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361.
A novel, experimentally simple, and highly sensitive method for measuring the loading of a quartz crystal resonator was developed. The method is based on the use of double-sideband suppressed-carrier modulated high-frequency signal, which is swept through the resonance range of the resonator. Induced current in the resonator is passed through a capacitor, and the voltage over the capacitor is demodulated on an analog multiplier. The phase and amplitude information is carried to the frequency-doubled modulation signal and measured on a conventional low-frequency two-phase lock-in amplifier. A complex dimensionless loading parameter is obtained from the experimental data by nonlinear model fitting. The real and complex parts of this loading parameter have a simple relationship with other parameters commonly used for characterizing the resonator loading. The performance of the method was demonstrated by measuring a series of different glycerol-water mixtures ranging from 0 up to 100% glycerol. The results were close to the shear acoustic impedance of these mixtures measured and calculated from their viscosities and densities. 相似文献
362.
Matti Juhani Luomala Timo Tuomas Paananen Mervi Johanna Kykk Timo Matti Juhani Fabritius Hannu Nevala Jouko Juhani Hrkki 《国际钢铁研究》2001,72(4):130-135
The purpose of this study was to investigate fluid flows in the blast furnace trough and furthermore extend the lifespan of the trough. For that purpose both physical and mathematical models were utilised. The effect of different flow controllers, both at the surface and at the bottom of the trough, on the flow behaviour in the trough was examined. Additionally, the effect of the height of the bath level on flow velocities was studied. Return flows, caused by the tapping stream, are responsible for the wear of the walls at the impact point. According to the model tests, the smaller the area of turbulent flow, the stronger the flow in the vicinity of the walls appears to be. Return flows can not totally be restrained by flow controllers. However, the turbulence can be diminished with longitudinal pads at the bottom of the trough. Bottom pads cause increasing bottom wear and reduction in the length of laminar area. Increasing the amount of consumable refractory mass in critical areas of the trough slightly increases flow velocity in the vicinity of the walls. According to the calculations, the amount of entrained slag can be reduced by reducing the height difference between the slag and iron ports, raising the height of the bath level and reducing the height of the opening under the skimmer. 相似文献
363.
Chun-Ming Chang Laine A. 《IEEE transactions on information technology in biomedicine》1999,3(1):32-46
Mammograms depict most of the significant changes in breast disease. The primary radiographic signs of cancer are related to tumor mass, density, size, borders, and shape, and local distribution of calcifications. We show that each of these features can be well described by coherence and orientation measures and provide visual cues for radiologists to identify possible lesions more easily without increasing false positives. In this paper, an artifact-free enhancement algorithm based on overcomplete multiscale representations is presented. First, an image was decomposed using a fast wavelet transform algorithm. At each level of analysis, energy and phase information are computed via a set of separable steerable filters. Then, a measure of coherence within each level was obtained by weighting an energy measure with the ratio of projections of local energy within a specified window. Each projection was computed onto the central point of a window with respect to the total energy within that window. Finally, a nonlinear operation, integrating coherence and orientation information, was applied to modify transform coefficients within distinct levels of analysis. These modified coefficients were then reconstructed, via an inverse fast wavelet transform, resulting in an improved visualization of significant mammographic features. The novelty of this algorithm lies in the detection of directional multiscale features and the removal of aliased perturbations 相似文献
364.
Luyao Wang Qingbo Wang Emil Rosqvist Jan-Henrik Smått Qiwen Yong Lippo Lassila Jouko Peltonen Thomas Rosenau Martti Toivakka Stefan Willför Patrik Eklund Chunlin Xu Xiaoju Wang 《Small (Weinheim an der Bergstrasse, Germany)》2023,19(24):2207085
Fabricating bio-latex colloids with core–shell nanostructure is an effective method for obtaining films with enhanced mechanical characteristics. Nano-sized lignin is rising as a class of sustainable nanomaterials that can be incorporated into latex colloids. Fundamental knowledge of the correlation between surface chemistry of lignin nanoparticles (LNPs) and integration efficiency in latex colloids and from it thermally processed latex films are scarce. Here, an approach to integrate self-assembled nanospheres of allylated lignin as the surface-activated cores in a seeded free-radical emulsion copolymerization of butyl acrylate and methyl methacrylate is proposed. The interfacial-modulating function on allylated LNPs regulates the emulsion polymerization and it successfully produces a multi-energy dissipative latex film structure containing a lignin-dominated core (16% dry weight basis). At an optimized allyl-terminated surface functionality of 1.04 mmol g−1, the LNPs-integrated latex film exhibits extremely high toughness value above 57.7 MJ m−3. With multiple morphological and microstructural characterizations, the well-ordered packing of latex colloids under the nanoconfinement of LNPs in the latex films is revealed. It is concluded that the surface chemistry metrics of colloidal cores in terms of the abundance of polymerization-modulating anchors and their accessibility have a delicate control over the structural evolution of core–shell latex colloids. 相似文献