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991.
A vacuum impregnation procedure for examining the microstructure of thermal spray coatings has been evaluated using a low-viscosity
fluorescent resin. The use of confocal laser scanning microscopy for examining the microstructure allows three-dimensional
image reconstruction of the sample. Relationships between defects (i.e., porosity or micro/macrocracking) and coating properties
can be established more accurately with the proposed methodology because it enables quantitative analysis. 相似文献
992.
L. S. Schadler L. C. Brinson W. G. Sawyer 《JOM Journal of the Minerals, Metals and Materials Society》2007,59(3):53-60
Polymer nanocomposites are polymer matrix composites in which the fillers are less than 100 nm in at least one dimension.
These composites have exhibited extraordinarily interesting properties. A defining feature of polymer nanocomposites is that
the small size of the fillers leads to a dramatic increase in interfacial area as compared to traditional composites. This
interfacial area creates a significant volume fraction of interfacial polymer with properties different from the bulk polymer
even at low loadings. The properties and structure of this interfacial region are not yet known quantitatively, presenting
a challenge both for controlling and predicting the properties of polymer nanocomposites. This paper provides a brief overview
of polymer nanocomposites with emphasis on the impact of the interfacial region. 相似文献
993.
For the manufacture of S-type thermocouple the so-called thermocouple wire of platinum and platinum-rhodium alloy is used.One of the main technical requirements for the quality of the wire,according to State Standard of Russia(GOST 10821),is the uniformity of its largest thermoelectric force(Thermo-emf) in the length different sections.It was found that a determining impact on the uniformity of the wire thermo-emf is the distribution of rhodium along the length of the wire.The impact of platinum-rhodium melt crystallization conditions on the inhomogeneity of wire manufactured from it.It was suggested that the chemical inhomogeneity of the wire is related to the liquation phase of platinum-rhodium alloy. 相似文献
994.
995.
J.S.Wang ) M.L.Zhou) J.X.Zhang) Z.R.Nie) T.Y.Zuo) G.J.Zhang) ) State Key Laboratory of Materials Chemistry Applications Peking University Beijing China) Schoolof Materials Science Engineering Beijing Polytechnic Univers 《金属学报(英文版)》1999,12(4):602-606
1.IntroductionAsanewkindofrareearthmolybdenumcathodematerial,MoY2O3isexpectedtosubstituteradioactiveWThO2cathodematerialsinthefuture.Mo4wt%Y2O3allows,relativetoMoLa2O3〔12〕(whichhasbeenwidelystudiedsince1970sinordertosubstituteWThO2cathodemater… 相似文献
996.
A series of alkyl esters (methyl, butyl, hexyl, and octyl) synthesised from a mixture of 4- and 5-carboxybenzotriazole (4-CBTAH and 5-CBTAH) inhibited copper corrosion in aerated solution (pH∼0). Inhibition efficiency (IE%) of the protonated esters (CBTAH2+-R) increased with hydrocarbon chain length and this is attributed to chemisorption (through azole ring N) and increased physical adsorption as more methyl groups are introduced. A modelling package employing molecular mechanics and molecular dynamics has been used to simulate the docking of a single protonated species (5-CBTAH2+-R) onto a clean copper (1 1 0) surface. A decrease in potential energy was associated with the flattening of the ester ring system onto the surface and further decreases in energy were associated with the extension of the aliphatic chain onto the surface. The crude binding energy (Ebind) of each ester with the surface was estimated and this energy also increased regularly with carbon chain length. The study suggests that molecular modelling and calculation of Ebind of a single molecule on a specified metallic surface can be used to predict the inhibition performance of compounds whose structures change in a regular way. 相似文献
997.
T. Karthikeyan Arup Dasgupta S. Saroja M. Vijayalakshmi 《Journal of Materials Engineering and Performance》2005,14(2):241-248
The successful replacement of the present generation of corrosion-resistant materials (nitric acid-grade stainless steel and
Ti) by Ti-5Ta-1.8Nb, which has better corrosion resistance, depends on its weldability characteristics. This article presents
the results of a study on the fabrication, qualification, and microstructural characterization of the welds. Welding was carried
out using the direct current electrode negative (DCEN) polarity tungsten inert gas (TIG) (manual) welding method with high-purity
Ar shielding. Testing was carried out as per the ASME standard (section IX, welding and brazing). Qualification tests found
that the weldment met the required properties. The weldment showed heterogeneous microstructures, which are rationalized based
on differences in phase transformation mechanisms that are dictated by the thermal cycles experienced by various microscopic
regions. The results, described in this article, confirm that the weldability of the developmental Ti-Ta-Nb alloy is excellent.
A preliminary evaluation of the corrosion behavior of the welds showed rates comparable to that of the base metal, establishing
that this alloy could be considered as an alternative material for use in highly corrosive environments. 相似文献
998.
Kiselev A. I. Akashev L. A. Popov N. A. 《Protection of Metals and Physical Chemistry of Surfaces》2022,58(2):308-317
Protection of Metals and Physical Chemistry of Surfaces - Optical constants n and k of polycrystalline films of aluminum and Al–4.45 at % La alloy have been measured at room temperature. The... 相似文献
999.
1000.
The polarographic behaviour of thio-acetic acid (RSH) at dropping mercury electrode (d.m.e.) has been investigated in presence of KNO3 in the pH range 2–10.5 at 30.0 ± 0.2°C in 50% alcoholic medium at 0.2 M ionic strength. Well defined anodic waves were obtained at all pH values in the concentration range studied. At pH < 2.2 and > 10.5 ill defined anodic waves were obtained. The effect of pH, concentration of RSH, temperature, drop time and alcohol on the wave characteristic and the mechanism of the reaction occurring at the surface of the mercury drop have been studied in detail. A small prewave was also observed at pH 9.1 and 10.5, which has been assigned adsorption characteristics. The reversibility of the reaction mechanism was confirmed by a number of methods. The wave is diffusion controlled and reversible involving one electron transfer process: Mathematical and experimental evidence shows that the anodic wave of RSH at. d.m.e. does not correspond to formation of (RSSR) but to a mercury compound RSHg according to the above equation. The diffusion coefficient and temperature coefficient for (30–45°C) of id at pH 4.0 and 9.1 have been found to be 1.698; 1.965 × 10−6 cm2/sec and 1.08%; 1.20% per degree respectively. The dissociation constant pKa was found to be 4.25 by the plot of E1/2 vs. pH. The linearity of id with RSH concentrations provides a rapid and precise method for the determination of RSH down to 0.2 mM. 相似文献