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中国博士后科学基金(2012M511345)

作品数:3 被引量:10H指数:1
相关作者:张芳更多>>
相关机构:浙江大学更多>>
发文基金:中国博士后科学基金国家教育部博士点基金国家自然科学基金更多>>
相关领域:生物学一般工业技术语言文字金属学及工艺更多>>

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Scorpion back inspiring sand-resistant surfaces被引量:1
2013年
A new approach which adopted the idea of coupling bionics to improve erosion resistance was presented, by taking the desert scorpion as the research object. The anti-erosion characteristic rules and mechanism of desert scorpion's surface under the dynamics effect of gas/solid mixed media were researched, especially the comprehensive influence mechanism of surface morphology, microstructure, creature flexibility and many other factors was studied. Simulation by CFD software was applied to predict the relative erosion severity. Samples with the coupled bionic configurations and flexibility were produced. Experiment optimum design theory was employed to design experiment scheme. Silica sand of particle size of 105-830 m was used as the erodent. The erosion tests were carried out to validate the simulation results obtained. It is shown that the predicted results are in agreement with those obtained from the experiment. And contrast tests were carried out at the best and worst test points of erosion resistance for four samples. Contrast tests show that the erosion resistance trend occurs in such order with the best erosion resistance as coupling sample, groove, smooth and flexibility, and smooth, and the increasing rate of erosion resistances in sequence of 12.08%, 8.87%, 6.03% in the best test point. But in the poorest point, the increasing rate of erosion resistance is in sequence of 15.64%, 9.53%, 6.59%. The morphologies of eroded surface were examined by the scanning electron microscope, and the possible wear mechanism was discussed.
张俊秋韩志武马荣峰尹维吕尤任露泉
关键词:蝎子仿生结构设计理论
Numerical Experiment of the Solid Particle Erosion of Bionic Configuration Blade of Centrifugal Fan被引量:8
2013年
In this paper, a bionic method was presented to improve the erosion resistance of blade of the centrifugal fan. A numerical investigation of the solid particle erosion on the standard and bionic configuration blade of 4-72N10C centrifugal fan was presented. The numerical study employs computational fluid dynamics (CFD) software, based on a finite volume method, in which the discrete phase model was used to modele the solid particles flow, and the Eulerian conservation equation was adopt to simulate the continuous phase. Moreover, user-defined function was used to define wear equation. The various diameters of the particles were taken into account. The positions of collision of standard and bionic fan blades were discussed, and two kinds of centrifugal fan blade wear were compared. The results show that the particles from the incident source with different positions have different processes of turning and movement when enter into the impeller. The trajectories of flow in the fan channel are significantly different for the particles with different diameters. Bionic fan blade have lower erosion rate than the standard fan blade when the particle size is 20 μm. The anti-erosion mechanism of the bionic fan blade was discussed.
Junqiu ZHANGZhiwu HANWei YINHuiyuan WANGChao GEJialian JIANG
关键词:固体颗粒侵蚀计算流体动力学风扇叶片
说“油脂”被引量:1
2013年
文章采用"比较词义"的研究方法对"油脂"义场进行考察,发现"油脂"与"肥肉"相关,在词义的派生过程中,与"肥胖""肥美""润泽"等也关系密切。功能转换机制在词义演变中起着至关重要的作用。
张芳
关键词:油脂比较词义
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