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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Fabrication and characterization of crushed titanium–beryllium intermetallic compounds
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Fabrication and characterization of crushed titanium–beryllium intermetallic compounds

机译:粉碎钛铍金属间化合物的制造与表征

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AbstractTo develop a technique for the mass production of beryllide pebbles, a crushing method for the granulation of beryllides was used in this study. Two types of crushed Be12Ti pebbles were prepared using mortar-ground (MG) and planetary-ball-milled (PM) powders. A granulation yield of approximately 50?wt.% with sizes in the range of 0.85–1.18?mm was achieved. Scanning electron microscopy (SEM) images revealed that the MG pebbles exhibited larger porosity because the larger size of the powder resulted in lower density with higher porosity. However, the considerably larger fraction of fine pores in the PM pebbles resulted in an increased Brunauer–Emmett–Teller (BET) specific surface area, as clearly demonstrated by high-magnification SEM images. To evaluate the reactivity with water vapor, the weight gain and H2generation rate were also investigated. The results suggested that the PM pebbles exhibited notably lower reactivity, weight gain, and H2generation rate, which may be due to the dramatically decreased BET specific surface. The fine pores were filled with stable oxides followed by a significant decrease of the surface area during oxidation. Optimization was performed to improve the circularity of the crushed pebbles. Grinding tests using planetary milling without balls for different times clearly demonstrated that the circularity improved (with an estimated value of 0.8) by cutting and polishing the sharp edges; however, long-duration milling for 99?h resulted in attachment of the polished powders to the pebble surface, leading to surface color variation of the crush
机译:<![CDATA [ 抽象 为群体生产的铍鹅卵石进行技术,使用用于铍造粒的破碎方法这项研究。使用砂浆地(Mg)和行星球磨(PM)粉末制备两种粉碎的碎位 12 TI鹅卵石。造粒产率约为50μwt%。达到0.85-1.18Ωmm的尺寸的尺寸。扫描电子显微镜(SEM)图像显示Mg卵石表现出较大的孔隙率,因为较大的粉末的尺寸较低,孔隙率较高。然而,PM鹅卵石中的细孔部分相当大的细孔导致了增加的Brunauer-emmett-exers(Bet)比表面积,如高倍倍率SEM图像清楚地证明。为了评估与水蒸气的反应性,体重增加和H 2 生成率。结果表明PM卵石显着表现出较低的反应性,体重增加和H 2 生成率,这可能是由于急剧下降的BET比表面。细孔填充有稳定的氧化物,然后在氧化过程中显着降低。进行优化以改善被压碎的鹅卵石的圆形度。使用行星碾磨的磨削试验,使用行星铣削不同时间清楚地证明了通过切割和抛光锋利的边缘改善(估计值为0.8);但是,长期铣削99?H导致抛光粉末连接到卵石表面,导致粉碎的表面颜色变化

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