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71.
Rates of coke formation during steam pyrolysis of naphtha have been investigated in a jet-stirred reactor both for sodium silicate coated and uncoated Inconel 600 surfaces in the temperature range of 1078–1108 K. Coke formation rates were significantly reduced on sodium silicate coated plates due to the passivation of the metal surface. However, the coking rates gradually increased with successive decokings of the coated surface. 相似文献
72.
73.
The superplastic properties of a rapidly solidified, high strength P/M Al alloy and the same alloy reinforced with SiC particulates
(SiC
p
) have been studied. To prepare superplastic test materials, a matrix alloy powder of composition 7.2Zn-2.4Mg-2Cu-0.2Zr-0.12Cr-0.2Co
(Kaiser PM-64) and the powder mixed with 10 to 20 vol pct SiC
p
(~5 μm diameter) were thermomechanically processed to very fine equiaxed grain structures of ~6 μm and ~8 μm, respectively.
Superplasticity in these materials was evaluated by characterizing (1) high temperature stability, (2) dynamic grain growth,
(3) strain rate sensitivity, (4) flow stress behavior, (5) cavitation and cavitation control, and (6) total superplastic strain.
It was observed that the PM-64 alloy could achieve a total elongation of over 800 pct, while the SiCp reinforced alloy could attain an elongation greater than 500 pct before failure. Also, it was shown that with the use of
hydrostatic pressure during superplastic flow, cavitation could be controlled. Observations were made of the effect SiC
p
reinforcement particles had on the superplastic flow stress behavior. Interpretations are proposed to explain the role of
particulates during superplastic straining. 相似文献
74.
G. G. Krishna Murthy A. Ghosh S. P. Mehrotra 《Metallurgical and Materials Transactions B》1989,20(1):53-59
A macroscopic, steady state energy balance model has been formulated to describe mixing phenom-ena in a liquid bath stirred
by injecting gas through a straight nozzle fitted axially at the bottom of the vessel. This, along with experimental data
on a water model previously reported, was employed to make predictions. Input energy terms considered in the model consist
of buoyancy energy and empirically determined fraction of gas kinetic energy. Dissipation of energy was attributed to liquid
circulation and bubble slip. The two-phase plume was assumed to be a truncated cone whose dimen-sions depended upon operating
conditions. Numerical solution of model equations gave liquid velocity and gas hold-up inside the plume as well as liquid
circulation rate and liquid velocity in the region outside the plume. Influence of process variables, e.g., gas flow rate,
bath height, and nozzle diameter, have been predicted. Validity of the model has been established by comparing some pre-dicted
entrainment ratios with those experimentally measured by other investigators. Empirical cor-relations to predict circulation
time and circulation number have been proposed. Circulation number was found to vary between 2 and 12 in contrast to the existing
assumption in the literature of a con-stant value of 3. Usefulness of these correlations in predicting mixing time for industrial
vessels has been demonstrated.
Formerly a Graduate Student in the De-partment of Metallurgical Engineering at the Indian Institute of Technol-ogy, Kanpur 相似文献
75.
76.
77.
78.
79.
A 10-year-old, previously healthy female presented to the emergency department via emergency medical service transport, with her tongue tightly entrapped inside a glass bottle (9 oz, Yoohoo brand of chocolate drink). The tongue was massively edematous and ecchymotic due to impaired venous return from constriction by the neck of the bottle. After repeated attempts at mechanically reducing the tongue out of the bottle, a professional glazier was contacted, who was able to remove the bottle in the operating room with a steel glass cutter. Needle evacuation of a small hematoma was then performed to decrease the pressure ischemia to the tongue, which began to improve quickly. 相似文献
80.