Academic literature on the topic '"Granitos" ornamentais'
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Journal articles on the topic ""Granitos" ornamentais"
Lisboa, Vinícius Anselmo Carvalho, Caroline Bomfim Santana Simões, Débora Correia Rios, and Herbet Conceição. "Potencial ornamental do Maciço Glória Norte, Domínio Macururé, Sistema Orogênico Sergipano." Geologia USP. Série Científica 16, no. 3 (October 19, 2016): 143. http://dx.doi.org/10.11606/issn.2316-9095.v16i3p143-151.
Full textMaas, Elayne Cristina Andrade de Sousa, and Valmir da Silva Souza. "Maciços graníticos como rochas ornamentais na região nordeste do Estado do Amazonas: uma perspectiva de investimento para a cidade de Manaus." Rem: Revista Escola de Minas 62, no. 3 (September 2009): 343–48. http://dx.doi.org/10.1590/s0370-44672009000300012.
Full textBraga, Florindo dos Santos, Daniella Cardoso Buzzi, Maria Cláudia Lima Couto, and Liséte Celina Lange. "Caracterização ambiental de lamas de beneficiamento de rochas ornamentais." Engenharia Sanitaria e Ambiental 15, no. 3 (September 2010): 237–44. http://dx.doi.org/10.1590/s1413-41522010000300006.
Full textBaptista Filho, João, and Aline T. Silva. "Aspectos gerais da situação de lavra para granitos ornamentais no município do Rio de Janeiro." Anuário do Instituto de Geociências 20 (January 1, 1997): 175–80. http://dx.doi.org/10.11137/1997_0_175-180.
Full textGODOY, ANTONIO MISSON, JÚLIO CÉSAR DE PINHEIRO ARRAIS, LARISSA MARQUES BARBOSA DE ARAÚJO-RUIZ, and FABIANO CABAÑAS NAVARRO. "POTENCIALIDADE DOS GRANITOS PORFIRÍTICOS DO COMPLEXO SOROCABA (SP) PARA USO COMO ROCHAS ORNAMENTAIS E PARA REVESTIMENTO." Revista Brasileira de Geociências 36, no. 1 (March 1, 2006): 191–99. http://dx.doi.org/10.25249/0375-7536.200636s1191199.
Full textPHILIPP, RUY PAULO, and ROBERTO SACKS DE CAMPOS. "Controles Geológicos das Jazidas de Granitos Ornamentais da Região de Encruzilhada do Sul, RS: Origem das Variedades Comerciais do Granito Encruzilhada do Sul." Pesquisas em Geociências 32, no. 1 (June 30, 2005): 37. http://dx.doi.org/10.22456/1807-9806.19537.
Full textMendes, Gabriela Azambuja, Carmeane Effting, and Adilson Schackow. "Argamassa autonivelante com adição de resíduos de mármores e granitos: propriedades físicas e mecânicas." Ambiente Construído 20, no. 3 (July 2020): 403–18. http://dx.doi.org/10.1590/s1678-86212020000300436.
Full textCALEGARI, S. S., C. C. V. SOARES, M. E. HARTWIG, E. B. MEDEIROS, R. A. MARQUES, and M. PONTELLO. "The Effect of Microcracks in the Development of Pathologies in Dimension Stones: The Examples of Branco Viena and Branco Itaúnas Granites." Anuário do Instituto de Geociências - UFRJ 42, no. 1 (May 13, 2019): 514–24. http://dx.doi.org/10.11137/2019_1_514_524.
Full textMATTOS, Irani Clezar, José de Araújo NOGUEIRA NETO, and Antonio Carlos ARTUR. "Petrografia e química mineral do Stock Granítico Serra do Barriga (Sobral, CE, nordeste do Brasil)." Pesquisas em Geociências 44, no. 3 (May 28, 2017): 501. http://dx.doi.org/10.22456/1807-9806.83272.
Full textPHILIPP, RUY PAULO, CÁSSIO ALEXANDRE RODRIGUES PINHEIRO, CLÓVIS GONZATTI, ROBERTO SACKS DE CAMPOS, and MARCUS VINICIUS DORNELES REMUS. "Análise Tecnológica dos Granitos Cerro do Sandi e Bela Vista, Piratini-RS Para Uso Como Rocha Ornamental." Pesquisas em Geociências 33, no. 1 (June 30, 2006): 67. http://dx.doi.org/10.22456/1807-9806.19527.
