590 resultados para Painéis reforçados
Resumo:
A introdução de um novo material para a execução de estruturas, implica um amplo estudo sobre o mesmo, para que seja aceite como um material de utilização, ou solução, corrente na engenharia civil. Os varões plásticos reforçados com fibra de vidro, GFRP,apresentam-se com diversas vantagens para uma solução de substituição das tradicionais armaduras de aço no betão armado. Um Estado da Arte foi apurado para determinar o ponto de situação do conhecimento e dos estudos realizados por vários autores, desde o início das pesquisas até aos mais recentes estudos disponíveis. Neste seguimento, o presente estudo incide na análise do comportamento à flexão de vigas contínuas de betão armado com varões de GFRP, submetidas a um carregamento distribuído. O trabalho realiza-se com base em 18 modelos de elementos finitos para uma análise paramétrica, sendo os parâmetros estudados, o vão, a percentagem de armadura de flexão e a esbelteza da secção. Para validação do modelo foram, modeladas 7 vigas reais ensaiadas no âmbito de trabalhos de investigação de dois autores Os resultados das modelações das análises paramétricas foram comparados com uma análise elástica e uma análise plástica, utilizando a metodologia do ACI 440.1R-06, para a carga última de dimensionamento. Outras comparações foram feitas através dos limites de deformação do EN 1992-1-1, 2004. Analisa-se a distribuição de esforços, não elásticos, devido à perda de rigidez da viga. Os modelos das vigas mais esbeltas e com menor percentagem de armadura mostraram maior concordância com a análise realizada. As deformações comparadas com o limite L/250 mostram concordância de resultados.
Resumo:
As energias renováveis têm-se tornado uma alternativa viável e complementar aos combustíveis fósseis, pelo facto de serem energias virtualmente inesgotáveis, limpas e economicamente vantajosas. Um dos principais problemas associados às fontes de energia renováveis é a sua intermitência. Este problema impossibilita o controlo da produção de energia e reflete-se na qualidade da energia elétrica. Em sistemas de microprodução de energia, este problema pode ser atenuado com a inclusão de sistemas de armazenamento intermédio que possibilitam o armazenamento do excedente extraído das fontes renováveis, podendo ser utilizado como recurso auxiliar na alimentação de cargas ou como meio de estabilização e otimização do desempenho da Rede Elétrica de Energia (REE), evitando variações bruscas na energia transferida para a mesma. Os sistemas de microprodução com armazenamento intermédio podem ser considerados fundamentais na implementação do conceito de Rede Inteligente de Energia (RIE), visto serem sistemas de energia descentralizados que permitem uma melhor gestão da energia elétrica e uma consequente redução de custos. No presente trabalho desenvolveu-se um sistema de microprodução de energia renovável compatível com as fontes renováveis fotovoltaica e eólica, possuindo um banco de baterias como sistema de armazenamento intermédio. A construção deste sistema teve como principal objetivo seguir as referências de potência impostas pela RIE, independentemente das condições meteorológicas, com recurso à energia armazenada nas baterias, evitando a introdução de perturbações na REE ao nível da tensão e da frequência. Estudou-se o comportamento do sistema na ocorrência de variações bruscas da fonte renovável, perturbações na tensão da REE e introdução de cargas lineares e não lineares. Foi desenvolvido um protótipo experimental com painéis fotovoltaicos, no qual foram registados os valores de alguns parâmetros da qualidade da energia elétrica. Obteve-se uma resposta de aproximadamente 25 μs por parte das baterias para cada Watt de potência requisitado pela RIE.
