976 resultados para Treatment Manual


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In this paper, we discuss the design of a manually operated soil compaction machine that is being used to manufacture stabilized soil blocks (SSB). A case study of manufacturing more than three million blocks in a housing project using manually operated machines is illustrated. The paper is focussed on the design, development, and evaluation of a manually operated soil compaction machine for the production of SSB. It also details the machine design philosophy, compaction characteristics of soils, employment generation potential of small-scale stabilized soil block productions systems, and embodied energy. Static compaction of partially saturated soils was performed to generate force-displacement curves in a confined compaction process were generated. Based on the soil compaction data engineering design aspects of a toggle press are illustrated. The results of time and motion study on block production operations using manual machines are discussed. Critical path network diagrams were used for small-scale SSB production systems. Such production systems generate employment at a very low capital cost.

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Titania aerogels were synthesized by sol-gel route followed by ambient pressure subcritical drying technique. The aerogels synthesized in the present work possess a maximum surface area of 252 m(2)/g. The pore size distribution is between 2 and 30 nm which confirms their mesoporosity. The oxygen plasma treatment on titania aerogel thin films improved the surface area up to 273 m(2)/g and produced additional hydrophilic groups on the surface. It is confirmed by BET surface area, XPS and thermal analysis in conjunction with dye adsorption studies. After plasma treatment the dye adsorption capacity was increased 2.5 times higher than that of untreated aerogel film. The increased surface area and the hydrophilic groups generated on the titania aerogel surface during plasma treatment are responsible for enhanced dye adsorption. The overall nanoporous morphology of titania aerogel is preserved after plasma treatment. (C) 2015 Elsevier B.V. All rights reserved.

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Many bacteria secrete a highly hydrated framework of extracellular polymer matrix on suitable substrates and embed within the matrix to form a biofilm. Bacterial biofilms are observed on many medical devices, endocarditis, periodontitis and lung infections in cystic fibrosis patients. Bacteria in biofilm are protected from antibiotics and >1,000 times of the minimum inhibitory concentration may be required to treat biofilm infections. Here, we demonstrated that shock waves could be used to remove Salmonella, Pseudomonas and Staphylococcus biofilms in urinary catheters. The studies were extended to a Pseudomonas chronic pneumonia lung infection and Staphylococcus skin suture infection model in mice. The biofilm infections in mice, treated with shock waves became susceptible to antibiotics, unlike untreated biofilms. Mice exposed to shock waves responded to ciprofloxacin treatment, while ciprofloxacin alone was ineffective in treating the infection. These results demonstrate for the first time that, shock waves, combined with antibiotic treatment can be used to treat biofilm infection on medical devices as well as in situ infections.

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The present work explores the potential of semi-solid heat treatment technique by elucidating its effect on the plastic behavior of 304L SS in hot working domain. To accomplish this objective, hot isothermal compression tests on 304L SS specimens with semi-solid heat treatment and conventional annealing heat treatment have been carried out within a temperature range of 1273-1473 K and strain rates ranging from 0.01 to 1 s(-1). The dynamic flow behavior of this steel in its conventional heat-treated condition and semi-solid heat-treated condition has been characterized in terms of strain hardening, temperature softening, strain rate hardening, and dynamic flow softening. Extensive microstructural investigation has been carried out to corroborate the results obtained from the analysis of flow behavior. Detailed analysis of the results demonstrates that semi-solid heat treatment moderates work hardening, strain rate hardening, and temperature sensitivity of 304L SS, which is favorable for hot deformation. The post-deformation hardness values of semi-solid heat-treated steel and conventionally heat-treated steel were found to remain similar despite the pre-deformation heat treatment conditions. The results obtained demonstrate the potential of semi-solid heat treatment as a pre-deformation heat treatment step to effectively reduce the strength of the material to facilitate easier deformation without affecting the post-deformation properties of the steel.

