989 resultados para Heat-resistance


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Three triblock copolymers of poly[styrene-b-(ethylene-co-butylene)-b-styrene] (SEBS) of different molecular weights and one diblock copolymer of poly[styrene-b-(ethylene-co-butylene)] (SEB) were used to compatibilize high density polyethylene/syndiotactic polystyrene (HDPE/sPS, 80/20) blend. Morphology observation showed that phase size of the dispersed sPS particles was significantly reduced on addition of all the four copolymers and the interfacial adhesion between the two phases was dramatically enhanced. Tensile strength of the blends increased at lower copolymer content but decreased with increasing copolymer content. The elongation at break of the blends improved and sharply increased with increments of the copolymers. Drop in modulus of the blend was observed on addition of the rubbery copolymers. The mechanical performance of the modified blends is strikingly dependent not only on the interfacial activity of the copolymers but also on the mechanical properties of the copolymers, particularly at the high copolymer concentration. Addition of compatibilizers to HDPE/sPS blend resulted in a significant reduction in crystallinity of both HDPE and sPS. Measurements of Vicat softening temperature of the HDPE/sPS blends show that heat resistance of HDPE is greatly improved upon incorporation of 20 wt% sPS.

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Radiation crosslinking of carboxymethylcellulose (CMC) with a degree of substitution (DS) from 0.7 to 2.2 was the subject of the current investigation. CMC was irradiated in solid-state and aqueous solutions at various irradiation doses. The DS and the concentration of the aqueous solution had a remarkable affect on the crosslinking of CMC. Irradiation of CMC, even with a high DS, 2.2 in solid state, and a low DS, 0.7 in 10% aqueous solution, resulted in degradation. However, it was found that irradiation of CMC with a relatively high DS, 1.32, led to crosslinking in a 5% aqueous solution, and 20% CMC gave the highest gel fraction. CMC with a DS of 2.2 induced higher crosslinking than that with a DS of 1.32 at lower doses with the same concentration. Hence, it was apparent that a high DS and a high concentration in an aqueous solution were favorable for high crosslinking of CMC. It is assumed that; high radiation crosslinking of CMC was induced by the increased mobility of its molecules in water and by the formation of CMC radicals from the abstraction of H atoms from macromolecules in the intermediate products of water radiolysis. A preliminary biodegradation study confirmed that crosslinked CMC hydrogel can be digested by a cellulase enzyme. (C) 2000 John Wiley & Sons, Inc.

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A new type of the catalyst, LaNiAl11O19, for the methane reforming with carbon dioxide was synthesized and evaluated. LaNiAl11O19 has a hexaaluminate structure and can keep large surface and heat resistance against sintering at high reaction temperature. As compared with La2O3-Ni/SrAl12O19, in the CH4 + CO2 reaction, LaNiAl11O19 catalyst displays a higher catalytic activity, lower coking amount and excellent sintering resistance of Ni particle, due to its stable structure.

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Purpose – Anisotropic conductive film (ACF) is now an attractive technology for direct mounting of chips onto the substrate as an alternative to lead-free solders. However, despite its various advantages over other technologies, it also has many unresolved reliability issues. For instance, the performance of ACF assembly in high temperature applications is questionable. The purpose of this paper is to study the effect of bonding temperatures on the curing of ACFs, and their mechanical and electrical performance after high temperature ageing. Design/methodology/approach – In the work presented in this paper, the curing degree of an ACF at different bonding temperatures was measured using a differential scanning calorimeter. The adhesion strength and the contact resistance of ACF bonded chip-on-flex assembly were measured before and after thermal ageing and the results were correlated with the curing degree of ACF. The ACF was an epoxy-based adhesive in which Au-Ni coated polymer particles were randomly dispersed. Findings – The results showed that higher bonding temperatures had resulted in better ACF curing and stronger adhesion. After ageing, the adhesion strength increased for the samples bonded at lower temperatures and decreased for the samples bonded at higher temperatures. ACF assemblies with higher degrees of curing showed smaller increases in contact resistance after ageing. Conduction gaps at the bump-particle and/or particle-pad interfaces were found with the help of scanning electron microscopy and are thought to be the root cause of the increase in contact resistance. Originality/value – The present study focuses on the effect of bonding temperatures on the curing of ACFs, and their adhesion strength and electrical performances after high temperature ageing. The results of this study may help the development of ACFs with higher heat resistance, so that ACFs can be considered as an alternative to lead-free solders.

