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71.
Sujit Majumdar Suraj Kumar Debasish Roy Samik Chakraborty Santanu Das 《Materials and Manufacturing Processes》2018,33(13):1459-1465
The presence of air boundary layer around a grinding wheel impedes the proper entry of cutting fluid into grinding zone and thereby lubrication and cooling are hampered. It leads to the thermal damage to the workpiece and rapid wheel wear. This experimental work is aimed at increasing the lubrication and cooling effects in grinding by a novel method of using scraper board. The experiments are conducted, using the scraper board, to find the critical region where the air pressure is zero. The coolant jet has then impinged into the grinding zone which is maintained within the critical region. The requirement of specific energy, surface texture, and mechanical properties of the ground surface are analyzed and compared with the traditional grinding and the grinding at various positions of scraper board. Results show that the grinding ratio improved by 35.6and 119%, surface roughness decreased by 36 and 54.2%, while the requirement of specific energy is reduced by 50.8 and 57.3% when scraper board is positioned at the critical distance in comparison to the 57.5° position and no scraper board, respectively. The results indicate that the introduction of fluid in the present method can improve the process efficiency and the product quality effectively. 相似文献
72.
D. Arvindha Babu A.P. Srivastava B. Majumdar D. Srivastava D. Akhtar 《Metallurgical and Materials Transactions A》2010,41(5):1313-1320
Melt-spun ribbons of (Fe0.65Co0.35)88Zr7B4Cu1 alloy have been prepared at different wheel speeds, namely, 47, 39, 34, and 17 m/s, and subsequently annealed at 773 K (500 °C)
under controlled atmosphere. Structural and soft magnetic properties have been evaluated using X-ray diffraction, differential
scanning calorimetry, transmission electron microscopy, and vibrating sample magnetometer. The structure of as-spun ribbons
changes from fully amorphous to partially amorphous/nanocrystalline to fully nanocrystalline (bcc α-Fe(Co) + Fe2Zr) on decreasing the wheel speed. Annealing of amorphous ribbons leads to the precipitation of nanocrystalline bcc α-Fe(Co) phase. The Curie temperature (T
c
) of the amorphous phase is found to increase with decreasing wheel speed possibly due to the effect of exchange field penetration
of nanocrystals present in the amorphous matrix. The saturation magnetization (4πM
s
) of as-spun ribbons having partially nanocrystalline bcc α-Fe(Co) phase is high as compared to the ribbons with completely amorphous phase, and it remains almost the same even after
annealing. The lowest coercivity has been achieved in the ribbons that are fully amorphous, and the coercivity was found to
increase with decreasing wheel speed. 相似文献
73.
74.
75.
L S Vaidhyanathan A M Niraimathi P Majumdar G Rangarajan M Muralidhar D Mangapathi Rao M Nagabhushanam V Hari Babu 《Bulletin of Materials Science》1991,14(4):913-919
Bi2−x
Pb
x
Sr2Ca2Cu3O
y
superconducting samples with 0<x<0·3 have been synthesized and characterized using X-ray powder diffraction.T
c
and superconducting volume fraction have been measured using a.c. magnetic susceptibility, d.c. electrical resistivity as
well as X-band microwave surface resistance in the normal state. The data indicate the growth of the highT
c
(2223) phase with corresponding reduction of the lowT
c
(2122) phase with increasingx, up to 0·25. Beyond this value ofx there is a slight deterioration of the superconducting behaviour. 相似文献
76.
Neilson J.E. Woodside C.M. Petriu D.C. Majumdar S. 《IEEE transactions on pattern analysis and machine intelligence》1995,21(9):776-782
Software bottlenecks are performance constraints caused by slow execution of a software task, in typical client-server systems a client task must wait in a blocked state for the server task to respond to its requests, so a saturated server will slow down all its clients. A rendezvous network generalizes this relationship to multiple layers of servers with send-and-wait interactions (rendezvous), a two-phase model of task behavior, and to a unified model for hardware and software contention. Software bottlenecks have different symptoms, different behavior when the system is altered, and a different cure from the conventional bottlenecks seen in queueing network models of computer systems, caused by hardware limits. The differences are due to the “push-back” effect of the rendezvous, which spreads the saturation of a server to its clients. The paper describes software bottlenecks by examples, gives a definition, shows how they can be located and alleviated, and gives a method for estimating the performance benefit to be obtained. Ultimately, if all the software bottlenecks can be removed, the performance limit will be due to a conventional hardware bottleneck 相似文献
77.