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Two antineoplastic agents, Imatinib (IM) and 5-Fluorouracil (FU) were conjugated by hydrolysable linkers through an amide bond and entrapped in polymeric Human Serum Albumin (HSA) nanoparticles. The presence of dual drugs in a common carrier has the advantage of reaching the site of action simultaneously and acting at different phases of the cell cycle to arrest the growth of cancer cells before they develop chemoresistance. The study has demonstrated an enhanced anticancer activity of the conjugate, and conjugate loaded stealth HSA nanoparticles (NPs) in comparison to the free drug in A-549 human lung carcinoma cell line and Zebra fish embryos (Danio rerio). Hydrolysability of the conjugate has also been demonstrated with complete hydrolysis being observed after 12 h. In vivo pharmacodynamics study in terms of tumor volume and pharmacokinetics in mice for conjugate (IM-SC-FU) and conjugate loaded nanoparticles showed significant anti-cancer activity. The other parameters evaluated were particle size (86nm), Poly Dispersive Index (PDI) (0.209), zeta potential (-49mV), drug entrapment efficiency (96.73%) and drug loading efficiency (89%). Being in stealth mode gives the potential for the NPs to evade Reticulo-Endothelial system (RES), achieve passive targeting by Enhanced Permeation Retention (EPR) effect with controlled release of the therapeutic agent. As the conjugate cleaves into individual drugs in the tumor environment, this promises better suppression of cancer chemoresistance by delivering dual drugs with different modes of action at the same site, thereby synergistically inhibiting the growth of cancerous tissue.

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The effects of electron beam surface hardening treatment on the microstructure and hardness of AISI D3 tool steel have been investigated in this paper. The results showed that the microstructure of the hardened layer consisted of martensite, a dispersion

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Covering the solid lattice with a finite-element mesh produces a coarse-grained system of mesh nodes as pseudoatoms interacting through an effective potential energy that depends implicitly on the thermodynamic state. Use of the pseudoatomic Hamiltonian in a Monte Carlo simulation of the two-dimensional Lennard-Jones crystal yields equilibrium thermomechanical properties (e.g., isotropic stress) in excellent agreement with ``exact'' fully atomistic results.

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A Ni-B coating was prepared with EN using potassium borohydride reducing agent. The as-plated micro-structure of the coating was confirmed from XRD to be a mixture of amorphous and supersaturated solid solution. Three kinds of phase transformation were observed from the DSC curve. Different from the previous works, the formation of Ni4B3 and Ni2B was found during some transformation processes. The key factors which influence the variation of micro-hardness and micro-structure in deposits are the formation, the size and amount of Ni3B, Ni4B3 and Ni2B. Aging of the deposits treated under some heat treatment conditions occurred at room temperature. Changes of the micro-hardness indicated aging phenomena evidently. the natural aging phenomena are concerned with various kinds of decomposition of borides, especially with Ni4B3 phase. The extent of natural aging depends on the formation and the quantity of Ni(4)B3 and Ni2B.

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The basic remelting and cladding tests with laminar plasma technology on metals have been conducted in order to demonstrate the possibility of the technology applied in material surface modification. The experimental results show that the properties of the modified layers of the cast iron surface can be improved notably by the remelting treatment and those of the stainless steel by the cladding treatment. The related results are also verified by microscopic studies such as scanning electron microscopic (SEM) observations, energy dispersive spectra (EDS) analysis and the Vickers hardness measurements of the surface modified layers.

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A two-dimensional model has been developed based on the experimental results of stainless steel remelting with the laminar plasma technology to investigate the transient thermo-physical characteristics of the melt pool liquids. The influence of the temperature field, temperature gradient, solidification rate and cooling rate on the processing conditions has been investigated numerically. Not only have the appropriate processing conditions been determined according to the calculations, but also they have been predicted with a criterion established based on the concept of equivalent temperature area density (ETAD) that is actually a function of the processing parameters and material properties. The comparison between the resulting conditions shows that the ETAD method can better predict the optimum condition.

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We report a detailed study of surface-bound chemical vapor deposition of carbon nanotubes and nanofibers from evaporated transition metal catalysts exposed to ammonia diluted acetylene. We show that a reduction of the Fe/Co catalyst film thickness below 3 nm results into a transition from large diameter (> 40 nm), bamboo-like nanofibers to small diameter (similar to 5 nm) multi-walled carbon nanotubes. The nanostructuring of ultrathin catalyst films critically depends on the gas atmosphere, with the resulting island distribution initiating the carbon nucleation. Compared to purely thermal chemical vapor deposition, we find that, for small diameter nanotube growth, DC plasma assistance is detrimental to graphitization and sample homogeneity and cannot prevent an early catalyst poisoning. (c) 2006 Elsevier B.V. All rights reserved.

