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101.
Journal of Central South University - Using three-dimensional, unsteady N-S equations and k-ε turbulence model, the effect of ambient wind on the pressure wave generated by a high-speed train... 相似文献
102.
To simulate the firing pattern of biological grid cells, this paper presents an improved computational model of grid cells based on column structure. In this model, the displacement along different directions is processed by modulus operation, and the obtained remainder is associated with firing rate of grid cell. Compared with the original model, the improved parts include that: the base of modulus operation is changed, and the firing rate in firing field is encoded by Gaussian-like function. Simulation validates that the firing pattern generated by the improved computational model is more consistent with biological characteristic than original model. Besides, the firing pattern is badly influenced by the cumulative positioning error, but the computational model can also generate the regularly hexagonal firing pattern when the real-time positioning results are modified. 相似文献
103.
This work used the computational fluid dynamics method combined with full-scale train tests to analyze the train aerodynamic performance on special slope topography. Results show that with the increment in the slope gradient, the aerodynamic forces and moment increase sharply. Compared with the flat ground condition, the lateral force, lift force, and overturning moment of the train on the first line increase by 153.2%, 53.4% and 124.7%, respectively, under the slope gradient of 20°. However, with the increment of the windward side's depth, the windbreak effect is improved obviously. When the depth is equal to 10 m, compared with the 0 m, the lateral force, lift force and overturning moment of the train on the first line decrease by 70.9%, 77.0% and 70.6%,respectively. Through analyzing the influence of slope parameters on the aerodynamic performance of the train, the relationships among them are established. All these will provide a basic reference for enhancing train aerodynamic performances under different slope conditions and achieve reasonable train speeds for the operation safety in different wind environments. 相似文献
104.
A new kind of UV-absorbing silicon-fluorinated acrylic emulsion was prepared by emulsion polymerization with 4-allyloxy-2-hydroxybenzophenone, 3-methacryloxypropyltrimethoxysilane (MPS) and hexafluorobutyl methacrylate (HFMA) as functional monomers. The emulsion and its coating were characterized by transmission electron microscope, Fourier transform infrared spectrum (FTIR), X-ray photoelectron spectroscopy, ultraviolet absorption spectrum,thermo-gravimetric analysis, water contact angle (CA), and artificial accelerated aging test. The results indicated that the emulsion with core-shell structure was synthesized and showed prominent absorption peaks at 320 and 350 nm. The water CA of the coating was increased from 70.2° to 86.7° because of the incorporated HFMAs and MPSs. Both of the initial and final decomposition temperatures of the coating were increased by more than 20°C compared with those of the unmodified coating. After 10 days of accelerated aging, the color difference (ΔE) and rate of loss of gloss (ΔG) were only 2.78% and 5.22%, while those of the unmodified coating were as high as 22.94% and 78.57%, respectively. Because of the UV absorbers were incorporated by chemical reaction, the new coating had a more durable and effective anti-ultraviolet performance compared with the coatings the UV absorbers were introduced by physical blending. 相似文献
106.
P. -Z. Wang G. -S. Pan Y. Zhou J. -X. Qu H. -S. Shao 《Journal of Materials Engineering and Performance》1997,6(6):780-784
Electrospark deposition (ESD) is a coating process that is featured by low heat input to the substrate. Low coating efficiency
and other limitations influence its wider application. The present paper introduces newly designed ESD equipment, by which
a higher coating rate can be reached. The relationship among coating thickness, surface roughness, and process parameters
such as pulse energy, pulse frequency, and deposition time are presented. Electrospark deposition coating by the new equipment
on AISI 1045 steel (with WC-8% Co as electrode) increases the wear resistance by 5 to 8 times. The micromechanism is investigated
by scanning electron microscopy observation. 相似文献
107.
用双层辉光等离子法在钛表面制备的Ti-Pd合金层性能研究 总被引:2,自引:0,他引:2
采用双层辉光等离子冶金技术在纯钛表面制备了Ti—Pd合金层。其深度大约为90μm,Pd含量呈梯度变化,并出现了TiPd3,TiPd2,Ti2Pd3,Ti3Pd5,TiPd,Ti4Pd等6种化合物相和Pd相。合金层在100℃的NaCl饱和溶液+HCl溶液以及40℃的8.6%H2SO4溶液中的耐缝隙腐蚀性能优于Ti0.2Pd合金;在室温80%H2SO4的溶液中,腐蚀速率仅为0.682mm/a,是Ti0.2Pd合金的18.2%:在室温30%HCl的溶液中,表面Ti—Pd的腐蚀速率仅为0.004mm/a,是Ti0.2Pd合金的12.5%。 相似文献
108.
硬质合金磨削温度的实验研究 总被引:3,自引:0,他引:3
采用半人工和人工热电偶法,对硬质合金YG6和YT30平面磨削的磨削温度进行了实验研究。并对磨削参数与磨削温度的关系,进行了理论分析及实验验证。结果表明:磨削深度和工作台速度增加,磨削温度升高,但工作台速度的改变,对磨削温度的影响较小. 相似文献
109.
医用钴基合金的组织结构及耐腐蚀性能 总被引:1,自引:0,他引:1
以锻造CoNiCrMo,CoCrMo和CoCrMoC台会为研究对象,通过金相观察,XRD分析和耐腐蚀试验,研究了3组合金在不同热处理条件下的显微结构,相成分及在Hi同溶液中的耐腐蚀性能。结果表明:2组锻造合金的再结晶温度都是1000℃,且晶粒尺寸随着固溶温度升高和时效时间延长而逐渐变大。3组试样在NaCl溶液中为钴基合金典型的阳极极化曲线;在Hanks’溶液中均有一个二次钝化行为,且锻造CoNiCrMo合金的二次钝化区域较窄,而其他2组合金则较宽;在含柠檬酸三钠的溶液中过钝化电位降低,柠檬酸盐的存在降低了含金的耐腐蚀性能。热处理对合金的耐腐蚀性能影响不大。 相似文献
110.
研究了保温时间和保温温度对电磁搅拌ZL117合金半固态浆料稳定性的影响.试验结果表明:半固态浆料中初生Si的颗粒直径随着保温时间的延长而逐渐增大,但在前15 min内增长速度比较缓慢,15 min后增长较快;随着保温温度的升高而缓慢增大;初生Si的形状系数随着保温时间的延长而变得越来越大,但也在前15 min内变化较为缓慢,15 min后变大速度突然加快;初生Si的形状系数在620 ℃下保温时最小,在610~620 ℃之间随着保温温度的升高而缓慢变小;在620~650 ℃之间随着保温温度的升高而逐渐增加. 相似文献