The influence of pressure up to 5600 kPa and temperature up to 175 °C on the oxidation of low concentrations of H2S in natural gas was studied in a fixed bed reactor over an activated carbon catalyst. Operation of this system at 5600 kPa provides higher catalyst activity (virtually 100% H2S conversion) over a longer period of time and with lower selectivity to SO2 than when operated at atmospheric pressure. The desorption of sulfur from a loaded catalyst occurs first from the macropores (> 100 nm) of the catalyst which contain a substantial portion of the sulfur load and then from the micropores (< 100 nm). This study also indicated that the sulfur recovery process is both rapid and effective at 327°C. 相似文献
78.
In vitro transcorneal permeation of ketorolac tromethamine from 0.5% w/v solutions containing equimolar (0.02 M) concentrations of citrate (pH 6.5), phosphate (pH 6.5 and 7), citrate-phosphate (pH 7) and borate (pH 7) buffers was studied using goat cornea. Cumulative % permeation was maximum with phosphate buffered drops of pH 6.5. The effect of pH and ionic strength on permeation of ketorolac tromethamine from buffered (phosphate) drops was next investigated. Cumulative % permeation of ketorolac tromethamine from buffered drops was pH dependent being maximum at pH 4.5. Adjustment of ionic strength of drops to 0.2 resulted in decreased permeation of drug. Permeation of ketorolac tromethamine from unbuffered drops of varying pH and ionic strength 0.2 was also pH dependent and was maximum at pH 4.5. Buffered drops of pH between 4.5-5.5, ionic strength 0.2, provided better permeation of drug compared to unbuffered drops of same pH and ionic strength. Above pH 6.5 unbuffered drops showed better permeation than buffered drops. Increase in molarity of phosphate buffer (pH 4.5) used in making drops, between 0 to 0.15 M increased permeation. Aqueous drops of ketorolac tromethamine formulated in 0.15 M phosphate buffer of pH 4.5 and ionic strength 0.2 showed maximum cumulative % permeation in vitro. Considering lacrimation induced drug loss in vivo, by buffer of high concentration, ketorolac tromethamine drops formulated in buffer of low molarity, pH 4.5 and ionic strength 0.2 appear suitable. 相似文献
79.
Influence of drug concentration, pH of aqueous drops and some commonly used preservatives on in vitro transcorneal permeation of ibuprofen and flurbiprofen were investigated using goat cornea. Increase in drug concentration in the drops made in normal saline resulted in increase in quantity permeated but decrease in cumulative percent permeation of both drugs. Permeation of each drug from 0.5% drops was maximum at acidic pH (6.4) and decreased with increase in pH of the drops. Normal saline, as a vehicle, favoured permeation of each drug, hence retained in the formulation. Benzalkonium chloride and chlorobutanol enhanced cumulative percent permeation of ibuprofen while benzalkonium chloride and phenyl mercuric nitrate increased permeation of flurbiprofen. Benzalkonium chloride being incompatible with 0.5% drops (pH 6.4) of either drug, chlorobutanol appears suitable for ibuprofen drops and phenyl mercuric nitrate for flurbiprofen drops. 相似文献
80.
A Majumdar 《Microelectronics Reliability》1998,38(4):559-565
This paper reports our progress on the development of thermal microscopy for studying heat generation in electronic devices and interconnects. The resolution of the scanning thermal microscope has been improved from about 500 nm achieved by the first wire thermocouple probes to about 25 nm for the more recent thin-film thermocouple probes. These have been used to measure the temperature distribution and hot spots of single transistors, short circuits in transistors created by electrostatic discharge failures, as well as novel devices such as vertical-cavity surface emitting lasers and magnetoresistive reading heads. Recently, a new technique called scanning Joule expansion microscopy has been developed to measure the temperature distribution of electrically heated samples with about 10 nm spatial resolution. The advantage of this technique is that it does not require fabrication of temperature-sensing probes and can use commercially-available cantilever probes that are employed in atomic force microscopes. 相似文献