Full textDissertations / Theses on the topic ""Granitos" ornamentais"
Mattos, Irani Clezar [UNESP]. "Geologia, petrografia, geoquímica, comportamento físico-mecânico e alterabilidade das rochas ornamentais do stock granítico Serra do Barriga, Sobral (CE)." Universidade Estadual Paulista (UNESP), 2005. http://hdl.handle.net/11449/103004.
Full textConselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
Financiadora de Estudos e Projetos (FINEP)
O stock granítico Serra do Barriga é pós-tectônico, polintrusivo, com 522,2l7.6Ma, apresenta tipos faciológicos de sienogranitos e monzogranitos inequigranulares a megaporfiríticos diferenciados pela coloração, aspectos composicionais e texturais. Investigou-se os tipos ornamentais Rosa Iracema, Rosa Olinda, Branco Savana e Branco Cristal Quartzo. Geoquimicamente são rochas peraluminosas, cálcio-alcalinas alto potássio formadas por magmas evoluídos, em ambiente orogênico pós-colisional. Transformações pós-magmáticas indicam origem por fracionamento de mesmo magma parental, acrescidos por pulso mais máfico (Rosa Olinda). A correlação entre índices físicos, resistência física e mecânica ocorre em função dos aspectos petrográficos. Os granitos rosas apresentam melhor desempenho para fachadas. Os parâmetros tecnológicos apresentados são superiores ou próximos aos valores limítrofes estabelecidos, qualificandoos como detentores de boa qualidade. No ataque químico os granitos reagem de forma semelhante, com variações cromáticas e alterações minerais sutis, indicando serem resistentes. Entretanto granitos rosas apresentam maior perda de brilho e corrosão mineral em contato com ácidos cítrico e clorídrico, reagentes mais destrutivos. Embora resistentes, deve-se evitar exposições prolongadas dos granitos estudados à substâncias contendo ácidos. Estes granitos são adequados para fins ornamentais, sendo os rosas (Iracema e Olinda) altamente resistentes, eficientes para aplicação em pisos e fachadas de ambientes interiores e exteriores, com cuidados na manutenção.
The polyintrusive Serra do Barriga granitic stock is post-tectonic, with a 522.2 l 7.6 Ma age. It presents inequigranular to megaporphyritic syenogranitic and monzogranitic faciological types differing by collor, composition, and textural aspects. In this research we investigated the following ornamental types: Rosa Iracema, Rosa Olinda, Branco Savana, and Branco Cristal Quartzo. Geochemically these are peraluminous, high-potassium calcium-alkaline rocks formed from highly evolved magmas in a post-collisional orogenic environment. Late-magmatic transformations indicate an origin by fractioning of a unique parental magma, added by a mafic pulse (Rosa Olinda). The correlation between the physical indices and the physical and mechanic resistance were done as a function of the petrographycal analyses. The technological parameters obtained are higher or close to the bordering values, which characterises these rocks as good quality ones. The granites react to the chemical attack by slight both chromatic variations and mineral alterations, indicating to be resistant rocks. The rose colored granites, however, show a greater alteration when in contact with the more destructive citric and chloridric acids. Although resistant, one sends regards to prevent expositions to acid-bearing substances. The granites of the Serra do Barriga stock are adequate for ornamental use, being the Rosa Iracema and Rosa Olinda types highly efficient for both floor pavement and wall covering, with care in the maintenance.
Silveira, Leonardo Luiz Lyrio da. "Polimento de rochas ornamentais: um enfoque tribológico ao processo." Universidade de São Paulo, 2007. http://www.teses.usp.br/teses/disponiveis/18/18132/tde-31102007-095421/.
