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31.
Hanns H. Ott Walter Lanz 《Zeitschrift für Angewandte Mathematik und Physik (ZAMP)》1973,24(3):386-400
Zusammenfassung Bei Durchlaufschmierung von Gleitlagern ist das von der Pumpe geförderte und den Lagern zugeführte Öl häufig mit Luftbläschen durchsetzt. Für das Betriebsverhallten von derart geschmierten Lagern ist der Einfluss de Luftgehaltes auf die dynamische Viskosität des Gemisches wesentlich. In der vorliegenden Arbeit wird dieser Einfluss für ein gebräuchliches Turbomaschinen-Schmieröl an der laminaren Strömung in einem Kreisrohr theoretisch und experimentell untersucht. Es zeigte sich, dass bei tiefer Temperatur die Zähigkeit durch die Luftbeimischung reduziert und bei hoher Temperatur erhöht wird.
Summary The lubricating oil for hydrodynamic bearings supplied by a pump is often containing air in the form of tiny bubbles. Thus the bearings are lubricated with an oil/air-mixture instead of pure oil. The performance of such bearings depends on the influence of the air contents on the dynamic viscosity of the oil/air-mixture. It is the purpose of this paper to determine this influence through a theoretical and experimental investigation, examining an average lubricating oil for turbomachinery at laminar flow in a circular tube. It was found that at low temperatures the viscosity is reduced by the addition of air in the oil, while with higher temperatures the viscosity is increased. By introducing a dimensionless characteristic number for the flow of the oil with air bubbles, the results of the investigation can be given in dimensionless form.相似文献
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Based on the thermodynamic model for particle production, inclusive two-particle correlations are studied. The model is used to study integrated correlations R(2)(s) and rapidity correlations at accelerator and ISR energies.Particle production is described via the formation of clusters called fireballs. The average mass of these clusters changes as with the primary energy s and fireball rapidity η. The model produces in the limiting cases the same correlations as the multiperipheral model (with w = 0) and the diffractive excitation model (with w = 1) but contains also all intermediate cases (0 < w < 1) in which fireballs increasing in mass and number are formed. The average number of fireballs produced is also calculated. At ISR energies integrated correlations R(2) and rapidity correlations are very different in the cases . Therefore, experimental data at high energy on R(2)(s) or on rapidity correlations will allow one to determine the parameter w. Measurements of these different quantities should result in a consistent picture for the production of fireballs. 相似文献
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Novel unsymmetrical bisindoles were synthesized by a solvent-free C-C bond-formation reaction under mild conditions. Starting from aziridines or hydroxyl precursors, indoles have been used as C-nucleophiles to form new pharmacologically interesting bisindoles via an electrophilic aromatic substitution pathway in good to excellent yields. [reaction: see text] 相似文献
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Ultrafast transverse thermoelectric voltage response has been observed in c‐axis inclined epitaxial La0.5Sr0.5CoO3thin films. Voltage signals with the rise time of 7 ns have been detected under the irradiation of pulse laser with duration of 28 ns. A concept, named response rate ratio, has been proposed to evaluate the intrinsic response rate, and this ratio in La0.5Sr0.5CoO3is smaller than that in other reported materials. The low resistivity is thought to be responsible for the ultrafast response, as low resistivity induces small optical penetration depth, and response time has a monotonous increasing relationship with this depth.
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High‐Pressure Synthesis of a Nitrogen‐Rich Inclusion Compound ReN8⋅x N2 with Conjugated Polymeric Nitrogen Chains 下载免费PDF全文
Dr. Maxim Bykov Dr. Elena Bykova Egor Koemets Timofey Fedotenko Georgios Aprilis Dr. Konstantin Glazyrin Dr. Hanns‐Peter Liermann Dr. Alena V. Ponomareva Johan Tidholm Dr. Ferenc Tasnádi Prof. Dr. Igor A. Abrikosov Prof. Dr. Natalia Dubrovinskaia Prof. Dr. Leonid Dubrovinsky 《Angewandte Chemie (International ed. in English)》2018,57(29):9048-9053
A nitrogen‐rich compound, ReN8?x N2, was synthesized by a direct reaction between rhenium and nitrogen at high pressure and high temperature in a laser‐heated diamond anvil cell. Single‐crystal X‐ray diffraction revealed that the crystal structure, which is based on the ReN8 framework, has rectangular‐shaped channels that accommodate nitrogen molecules. Thus, despite a very high synthesis pressure, exceeding 100 GPa, ReN8?x N2 is an inclusion compound. The amount of trapped nitrogen (x) depends on the synthesis conditions. The polydiazenediyl chains [?N=N?]∞ that constitute the framework have not been previously observed in any compound. Ab initio calculations on ReN8?x N2 provide strong support for the experimental results and conclusions. 相似文献