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本文介绍了模态分析技术的概念、目的、内容和方法,论述了模态分析技术在锻压工程中的应用前景,以及它在建立锻压机械动态设计理论中的作用。 相似文献
996.
S. Q. Fan G. J. Yang C. J. Li G. J. Liu C. X. Li L. Z. Zhang 《Journal of Thermal Spray Technology》2006,15(4):513-517
Control of the microstructure of TiO2 coatings through preparation methods significantly influences the coating performance. In this study, a vacuum cold-spray
process, as a new coating technology, is used to deposit nanocrystalline TiO2 coatings on conducting glass and stainless steel substrates. TiO2 deposits were formed using two types of nanocrystalline TiO2 powders with mean particle diameters of 200 and 25 nm. Coating microstructures were characterized by scanning electron microscopy
and x-ray diffraction analysis. Results demonstrate that a thick nanocrystalline TiO2 coating can be deposited by the vacuum cold-spray process. The coating was found to consist of particles stacked as agglomerates
that build up to several hundred nanometers. The coating also presents a mesoporous microstructure that could be effective
in such applications as photocatalytic degradation and dye-sensitized solar cells.
This article was originally published inBuilding on 100 Years of Success, Proceedings of the 2006 International Thermal Spray Conference (Seattle, WA), May 15–18, 2006, B.R. Marple, M.M. Hyland, Y.-Ch. Lau, R.S. Lima, and J. Voyer, Ed., ASM International, Materials
Park, OH, 2006. 相似文献
997.
Bong-Kyu Chang Yong Lu Hongyun Yang Bruce J. Tatarchuk 《Journal of Materials Engineering and Performance》2006,15(4):439-441
In this study, a microfibrous carrier consisting of 3 vol.% of 8 μm (diameter) glass fibers is used to entrap 45 vol.% of
150 to 250 μm (diameter) SiO2 support particulates. ZnO is then nanodispersed onto the support by impregnation at the loading of 17 wt.%. At equivalent
bed volumes, ZnO/SiO2-entrapped materials provide twofold longer breakthrough times for H2S (with a 67% reduction in sorbent loading) compared with packed beds of 1 to 2 mm commercial extrudates. Five-log reductions
in H2S concentration with up to 75% ZnO utilization at breakthrough are achieved. H2S concentrations from 60 to 2000 parts per million in volume (ppmv) can be reduced to as little as 0.6 ppmv at 400°C in 30%
H2O at a face velocity of 1.7 cm/s for layers as thin as 1.0 mm. At 500 to 600°C, ZnO/SiO2-entrapped materials provide much higher regenerability in air than do 1 to 2 mm commercial extrudates. The use of glass fibers
permits greater than 50 regeneration cycles.
This paper was presented at the ASM Materials Solutions Conference & Show held October 18–21, 2004 in Columbus, OH. 相似文献
998.
加工TiNi形状记忆丝的新工艺 总被引:1,自引:0,他引:1
采用模拟试样研究了Ti/TiAl、Nb/TiAl和NbTi/TiAl 3种复合材料的界面特性。结果表明,爆炸试样的界面反应层厚度远小于热等静压试样的界面反应层厚度。在同一条件下热等静压成型的这3种复合材料,其界面差异明显:Ti/TiAl和NbTi/TiAl试样的界面反应层较厚,界面结合强度较高;Nb/TiAl试样的界面反应层较薄,界面结合强度较低。 相似文献
999.
The texture evolution and lattice rotation in A1 alloy 6111 with an initial {001} (110)component during symmetrical and asymmetrical roiling were investigated by means of orientation distribution function(ODF). The results show that the as-rolled initial {001 } (110) orientation evolves into not only the copper orientation but also all the other orientations along the β fiber, including the brass orientation, by lattice rotation around special directions. Compared with the symmetrical rolling, the {001 } (110)component in the surface layer on the slower roller side evolves more quickly into the orientations along the β fiber during asymmetrical rolling, while that in the surface layer on the faster roller side evolves more slowly. 相似文献
1000.
The effect of casting temperature on the properties of squeeze cast aluminium and zinc alloys 总被引:3,自引:0,他引:3
Gravity casting and squeeze casting were carried out on an aluminium alloy with 13.5% silicon and a zinc alloy with 4.6% aluminium with different temperatures, 660, 690 and 720 °C for the former and 440, 460 and 480 °C for the latter. A top-loading crucible furnace was used to melt the alloys. The die-preheat temperatures used were 200–220 °C for the aluminium alloy and 150–165 °C for the zinc alloy. A K-type thermocouples with digital indicator were used to measure the die surface temperature and the molten metal temperature; while a 25 t hydraulic press with a die-set containing a steel mould was used to perform the squeeze casting with a pressure of 62 MPa. Tensile, impact and density tests were carried out on the specimens. It was found that casting temperature had an effect on the mechanical properties of both gravity cast and squeeze cast aluminium and zinc alloys. The best temperatures to gravity cast the aluminium alloy and the zinc alloy were 720 and 460 °C, respectively. For the squeeze casting of the aluminium alloy, the best temperature to use was either 690 or 660 °C; the former would give a better property at the top of the casting while the latter, at the bottom of the casting. However, for the squeeze casting of the zinc alloy, the best temperature was again 460 °C. 相似文献