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DCP法W/ZrC金屬陶瓷組成結構的高溫演變研究
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國防科學技術大學新型陶瓷纖維及其復合材料重點實驗室

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TG146.411

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上海航天科技創(chuàng)新基金2014


Study of microstructure evolution of DCP-derived W/ZrC cermets in ultra-high temperature
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National University of Defense Technology

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    摘要:

    采用置換填充工藝制備了W/ZrC金屬陶瓷,研究了其在不同超高溫溫度環(huán)境中的組成結構演變規(guī)律。結果表明:隨著熱處理溫度的升高,材料的質(zhì)量損失率先增大后減小,在2200 ℃時有最大值2.05 wt.%,而孔隙率則不斷增大,在2600 ℃時達到9.29 vol.%。在材料表面,殘留Cu最先熔化揮發(fā)流失,其次殘留Zr,在2600 ℃時部分ZrC也分解流失。在材料內(nèi)部,1800 ℃時未反應完的WC相消失,2200 ℃時殘留Zr-Cu合金相和W2C相消失,2600 ℃時僅剩下W相和ZrC相,且隨著熱處理溫度的升高,W原子向ZrC基體中的擴散增多,導致ZrC點陣常數(shù)逐漸減小,W相由顆粒狀變?yōu)闊o規(guī)則的長條狀,其顆粒數(shù)量和體積含量明顯減少,并形成了大量閉孔。Zr-Cu合金的流失和W原子的擴散是引起W/ZrC金屬陶瓷在超高溫環(huán)境中組織結構變化的重要原因。

    Abstract:

    W/ZrC cermets were fabricated by DCP method. The evolution laws of composition and microstructure of W/ZrC cermets in different ultra high temperature environment were investigated. Results show that the heat-treated microstructure of W/ZrC cermets is still comprised of metal tungsten and ceramic zirconium carbide. With an accretion of temperature, the weight loss first increases and then decreases, attaining a maximum 2.05 wt.% at 2200 ℃, and the open porosity increases constantly, reaching to 9.29 vol.% at 2600 ℃. On the materials surface, the residual Cu melt and volatilize firstly, and then residual Zr, a few ZrC vaporizing at 2600 ℃. While inside the materials, the WC phases disappear after heat treatment at 1800 ℃, also the residual Zr-Cu alloy phases and W2C phases at 2200 ℃, when heat treated at 2600 ℃, only W phases and ZrC phases reserve in W/ZrC cermets. Moreover, more W atoms diffuse into the ZrC phases along with the temperature increases, leading to lattice constants of ZrC decrease, and the orbicular W phases change to be ruleless long strip, also the quantity and volume fraction of W phases reduce, and lots of obturators form contrarily. The melting loss of remanent Zr-Cu alloy and diffusion of W atoms are important reasons for arosing composition and mircrostructure changes of W/ZrC cermets in ultra-high temperature.

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余藝平. DCP法W/ZrC金屬陶瓷組成結構的高溫演變研究[J].稀有金屬材料與工程,2016,45(4):963~967.[yuyiping. Study of microstructure evolution of DCP-derived W/ZrC cermets in ultra-high temperature[J]. Rare Metal Materials and Engineering,2016,45(4):963~967.]
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  • 收稿日期:2014-04-25
  • 最后修改日期:2014-05-13
  • 錄用日期:2014-07-28
  • 在線發(fā)布日期: 2016-06-02
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