Resumo:
As energias renováveis têm sido cada vez mais a alternativa encontrada para substituir o uso dos combustíveis fósseis na produção de energia. Neste contexto, surge a oportunidade de realizar um estudo sobre o “Potencial Solar dos Edifícios Públicos da RAM” como objeto de trabalho desta tese de Mestrado em Engenharia de Telecomunicações e Redes de Energia (METRE). Pretende-se que este estudo sirva para impulsionar o investimento nesta área por parte dos decisores regionais, dotando-os de um estudo do potencial de produção de energia solar nos edifícios públicos da RAM. Através de estudos desenvolvidos pelo LREC, ERAMAC - Maximização da Penetração das Energias Renováveis e Utilização Racional da Energia nas Ilhas da Macaronésia, e do Joint Research Centre (JRC), contendo dados do Instituto Meteorológico (IM), da Agência Regional da Energia e Ambiente da Região Autónoma da Madeira (AREAM), do LREC e do World Meteorological Organization (WMO), avaliou-se a radiação solar na RAM, através de tabelas e mapas de radiação solar, contendo a radiação solar global diária média mensal e média anual. Posteriormente fez-se uma análise da oferta do mercado atual de painéis fotovoltaicos (PV) em termos de eficiência, distinguindo as várias gerações de tipos de painéis introduzidos no mercado. Foram realizadas várias pesquisas em diversas áreas de energias renováveis e tecnologias existentes para, posteriormente, se realizar uma seleção e introspeção da informação essencial ao tema de forma a definir-se a fase de desenvolvimento desta tese. Com o auxílio da ferramenta computacional Quantum GIS, foram identificados alguns edifícios públicos com a dimensão e exposição solar apropriada para a colocação de sistemas solares nos mesmos. De seguida, foi realizado uma análise do preço pago/recebido por kWh consumido/produzido e cinco casos de estudos, nos quais foram focados os diferentes impactos de várias tecnologias solares nos prédios públicos da RAM, avaliando financeiramente os custos e retorno do investimento na aplicação destas tecnologias em cada caso, através das ferramentas computacionais, SolTerm e RETScreen. Finalmente retirou-se as respetivas conclusões acerca das opções tomadas, por exemplo, na escolha das tecnologias solares a implementar, os seus custos, o retorno do investimento, preços dos painéis fotovoltaicos, entre outros.
Resumo:
A utilização de varões de fibra de vidro (GFRP) em alternativa ao aço em estruturas de betão armado representa uma mais-valia no que respeita a ambientes agressivos, nomeadamente ambientes altamente corrosivos. No entanto a elevada flexibilidade e o comportamento elástico até à rotura levam a comportamentos distintos no que se refere ao seu dimensionamento. A sua aceitação no universo da construção está dependente de uma melhor compreensão do comportamento estrutural deste material. Desta forma a aderência constitui um dos aspetos mais básicos do comportamento estrutural, visto que representa a qualidade da transmissão de tensões das armaduras para o betão. Este parâmetro representa um fator determinante para o cálculo do comprimento de amarração nos códigos de dimensionamento. De acordo com o exposto, esta dissertação tem como objetivo o estudo do comportamento da aderência entre o betão e os varões GFRP. O programa experimental é constituído por dois tipos de ensaio, 18 ensaios de arrancamento com longo comprimento de ancoragem e 18 ensaios com curto comprimento de ancoragem, com intuito de avaliar a influência do diâmetro, do comprimento embebido e do material do varão no comportamento da aderência. Observou-se que as tensões desenvolvidas pelos varões GFRP, num ensaio de tração pura, diminuem consoante o diâmetro do varão aumenta. As tensões de aderência média diminuem com o aumento do comprimento embebido de varão. Os comprimentos de ancoragem ótimos dos varões GFRP aumentam consoante o aumento do diâmetro do varão, no entanto este valor representa cerca de 27 diâmetros do varão em causa. A nível local, verificou-se que as tensões de aderência aumentam conforme o aumento do diâmetro e que as tensões de aderência observadas nos varões GFRP são inferiores aquelas registadas nos varões de aço. Os resultados demonstraram que o confinamento dos provetes é um fator determinante no desenvolvimento de elevadas tensões, principalmente nos varões GFRP de maiores diâmetros, este fator deverá ser tido em conta em trabalhos experimentais futuros.
