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1.
The stress relaxation behavior of barium titanate (BTO)-elastomer (Ecoflex) composites, as used in large strain sensors, is studied using the generalized Maxwell-Wiechert model. In this article, we examine the stress relaxation behavior of ceramic polymer composites by conducting stress relaxation tests on samples prepared with varying the particle loading by 0, 10, 20, 30, and 40 wt% of 100 and 200 nm BTO ceramic particles embedded in a Ecoflex silicone-based hyperelastic elastomer. The influence of BTO on the Maxwell-Wiechert model parameters was studied through the stress relaxation results. While a pristine Ecoflex silicone elastomer is predominantly a hyperelastic material, the addition of BTO made the composite behave as a visco-hyperelastic material. However, this behavior was shown to have a negligible effect on the electrical sensing performance of the large strain sensor.  相似文献   
2.
In this study, a simple two step finite element model is developed to predict the spring-in of C-sections parts made of AS4/8552 composite. The development of resin properties throughout the MRCC were derived using Group Interaction Modelling and the mechanical properties of the composite predicted by using micromechanical models. Important mechanisms during manufacturing that are effective in the formation of residual stresses and shape distortions are defined. The finite element method implemented is composed of two steps before and after the vitrification of the resin. Vitrification is treated as a point at which the material suddenly changes from the rubbery to glassy state with constant properties in each state. The spring-in angles predicted by the finite element analysis are compared to the angles measured on C-section specimens of various lay-ups and thicknesses. The correlation is good showing the validity of the assumptions adopted.  相似文献   
3.
This study determined the prevalence, pulsed-field gel electrophoresis profiles, and antimicrobial resistance profile of Listeria monocytogenes, Salmonella enterica, and Escherichia coli O157:H7 isolates from dairy cattle farms in Jordan. Samples from bulk tank milk (n = 305), cattle feces (n = 610), and rectoanal mucosal swabs (n = 610) were collected from 61 dairy cattle farms. We confirmed 32 L. monocytogenes, 28 S. enterica, and 24 E. coli O157:H7 isolates from the samples. The farm-level prevalence (at least 1 positive sample per farm) of L. monocytogenes, S. enterica, and E. coli O157:H7 was 27.9, 19.7, and 23.0%, respectively. The prevalence of L. monocytogenes, S. enterica, and E. coli O157:H7 in bulk tank milk was 7.5, 1.6, and 3.3%, respectively. The prevalence of L. monocytogenes and S. enterica in fecal samples was 1.5 and 3.8%, respectively, and the prevalence of E. coli O157:H7 in rectoanal mucosal swabs was 2.3%. Based on disk diffusion testing, all L. monocytogenes, S. enterica, and E. coli O157:H7 isolates exhibited resistance to at least 1 antimicrobial class. Multidrug resistance (resistance to 3 or more classes of antimicrobials) was exhibited by 96.9% of L. monocytogenes, 91.7% of E. coli O157:H7, and 82.1% of S. enterica isolates. Moreover, 93.8, 79.2, and 57.1% of the L. monocytogenes, E. coli O157:H7, and S. enterica isolates, respectively, were resistant to 5 or more antimicrobial classes. More than 50% of L. monocytogenes isolates were resistant to ampicillin, clindamycin, penicillin, erythromycin, quinupristin–dalfopristin, streptomycin, teicoplanin, linezolid, vancomycin, kanamycin, and tetracycline. More than 50% of S. enterica and E. coli O157:H7 isolates were resistant to ampicillin, cephalothin, nalidixic acid, kanamycin, streptomycin, amoxicillin–clavulanic acid, and tetracycline. The prevalence of the studied pathogens this study was comparable to reports from other countries. The isolated pathogens exhibited a high degree of antimicrobial resistance, suggesting that the bacterial flora of dairy cattle in Jordan are under intense antimicrobial selection pressure. Additional research is required to determine the causes and drivers of resistance, and to develop approaches to mitigating antimicrobial resistance.  相似文献   
4.
