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  • 1
    Electronic Resource
    Electronic Resource
    Brookfield, Conn. : Wiley-Blackwell
    Polymer Composites 12 (1991), S. 66-74 
    ISSN: 0272-8397
    Keywords: Chemistry ; Chemical Engineering
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: A dynamic mechanical apparatus, based on the concept of mechanical impedance analysis (MIA), was constructed for real-time cure monitoring of composites. The frequency response function (FRF), in terms of the inertance, impedance or admittance value, can be obtained from the ratio of the Fourier Transforms of excitation and response signals. Spectra during curing of several different kinds of composite materials were obtained with the Fast Fourier Transform spectrum analyzer while the material was continually excited with a random input generated by an electro-magnetic shaker. The dynamic properties, such as storage modulus (E′) and loss tangent (tan δ), of the composite can be obtained from the FRF spectra as a function of cure time and temperature. Variations of the inertance spectra with cure time, reflecting the changes in the dynamic mechanical properties, for the composite materials under various isothermal cure conditions are discussed. Optimal cure cycles of a new resin can be determined by characterizing the phase transformation of the material, which can be identified from the MIA measurement results. The MIA technique is found to be a sensitive and direct means for monitoring the overall cure state of composites. The signals obtained can be integrated in real-time in a closed-loop feedback control system for composite fabrication.
    Additional Material: 11 Ill.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Stamford, Conn. [u.a.] : Wiley-Blackwell
    Polymer Engineering and Science 31 (1991), S. 47-55 
    ISSN: 0032-3888
    Keywords: Chemistry ; Chemical Engineering
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology , Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: A feasibility study on the use of vibration spectrum analysis as a tool for nondestructive evaluation (NDE) of polymer composites was conducted. Material integrity of polymer composite samples was determined from the vibrational measurements by analyzing the resonant frequency and damping information. A number of important “states” in the composites tested could be characterized by this analysis. The vibration tehnique was found to be sensitive to physical flawing (fiber breakage, delamination, and matrix cracking). Vibrational NDE has many potential advantages that make it very attractive for composite applications. These include the ability to make global measurements of large structures in real-time, no geometry restrictions, and high sensitivity to a wide variety of damage states.
    Additional Material: 14 Ill.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Bognor Regis [u.a.] : Wiley-Blackwell
    Journal of Polymer Science Part B: Polymer Physics 36 (1998), S. 2111-2128 
    ISSN: 0887-6266
    Keywords: orientation ; physical aging ; free volume ; glass-transition ; dilatometry atactic-polystyrene ; bisphenol A polycarbonate ; Physics ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology , Physics
    Notes: It has recently been demonstrated that hot-drawn samples of bisphenol A polycarbonate (PC) have a 50% higher volume relaxation rate than their isotropic counterpart even though the oriented samples have a lower initial free volume (i.e., higher density).1 In an attempt to better understand this paradox, samples of unaged, hot-drawn PC were characterized thermodynamically and kinetically as a function of orientation. Heat capacity, hole energy, and Tg data indicate that the chain mobility is actually decreasing slightly with orientation, possibly due to the hindered motion brought about by tighter packing, stronger intermolecular bonding, and reduced free volume. Nonetheless, this decrease in localized mobility is in contradiction to the enhanced volume relaxation rates observed for the oriented samples. In contrast, dynamic mechanical data indicate an increase in the relaxation strength of the β-transition (-100°C at 1 Hz) upon stretching for both the stretch and transverse directions. This implies that more segments are actively participating in the relaxation process for the oriented samples even though their individual localized mobility might be slightly lower. The net result is an increase in “effective” mobility for the oriented samples. It is conjectured that the enhanced relaxation strength of the oriented samples is a result of the stretching process somehow activating more of the chains into a higher energy state, and may be related to the physical aging concept of stress-induced rejuvenation/acceleration. © 1998 John Wiley & Sons, Inc. J Polym Sci B: Polym Phys 36: 2111-2128, 1998
    Additional Material: 15 Ill.
    Type of Medium: Electronic Resource
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