Full textThis work shows an experimental contribution which goal is to provide elements to the technological improvement of each step of dimension stones polishing. Some aspects of tribology, a discipline of mechanical and material engineering, has been used on the research of dimension stones polishing and has supported the investigation of the interaction of the tribosystem composed of rock, abrasive and operational conditions. For this research, a device was developed in the lab in order to make possible the simulation of the polishing process at different operational conditions, considering the variables time, rotation speed, and intensity of the loads applied. The polishing of granite rocks at industrial and lab conditions has been compared, aiming at determining the influence of each rock characteristics such as mineral composition, texture and structure during the process. The results allowed for the definition of the ideal conditions to obtain the best quality of rock brightness and they represent a contribution to the understanding of the polishing process itself as well as provide an optimization of the industrial process.
Filho, Clébio Goulart Coimbra. "Relação entre processo de corte e qualidade de superfícies serradas de granitos ornamentais." Universidade de São Paulo, 2006. http://www.teses.usp.br/teses/disponiveis/18/18132/tde-07122006-082849/.
Full textThe industry of ornamental and dimension stone can be improved by the global and integrated overview of stone properties and performance machines, equipment and insums. Although with excellent growth in production and exportation and great technological advance, the empirism predominates in the productive process, a practice that might leads to loses, failures of equipment, defects in final product and other problems. Pointing this question are presented and correlated operational parameters of the sawing processes and technological properties of rocks, intending to contribute with the optimization of the productive processes and improve quality of slabs. Three varieties of granites were selected, sampled and subjected to petrographical analysis and rugosity evaluation. For each rock the block cut processes using gang saws was accompanied. The set of laboratorial and processes data was treated statistically and analyzed expecting to evaluate the quality of sawed surface slabs. The results obtained are not conclusive and pointing the necessity of future studies to understanding the effective relations between the petrographical features and processes procedures during block cut step in the dimension stone industry. Is expected this approach resulting in better guides to improve the quality of slabs and minimize loses during the processes.
Stellin, Maria Renata Machado. "Contribuição à escolha de mármores e granitos numa intervenção arquitetônica." Universidade de São Paulo, 2007. http://www.teses.usp.br/teses/disponiveis/3/3134/tde-08012008-163445/.
Full textIn present work, initially was approached the main characteristics of the dimension stones industry, explotation of the deposits and the processing, understanding the sawing semitransformation and transformation, as well the types most important of products that are normally commercialized. After that, one studied the dimension stones from the types, colors and brightness to the relative classifications geneses, strutures and commercial value. It was given special emphasis to the colors of the rocks as well as the of environments where they will be applied, remembering the psychological influence of the colors related to the human beings. One presented proposal of identification of colors identification using current resources of computer science, beyond a proposal of creation of a data base, with information of interest for the projects of engineering and architecture. This work presents, as example, an application, using the data base created, as well as relative important concepts to an architectural intervention.
Soares, Telmo Daniel Monteiro. "Heterogeneidades de granitos na dinâmica industrial de transformação." Master's thesis, Universidade de Aveiro, 2013. http://hdl.handle.net/10773/11823.
Full textO presente trabalho pretende demonstrar a dinâmica industrial de processamento de rocha ornamental, envolvendo dois tipos de granito da mesma região, devido às respetivas diferenças técnico-mecânicas, estruturais e também de acordo aos fins a que se destinam como produto final. As diferenças de comportamento de um granito típico de cor cinza para outro de cor amarela são compreensíveis, mas até que ponto é que estas heterogeneidades são influentes ao nível de controlo personalizado dos processos industriais? Aqui demonstram-se alguns conceitos, parâmetros e realidades práticas que ajudam a perceber a gestão industrial desde o granito em bruto até à sua expedição como produto final.
The present work aims to demonstrate the industrial dynamic processing of ornamental stones, involving two types of granite from the same region, due to technical, mechanical and structural differences, and also according to the purposes intended as final product. The differences in behavior between typical gray and yellow granite, are understandable, but to what extent are these heterogeneities influential to the level of custom control of industrial processes? Some concepts, parameters and practical realities are presented and will help to conceive the industrial management from the raw granite until it´s dispatch as final product.
Regadas, Isaura Clotilde Martins da Costa. "Aspectos relacionados às lavras de granitos ornamentais com fio diamantado no norte do estado do Espírito Santo, Brasil." Universidade de São Paulo, 2006. http://www.teses.usp.br/teses/disponiveis/18/18132/tde-19122006-102804/.
