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定向凝固N(yùn)b-Ti-Si基超高溫合金的組織與室溫條件斷裂韌性
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國家自然科學(xué)基金(50671081);凝固技術(shù)國家重點(diǎn)實(shí)驗(yàn)室自主研究課題項(xiàng)目(07-TP-2008)


Microstructure and Room Temperature Fracture Toughness of Directionally Solidified Nb-Ti-Si Based Ultrahigh Temperature Alloy
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    摘要:

    采用真空自耗電弧熔煉法制備了Nb-Ti-Si基超高溫合金的母合金錠,在2050 ℃的熔體溫度下實(shí)現(xiàn)了合金的有坩堝整體定向凝固。測定了電弧熔煉態(tài)與定向凝固試樣的室溫條件斷裂韌性,采用SEM, EDS等方法分析了凝固速率V分別為10, 20和50 μm/s的整體定向凝固組織、單邊切口梁彎曲試樣的斷口形貌及裂紋擴(kuò)展路徑,并討論了其斷裂機(jī)理。結(jié)果表明:合金的整體定向凝固組織主要由沿著試棒軸向挺直排列的橫截面為多邊形的初生(Nb, X)5Si3(X代表Ti, Hf和Cr元素)棒與耦合生長的層片狀Nbss/(Nb, X)5Si3共晶團(tuán)(Nbss表示鈮基固溶體)組成。整體定向凝固顯著提高合金的室溫條件斷裂韌性KQ,且V= 50 μm/s時(shí)的KQ最高,達(dá)16.1 MPa·m1/2,較電弧熔煉態(tài)試樣的KQ提高了50.5%。定向凝固試樣中Nbss與(Nb, X)5Si3沿垂直于受力方向的定向排列以及粗糙的Nbss產(chǎn)生的裂紋橋接和偏轉(zhuǎn),增大了裂紋擴(kuò)展阻力,從而提高了合金的室溫條件斷裂韌性。

    Abstract:

    The master alloy ingot with the nominal composition of Nb-20Ti-16Si-6Cr-5Hf-4Al-2B-0.06Y (at%) was prepared using vacuum consumable arc-melting. The integrally directional solidification of the alloy was conducted in a self-made high vacuum and ultrahigh temperature directional solidification furnace with the use of ceramic crucibles at the melt temperature of 2050 oC. Room temperature fracture toughness of both arc-melted and integrally directionally solidified specimens have been measured by single-edge notched bending test. The directionally solidified microstructure, fractographs and crack propagation path of single-edge notched bending specimens of the alloy at different solidifying rate V (10, 20 and 50 μm/s) have been investigated by SEM and EDS analyses. The fracture mechanism of the single-edge notched bending test has been discussed. The results show that the integrally directionally solidified microstructure of the alloy is mainly composed of hexagonally cross-sectioned primary (Nb, X)5Si3 columns and coupled lamellar Nbss/(Nb, X)5Si3 eutectic colonies both aligned straightly and uprightly along the growth direction (here X represents Ti, Hf and Cr elements, Nbss denotes Nb solid solution). The directional solidification effects are remarkable. Both the average diameter of eutectic cells and lamellar spacing in them decrease with the increase in solidifying rate. The directional alignment of both Nbss and (Nb, X)5Si3 normal to the notch provides more resistance to the crack initiation and propagation, and therefore the room temperature fracture toughness KQ is improved significantly by the integrally directional solidification. The maximum KQ value occurs for the directionally solidified specimens with V=50 μm/s and is about 16.1 MPa·m1/2.

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王 勇,郭喜平.定向凝固N(yùn)b-Ti-Si基超高溫合金的組織與室溫條件斷裂韌性[J].稀有金屬材料與工程,2011,40(12):2197~2202.[Wang Yong, Guo Xiping. Microstructure and Room Temperature Fracture Toughness of Directionally Solidified Nb-Ti-Si Based Ultrahigh Temperature Alloy[J]. Rare Metal Materials and Engineering,2011,40(12):2197~2202.]
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  • 收稿日期:2010-12-25
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