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51.
Molybdenum ions are implanted into aluminium with high ion flux and high dose at elevated temperatures of 200℃, 400℃ and 500℃. Due to the high temperature and high flux of vacancies and interstitial atoms, the atom diffusion and chemical effects are enhanced during the ion implantation. The effects increase with increasing ion flux and dose, so that new phase formation and phase transition emerge noticeably. X-ray diffraction analysis shows that when the aluminium is implanted with Mo ions at a low ion flux (25μA/cm2), the Al5Mo alloy is formed. The atomic ratio of Mo/Al of the Al5Mo phase is close to 20%. When the aluminium is implanted with Mo ions at a high ion flux (50μA/cm2), the phase transition from Al5Mo to Al12Mo appears, and the latter is dominant, which is determined to be the final phase. The ratio of Mo/Al in Al12Mo is 7.7%. Rutherford backscattering spectroscopy indicates also that the Mo/Al atom ratio is ~7% to ~8% in Mo-implanted aluminium. The atomic ratios of the constituents in Al5Mo and Al12Mo are of stoichiometric composition for these alloys. The thicknesses of the Al12Mo alloy layers for Mo-implanted Al with ion doses of 3×1017/cm2 and 1×1018/cm2 are 550nm and 2000nm, respectively. The pitting corrosion potential Vp increases obviously. It is clear that due to the formation of Al12Mo alloy layer, the pitting corrosion resistance is enhanced. 相似文献
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车用潜热贮热器的流动与换热实验研究 总被引:5,自引:0,他引:5
本文通过对车用潜热贮热器流动与换热实验研究,获得了该相变过程的流动、传热特性,为修正该装置的设计提供了可靠的数据. 相似文献
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In current research, low carbon steel plates were coated by Ni-P electroless method. The effect of adding different concentrations (ranging from 0.01 g/l to 0.5 g/l) of TiC nano-sized particles to the plating bath on deposition rate, surface morphology and corrosion behavior of Ni-P-TiC composite coatings were investigated. The surface morphology and the relevant structure were evaluated by scanning electron microscopy (SEM) and X-ray diffraction (XRD). Corrosion behavior of the coated steel was evaluated by electrochemical impedance spectroscopy (EIS) and polarization techniques. The results showed that addition of TiC nano-particles to Ni-P electroless bath not only changes the surface morphology of Ni-P coating, but also improves corrosion resistance of the steel in comparison with TiC free Ni-P electroless coating. In addition, the deposition rate of coating was also affected by incorporation of TiC particles. It was also found that improvement in corrosion resistance largely depends on the phosphorous and TiC concentrations on the coatings. 相似文献
57.
Yanhong Lv Li JiXiaohong Liu Hongxuan Li Huidi ZhouJianmin Chen 《Applied Surface Science》2012,258(8):3864-3870
The CrAlN films were deposited on silicon and stainless steel substrates by unbalanced magnetron sputtering system. The influence of substrate bias on deposition rate, composition, structure, morphology and properties of the CrAlN films was investigated. The results showed that, with the increase of the substrate bias voltage, the deposition rate decreased accompanied by a change of the preferred orientation of the CrAlN film from (2 2 0) to (2 0 0). The grain size and the average surface roughness of the CrAlN films declined as the bias voltage increases above −100 V. The morphology of the films changed from obviously columnar to dense glass-like structure with the increase of the bias voltage from −50 to −250 V. Meanwhile, the films deposited at moderate bias voltage had better mechanical and tribological properties, while the films deposited at higher bias voltage showed better corrosion resistance. It was found that the corrosion resistance improvement was not only attributed to the low pinhole density of the film, but also to chemical composition of films. 相似文献
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建立了快脉冲磁芯损耗特性测试平台,对比研究了50 m的DG6硅钢和25 m的2605TCA非晶两种材料磁芯损耗特性;采用一种新的特征参量(磁芯单位面积上激磁电压陡度)来规范磁芯的激磁电压条件,使得实验结果与快放电直线型变压器驱动源实际工作条件下磁芯性能具有可比性;通过测量初级漏电流及次级开路电压,获得了相同激磁条件下两种磁芯等效损耗电阻的大小,50 m 的DG6硅钢磁芯损耗约为25 m的2605TCA非晶磁芯损耗的4倍;计算了两种材料磁芯总损耗中涡流损耗所占的比例,50 m的DG6硅钢磁芯涡流损耗占总损耗的75%,25 m的2605TCA非晶磁芯涡流损耗占总损耗的28%。 相似文献
59.
搭建低电感实验回路平台,利用高速分幅相机拍摄火花开关放电通道发展过程,分析照片光强和放电通道半径的对应关系,根据图片光强测定不同时刻放电通道的半径,提出适合实验条件的放电通道半径计算公式。依据高压探头和Pearson线圈测量得到的放电通道电压和电流波形,计算放电通道的电阻,再利用测量的放电通道半径进而得到其电导率。放电通道半径随着放电通道的发展逐渐增大,有饱和的趋势,放电电流2 kA时电流峰值处放电通道半径约0.6 mm;随着放电电流峰值的增大,放电通道电阻下降速率增大,达到稳定值所需的时间减小,稳定值也随之减小,其电阻稳定值最小能达到0.08 。 相似文献
60.
分析了高电场强度下金属化膜电容器绝缘电阻的特点,得出高电场强度下金属化膜电容器绝缘电阻是电容器介质膜泄漏和自愈过程的综合反映。针对高场强下的应用条件提出一种金属化膜电容器绝缘电阻的测试方法,并对高场强下电容器的绝缘电阻进行测试。测试结果表明:在300~400 V/m工作场强范围内金属化膜电容器绝缘电阻随工作场强增大会急剧减小,由于自愈的作用,绝缘电阻下降幅度随场强增加会逐渐变缓;在20~50 ℃工作温度范围内,金属化膜电容器绝缘电阻随温度升高会急剧减小,同样由于自愈的作用,绝缘电阻下降幅度随温度增高会逐渐变缓。分析得出,高温高场强下金属化膜电容器介质膜泄漏将会导致电容器电压出现明显下降,影响电容器和脉冲功率系统的储能效率。 相似文献