Full textThe use of the diamond wire in quarries of ornamental granites in Brazil is a relatively recent technique of cut and, for this reason, some problems are decurrent, mainly, of the incorrect use of the equipment, as well as of the lack of experience of operators. The cases here presented report the observations in quarries located in the state of Espirito Santo, in which the imperfections in the cut if regard the speed of cut, the twist and refrigeration of the wire and to the inadequate execution of the amendings. To these technical factors others are added, of geologic nature, like the necessity of better knowledge of the characteristics of the rocky bulks and the petrography of granites.
Figueiredo, Edgar Romeo Herrera de. "Condutividade t?rmica de rochas: uma aplica??o para granitos ornamentais." Universidade Federal do Rio Grande do Norte, 2006. http://repositorio.ufrn.br:8080/jspui/handle/123456789/18737.
Full textCoordena??o de Aperfei?oamento de Pessoal de N?vel Superior
This dissertation focuses on rock thermal conductivity and its correlations with petrographic, textural, and geochemical aspects, especially in granite rocks. It aims at demonstrating the relations of these variables in an attempt to enlighten the behavior of thermal effect on rocks. Results can be useful for several applications, such as understanding and conferring regional thermal flow results, predicting the behavior of thermal effect on rocks based upon macroscopic evaluation (texture and mineralogy), in the building construction field in order to provide more precise information on data refinement on thermal properties emphasizing a rocky material thermal conductivity, and especially in the dimension stone industry in order to open a discussion on the use of these variables as a new technological parameter directly related to thermal comfort. Thermal conductivity data were obtained by using Anter Corporation s QuicklineTM -30 a thermal property measuring equipment. Measurements were conducted at temperatures ranging between 25 to 38 OC in samples with 2cm in length and an area of at least 6cm of diameter. As to petrography data, results demonstrated good correlations with quartz and mafics. Linear correlation between mineralogy and thermal conductivity revealed a positive relation of a quartz percentage increase in relation to a thermal conductivity increase and its decrease with mafic minerals increase. As to feldspates (K-feldspate and plagioclase) they show dispersion. Quartz relation gets more evident when compared to sample sets with >20% and <20%. Sets with more than 20% quartz (sienogranites, monzogranites, granodiorites, etc.), exhibit to a great extent conductivity values which vary from 2,5 W/mK and the set with less than 20% (sienites, monzonites, gabbros, diorites, etc.) have an average thermal conductivity below 2,5 W/mK. As to textures it has been verified that rocks considered thick/porphyry demonstrated in general better correlations when compared to rocks considered thin/medium. In the case of quartz, thick rocks/porphyry showed greater correlation factors when compared to the thin/medium ones. As to feldspates (K-feldspate and plagioclase) again there was dispersion. As to mafics, both thick/porphyry and thin/medium showed negative correlations with correlation factor smaller than those obtained in relation to the quartz. As to rocks related to the Streckeisen s QAP diagram (1976), they tend to fall from alcali-feldspates granites to tonalites, and from sienites to gabbros, diorites, etc. Thermal conductivity data correlation with geochemistry confirmed to a great extent mineralogy results. It has been seen that correlation is linear if there is any. Such behavior could be seen especially with the SiO2. In this case similar correlation can be observed with the quartz, that is, thermal conductivity increases as SiO2 is incremented. Another aspect observed is that basic to intermediate rocks presented values always below 2,5 W/mK, a similar behavior to that observed in rocks with quartz <20%. Acid rocks presented values above 2,5 W/mK, a similar behavior to that observed in rocks with quartz >20% (granites). For all the other cases, correlation factors are always low and present opposite behavior to Fe2O3, CaO, MgO, and TiO2. As to Al2O3, K2O, and Na2O results are not conclusive and are statistically disperse. Thermal property knowledge especially thermal conductivity and its application in the