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Le Teyyam est un rituel de possession hindouiste du Kerala (Inde du Sud) qui nécessite une pratique intransigeante : restrictions, jeûnes, exploits physiques, résistance à la chaleur du feu. Vêtus de costumes spectaculaires, des performeurs de caste intouchable dansent l’épée à la main, au son des tambours frénétiques, et font entendre la parole du dieu qu’ils incarnent; ils auront même le droit de critiquer le système des castes devant la communauté assemblée, le temps d’une inversion rituelle. Alors qu’autrefois il s’agissait d’un devoir de caste associé à une grande précarité, aujourd’hui il s’agit d’un métier que l’on peut choisir d’exercer ou non. Bien qu’on ait déploré un manque de relève à cause des conditions jugées trop difficiles, il y a toutefois de jeunes hommes qui ont décidé de poursuivre cette tradition ancestrale. Au Kerala, de nombreux jeunes aspirent à la classe moyenne et misent sur l’éducation pour espérer un bon emploi, il y a des opportunités, mais pas pour tous, et surtout beaucoup de compétition. C’est dans ce contexte que de jeunes hommes éduqués souhaitent poursuivre une tradition qu’ils admirent et dont ils sont fiers, mais sans avoir à sacrifier leurs chances de réussite sociale. Quelles sont leurs aspirations, quel sens donnent-ils à ce qu’ils souhaitent accomplir? Traditionnellement les relations de patronage dans le Teyyam ont été très dures sous le joug du système des castes, qu’en est-il aujourd’hui? Comment ces performeurs arrivent-il à négocier la réalisation de leurs aspirations dans les coulisses du Teyyam?

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A detailed study of the blends of ethylene-propylene-diene rubber (EPDM) and chlorobutyl rubber (CIIR) is proposed in this study. These blends may find application in the manufacture of curing diaphragms/curing envelopes for tire curing applications. EPDM possesses better physical properties such as high heat resistance, ozone resistance, cold and moisture resistance, high resistance to permanent defonnation, very good resistance to flex cracking and impact. Because of the low gas and moisture penneability, good weathering resistance and high thermal stability of CIIR, blends of EPDM with CIlR may be attractive, if sufficient mechanical strength can be developed. Although a lot of work has been done on elastomer blends, studies on the blends of EPDM and CIIR rubbers are meagre. Hence in this investigation it is proposed to make a systematic study on the characteristics of EPDM and CIIR rubber blends.The mechanical and physical properties of an elastomer blend depend mainly on the blend compatibility. So in the first part of the study, it is proposed to develop compatible blends of EPDM with CIIR. Various commercial grades of ethylenepropylene- diene rubber are proposed to be blended with a specific grade of chlorobutyl rubber at varying proportions. The extent of compatibility in these blends is proposed to be evaluated based on their mechanical properties such as tensile strength, tear strength and ageing resistance. In addition to the physical property measurements, blend compatibility is also proposed to be studied based on the glass transition behavlour of the blends in relation to the Tg's of the individual components using Differential Scanning Calorimetry (DSC) and Dynamic Mechanical Analysis (DMA). The phase morphology of the blends is also proposed to be investigated by Scanning Electron Microscopy (SEM) studies of the tensile fracture surfaces. In the case of incompatible blends, the effect of addition of chlorosulfonated polyethylene as a compatibiliser is also proposed to be investigated.In the second part of the study, the effect of sulphur curing and resin curing on the curing behaviour and the vulcanizate properties of EPDM/CIIR blends are planned to be evaluated. Since the properties of rubber vulcanizates are determined by their network structures, it is proposed to determine the network structure of the vulcanizates by chemical probes so as to correlate it with the mechanical properties.In the third part of the work, the effect of partial precuring of one of the components prior to blending as a possible means of improving the properties of the blend is proposed to be investigated. This procedure may also help to bring down the viscosity mismatch between the constituent e1astomers and provide covulcanization of the blend.The rheological characteristics and processability of the blends are proposed to be investigated in the last part of the study. To explore their possible applications, the air permeability of the blend samples at varying temperatures is proposed to be measured. The thermal diffusivity behaviour of EPDM/CIlR blends is also proposed to be investigated using novel laser technique. The thermal diffusivity of the blends along with the thermal degradation resistance may help to determine whether the blends are suitable for high temperature applications such as in the manufacturing of curing envelope.