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Durante las últimas décadas se han conseguido importantes avances en la cría del Ara macao L. y parte de la razón del incremento en la reproducción son los avances en la nutrición, la estimulacion de nidificación y facilidad de la cría manual de sus polluelos. En la actualidad se ha estado trabajando en la identificación de rasgos de dimorfismo sexual, pero esta especie no posee muchos. El uso de incubadoras se ha popularizado en grado apreciable, y como resultado es posible retirar los huevos poco después de la puesta y proceder a incubación y al cuidado de los polluelos después de nacidos de forma separada. Mientras tanto y durante este proceso, los adultos ya estarán nidificando de nuevo. Este sistema a menudo llamado "doble nidada" estimula el ciclo reproductivo natural de los guacamayos y obviamente permite doblar el número de polluelos en cada época de cría. El uso de registros en el criadero permitirá obtener mejores resultados, para esto se diseñan fichas de registro reproductivo y fichas de registro individual.El aspecto exótico de los guacamayos puede dar la impresión de que son delicados y por ello propensos a enfermar. La mayoría de estos guacamayos exigen cuidados sencillos y gozan de larga vida con tal que se les instale en un entorno limpio y se alimenten de forma balanceada. Hay que someter a estrecha observación todas las aves recién adquiridas, en especial si han sido importadas. El estrés causado por el transporte y por un entorno que no les es familiar, habrá reducido la resistencia del ave a las enfermedades. Aparte de ello, cabe que en su nuevo entorno se encuentre con microorganismos dañinos con los que no se hayan familiarizado y a los cuales son virtualmente inmunes las aves ya instaladas. Al igual que cualquier otro animal, pueden verse aquejados por un número considerable de enfermedades, por cuyo motivo ha de constituir objetivo de todo aquel que disponga de varios ejemplares, reducir, a través de la higiene, la incidencia del riesgo que sobre ellos se cierne y tener plena conciencia de cuales son las situaciones en las que cualquier enfermedad puede propagarse.

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Los gallos de combate llegaron a América provenientes de Europa; los conquistadores españoles trajeron gallos del tipo bankivoyde; malayoide, entre otros. Los primeros gallos de combate se originaron hace más de cinco mil años, ascendientes de los que hoy conocemos como Asiles Las primeras peleas de gallo se registraron en la India tres mil años antes de Cristo. Posiblemente las primeras aves que se pelearon por separado, fueron machos nacidos en cautiverio, tanto Malayos (Gallus giganteus)como Bankivas (subespecies de Gallus gallus). Para la selección y formación del "gallo de combate" intervinieron una serie de factores, los cuales se tejieron alrededor de la antigua Bélica de estas aves, de allí vendría el interés por crearlos, teniendo antes que capturarlo y trasladarlo desde su hábitat natural (los bosques) al cautiverio,cuando eran pollitos. Seguramente el primer criador de gallos de combate se daría cuenta de la actitud Bélica conflictiva en los pollones; quienes, al crecer demostrarían sus primeras actitudes de luchadores, matándose unos a otros. Esto forzaría a los criadores a separarlos en pequeñas jaulas rústicas. Luego hicieron la primera selección de los mejores ejemplares, según las actitudes de lucha, fuerza, velocidad, agilidad, entre otras. Antes de empezar con la explicación del manejo de los gallos de pelea, es necesario ejecutar algunas aclaraciones con relación a lo que son los gallos de pelea, y sobre todo, quienes son los que se encargan de su manejo. Cabe entender que, no todas las personas que están en este medio son iguales, y la forma más sencilla de explicar esto, es marcar la diferencia entre "galleros" y "criadores de gallos" Estos últimos, para tener aves de calidad, le es indispensable saber eleccionar a los reproductores, tal vez esta es la tarea más difícil de todas. Fundamentar la base para una buena alimentación, sana y racional. Es muy importante conocer sobre el tema de las instalaciones, para los que quieren iniciar su criadero de aves de combate. Deben tomarse en cuenta, en el manejo del gallo de pelea, las prácticas adecuadas del descreste y tusado. Las enfermedades se reconocen por sus señales muy claras. Las vacunas es el método más sencillo y más barato de prevenir pérdidas. El entrenamiento o cuido apropiado y la buena alimentación del gallo, son esenciales para obtener victorias o buen rendimiento durante el combate, si falta uno de éstos dos, puede ser fatal para sus gallos. Existen distintos tipos de entrenamientos para un gallo de pelea, ninguno es criticable, pero definitivamente es necesario preguntarse ¿Están ganando con este método? En síntesis hay que identificar y evaluar, comenzando desde el lugar en dónde desarrollar nuestras crías, depende mucho de las condiciones climáticas y ambientales(humedad, sol, temperatura, disposición de agua fresca, entre otras). Disponibilidad de materia prima como granos, alimento balanceado, y forraje verde. Disposición de personal calificado en la temática y permanencia continúa.

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The deformation microstructure of face-centered cubic cobalt subjected to surface mechanical attrition treatment was studied as a function of strain levels. Strain-induced gamma --> epsilon transformation and twinning deformation were evidenced by transmission electron microscopy and were found to progress continuously in ultrafine and nanocrystalline grains as the strain increased.