building construction field appeared to be very satisfactory for it involves both technological and thermal comfort aspects, which favored in all cases fast, cheap, and precise results. The relation between thermal conductivity and linear thermal dilatation have also shown satisfactory results especially when it comes to the quartz role as a common, determining phase between the two variables. Thermal conductivity studies together with rocky material density can function as an additional tool for choosing materials when considering structural calculation aspects and thermal comfort, for in the dimension stone case there is a small density variation in relation to a thermal conductivity considerable variation
Esta disserta??o aborda o tema condutividade t?rmica de rochas e sua correla??o com aspectos petrogr?ficos, texturais e geoqu?micos principalmente em rochas gran?ticas. O intuito ? demonstrar as rela??es destas vari?veis tentando elucidar o comportamento do efeito t?rmico nas rochas. Os resultados poder?o ser ?teis em diversas aplica??es, por exemplo, no entendimento e aferi??o de resultados de fluxo t?rmicos regionais, na predi??o do comportamento t?rmico de rochas baseados na avalia??o macrosc?pica (textura e mineralogia), no segmento de constru??o civil com o objetivo de fornecer informa??es mais precisas no que diz respeito ao refinamento de dados sobre propriedades t?rmicas enfatizando a condutividade t?rmica de materiais rochosos e ainda especialmente na ind?stria de rochas ornamentais com o objetivo de se abrir uma discuss?o sobre a utiliza??o destas vari?veis como novo par?metro tecnol?gico diretamente relacionado ao conforto t?rmico. Os dados de condutividade t?rmica foram obtidos a partir de um equipamento medidor de propriedades t?rmicas da marca Anter Corporation, modelo QuicklineTM -30. As medidas foram realizadas a temperaturas variando entre 25 e 38 OC em amostras com 2cm de espessura e ?rea com pelo menos 6cm de di?metro. Quanto aos dados petrogr?ficos os resultados demonstraram haver boas correla??es com o quartzo e m?ficos. A correla??o linear entre a mineralogia e a condutividade t?rmica revelou uma rela??o positiva do aumento da condutividade t?rmica em fun??o do aumento da percentagem de quartzo e diminui??o com o aumento de minerais m?ficos. J? os feldspatos (K-feldspato e plagiocl?sio) mostram dispers?o. A rela??o do quartzo fica mais evidente quando s?o comparados os conjuntos de amostras com >20% e <20%. O conjunto com mais de 20% de quartzo (sienogranitos, monzogranitos, granodioritos, etc.), exibe em sua grande maioria, valores de condutividade que variam acima de 2,5 W/mK, j? o conjunto com menos de 20% (sienitos, monzonitos, gabros, dioritos, etc.) tem condutividade t?rmica m?dia abaixo de 2,5 W/mK. Quanto as texturas verificou-se que os litotipos considerados grossos/porfir?ticos demonstraram no conjunto geral melhores correla??es quando comparados com os litotipos considerados finos/m?dios. No caso do quartzo os litotipos grossos/porfir?ticos mostraram maior fator de correla??o, quando comparados com os finos/m?dios. Quanto aos feldspatos (K-feldspato e plagiocl?sio) houve novamente dispers?o. Para os m?ficos, tanto os tipos grossos/porfir?ticos quanto os finos/m?dios, mostraram correla??es negativas com fator de correla??o menor do que os obtidos em rela??o ao quartzo. Quanto aos litotipos, relacionados ao diagrama QAP de Streckeisen (1976), h? uma tend?ncia de queda no sentido dos alcali-feldspatos granitos para os tonalitos, e dos sienit?ides para os gabros, dioritos, etc. A correla??o dos dados de condutividade t?rmica com os de geoqu?mica confirmou em grande parte, os resultados de mineralogia. Observou-se que a correla??o, quando existe, ? linear. Este comportamento foi verificado principalmente com o SiO2. Neste caso nota-se uma correla??o similar a observada com o quartzo, ou seja, aumento da condutividade t?rmica com o incremento de SiO2. Um outro aspecto observado ? que rochas b?sicas a intermedi?rias apresentaram valores sempre inferiores a 2,5 W/mK, comportamento similar ao observado em rochas com quartzo <20%. J? as rochas ?cidas apresentaram valores acima de 2,5 W/mK, comportamento similar ao observado em rochas com quartzo >20% (gran?ticas). Nos demais casos os fatores de correla??o s?o sempre baixos apresentando comportamento inverso, sendo observado para Fe2O3, CaO, MgO, e TiO2. Quanto ao Al2O3, K2O e Na2O os resultados n?o s?o conclusivos havendo