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Aims: The aim of the study was to investigate how stresses like low pH, which may be encountered in farms or food preparation premises, shape populations of Salmonella enterica by the selection of stress-resistant variants. Methods and Results: Stationary-phase cultures of S. enterica serovar Enteritidis and serovar Typhimurium (one strain of each) were exposed to pH 2Æ5 for up to 4 h, followed by growth at pH 7 for 48 h. This process was repeated 15 times in two separate experiments, which increased the acid resistance of the three out of four populations we obtained, by three- to fourfold. Sustainable variants derived from the populations showed changes in colony morphology, expression of SEF17 fimbriae, growth, increased heat resistance and reduced virulence. Conclusions: The study demonstrates that low pH environments can select for populations of S. enterica with persistent phenotypic changes such as increased acid resistance and occasionally increased SEF17 expression and lower virulence. Significance and Impact of the Study: There is a common belief that increased acid resistance coincides with increased virulence. This study demonstrates for the first time that increased acid resistance often impairs virulence and affects the general phenotype of S. enterica.

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Although the production of patulin in apple fruits is mainly by Penicillium expansum, there is no information on the ability of heat resistant moulds that may survive pasteurization to produce this mycotoxin in juice packages during storage and distribution. In this study, the production of patulin by Byssochlamys spp (Byssochlamys nivea FRR 4421, B. nivea ATCC 24008 and Byssochlamys fulva IOC 4518) in cloudy and clarified apple juices packaged in laminated paperboard packages or in polyethylene terephthalate bottles (PET) and stored at both 21 degrees C and 30 degrees C, was investigated. The three Byssochlamys strains were able to produce patulin in both cloudy and clarified apple juices. Overall, the lower the storage temperature, the lower the patulin levels and mycelium dry weight in the apple juices (p<0.05). The greatest variations in pH and degrees Brix were observed in the juices from which the greatest mycelium dry weights were recovered. The maximum levels of patulin recovered from the juices were ca. 150 mu g/kg at 21 degrees C and 220 mu g/kg at 30 degrees C. HPLC-UV, HPCL-DAD and mass spectrometry analyses confirmed the ability of B. fulva IOC 4518 to produce patulin. Due to the heat resistance of B. nivea and B. fulva and their ability to produce patulin either in PET bottles or in laminated paperboard packages, the control of contamination and the incidence of these fungi should be a matter of concern for food safety. Control measures taken by juice industries must also focus on controlling the ascospores of heat resistant moulds. (C) 2010 Elsevier B.V. All rights reserved.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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They are in this study the experimental results of the analysis of thermal performance of composite material made from a plant matrix of polyurethane derived from castor oil of kernel of mamona (COF) and loading of clay-mineral called vermiculite expanded. Bodies of evidence in the proportions in weight of 10%, 15% and 20% were made to determine the thermal properties: conductivity (k), diffusivity (ά) and heat capacity (C), for purposes of comparison, the measurements were also performed the properties of polyurethane of castor without charge and also the oil polyurethane (PU), both already used in thermal insulation. Plates of 0.25 meters of material analyzed were manufactured for use as insulation material in a chamber performance thermal coverage. Thermocouples were distributed on the surface of the cover, and inside the material inside the test chamber and this in turn was subjected to artificial heating, consisting of a bank of incandescent lamps of 3000 w. The results obtained with the composite materials were compared with data from similar tests conducted with the camera alone with: (a) of oil PU, (b) of COF (c) glass wool, (d ) of rock wool. The heat resistance tests were performed with these composites, obtaining temperature limits for use in the range of 100 º C to 130 º C. Based on the analysis of the results of performance and thermal properties, it was possible to conclude that the COF composites with load of expanded vermiculite present behavior very close to those exhibited by commercial insulation material

