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51.
针对不同基底结构上含不溶性活性剂液滴的铺展过程,引入受活性剂浓度影响的分离压模型,应用润滑理论建立了液滴厚度和活性剂浓度演化方程组,通过数值计算得到了分离压作用下含活性剂液滴过程的演化特征。研究表明不考虑分离压时,最小液膜高度贴近壁面,诱发去润湿现象发生,基底不平整度增加加剧液膜变形;分离压作用下最小液膜高度显著上升,铺展前沿处衍生出的子波结构明显减少,铺展更加稳定;分离压具有抑制液膜表面变形促进液滴铺展的作用。 相似文献
52.
基于0.15μm砷化镓(GaAs)工艺建立一种电感模型,并用高频结构模拟器(High Frequency Structure Simulator,HFSS)仿真验证,并在此基础上设计一种微波功率放大器,并用高级系统设计软件(Advanced Design System,ADS)进行仿真。仿真结果显示在812GHz频率范围内,饱和输出功率大于21.9dBm,1dB压缩点输出功率大于20dBm,功率增益大于26dB,功率附加效率大于34%,稳定系数大于1。 相似文献
53.
Neetu Bansal Mukul Gupta Bhaskar Chandra Mohanty Kulvir Singh 《Journal of the American Ceramic Society》2021,104(2):851-859
The presence of alkali ions has reportedly improved the performance of CIGS/CZTS–based thin-film solar cells. The out-diffusion of the alkali ion, in particular, Na, from the glass substrate offers a facile scalable route of supplying the alkali ions during the growth of the absorber layer. In this work, we demonstrate the diffusion of different alkali ions (Li/Na/K) from composition tuned glasses with intentionally incorporated excess alkali ions into a thin Mo film, typically used as a bottom electrode in solar cells. We also evaluate the physical, mechanical, and thermal properties of the glasses for suitability as a substrate in thin-film deposition. The out-diffusion of alkali ions to the overlayer is found to be critically influenced by the composition and the local structure of the glasses. The Na ions exhibit the highest extent of diffusion among the alkali ions present in glass substrates, while that for the K-ions is the lowest. For the glasses with mixed alkali ions, the presence of Li facilitated the out-diffusion of Na, whereas K ions appear to inhibit the same. Differently with the existing reports, we show that the activation energy and the presence of Ca ions as additional modifiers play a crucial role in the transport mechanism of the ions. In addition, the synthesized glasses exhibit hardness of the order 5-7 GPa, density ~2.55 g cm-3. The glass transition temperature lies between 535 and 580°C and the coefficient of thermal expansion 8.5-10 ppm/K, which is highly suitable for use as substrates in thin-film solar cells. 相似文献
54.
R. Dal Maschio V. M. Sglavo L. Mattivi L. Bertamini S. Sturlese 《Journal of Thermal Spray Technology》1994,3(1):51-56
The indentation technique has been used to measure the adhesion of plasma- sprayed ceramic coatings on metals intended for
thick thermal barrier coating ( TTBC) applications. This approach provides the adhesion value as the critical strain energy
release rate,Gc, of the interface, which also takes into account any residual stresses. The theoretical background of the method is outlined,
and specific examples are reported with respect to the effect of substrate temperature on the metal/ceramic adhesion of thick
TBCs. 相似文献
55.
采用PVD和CVD技术制备Cu/TiN/PI试样,研究表明,TiN薄膜可以有效地阻挡Cu向PI基板内部扩散,CVD工艺制备的Cu膜内部残余应力很小,Cu膜有相对高的结合强度;而PVD制备的Cu膜,在有TiN阻挡层存在的情况下,Cu膜内存在拉应力,拉应力降低了Cu膜结合强度,300℃退火可以消除膜内残余应力,结合强度提高。 相似文献
56.
INTERFACIALREACTIONSOFMETALFILMSWITHAlNSUBSTRATEHeXiangjun;TaoKun;FanYudian(DepartmentofMaterialsScienceandEngineering,Tsingh... 相似文献
57.
58.
59.
Quenching stress arises within a thermally sprayed splat as its thermal contraction after solidification is constrained by
the underlying solid. Dependence of the quenching stress in plasma-sprayed deposits of Ni-20Cr alloy and alumina on the substrate
temperature during spraying was discussed in conjunction with the change in the nature of the interlamellar contact between
splats. It was found by mercury intrusion porosimetry and observation of cross sections of impregnated deposits that the interlamellar
contact is improved significantly by raising the substrate temperature during deposition from 200 to 600 °C. The positive
dependence of the quenching stress on the substrate temperature in this temperature range was attributed to a stronger constraint
against thermal contraction of sprayed splats after solidification due to the improved contact. 相似文献
60.
M. Fukumoto T. Yamaguchi M. Yamada T. Yasui 《Journal of Thermal Spray Technology》2007,16(5-6):905-912
A variety of metallic powder particles were thermally sprayed onto the mirror polished metallic substrate surface and the
effect of both substrate temperature and ambient pressure on the flattening behavior of the particle was systematically investigated.
In the flattening behavior of the sprayed particle onto the substrate surface, critical conditions were recognized both in
the substrate temperature and ambient pressure. That is, the flattening behavior changed transitionally on that critical temperature
and pressure range, respectively. A transition temperature, T
t, and transition pressure, P
t, were defined and introduced, respectively for those critical conditions. The fact that the dependence of both transition
temperature and transition pressure on the sprayed particle material had similar tendency indicated that the wetting of the
substrate by the molten particles seemed to be a domination in the flattening. Three-dimensional transition curvature by combining
both transition temperature and transition pressure dependence was proposed as a practical and effective controlling principle
of the thermal spray process.
This article is an invited paper selected from presentations at the 2007 International Thermal Spray Conference and has been
expanded from the original presentation. It is simultaneously published in Global Coating Solutions, Proceedings of the 2007 International Thermal Spray Conference, Beijing, China, May 14-16, 2007, Basil R. Marple, Margaret M. Hyland, Yuk-Chiu Lau, Chang-Jiu Li, Rogerio S. Lima, and Ghislain
Montavon, Ed., ASM International, Materials Park, OH, 2007. 相似文献