estatisticamente dispers?o. O conhecimento das propriedades t?rmicas em especial a condutividade t?rmica e sua aplica??o na constru??o civil mostrou-se bastante satisfat?ria, pois, envolve tanto aspectos tecnol?gicos quanto aspectos do conforto t?rmico favorecendo em todos os casos resultados r?pidos, baratos e precisos. A rela??o da condutividade t?rmica, com a dilata??o t?rmica linear tamb?m mostrou resultados satisfat?rios em especial quando fica demonstrado o papel do quartzo como fase comum e determinante entre as duas vari?veis. O estudo da condutividade t?rmica aliada a densidade dos materiais rochosos poder? servir como ferramenta adicional na escolha de materiais quando se levar em considera??o aspectos do c?lculo estrutural e do conforto t?rmico, pois no caso das rochas ornamentais h? uma pequena varia??o da densidade em detrimento da varia??o consider?vel da condutividade t?rmica
Neves, Márcia de Carvalho. "Estudo experimental do polimento de diferentes \"granitos\" e as relações com a mineralogia." Universidade de São Paulo, 2010. http://www.teses.usp.br/teses/disponiveis/18/18132/tde-02122010-104440/.
Full textDimension stones aesthetics are the main factor considered in their use for buildings, followed by technological characteristics, deposit\'s typology and possible extraction and beneficiacion effects. This paper approaches the influential mechanisms on polishing process, considering that industry still bases itself on empiricisms, with incoherent generalizations that increase production slabs cost. Three types of granite rocks were evaluated: Sienogranite (Vermelho Brasília), Migmatite (Jacarandá Rosado) and Monzogranite (Cinza Andorinha), due to their highly commercialization. The rocks are classified at the industrial process as hard, medium and soft (respectively). They were tested with a polishing rock simulator through the use of magnesium abrasives and had the surface roughness pre-determined for each sample. By altering the polishing machine applied load, as well as speed and time, and having the brightness associated weight loss monitored, it was possible to stabilish ideal conditions for the studied rock types.
Oliveira, Tatiane de. "Caracterização do resíduo de serragem de rochas ornamentais para aplicações geotécnicas." Universidade de São Paulo, 2015. http://www.teses.usp.br/teses/disponiveis/18/18132/tde-16112015-092931/.
Full textBrazil currently occupies a prominent position in world production of dimension stones and coating. This industry generates different types of waste and may reach 83% loss of the raw material. In this context, the main problem of these wastes is the abrasive slurry, generated in the block sawing process on plates consisting of water, lime, stone powder and abrasive remaining. This material is produced in large quantities and can be stored in the companies courtyards, occupying vast areas or stored in landfills, which is more costly. Thus, the objective of this study was to characterize the waste of cutting blocks of dimension stones analyzing the possibility of different applications in geotechnics. Therefore, it was carried out a environmental classification according ABNT NBR 10004, geotechnical and chemical/mineralogical characterization, strength assessment and Miniature, Compacted, Tropical methodology (MCT) of sawing abrasive slurry in the State of São Paulo. It was found the waste was classified as a non-hazardous and inert. The geotechnical parameters indicated 64% of silt, 5% of plasticity index, 2,823 g/cm³ of density of solids, maximum dry density of 1,650 g/cm³ with optimum moisture content of 21% in the intermediate energy and 1,645 g/cm³ with 25,6% moisture at normal energy. Unconfined compressive strength achieved after 28 days of curing 0,354 MPa with pure residue, 1,174 MPa with 2% of cement and 2,294 MPa with 5% cement. The direct shear tests showed a cohesion of 54 kPa and 35º of friction angle. According to the MCT results the residue was classified as NS\' (silt not lateritic), low permeability\'s that increased with the addition of cement, and a low loss of support by immersion. Thus, it was observed that this material may have geotechnical applications, however should be conducted further testing.
Almeida, Phillipe Fernandes de. "Estudo comparativo do polimento de \"granitos\" com diferentes tipos de abrasivos." Universidade de São Paulo, 2014. http://www.teses.usp.br/teses/disponiveis/18/18132/tde-08072014-095430/.