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The specific heat, thermal conductivity and density of passion fruit juice were experimentally determined from 0.506 to 0.902 (wet basis) water content and temperatures from 0.4 to 68.8C. The experimental results were compared with existing and widely used models for the thermal properties. In addition, based on empiric equations from literature, new simple models were parameterized with a subset of the total experimental data. The specific heat and thermal conductivity showed linear dependency on water content and temperature, while the density was nonlinearly related to water content. The generalized predictive models were considerably good for this product but the empiric, product-specific models developed in the present work yield better predictions. Even though the existing models showed a moderate accuracy, the new simple ones would be preferred, because they constitute an easier and direct way of evaluating the thermal properties of passion fruit juice, requiring no information about the chemical composition of the product, and a reduced time of the estimation procedure, as the new empiric models are described in terms of only two physical parameters, the water content and the temperature. © Copyright 2005, Blackwell Publishing All Rights Reserved.

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The Brazilian National Electricity Conservation Program - PROCEL - runs regular surveys in the electric-energy-consumption market. These studies are used as valuable data to better plan the actions of this program. These data also evaluate the program's performance by identifying the level of penetration of the most efficient electric equipment within the residential sector. PROCEL's main lines of action is to promote and make available the most efficient technologies. Based on the results from the latest survey, it is estimated that 24% of the electric-energy consumption of the residential sector is used by electric shower devices, which instantaneously heat the water that flows through them, normally using an electric resistance of 5 kW. These are an important factor in a country where electric-heating devices are present in about 73% of Brazilian households. Keeping that in mind, the purpose of this work is to present the main results of the Brazilian Solar-Water-Heating-Systems Evaluation, finished in 2010, where 535 installations were visited and more than 50 researchers from different universities participated in the project. Moreover, seven Brazilian cities were selected to be studied. The information was collected from field research and statistically treated. The collected information focused on the adequacy of the project to the household, installation, operation and life cycle of the systems, as well as the users' satisfaction level. Technical questionnaires were developed to summarize all the required information, such as a Web site designed to organize and manage the data collected and a Matlab application that performed the dimensioning and F-chart systems evaluation. Quality indicators were created through a full system monitoring, with thermographic analysis and evaluation of shading influence at the system's efficiency, using the Ecotect software.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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O objetivo do experimento foi testar a eficácia de diferentes diluidores, a base de Ringer-Lactato, Leite Desnatado, TRIS (hidroxi-methil-amino-methan) e Lactose/TRIS, na criopreservação de sêmen bubalino. Foram utilizados três machos bubalinos da raça Murrah em plena atividade sexual. O sêmen foi colhido por vagina artificial totalizando 71 ejaculados. Após a colheita, cada amostra foi submetida às análises qualitativas e quantitativas do sêmen. Os ejaculados foram fracionados e diluídos nos quatro diluidores. O sêmen diluído foi envasado em palhetas de 0,25ml e submetidos a um tempo de equilíbrio de até quatro horas a 5ºC, com posterior congelação em nitrogênio líquido. As amostras identificadas foram descongeladas em banho maria à temperatura de 40°C por 30 segundos e seqüencialmente avaliadas quanto a motilidade, vigor, lesão de acrossoma, e percentual de patologias espermáticas. As amostras também foram submetidas ao teste de termo-resistência, permanecendo incubadas à temperatura de 40°C durante 30 segundos, 3-5 minutos, 30 minutos, 1 hora, 2 horas e 3 horas, onde foram avaliadas quanto a motilidade e o vigor espermático. As características físicoquímicas, após análise do sêmen in natura, encontraram-se dentro dos valores preconizados para a espécie bubalina e satisfatórios para o processo de congelação. Após descongelação do sêmen, observou redução numérica estatística (p<0,05) na motilidade espermática, sendo que no sêmen in natura se observou 86,67±6,17% reduzindo para 70±6,92% em TRIS, 67,4±8,01% em Ringer/lactato, 67,09±9,03% em Lactose/TRIS e 59,7±9,05% em leite desnatado e ao comparar entre os quatro tratamentos apenas o Leite desnatado mostrou diferença estatística significativa (p<0,05). Após descongelação, o vigor espermático também diminuiu estatisticamente (p<0,05) nos quatro tratamentos (3,50±0,53 TRIS; 3,38±0,49 Ringer-lactato; 3,3±0,46 Lactose/TRIS e 3,25±0,44 Leite desnatado) versus (4±0,39 sêmen in natura) e ao comparar entre os tratamento, apenas entre Leite desnatado e TRIS se observou diferença estatística (p<0,05). Quanto aos defeitos maiores (4,15±1,9% sêmen in natura; 10,51±4,4% TRIS; 11,94±4,2% Ringer-Lactato; 11,88±4,8% Lactose/TRIS; 12,01±5% Leite desnatado), menores (3,81±1,2% sêmen in natura; 4,67±1,1% TRIS; 4,98±1,7% Ringer-Lactato; 4,93±2,0% Lactose/TRIS; 4,93±2,0% Leite desnatado) e totais (7,91±2,1% sêmen in natura; 15,18±4,7% TRIS; 16,92±4,8% Ringer-Lactato; 16,82±5,6% Lactose/TRIS; 17,11±5,6% Leite desnatado), após descongelação houve aumento significativo dos defeitos nos quatro tratamentos (p<0,05), e entre eles não foram observadas diferenças estatísticas entre si (p>0,05). Na fase pós-TTR, após 3 horas de incubação, a motilidade progressiva (TRIS 21,13±7,5%; Ringer-Lactato 20,78±7,4%; Lactose/TRIS 20,25±5,3%; Leite desnatado 20,12±6,6%) e vigor espermático (TRIS 2,04±0,5; Ringer-Lactato 2,07±0,5; Lactose/TRIS 2,02±0,4; Leite desnatado 2,00±0,5) não apresentaram diferença estatística entre os tratamentos (p<0,05). Quanto a intergridade do acrossoma, após a descongelação (Sêmen in natura 97,85±0,6%; TRIS 91,65±4,3%; Ringer-Lactato 90,46±4,8%; Lactose/TRIS 89,76±5,4%; Leite desnatado 90,56±5,6%), houve diminuição estatística (p<0,05) e quando se comparou tal parâmetro entre os tratamentos não foi observado diferenças estatísticas significativas entre os tratamento (p>0,05). Diante dos resultados observados é possível concluir que a congelação de sêmen de búfalo com os diluidores TRIS (Trishydroxy- methyl-amino-methan), Ringer-Lactato, Lactose/TRIS, e Leite desnatado mostraram satisfatória função de crioproteção na viabilidade espermática do sêmen nas diferentes etapas da criopreservação.

