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1.
The influence of a thin adhesive layer (AL) of a polymer on the wet adhesion of an epoxy coating on an aluminium substrate has been studied by the peel and tape test method. It is shown that thin layers considerably improve the stability of adhesive joints in the presence of water. The mechanism of this improvement and the mechanical properties required for such thin layers are discussed. Some experimental evidence for improved wet adhesion of polymer binders to an aluminium support is presented and the mechanism explained. These results on interfacial processes contribute to a better understanding of the mechanism of adhesion. 相似文献
2.
Hu Qi Tang Jiayuan Teng Yuancheng Zhao Xiaofeng Arslanov Temirlan Ahuja Rajeev 《Journal of Electroceramics》2022,48(3):117-126
Journal of Electroceramics - CaCu3Ti4O12 ceramics have great dielectric constant, excellent temperature stability and good frequency stability. However, due to high dielectric loss, its practical... 相似文献
3.
4.
S. L. Selektor O. A. Fedorova E. V. Lukovskaya N. A. Tarasova O. A. Raitman A. V. Anisimov Yu. V. Fedorov V. V. Arslanov 《Protection of Metals and Physical Chemistry of Surfaces》2014,50(5):557-569
The properties of ultrathin films of two geometric isomers of oligothiophene derivatives containing two crowned styryl fragments in 2- (I) or 3- (II) positions of thiophene rings (Fig. 1) are studied in this work. The ability of these compounds to form stable monolayers at the air/water interface is shown. The structural organization of crown-substituted oligothiophenes in monolayers is determined by the π-π-stacking interaction of hydrophobic styrylthiophene fragments and interaction of hydrophilic macrocycles with the water subphase. Analysis of ultrathin film physicochemical characteristics has shown that the difference in the structure of oligothiophene molecules leads to the formation of distinct monolayer architectures with various electrochemical and optical characteristics. Two types of aggregates (H and J) are generated in monolayers formed from different geometrical isomers at the air/water interface. The effect of barium cation presence in the subphase on the oligomer aggregation in monolayer is discussed. The phase diagrams characterizing the behavior from two-dimensional mixtures of studied crown-substituted oligothiophenes and amphiphilic spreader are plotted basing on compression isotherms accompanied by absorbance and fluorescence spectra of monolayers of different composition. The ability to fine tune the emitted radiation parameters is demonstrated. The obtained results show the efficiency of application of geometrical isomers for investigation of the fundamental “structure-property” ratio of planar supramolecular systems, which is important for organic optics and electronics. 相似文献
5.
A. Yu. Mollaev I. K. Kamilov S. F. Marenkin R. K. Arslanov U. Z. Zalibekov T. R. Arslanov A. A. Abdullaev I. V. Fedorchenko 《Inorganic Materials》2010,46(9):919-923
The ferromagnetic semiconductor Cd0.7Mn0.3GeAs2 undergoes a high-pressure ferromagnetic-to-antiferromagnetic phase transition. We have studied this transition at different
temperatures. From magnetic-field dependences of the Hall resistance measured at different temperatures, we have derived the
normal and anomalous Hall coefficients of the material as functions of temperature. Its transverse magnetoresistance changes
from positive to negative near the ferromagnetic-to-antiferromagnetic phase transition. 相似文献
6.
7.
V. A. Ogarev T. N. Timonina V. V. Arslanov A. A. Trapeznikov 《The Journal of Adhesion》2013,89(4):337-355
Effect of the volume of drops, surface energy and roughness of substrate together with temperature and viscosity on the spreading velocity of polydimethylsiloxane (PDMS) drops on solid horizontal surfaces was studied. Spreading velocity was shown to grow with decreasing drop volume, the effect being more pronounced at high viscosities of polymer. The deviation of shape of the spreading drop from that of a spherical segment is more pronounced the higher the surface energy of substrate, the higher the polymer viscosity and the smaller the drop volume. Spreading on a rough surface is slower than on a smooth one owing to the energy barrier created by surface inhomogeneities: the barrier is to be overcome by the spreading liquid. Based on the experimental results a mechanism of spreading of polymer drops is proposed. Changes in potential energy of a drop and in the free surface energy of the system during spreading were compared, allowing a theoretical evaluation of the influence of gravity on the spreading velocity of drops. A theoretical analysis of spreading kinetics of viscous drops is given. The equation proposed agrees well with the experimental results at 90° > θ > 0°. 相似文献
8.
A. Yu. Mollaev I. K. Kamilov R. K. Arslanov V. M. Novotortsev S. F. Marenkin V. M. Trukhan T. R. Arslanov U. Z. Zalibekov I. V. Fedorchenko 《Inorganic Materials》2011,47(11):1171-1173
The specific volume of the diluted magnetic semiconductor Cd1 − x
Mn
x
GeAs2 (x = 0.06–0.3) has been determined for the first time by strain measurements at pressures of up to 7 GPa. From the pressure
dependences of the relative specific volume, we evaluated the volume magnetostriction (spontaneous magnetization coefficient).
A scaling relation was used to estimate the bulk modulus of the magnetically ordered and disordered phases. 相似文献
9.
A. Yu. Mollaev R. K. Arslanov R. G. Dzhamamedov S. F. Marenkin S. A. Varnavskii 《Inorganic Materials》2005,41(3):217-219
The room-temperature electrical resistivity and Hall coefficient of [001]- and [010]-oriented CdSb single crystals are measured as functions of increasing (up to 7 GPa) and decreasing pressure. Some parameters of the high-pressure phase transformation in CdSb are evaluated from experimental data, and the fraction of the low-pressure phase is calculated as a function of pressure. The parameters of the phase transformation are shown to depend on the crystal orientation.Translated from Neorganicheskie Materialy, Vol. 41, No. 3, 2005, pp. 273–275.Original Russian Text Copyright © 2005 by Mollaev, Arslanov, Dzhamamedov, Marenkin, Varnavskii.This revised version was published online in April 2005 with a corrected cover date.This revised version was published online in April 2005 with a corrected cover date. 相似文献