Teimoori, K.; Hassani, F.; Sasmito, A.; Madiseh, A. (2019). Experimental Investigations of Microwave Effects on Rock Breakage Using SEM Analysis. En AMPERE 2019. 17th International Conference on Microwave and High Frequency Heating. Editorial Universitat Politècnica de València. 1-8. https://doi.org/10.4995/AMPERE2019.2019.9647
Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/130874
Título:
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Experimental Investigations of Microwave Effects on Rock Breakage Using SEM Analysis
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Autor:
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Teimoori, Khashayar
Hassani, Ferri
Sasmito, Agus
Madiseh, Ali
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Fecha difusión:
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Resumen:
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[EN] Preconditioning of hard rocks by microwave energy has recently been considered a potentially effective technology in mechanical rock breakage for civil and mining engineering. To obtain the amount of mechanical damage ...[+]
[EN] Preconditioning of hard rocks by microwave energy has recently been considered a potentially effective technology in mechanical rock breakage for civil and mining engineering. To obtain the amount of mechanical damage that a single-mode microwave treatment produces in rocks, it is necessary to analyze and evaluate the thermal cracking process by microwave heating at different power levels, exposure times, and distances from the antenna. The current study employs the scanning electron microscopy imaging technique to capture images from surfaces of irradiated rock specimens and to compare them with a nontreated specimen. To evaluate and quantify the amount of cracking (i.e. crack density, crack size, etc.) in a rock specimen after microwave irradiation with different microwave input operating parameters, the following steps were evaluated. First, several experiments of single-mode microwave treatments with different operating parameters were performed on rectangular specimens of basalt. Then, cylindrical core samples with a dimension of r = 0.5 cm, h = 2cm, were drilled from the center of the irradiated specimens and prepared for image processing. The results of the present study show that there are significant differences between the number of microcracks present in samples irradiated at different power levels and distances from the antenna. Also, longer exposure times result in more severe cracks.
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Palabras clave:
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Energy Production by Microwaves
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Microwave CVD
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EM Modelling
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Microwave Material interaction
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Dielectric Properties
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Dielectric Properties Measurement
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Solid State Microwave
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Microwave Processing
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Microwave Chemistry
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Microwave applicators design
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Derechos de uso:
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Reconocimiento - No comercial - Sin obra derivada (by-nc-nd)
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ISBN:
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9788490487198
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Fuente:
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AMPERE 2019. 17th International Conference on Microwave and High Frequency Heating.
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DOI:
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10.4995/AMPERE2019.2019.9647
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Editorial:
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Editorial Universitat Politècnica de València
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Versión del editor:
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http://ocs.editorial.upv.es/index.php/AMPERE2019/AMPERE2019/paper/view/9647
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Título del congreso:
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Ampere 2019
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Lugar del congreso:
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Valencia, Spain
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Fecha congreso:
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Septiembre 09-12,2019
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Agradecimientos:
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Financial support for this work from the Natural Sciences and Engineering Research Council
of Canada (NSERC), De Beers Group, Argex, Metso and the McGill Engineering Doctoral
Award (MEDA) Award is gratefully acknowledged.[+]
Financial support for this work from the Natural Sciences and Engineering Research Council
of Canada (NSERC), De Beers Group, Argex, Metso and the McGill Engineering Doctoral
Award (MEDA) Award is gratefully acknowledged.
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Tipo:
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Capítulo de libro
Comunicación en congreso
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