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O contexto energético mundial apresenta um aumento constante do consumo de energia elétrica no último século, desta forma exigindo a pesquisa de novos materiais para a aplicação em cabos e fios condutores de eletricidade. A partir destas demandas por novos materiais, desenvolveu-se uma análise da influência dos solutos zircônio e titânio na modificação de características importantes de uma liga Al-Cu-Fe-Si, destinada a ser o meio condutor de energia elétrica, almejando obter propriedades termorresistentes. Para a realização deste estudo, as ligas foram obtidas por fundição direta em lingoteira metálica em formato “U”, a partir do Al-EC, fixando-se na liga-base os teores de 0,05% Cu, [0,24 a 0,28]% Fe e 0,7% de Si, e em seguida, inserindo-se os teores de 0,26% Zr e 0,26% Ti. O experimento foi dividido em duas etapas, ETAPA A e ETAPA B, respectivamente, com o intuito de se avaliar as características mecânicas, elétricas e estruturais das ligas. Os corpos de prova após laminação a frio (nos diâmetros 2,7; 3,0; 3,8 e 4,0 mm) foram analisados sem tratamento térmico (STT) e com tratamento térmico (CTT): 230 ºC por uma hora, de acordo com o protocolo COPEL, 310 ºC e 390 ºC por uma hora, visando avaliar a ermorresistência em temperaturas mais elevadas, a estabilidade térmica e analisar as microestruturas desenvolvidas em tais tratamentos térmicos (TT). Verificou-se que o Ti tem maior capacidade de refinar o grão em relação ao Zr, que apresenta grãos menos refinados, porém com melhores propriedades físicas e apresentando-se termorresistente.