The beneficial effect of dispersions of reactive-metal oxide particles on the adhesion of Cr2O3 and Al2O3 scales formed on heat-resisting alloys is wellknown. It has been shown that an Al2O3 dispersion in an alloy can improve the adhesion of a Cr2O3 scale, and it is of particular interest in assessing the various theoretical proposals for the effect to determine whether such a dispersion can affect the adhesion of an Al2O3 scale. In this investigation, a Co–10% Cr–1 % Al alloy was first internally oxidized to form an Al2O3 dispersion. This alloy was then aluminized so that on subsequent oxidation an Al2O3 scale developed. It was shown that the dispersion did indeed improve the scale adhesion. The implications of this result are discussed.  相似文献   
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Human cardiac Troponin I is one of three subunits of the cardiac Troponin complex that are released into the bloodstream upon injury to cardiac muscle, particularly myocardial infarction, where it is absent under normal conditions. Rapid, sensitive detection of blood borne Troponin I is extremely important for early detection of myocardial infarction. An optical biosensor has been proposed as a versatile, adaptable, and effective method for detection of Troponin I. The biosensor architecture utilizes fluorescence resonance energy transfer (FRET), a distance-dependent chemical signal transduction method that occurs between two fluorescent molecules, termed the donor and acceptor. In order to launch FRET, a donor-labeled protein A molecule is bound to an acceptor-labeled capture antibody. When exposed to the Troponin I antigen, the antibody-antigen binding event initiates a conformational change within the structure of the antibody. As this morphological change in the antibody takes place, the distance between the donor and acceptor changes, resulting in a measurable shift in energy transfer. In this study, quantum dots were utilized as the FRET donors to further increase the efficiency of the biosensor system and organic dyes were utilized as the acceptors. This sensing mechanism was then interfaced in a liquid-core waveguide (LCW) platform that was able to capture the resulting fluorescence to achieve highly sensitive and accurate measurements. The biosensor demonstrated an ample sensitivity to the analyte, achieving a lower limit of detection of approximately 32 nM in phosphate buffered saline and 55 nM in human plasma. A high degree of specificity was also observed when the response to cardiac Troponin I is compared with that of a nonspecific protein. Response time of the biosensor was determined to be less than 1 min; an expeditious time compared with other Troponin diagnostic assays.  相似文献   
8.
The use of ground differential for the protection of impedance-grounded transformers and generators has been increasing. Because of its inherent selectivity and speed of operation, ground differential provides excellent protection against ground faults within the grounded winding of the equipment. However, several factors should be considered when applying ground-differential protection to a power system. These factors include the type and ratings of the equipment being protected, whether it is a new installation or a retrofit project, and the type of relay being used. Both static or electromechanical relays may be applied for ground-differential-protection schemes on impedance-grounded transformers and generators. Each application should be evaluated regarding current transformer burden and saturation to ensure proper operation. The protection engineer should carefully consider the application factors to ensure that the desired level of protection is provided  相似文献   
9.
Ordered intermetallic alloys: an assessment   总被引:2,自引:0,他引:2  
The paper summarizes our present understanding, as established at a recent workshop, of two classes of intermetallic alloys: nickel and iron aluminides, which are currently used by industries; and advanced intermetallic alloys including silicides and Laves-phase alloys, which have a great potential to be developed as new high-temperature structural materials for future industrial use. The workshop emphasized close interaction and co-operation between basic research, applied research, and industrial development, and stressed discussion of critical scientific and technological issues. The current status of these intermetallic alloys was assessed, and the directions for future research and development, as well as emerging opportunities, were identified. The information presented in the text is summarized from the presentations at the workshop, and so no references are given to the published literature. However, an extensive bibliography is appended, in which further details may be found.  相似文献   
10.
The SET-RPLA is a commercially available kit for the detection of staphyloccal enterotoxins in foods. Previous reports have shown that non-specific reactions occur on use of the kit with cheeses and thereby restrict its use. In this study a variety of dairy products were tested and non-specific reactions were found to be associated with those products rennetted during manufacture. These reactions can be obviated by addition of 10 mM sodium hexametaphosphate to the diluent provided in the kit, without affecting the ability to detect staphyloccal enterotoxins in dairy products. The sensitivity of the SET-RPLA was demonstrated to be 0.25 ng/ml.  相似文献   
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