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Nb-Mo-Si共晶合金的定向凝固組織特征
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航空基金資助項(xiàng)目(200601104)


Microstructure Characterization of the Directionally Solidified Nb-Mo-Si Eutectic Alloys
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    摘要:

    采用光懸浮區(qū)熔定向凝固技術(shù)制備了Nb-Mo-Si三元共晶合金,研究了試棒旋轉(zhuǎn)速度和抽拉速度對(duì)Nbss-β(Nb,Mo)5Si3共晶組織形態(tài)的影響。結(jié)果表明籽晶棒的旋轉(zhuǎn)對(duì)組織形態(tài)有顯著影響,而料棒的旋轉(zhuǎn)對(duì)組織形態(tài)的影響并不明顯。當(dāng)抽拉速度是5 mm/h,籽晶棒不旋轉(zhuǎn)時(shí),得到了規(guī)則的Nbss-β(Nb,Mo)5Si3片層結(jié)構(gòu);而當(dāng)籽晶棒旋轉(zhuǎn)時(shí),試棒中心處為先析出的球狀Nbss和規(guī)則片層組織,沿徑向向外,規(guī)則的片層組織逐步轉(zhuǎn)變成不規(guī)則的碎塊狀組織。當(dāng)籽晶棒不旋轉(zhuǎn),抽拉速度是1 mm/h時(shí),組織為不規(guī)則共晶組織,Nbss傾向于連成網(wǎng)狀;當(dāng)抽拉速度是3~5 mm/h時(shí),形成典型的規(guī)則片層組織;當(dāng)抽拉速度是10 mm/h時(shí),具有片層組織的柱狀晶和胞狀晶共存。此外,從液/固界面特性及過冷度的角度對(duì)組織多樣性進(jìn)行了討論

    Abstract:

    The Nb-Mo-Si eutectic alloys were prepared using Optical Floating Zone (OFZ) directional solidification method. The effects of rod rotation speed and withdrawal rate on the eutectic morphology were examined. Results show that the rotation speed of seed rod has an obvious effect on structure morphology, while the rotation speed of starting sample rod has unobvious effect. When the withdrawal rate is 5 mm/h, and the seed rod doesn’t rotate, a regular Nbss-β(Nb,Mo)5Si3 lamellar structure can be obtained. When the seed rod rotates, some spherical particles and regular lamellar structure firstly appear in the center area of the sample, and then expand outwards along radius direction. Afterwards, the regular lamellar structure is gradually transferred into irregular and broken lamellar structure. When the withdrawal rate is between 3 and 5 mm/h, it is regular lamellar structure. At 10 mm/h, columnar and cellular structures co-exist. At 1 mm/h, the lamellar structure is degenerated and Nb-ss tends to form a net-work structure. The variety of microstructure was discussed in terms of liquid/solid interface characterization and undercooling

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李玉龍,張 晉,馬朝利,張 虎. Nb-Mo-Si共晶合金的定向凝固組織特征[J].稀有金屬材料與工程,2012,41(6):1085~1089.[Li Yulong, Zhang Jin, Ma Chaoli, Zhang Hu. Microstructure Characterization of the Directionally Solidified Nb-Mo-Si Eutectic Alloys[J]. Rare Metal Materials and Engineering,2012,41(6):1085~1089.]
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  • 收稿日期:2011-06-26
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