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熱處理對定向凝固Nb-Ti-Si基合金組織及力學性能的影響
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西北工業(yè)大學凝固技術國家重點實驗室,西北工業(yè)大學凝固技術國家重點實驗室

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國家自然科學基金項目(面上項目,重點項目,重大項目)


Effect of heat-treatment on microstructure and mechanical behavior of directionally solidified Nb-Ti-Si based alloy
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State Key Laboratory of Solidification Processing, Northwestern Polytechnical University,State Key Laboratory of Solidification Processing, Northwestern Polytechnical University

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    摘要:

    在熔體溫度為2323 K,抽拉速率為100 μm/s的條件下對Nb-Ti-Si基超高溫合金進行了有坩堝整體定向凝固 (DS),然后對定向凝固試樣進行了兩種不同工藝的熱處理:即1723 K/50 h高溫均勻化處理 (HT1) 和1623 K/50 h 1723 K/50 h 1373 K/50 h復合熱處理 (HT2)。采用XRD,SEM和EDS等分析手段研究熱處理對定向凝固合金微觀組織及其力學性能的影響。結果表明,熱處理后合金中大尺寸初生硅化物的體積分數下降,兩種方式的熱處理均能有效減輕甚至消除合金中的成分偏析。熱處理后原DS試樣中Nbss (Nb,X)5Si3共晶胞的邊界完全消失。相比HT1處理,HT2處理后試樣中硅化物的分布更加均勻。與DS試樣相比,經HT2處理后試樣的室溫斷裂韌性值增加了12.3% (約19.2 MPa?m1/2),且其拉伸強度增加了26.6% (最大值達到933.2MPa)。力學性能的改善主要歸因于熱處理后組織中 (Nb,X)5Si3顆粒彌散分布以及韌性Nbss相的形狀、尺寸及含量均發(fā)生變化。

    Abstract:

    With the melting temperature of 2323 K and withdrawing rate of 100 μm/s, Nb-Ti-Si based ultrahigh temperature alloy has been directionally solidified with the use of crucibles. The directionally solidified (DS) specimens were subsequently heat-treated in two ways: either at 1723 K/50 h (HT1) or at 1623 K/50 h 1723 K/50 h 1373 K/50 h (HT2) respectively. XRD, SEM and EDS have been employed to investigate the influence of heat-treatments on the microstructures and fractographies of the directionally solidified alloys. The results show that after heat-treatment, the volume fraction of the large-size primary silicides decreases. Both kinds of heat-treatments could effectively alleviate or even eliminate the segregation in the alloys. The original boundaries between the (Nb,X)5Si3 Nbss eutectic cells in the DS specimens have thoroughly disappeared after heat-treatments. Specifically, silicides have been more evenly distributed after HT2 than HT1. Compared with DS specimens, the average room temperature fracture toughness of the specimens has increased by 12.3% to 19.2 MPa?m1/2 while the average tensile strength has increased by 26.6% and the maximum value reaches 933.2 MPa after HT2. These improvements could be mainly attributed to the more effective dispersion strengthening of (Nb,X)5Si3 silicide particles and the shape change as well as size increase of the ductile Nbss phases after HT2.

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嚴俊杰,郭喜平.熱處理對定向凝固Nb-Ti-Si基合金組織及力學性能的影響[J].稀有金屬材料與工程,2017,46(1):1~6.[Yan Junjie, Guo Xiping. Effect of heat-treatment on microstructure and mechanical behavior of directionally solidified Nb-Ti-Si based alloy[J]. Rare Metal Materials and Engineering,2017,46(1):1~6.]
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  • 收稿日期:2014-09-29
  • 最后修改日期:2014-11-09
  • 錄用日期:2014-12-03
  • 在線發(fā)布日期: 2017-03-16
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