888 resultados para Sistemas de energia eletrica - Distribuidor de carga
Resumo:
A cárie dental é uma das doenças crônico-infecciosas mais comuns no mundo e é potencializada por fatores que favorecem a colonização da bactéria Streptococcus mutans na cavidade oral. O presente trabalho visa avaliar o potencial de sistemas nanoestruturados mucoadesivos para administração bucal do peptídeo sintético p1025, potencialmente ativo contra cárie dental. Este peptídeo, análogo aos fragmentos 1025-1044 da adesina celular de S. mutans mostrou-se, em estudos recentes, eficaz contra a adesão do patógeno na superfície do biofilme bacteriano. Acredita-se que, se incorporado em sistemas nanoestruturados mucoadesivos, sobretudo os sistemas líquido-cristalinos, sua ação possa ser modulada, pelo fato de que estes sistemas podem se aderir na mucosa bucal, de modo a proteger o peptídeo da degradação enzimática, além de prolongar o tempo de contato com a mucosa, diminuindo assim a frequência de administração. Os sistemas nanoestruturados de liberação controlada foram analisados estruturalmente através de microscopia de luz polarizada, determinação do comportamento reológico, TPA e bioadesão. Os resultados evidenciaram, através das análises de microscopia de luz polarizada, a presença de sistemas líquido-cristalinos de fase hexagonal e lamelar, além de domínios de microemulsões. As análises reológicas mostraram que ao adicionar dispersões poliméricas na fase aquosa do sistema, características como pseudoplasticidade e tixotropia são favorecidas, o que pode facilitar a aplicação do produto na mucosa bucal. O teste de biodesão mostrou que o emprego de dispersões poliméricas contribuiu para a adesão na mucosa bucal, sendo os melhores resultados obtidos com dispersão de Policarbofil® a 0,5 %.O teste microbiológico demonstrou a potencialização do efeito inibidor/redutor da carga microbiana com a utilização de óleo de melaleuca na fase oleosa do sistema. Os resultados obtidos sugerem que o ...
Resumo:
The objective of this work is to analyze the viability of incorporation in a microcomputer box of a nobreak with an ultracapacitor as energy storage device, substituting the conventional chemical battery. An advantage of this inclusion is cost reduction because a specific metallic or plastic frame won’t be necessary to protect the components of the nobreak; the microcomputer metallic frame offers the necessary protection for both equipments. Moreover, a large quantity of internal space of microcomputers box isn’t used, and is possible to use it to wrap up the nobreak. This work uses data about average power consumption of microcomputers; operation of switching mode power supplies for microcomputers; electrical and mechanical characteristics of ultracapacitors and operation of power circuits of nobreaks, with the purpose of present a study of energy storage capacity that an ultracapacitor should have to allow a safe switching off of a microcomputer in case of electrical network fail. It was noticed that the use of ultracapacitors is feasible to feed an 180 W load for 75 s, using a capacitive bank with sixteen ultracapacitors, with a total capacitance of 350 F and voltage of 10,8 V. The use of the proposed nobreak increases the reliability of the microcomputer by reducing the probability of user data losses in case of an electrical network fail, offering a high cost/benefit product. The substitution of the battery by an ultracapacitor allows a quick nobreak recharge, with low maintenance costs, since ultracapacitors have a lifetime bigger than batteries; beyond reducing the environmental impact, because they don’t use potentially toxic chemical compounds
Resumo:
On the field of the projects of hydraulic systems exists a lot of worries when we talk about the calculate of hydraulic pumps. In this case some facts must be considerate: length of tubes, fluid characteristics, height gauge, temperature, pressure, characteristics of tubes, flow required and others. For that mathematic calculates must be developed with the objective to optimize hydraulic pumps and agree to find an ideal machine (that don't requires more energy than necessary or less energy than it requires; that is the more critical case, cause exists the risk that the fluid pumped do not agree to become in your destiny). The wrong calculate of this machine can super-size its, bringing an excessive energy consumption. Actually it's an important subject because we are in the age of lack of energy what turn it more expensive. So the correct sizing of a hydraulic pump is connected with the fact that you have to uses the enough energy resources avoiding waste. The calculate of ideal pump in the pumping system is studied during years and a lot of specialists in this subject develop equations and theories to calculate its. Some researches study about this subject and all of them become to the same conclusion: to find the ideal pump we have to know the characteristics of fluid (cinematic viscosity), the required flow , overall yield (overall of motor x overall of pump) the high gauge or discharge pressure and the loss of repression. The pressure drop can be calculated with different theories: using Hazen-Williams, Darcy e Weisbach or Chézy (1775 - that starts the researches to calculate the pressure drop). Although the most used theory and what is most near to reality is the Darcy's equation. So, in this job the Darcy's equation were choice to calculate the drop pressure that consider what kind of flow we are studying: laminar or turbulent. The determination of the best pump to be used in the ... ( complete abstract click eletronic access below)