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951.
The initial stage of precipitation of magnesioferrite from a supersaturated solid solution of 0.9 cation % Fe3+ in MgO at 500 °C was studied by fitting the magnetization curves to 7000 Oe at low temperatures with the Brillouin function. The averase umber of Fe3+ ions in a precipitate particle, increased monotonically with aging time from 9 in the as-quenched condition to 88 after 16 h. The average spin quantum number per Fe3+ ion decreased to near its final value at an aging time corresponding to = 50. Thus the volume fraction of precipitate is near the final value when the average particle size is only about three unit cells of magnesioferrite.  相似文献   
952.
953.
Conclusions It has been shown that it is possible to determine polarographically, using a dropping mercury electrode, the elements vanadium, nickel, cobalt, and iron in the form of their sulfosalicylic acid complexes in an ammonium buffer electrolyte.The method was used to determine these elements in the concentrations in which they are present in the mineral residues of petroleum and petroleum products.Translated from Khimiya i Tekhnologiya Topliv i Masel, No. 11, pp. 52–54, November, 1969.  相似文献   
954.
By applying a nuclear magnetic resonance (n.m.r.) multiple pulse sequence to a powder of randomly aligned crystallites, the principal values of the chemical shift tensor may be measured. However information about alignment of the chemical shift tensor with respect to the crystal axes is lost. To obtain orientation information in polytetrafluoroethylene (PTFE), we have prepared a bundle of drawn PTFE fibres and observed the 19F line-narrowed n.m.r. spectra for various fibre orientations relative to the direction of the static magnetic field. The data at 77 K indicate that the most screened component of the chemical shift tensor lies along the CF bond and that the least screened component is aligned at approximately 20° to the molecular chain axis. At 298K the spectrum of a PTFE powder indicates an axially symmetrical tensor whose principal values are consistent with a 20° inclination of the least screened component relative to the chain axis.  相似文献   
955.
956.
The tensile mechanical properties of ceramic matrix composites (CMC) in directions off the primary axes of the reinforcing fibers are important for the architectural design of CMC components that are subjected to multiaxial stress states. In this study, two-dimensional (2D)-woven melt-infiltrated (MI) SiC/SiC composite panels with balanced fiber content in the 0° and 90° directions were tensile loaded in-plane in the 0° direction and at 45° to this direction. In addition, a 2D triaxially braided MI SiC/SiC composite panel with a higher fiber content in the ±67° bias directions compared with the axial direction was tensile loaded perpendicular to the axial direction tows (i.e., 23° from the bias fibers). Stress–strain behavior, acoustic emission, and optical microscopy were used to quantify stress-dependent matrix cracking and ultimate strength in the panels. It was observed that both off-axis-loaded panels displayed higher composite onset stresses for through-thickness matrix cracking than the 2D-woven 0/90 panels loaded in the primary 0° direction. These improvements for off-axis cracking strength can in part be attributed to higher effective fiber fractions in the loading direction, which in turn reduces internal stresses on weak regions in the architecture, e.g., minicomposite tows oriented normal to the loading direction and/or critical flaws in the matrix for a given composite stress. Both off-axis-oriented panels also showed relatively good ultimate tensile strength when compared with other off-axis-oriented composites in the literature, both on an absolute strength basis as well as when normalized by the average fiber strength within the composites. Initial implications are discussed for constituent and architecture design to improve the directional cracking of SiC/SiC CMC components with MI matrices.  相似文献   
957.
High resolution XPS analysis of chemical functionalised multi-wall carbon nanotubes (MWCNTs) and single wall carbon nanotubes (SWCNT) was done with ESCA300 (overall instrument resolution of 0.35 eV). Information to the degree of functionalisation was ascertained by argon ion bombardment of the samples followed by XPS analysis to detect the functional groups, the percentage atomic concentration of various elements present and whether or not the detected functional groups imposed a chemical shift on the CNT atoms. The results show that true chemical functionalisation was achieved and by argon ion bombardment these functional groups can be altered relative to the C 1s carbon atoms of the CNT. The choice of chemicals used for functionalisation, the techniques employed and the types of nanotubes treated are important factors in chemical characterisation. The carbon atom on the nanotube ring to which the functional group (atom) is bonded, the chirality of the CNT, the electronegativity of the functional group, the bond type and whether the CNT is single-wall or multi-wall, or cut (short) could play a role in determining the chemical shift on the CNTs atoms. These investigations are relevant to chemical functionalisation of carbon nanotubes for various applications for example DNA sensors and other biomedical sensors.  相似文献   
958.
Protective coatings based on metallic aluminum are developed that can be used to improve the resistance of the refractory lining for extra-furnace steelmaking facilities. By sintering a slurry sprayed on the refractory surface, a heat-resistant gas-impermeable coating containing -corundum is formed.__________Translated from Novye Ogneupory, No. 10, pp. 61 – 63, October, 2004.  相似文献   
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960.
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