Resumo:
Este projeto descreve a criação de um sistema de gestão de rega aplicado à agricultura, baseado numa rede de sensores sem fios (RSSF), e apresenta a implementação de um sistema para captação de energia, nomeadamente, um gerador hídrico segundo os modelos de pás do tipo hélice, para além da utilização de painéis solares. O sistema de gestão de rega consiste num protótipo de monitorização que permite o controlo dos atuadores (válvulas), de modo a ligar e desligar os canais de rega conectados a um reservatório de água, com base na informação monitorizada pelos nós sensores do solo. Assim, o sistema desenvolvido otimiza a quantidade de água aplicada ao cultivo, oferecendo as condições ideais para o correto desenvolvimento dos mesmos. Inicialmente realizou-se um estudo sobre os tipos de sensores utilizados no setor agricultura. Posteriormente verificou-se o funcionamento das RSSF, baseado no protocolo ZigBee, de modo a compreender o envio dos dados dos nós sensores para a estação base. A otimização do consumo energético das RSSF foi outro dos desafios tidos em consideração neste projeto, uma vez que, atualmente, a alimentação dos nós sensores em ambientes exteriores, na sua maioria, é realizada por baterias, o que limita o nível de longevidade do sistema. Desta forma, foi necessário desenvolver um sistema que possibilite a captação da energia gerada pelo meio envolvente (ex. energia hídrica, e solar), capaz de prolongar a longevidade dos nós sensores a nível energético. O sistema desenvolvido contém uma estação meteorológica alimentada por um painel solar fotovoltaico, dois nós sensores de monitorização dos parâmetros do solo, também alimentados por painéis solares fotovoltaicos, um nó atuador alimentado por um gerador hídrico e uma aplicação web para a visualização dos dados em tempo real. O protótipo referido foi instalado em ambiente exterior, com características semelhantes às de interesse, de modo a ter em consideração os efeitos do ambiente no sistema, nomeadamente, a proteção do equipamento em situações de ocorrência de intempéries.
Resumo:
This Masters Degree dissertation seeks to make a comparative study of internal air temperature data, simulated through the thermal computer application DesignBuilder 1.2, and data registered in loco through HOBO® Temp Data Logger, in a Social Housing Prototype (HIS), located at the Central Campus of the Federal University of Rio Grande do Norte UFRN. The prototype was designed and built seeking strategies of thermal comfort recommended for the local climate where the study was carried out, and built with panels of cellular concrete by Construtora DoisA, a collaborator of research project REPESC Rede de Pesquisa em Eficiência Energética de Sistemas Construtivos (Research Network on Energy Efficiency of Construction Systems), an integral part of Habitare program. The methodology employed carefully examined the problem, reviewed the bibliography, analyzing the major aspects related to computer simulations for thermal performance of buildings, such as climate characterization of the region under study and users thermal comfort demands. The DesignBuilder 1.2 computer application was used as a simulation tool, and theoretical alterations were carried out in the prototype, then they were compared with the parameters of thermal comfort adopted, based on the area s current technical literature. Analyses of the comparative studies were performed through graphical outputs for a better understanding of air temperature amplitudes and thermal comfort conditions. The data used for the characterization of external air temperature were obtained from the Test Reference Year (TRY), defined for the study area (Natal-RN). Thus the author also performed comparative studies for TRY data registered in the years 2006, 2007 and 2008, at weather station Davis Precision Station, located at the Instituto Nacional de Pesquisas Espaciais INPE-CRN (National Institute of Space Research), in a neighboring area of UFRN s Central Campus. The conclusions observed from the comparative studies performed among computer simulations, and the local records obtained from the studied prototype, point out that the simulations performed in naturally ventilated buildings is quite a complex task, due to the applications limitations, mainly owed to the complexity of air flow phenomena, the influence of comfort conditions in the surrounding areas and climate records. Lastly, regarding the use of the application DesignBuilder 1.2 in the present study, one may conclude that it is a good tool for computer simulations. However, it needs some adjustments to improve reliability in its use. There is a need for continued research, considering the dedication of users to the prototype, as well as the thermal charges of the equipment, in order to check sensitivity
Resumo:
