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  • FLUID MECHANICS  (4)
  • SPACE SCIENCES  (2)
  • Differential scanning calorimetry  (1)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Journal of polymer research 1 (1994), S. 313-320 
    ISSN: 1572-8935
    Keywords: Isothermal cure ; Epoxy-novolac molding compound ; Differential scanning calorimetry ; Infrared spectroscopy ; Dielectrometry
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The isothermal cure of an epoxy-novolac molding compound was studied by means of Fourier-transform infrared spectroscopy (FTIR) and dielectrometry (DE). Results obtained were compared with previous differential scanning calorimetric (DSC) observations. The behavior of epoxide conversion (αFTIR) measured via FTIR was found similar to (but not exactly coinciding with) the extent of cure (αDSC) determined previously by means of DSC. As for the DE analysis, directly measurable properties such as permittivity (ɛ′) and loss factor (ɛ″) varied in a complicated manner during the course of cure, showing strong dependence on both temperature and frequency. Other dielectric parameters (such as ionic conductivity, relaxed permittivity, and characteristic relaxation time) previously suggested in the literature as suitable for cure monitoring purposes were found difficult to determine within the limited frequency range (100 to 104 Hz) here. With some arbitrariness, the relative drop in logɛ″ (at 100 Hz) was taken as an index (αDE) for the extent of cure. It was observed that αDE behaves in a manner similar to αFTIR and αDSC Comments on the application of these three techniques in the characterization of thermosetting systems were given.
    Type of Medium: Electronic Resource
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  • 2
    facet.materialart.
    Unknown
    In:  Other Sources
    Publication Date: 2019-06-27
    Description: Suggestion of the ash flow mechanism as one of the major processes required to account for some features of lunar soil. First the observational background and the gardening hypothesis are reviewed, and the shortcomings of the gardening hypothesis are shown. Then a general description of the lunar ash flow is given, and a simple mathematical model of the isothermal lunar ash flow is worked out with numerical examples to show the differences between the lunar and the terrestrial ash flow. The important parameters of the ash flow process are isolated and analyzed. It appears that the lunar surface layer in the maria is not a residual mantle rock (regolith) but a series of ash flows due, at least in part, to great meteorite impacts. The possibility of a volcanic contribution is not excluded. Some further analytic research on lunar ash flows is recommended.
    Keywords: SPACE SCIENCES
    Type: Journal of Geophysical Research; 77; July 10
    Format: text
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  • 3
    facet.materialart.
    Unknown
    In:  Other Sources
    Publication Date: 2019-06-27
    Description: From both experimental data and theoretical results of the two-phase flow, the complete expression of the interaction force between a gas and solid particles at low Reynolds number flow is obtained. The interaction force contains two terms: one is proportional to the difference between the velocities of the gas and the solid particle with a coefficient as a function of volume fraction Z and the other is proportional to the product of the total pressure of the mixture and the gradient of solid volume fraction. The second term is new. When Z tends to 0, the completion expression of interaction force reduces to the well-known Stokes formula.
    Keywords: FLUID MECHANICS
    Type: Zeitschrift fuer Flugwissenschaften; 21; Dec. 197
    Format: text
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  • 4
    Publication Date: 2019-06-27
    Description: Systematic numerical analysis of two dimensional and axisymmetric laminar jet of incompressible fluid with and without free stream
    Keywords: FLUID MECHANICS
    Type: NASA-CR-111517 , BN-627 , AD-710232
    Format: application/pdf
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  • 5
    Publication Date: 2019-06-27
    Description: The characteristics of lunar ash flow are discussed in terms of the two phase flow theory of a mixture of a gas and small solid particles. A model is developed to present the fundamental equations and boundary conditions. Numerical solutions for special ash flow with and without heat transfer are presented. In the case of lunar ash flow with small initial velocity, the effect of the heat transfer makes the whole layer of ash flow more compacted together than the corresponding isothermal case.
    Keywords: FLUID MECHANICS
    Type: NASA-CR-130697 , BN-718
    Format: application/pdf
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  • 6
    Publication Date: 2019-06-27
    Description: Systematic numerical solutions of two-dimensional and axisymmetrical laminar jet of an incompressible fluid with and without free stream have been obtained. For the case without free stream, the exact numerical solutions have been obtained for different initial velocity profiles and compared with experimental results and similarity solutions. For the case with free stream, the numerical solutions have been compared with the linearized analytical solutions. An approximate numerical solution for the axial velocity distribution of the three-dimensional laminar jet is proposed. The accuracy of the method has been determined from the exact solutions of the two limiting cases of three-dimensional jets, i.e., the two-dimensional and axisymmetric cases.
    Keywords: FLUID MECHANICS
    Type: Applied Scientific Research; 27; Oct. 197
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  • 7
    facet.materialart.
    Unknown
    In:  Other Sources
    Publication Date: 2019-07-13
    Description: The most important heat-transfer process in the ash flow under consideration is heat convection. Besides the four important nondimensional parameters of isothermal ash flow (Pai et al., 1972), we have three additional important nondimensional parameters: the ratio of the specific heat of the gas, the ratio of the specific heat of the solid particles to that of gas, and the Prandtl number. We reexamine the one dimensional steady ash flow discussed by Pai et al. (1972) by including the effects of heat transfer. Numerical results for the pressure, temperature, density of the gas, velocities of gas and solid particles, and volume fraction of solid particles as function of altitude for various values of the Jeffreys number, initial velocity ratio, and two different gas species (steam and hydrogen) are presented.
    Keywords: SPACE SCIENCES
    Type: Lunar Science Conference; Jan 10, 1972 - Jan 13, 1972; Houston, TX
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