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The invariants in the K-BKZ constitutive equation for an incompressible viscoelastic fluid are usually taken to be the trace of the Finger strain tensor and its inverse. The basis for this choice of invariants is not derived from the K-BKZ theory, but rather is due to the perception that this is the most natural choice. Research into using other sets of invariants in the K-BKZ equation, such as the principal stretches or the eigenvalues of the Finger strain tensor (i.e., the squares of the principal stretches) is relatively new. We attempt here to derive a K-BKZ equation based on the squares of the principal stretches that models the behavior of a low-density polyethylene melt in simple shear and uniaxial elongational deformation. In doing so, two assumptions are made as to the form of the strain-dependent energy function: first, that there is a function f(q) such that the energy function can be written as the sum of f(q
i
),i = 1, 2, 3, where the q
i
'sare the squares of the principal stretches, and second that f is a power law. We find that the K-BKZ equation resulting from these two assumptions is inadequate to describe both the shear and elongational behavior of our material and we conclude that the second of the above assumptions is not valid. Further investigation, including predictions of the second normal stress difference and some finite element calculations reveals that the first assumption is also invalid for our material. 相似文献
23.
J. Löhring A. Meissner D. Hoffmann A. Fix G. Ehret M. Alpers 《Applied physics. B, Lasers and optics》2011,102(4):917-935
A diode-pumped Q-switched and injection-seeded single-frequency laser, generating tunable laser radiation at 935 nm, is presented. Using Nd:YGG (Y3Ga5O12) as the active medium, the laser that was developed to serve as a transmitter for water–vapor lidar measurements. The configuration consists of a stable resonator in rod geometry that is injection seeded by a narrowband diode laser and stabilized by the ramp-and-fire technique. Energy scaling was done in a power amplifier in slab geometry. Both oscillator and amplifier crystal were diode pumped at 806 nm. More than 30 mJ pulse energy at 100 Hz repetition rate with a beam propagation factor of M2<1.4 and pulse duration of 52 ns in single-frequency mode were generated. To our knowledge this is the first direct generation of 935 nm Q-switched pulses from Nd:YGG suitable for water–vapor measurements. The reported results show great promise of this laser in applications where high efficiency and reduced complexity is indispensable, such as for spaceborne or airborne water–vapor lidar instruments. 相似文献
24.
I.Y. Knoke P. Berwian E. Meissner J. Friedrich H.P. Strunk G. Müller 《Journal of Crystal Growth》2010,312(20):3040-3045
This work presents an experimental study on the identification and quantification of different types of dislocations in GaN grown by low-pressure solution growth. A reliable defect selective etching procedure in a NaOH-KOH melt is developed and validated using transmission electron microscopy that permits to define groups of etch pits that belong each to dislocations with a specific Burgers vector. This way a comparably fast method is provided for determining the total, the specific dislocation densities and the type of dislocation in a statistically representative way. The results for the solution grown samples are compared to those obtained for MOCVD GaN. 相似文献
25.
Maria Chrzanowska Agnieszka Grajewska Zofia Meissner Maria Rozwadowska Iwona Wiatrowska 《Tetrahedron》2012,68(14):3092-3097
A sequence of two reactions: the Petasis reaction, in which an aminoacetaldehyde acetal was used as the amine component, followed by Pomeranz–Fritsch–Bobbitt cyclization, has been shown to be a convenient and simple method for the synthesis of tetrahydroisoquinoline-1-carboxylic acids. Using this method several acids have been prepared in good to excellent yields and characterized as hydrochloride salts. 相似文献
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28.
Bharti B Meissner J Findenegg GH 《Langmuir : the ACS journal of surfaces and colloids》2011,27(16):9823-9833
The interaction of the globular protein lysozyme with silica nanoparticles of diameter 20 nm was studied in a pH range between the isoelectric points (IEPs) of silica and the protein (pH 3-11). The adsorption affinity and capacity of lysozyme on the silica particles is increasing progressively with pH, and the adsorbed protein induces bridging aggregation of the silica particles. Structural properties of the aggregates were studied as a function of pH at a fixed protein-to-silica concentration ratio which corresponds to a surface concentration of protein well below a complete monolayer in the complete-binding regime at pH > 6. Sedimentation studies indicate the presence of compact aggregates at pH 4-6 and a loose flocculated network at pH 7-9, followed by a sharp decrease of aggregate size near the IEP of lysozyme. The structure of the bridged silica aggregates was studied by cryo-transmission electron microscopy (cryo-TEM) and small-angle X-ray scattering. The structure factor S(q) derived from the scattering profiles displays characteristic features of particles interacting by a short-range attractive potential and can be represented by the square-well Percus-Yevick potential model, with a potential depth not exceeding 3k(B)T. 相似文献
29.
Walther J Gaertner M Cimalla P Burkhardt A Kirsten L Meissner S Koch E 《Analytical and bioanalytical chemistry》2011,400(9):2721-2743
Optical coherence tomography (OCT) is a noninvasive, high-resolution, interferometric imaging modality using near-infrared
light to acquire cross-sections and three-dimensional images of the subsurface microstructure of biological specimens. Because
of rapid improvement of the acquisition speed and axial resolution of OCT over recent years, OCT is becoming increasingly
attractive for applications in biomedical research. Therefore, OCT is no longer used solely for structural investigations
of biological samples but also for functional examination, making it potentially useful in bioanalytical science. The combination
of in vivo structural and functional findings makes it possible to obtain thorough knowledge on basic physiological and pathological
processes. Advanced applications, for example, optical biopsy in visceral cavities, have been enabled by combining OCT with
established imaging modalities. This report gives an outline of the state of the art and novel trends of innovative OCT approaches
in biomedical research in which the main focus is on applications in fundamental research and pre-clinical utilization. 相似文献
30.
Herbert Meissner 《Fresenius' Journal of Analytical Chemistry》1930,80(7-8):247-252
Ohne Zusammenfassung 相似文献