Nowadays the environmental issues are increasingly highlighted since the future of humanity is dependent on the actions taken by man. Major efforts are being expended in pursuit of knowledge and alternatives to promote sustainable development without compromising the environment. In recent years there has been a marked growth in the development of reinforced composite fiber plants, as an alternative for economic and ecological effects, especially in the substitution of synthetic materials such as reinforcement material in composites. In this current study the chemical- physical or (thermophysics )characteristics of the babassu coconut fiber, derived from the epicarp of the fruit (Orbignyda Phalerata), which the main constituents of the fiber: Klason lignin, insoluble, cellulose, holocellulose, hemicellulose and the content of ash and moisture will be determined. A study was conducted about the superficial modification of the fibers of the epicarp babassu coconut under the influence of chemical treatment by alkalinization, in an aqueous solution of NaOH to 2.5% (m/v) and to 5.0% to improve the compatibility matrix / reinforcement composite with epoxy matrix. The results of the changes occurred in staple fibers through the use of the techniques of thermogravimetric analyses (TG) and differential scanning calorimetry (DSC). The results found on thermal analysis on samples of fiber without chemical treatment (alkalinities), and on fiber samples treated by alkalinization show that the proposed chemical treatment increases the thermal stability of the fibers and provides a growth of the surface of area fibers, parameters that enhance adhesion fiber / composite. The findings were evaluated and compared with published results from other vegetable fibers, showing that the use of babassu coconut fibers has technical and economic potential for its use as reinforcement in composites
Resumo:
Portland-polymers composites are promising candidates to be used as cementing material in Northeastern oil wells of Brazil containing heavy oils submitted to steam injection. In this way, it is necessary to evaluate its degradation in the commonly acidizind agents. In addition, to identify how aggressive are the different hostile environments it is an important contribution on the decision of the acidic systems to be used in. It was investigated the performance of the Portland-polymer composites using powdered polyurethane, aqueous polyurethane, rubber tire residues and a biopolymer, those were reinforced with polished carbon steel SAE 1045 to make the electrochemical measurements. HCl 15,0 %, HCl 6,0 % + HF 1,5 % (soft mud acid), HCl 12,0 % + HF 3,0 % (regular mud acid) and HAc 10 % + HF 1,5 % were used as degrading environment and electrolytes. The more aggressive acid solution to the plain Portland hardened cement paste was the regular mud acid, that showed loss of weight around 23.0 %, followed by the soft mud acid, the showed 11.0 %, 15.0 % HCl with 7,0 % and, at last the 10.0 % HAc plus HF 1.5 % with just 1.0 %. The powdered polyurethane-composite and the aqueous polyurethane one showed larger durability, with reduction around 87.0 % on the loss of weight in regular mud acid. The acid attack is superficial and it occurs as an action layer, where the degraded layer is responsible for the decrease on the kinetic of the degrading process. This behavior can be seen mainly on the Portland- aqueous polyurethane composite, because the degraded layer is impregnated with chemically modified polymer. The fact of the acid attack does not have influence on the compressive strength or fratography of the samples, in a general way, confirms that theory. The mechanism of the efficiency of the Portland-polymers composites subjected to acid attack is due to decreased porosity and permeability related with the plain Portland paste, minor quantity of Ca+2, element preferentially leached to the acidic solution, wave effect and to substitute part of the degrading bulk for the polymeric one. The electrolyte HAc 10 % + HF 1,5 % was the least aggressive one to the external corrosion of the casing, showing open circuit potentials around +250 mV compared to -130 mV to the simulated pore solution to the first 24 hours immersion. This behavior has been performed for two months at least. Similar corrosion rates were showed between both of the electrolytes, around 0.01 μA.cm-2. Total impedance values, insipient arcs and big polarization resistance capacitive arcs on the Nyquist plots, indicating passivity process, confirm its efficiency. In this way, Portlandpolymers composites are possible solutions to be succeed applied to oilwell cementing concomitant submitted to steam injection and acidizing operation and the HAc 10,0 % + HF 1,5 % is the less aggressive solution to the external corrosion of the casing
Resumo:
This work addresses the production of lightweight concrete building elements, such as plates, prefabricated slabs for pre-molded and panels of fencing, presenting a singular concrete: the Lightweight Concrete, with special properties such low density and good strength, by means of the joint use of industrial waste of thermosetting unsaturated polyesters and biodegradable foaming agent, named Polymeric Lightweight Concrete. This study covered various features of the materials used in the composition of the Polymeric Lightweight Concrete, using a planning of factorial design 23, aiming at studying of the strength, production, dosage processes, characterization of mechanical properties and microstructural analysis of the transition zone between the light artificial aggregate and the matrix of cement. The results of the mechanical strength tests were analyzed using a computational statistics tool (Statistica software) to understand the behavior and obtain the ideal quantity of each material used in the formula of the Polymeric Lightweight Concrete. The definition of the ideal formula has the purpose of obtaining a material with the lowest possible dry density and resistance to compression in accordance with NBR 12.646/92 (≥ 2.5 MPa after 28 days). In the microstructural characterization by scanning electron microscopy it was observed an influence of the materials in the process of cement hydration, showing good interaction between the wrinkled face of the residue of unsaturated polyesters thermosetting and putty and, consequently, the final strength. The attaining of an ideal formula, given the Brazilian standards, the experimental results obtained in the characterization and comparison of these results with conventional materials, confirmed that the developed Polymeric Lightweight Concrete is suitable for the production of building elements that are advantageous for construction
