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The results show that the nonlinear diffusive phenomenacaused by frictional damping is also true in the presence of boundaryeffects.

以往的结果([50])是该结果的一个特例,所用方法已被推广用于解决多孔介质中的可压缩流方程组的初边值问题([43])。

The results suggest that the model proposed in this study for the porous layer with linearly distributed conductivity and dielectric constant can be expected to apply to other heterogeneous systems as well as membrane systems.

所提出的电导率和介电常数线性分布的多孔层的介电模型,也可用于具有其他电导率、介电常数分布规律的体系。

A series of porous metallic matrix with various porosity and good shapes were manufactured through adjusting the partitioning among Ni-Cr filler, high temperature solid grains and foamer by loose powder sintering. The elastic modulus of the matrix was measured.

以松装烧结方法为基础,通过调整Ni-Cr合金钎料、高温固相颗粒和造孔剂的配比,采用合适的烧结工艺,制备出具有不同孔隙率、形貌较好的多孔金属胎体试样,并测量了胎体试样的弹性模量。

By controlling the process of sol gel, the charge storage stability of porous silica thin film electret based on silicon substrate were investigated by measurements of IR spectra, isothermal surface potential decay and current spectra of open circuit Thermally Stimulated Discharge.

通过控制溶胶凝胶工艺条件,利用相应条件下样品的红外光谱,等温表面电位衰减,开路热刺激放电电流谱等,考察了Si基多孔SiO2 薄膜驻极体体内沉积的空间电荷的储存稳定性,分析了各种工艺参数与薄膜驻极体性质之间的联系。

It will lead to the increase of leakage current and the deterioration of electrical property.

如果我们能够通过适当的表面处理使存在于SiCOH薄膜表面的孔闭合,就有可能有效地降低Cu向薄膜内部的扩散,从而改善多孔SiCOH薄膜的电学性能。

Comparison of the phenomenological model predictions with micromechanics modeling results shows that the developed phenomenological model is reliable.

模型验证的结果表明,所提出的唯象模型对于多孔材料在在比例加载情况下的响应具有很好的描述能力。

Voronoi models developed in this paper can be applied with the periodic boundary conditions, which is the key for the micromechanics analysis.

结合有限元分析的细观多孔模型被应用到泡沫材料力学行为的研究中,主要包括:弹性开孔泡沫材料的本构行为;弹塑性开孔泡沫材料的多轴行为和唯象模型;开孔泡沫材料率相关行为。

Based on extensive application and efficiency of macroporous resin, the background of porous ceramic microsphere and achievement are presented.

鉴于大孔树脂吸附技术的大规模应用和分离高效性,提出了我课题组正在研制的多孔陶瓷微球的应用背景和取得的工作成果。

We can obtain ordered morph of the surface of porous silicon by control the parameter of the experiment.

通过对实验参数(如HF浓度与氧化反应的时间)的控制,可以得到形状规整的多孔硅,为以后的组装打下基础。

The interface of porous cell and fuel duct is an especial penetrative surface, it has complicated law of mass and heat transfer.

多孔层和燃料输送通道的界面处,存在一个微尺度和亚微尺度共同控制的特殊渗透面,该界面上的热质传递规律也比较的复杂。

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