100%。相比使用Ti粉來制備W10Ti合金,TiH2粉制備的合金電導(dǎo)率、納米硬度和彈性模量分別提高了7%、46%和34%。而采用機械合金化粉末所制備的合金中條狀的富鈦相增多,組織更為細小,且該合金的韌性較好,但其致密度及納米硬度均較低,分別僅為96.8%和2.8GPa。因此,SPS燒結(jié)使用的粉末狀態(tài)是制備高性能WTi合金的關(guān)鍵因素。

    Abstract:

    Raw material powder has a significant effect on the sintering of spark plasma sintering (SPS). Two kinds of WTi mixtures were used as the raw materials, one was the mixed powders of W (unmilled or milled) and Ti (or TiH2), and the other mixture was the mechanically alloyed W-Ti powders. The W-10Ti alloys were then prepared by SPS at 1400℃ for 10min. XRD, SEM and nano indentation were used to investigate the effect of raw material powders on the microstructures and properties of W-10Ti alloys. The results show that WTi alloy prepared by using milled W powders has no pure Ti phase, the content of Ti-rich phase is decreased by 44% and the nanohardness is improved by 55.7%, when WTi mixed powders are used as the raw materials. Meanwhile, TiH2 powders with fine particles is help to obtain the WTi alloy with less Ti-rich phase which is also fine and uniformly distributed in the microstructure. The obtained alloy has a relative density of 100% and its electrical conductivity, nanohardness and eastic modulus are improved by 7%, 46% and 34%, respectively, compared with those of the alloy prepared by using Ti powders. For the WTi alloy preared using the mechanically alloyed WTi powders, the content of tiny stripped Ti-rich phase is higher and the alloy has better ductility but a lower density of 96.8% and nanohardness of 2.8GPa compared with those of the alloy prepared with WTi mixed powders. Proper raw powders are a key factor to obtain excellent WTi alloy by SPS.

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代衛(wèi)麗,梁淑華,楊卿,羅亞濤.原料粉末對SPS燒結(jié)W10Ti合金組織及性能的影響[J].稀有金屬材料與工程,2018,47(9):2888~2894.[Dai Weili, Liang Shuhua, Yang Qing, Luo Yatao. Effect of raw material powders on the microstructures and properties of W-10Ti alloy prepared by spark plasma sintering[J]. Rare Metal Materials and Engineering,2018,47(9):2888~2894.]
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  • 收稿日期:2016-11-21
  • 最后修改日期:2017-04-10
  • 錄用日期:2017-04-13
  • 在線發(fā)布日期: 2018-11-01
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