Resumo:
The research and development of wind turbine blades are essential to keep pace with worldwide growth in the renewable energy sector. Although currently blades are typically produced using glass fiber reinforced composite materials, the tendency for larger size blades, particularly for offshore applications, has increased the interest on carbon fiber reinforced composites because of the potential for increased stiffness and weight reduction. In this study a model of blade designed for large generators (5 MW) was studied on a small scale. A numerical simulation was performed to determine the aerodynamic loading using a Computational Fluid Dynamics (CFD) software. Two blades were then designed and manufactured using epoxy matrix composites: one reinforced with glass fibers and the other with carbon fibers. For the structural calculations, maximum stress failure criterion was adopted. The blades were manufactured by Vacuum Assisted Resin Transfer Molding (VARTM), typical for this type of component. A weight comparison of the two blades was performed and the weight of the carbon fiber blade was approximately 45% of the weight of the fiberglass reinforced blade. Static bending tests were carried out on the blades for various percentages of the design load and deflections measurements were compared with the values obtained from finite element simulations. A good agreement was observed between the measured and calculated deflections. In summary, the results of this study confirm that the low density combined with high mechanical properties of carbon fibers are particularly attractive for the production of large size wind turbine blades
Resumo:
The use of gypsum, one of the oldest building materials for the construction industry in the country has been experiencing a significant and steady growth, due to its low cost and some of its properties that confer comparative advantage over other binder materials. Its use comprises various applications including the coating of walls and the production of internal seals and linings. Moreover, the fibers are being increasingly incorporated into arrays fragile in an attempt to improve the properties of the composite by reducing the number of cracks, the opening of the same and its propagation velocity. Other properties, depending on the function of the component material or construction, among these thermal and acoustic performances, are of great importance in the context of buildings and could be improved, that is, having better performance with this embodiment. Conduct a comparative study of physico-mechanical, thermal and acoustic composite gypsum incorporating dry coconut fiber, in the form of blanket, constituted the main objective of this work. Improving the thermal and acoustic performances of precast gypsum, used for lining and internal vertical fences of buildings, was the purpose of development of these composites. To evaluate the effect of fiber content on the properties of the composites were used to manufacture the composite layer with different thicknesses. The composites were fabricated in the form of plates with dimensions of 500x500x24mm. To facilitate the comparative study of the properties were also made with material gypsum boards only. We then determined the physico-mechanical, thermal and acoustical plaster and composites. The results indicated that the composites were significant gains in relation to thermal performance and also acoustic, in certain frequency range, increasing the thickness of the blanket. Concerning other physical-mechanical properties, the results showed that although the compressive strength was lower than for the composite did not occur after a fracture catastrophic failure. The same trend was observed with regard to resistance to bending, since the composites have not suffered sudden rupture and still continued after the load supporting point of maximum load
Resumo:
This research was motivated by the requirement of asbestos s replacement in building systems and the need to generate jobs and income in the country side of the state of Bahia, Brazil. The project aimed at using fibers from licuri leaves (syagrus coronata), an abundant palm in the region, to produce composites appropriate for the sustainable production of cement fibre reinforced products in small plants. The composites were produced in laboratory using Portland cement CP-II-F32, sand, water, licuri palm fiber contents of 1.0, 1.5 and 2.0% by weight of binder (two different fiber length) and metakaolin. The latter was chosen as an additional binder for its efficiency to reduce the alkalinity of cementitious matrixes therefore preventing the degradation of vegetable fibers. The characterization of the composite components was carried out by sieving and laser particle size analyses, thermal analysis, fluorescence and X-ray diffraction. The composites performance was evaluated by 3- point-bending tests, compressive strength, ultrasound module of elasticity, free and restrained shrinkage, water capillarity absorption and apparent specific gravity. It has been found that the addition of fibers increased the time to onset of cracking over 200.00% and a 25% reduction in cracks opening in the restrained shrinkage test. The capillary absorption reduced about 25% when compared to fiber-free composites. It was also observed with regard to flexural strength, compressive strength and specific gravity, that the addiction of fibers did not affect the composite performance presenting similar results for compounds with and without fibers. In general it can be stated that the reinforced composite fibers of palm licuri presents physical and mechanical characteristics which enable them to be used in the intended proposals of this research