Full textBrazil occupies a leading position on the global scenario of production and export of ornamental stones due to its geological diversity and by accommodate all stages of the supply chain, from quarrying to the tiles finishing. However, despite the great importance of this sector, many physical mechanisms of its industrial processes are still not properly understood and performed most often empirically. The polishing of ornamental stones, which can be described as a process where wearing caused by abrasive tools eliminates rough surfaces coming from the sawing stage, it is still one of the processes where the variables involved remain in scarce studies. In an attempt to become this process less subjective, the Geotechnical Engineering postgraduation department from the University of São Paulo (USP) at São Carlos School of Engineering has been developing researches approaching the focus of tribology in the polishing, but not exhausting all parameters involved. Following such studies, this research covers the polishing simulation of two granitic stones using two types of abrasives: the magnesian, more traditional, and resinoid, one of the most modern presently used. Nine different combinat ions were used between rotation speed (200, 400 and 600 rpm) and time (2, 4, and 6 minutes) to the 1 bar load. Among the samples subjected to the process, those with coarse and inequigranular texture showed some limitation to the representativeness of the SPR equipment in abrasive wearing, not necessarily reflecting the reality of industrial polishing of granites with similar mineralogy and texture. However, samples with fine and equigranular texture with low abrasive resistance, the results expressed by mass loss (stone and abrasive) showed better quality of the polished surface and gloss, besides a more efficient polishing.
Books on the topic ""Granitos" ornamentais"
Comércio, Ceará (Brazil :. State) Secretaria de Indústria e. Perfil industrial: Granito ornamental. Fortaleza: Governo do Estado do Ceará, Secretaria de Indústria e Comércio, 1985.
Find full textMagalhães, Ana Cristina Franco. Bahia: Rochas ornamentais : principais indicadores, 1993 a 1996. Salvador: Superintendência de Geologia e Recursos Minerais, 1997.
Find full textPrimavori, Piero. I materiali lapidei ornamentali: Marmi, graniti, e pietre. Pisa: Edizioni ETS, 1997.
Find full textBrazil) Simpósio de Rochas Ornamentais do Nordeste (4th 2003 Fortaleza. Anais. Edited by Vidal Francisco Wilson Hollanda, Lima Maria Angélica Batista, CETEM (Center), and Sociedade Brasileira de Geologia. Rio de Janeiro, Brazil]: CETEM, 2003.
Find full textRecife, Brazil) Simpósio de Rochas Ornamentais do Nordeste (3rd 2002. Anais. Recife: UFPE, 2002.
Find full textSales, Fernando Antônio Castelo Branco., Universidade Estadual do Ceará, and Fundação Cearense de Apoio ao Desenvolvimento Cientif́ico e Tecnológico., eds. Rochas ornamentais do Ceará, Brasil =: Dimension stones of Ceará, Brazil. [Fortaleza, Brazil?]: Universidade Estadual do Ceará, 2004.
Find full textBook chapters on the topic ""Granitos" ornamentais"
Sousa, L. M. O., A. S. Oliveira, J. M. M. Lourenço, and I. M. C. Capela. "Fatores condicionantes da exploração de granito ornamental: o exemplo dos granitos meteorizados da região de Vila Real." In Para desenvolver a Terra: memórias e notícias de Geociências no espaço lusófono, 509–18. Imprensa da Universidade de Coimbra, 2012. http://dx.doi.org/10.14195/978-989-26-0531-9_51.
Full textLima, Aarão de Andrade, Marcos Roberto Kalvelage, Giorgio de Tomi, and Nelson Senhorinho Silva. "Computer assisted planning for extraction of ornamental granite." In Mine Planning and Equipment Selection 2000, 833–34. Routledge, 2018. http://dx.doi.org/10.1201/9780203747124-156.
Full textLamas, J., A. López, A. Ramil, B. Prieto, and T. Rivas. "Monitoring the laser cleaning process of ornamental granites by means of digital image analysis." In Lasers in the Conservation of Artworks VIII, 99–103. CRC Press, 2010. http://dx.doi.org/10.1201/b10567-17.
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