Resumo:
Ceramic composites produced with polymerics precursors have been studied for many years, due to the facility of obtaining a complex shape, at low temperature and reduces cost. The main objective of this work is to study the process of sintering of composites of ceramic base consisting of Al2O3 and silicates, reinforced for NbC, through the technique of processing AFCOP, as well as the influence of the addition of LZSA, ICZ and Al as materials infiltration in the physical and mechanical properties of the ceramic composite. Were produced ceramic matrix composites based SiCxOy e Al2O3 reinforced with NbC, by hidrosilylation reaction between D4Vi and D1107 mixtured with Al2O3 as inert filler, Nb and Al as reactive filler. The specimens produced were pyrolised at 1200, 1250 and 1400°C and infiltred with Al, ICZ and LZSA, respectively. Density, porosity, flexural mechanical strength and fracture surface by scanning electron microscopy were evaluated. The microstructure of the composites was investigated by X-ray diffraction to identify the presence of crystalline phases. The composites presented apparent porosity varying of 31 up to 49% and mechanical flexural strength of 14 up to 34 MPa. The infiltration process improviment of the densification and reduction of the porosity, as well as increased the values of mechanical flexural strength. The obtained phases had been identified as being Al3Nb, NbSi2, Nb5S3, Nb3Si and NbC. The samples that were submitted the infiltration process presented a layer next surface with reduced pores number in relation to the total volume
Resumo:
The rural electrification is characterized by geographical dispersion of the population, low consumption, high investment by consumers and high cost. Moreover, solar radiation constitutes an inexhaustible source of energy and in its conversion into electricity photovoltaic panels are used. In this study, equations were adjusted to field conditions presented by the manufacturer for current and power of small photovoltaic systems. The mathematical analysis was performed on the photovoltaic rural system I- 100 from ISOFOTON, with power 300 Wp, located at the Experimental Farm Lageado of FCA/UNESP. For the development of such equations, the circuitry of photovoltaic cells has been studied to apply iterative numerical methods for the determination of electrical parameters and possible errors in the appropriate equations in the literature to reality. Therefore, a simulation of a photovoltaic panel was proposed through mathematical equations that were adjusted according to the data of local radiation. The results have presented equations that provide real answers to the user and may assist in the design of these systems, once calculated that the maximum power limit ensures a supply of energy generated. This real sizing helps establishing the possible applications of solar energy to the rural producer and informing the real possibilities of generating electricity from the sun.
Resumo:
Rio Grande do Norte is among the Brazilian States where the tourism and sexual violence increasingly grow in the country, occupying 4th place in 2004. Associated to this fact, it comes the problematic one of the contamination of the women by Sexually Transmitted Disease (STD). Studies in Brazil have presented a considerable increase of the STDs, caused through lack of suitable protection in the sexual relationships. Due to the biological and psychosocial vulnerability, besides failures or inconsistencies in the condom use associated to the raised taxes of sexual activity with different partners, the STDs constitute the main risk of health. Many difficulties are found by the confrontation of this problem. In this context, this project had as aim to evaluate the vulnerability of this population of sexually active women in Natal-RN Ponta Negra neighbourhood to the infections by STDs, such as, Candida sp., Vaginoses Bacterial, Trichomonas Vaginalis and Chlamydia sp., arisen with the explosion of the sex market, showing a current statistical panorama. It was possible to detect vulnerable points in prevention through patient anamnesis, where the study it showed: high number of partners (8,3% with more than five), low age of first relationship and not the use of condoms (31,8% sometimes use and 45,8% had not used in the first relationship). Already consolidated by the preventive cytopathologic examination, these data were strengthened by high incidence of causing agents of STDs (58,6%). In this way, it is clear that the sexuality must to be thought on the context of the deep economic and socio-cultural transformations in which pass societies, and mainly the ones concerning to the sexuality exercise and to the sex market. With the profile change of the infections, new demands are placed in relation to the risk factors. Therefore, it can be concluded that the prevention vulnerable points detected as more important had been the deficiency in self-perception and wareness of the risk existence among the studied women