Elastic Constants And Structural Parameters Of Selected Polycrystalline Ceramics By Ultrasonic Technique

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Elastic Constants And Structural Parameters Of Selected Polycrystalline Ceramics By Ultrasonic Technique

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dc.contributor.author Vimala,George
dc.contributor.author Jacob, Philip
dc.date.accessioned 2008-09-22T08:49:25Z
dc.date.available 2008-09-22T08:49:25Z
dc.date.issued 2005-10
dc.identifier.uri http://dyuthi.cusat.ac.in/purl/916
dc.description.abstract The present work is an attempt to probe the elastic properties in some dielectric ceramics, by using ultrasonic pulse echo overlap technique. The base Ba6-xSm8+2xTi18O54 and Ca5Nb2TiO12 are very important dielectrics ceramics used for microwave communication as well as for substrate materials. Ultrasonic is one of the most widely used and powerful techniques to measure elastic properties of solids. The ultrasonic technique is nondestructive in nature and the measurements are relatively straightforward to perform. One unique advantantage of the ultrasonic technique is that both static and dynamic properties can be measured simultaneously. The velocity and attenuation coefficients of the ultrasonic waves propagating through a medium are related to the microscopic structure of the material and they provide valuable information about the structural changes in the system. Among the various ultrasonic techniques, the pulse echo overlap method is the most accurate and precise one. In the present case the decreased elastic properties of Cas-XMg,Nb2TiO12 and Cas-,ZnNb2TiO12 ceramics can be attributed to their mixture phases beyond x = 1. Moreover, the abrupt change in elastic properties observed for x >1 can also be correlated to the structural transformation of the materials from their phase pure form to mixture phases for higher extent of substitution of the concerned material . Ca4(ANb2Ti)012 (A = Mg, Zn) is the strongest compound with the maximum values for elastic properties . This could be due to the possible substitution of Mg/Zn ions with lesser radius [25] than Ca2+ in perovskite B-site of Ca(Cali4Nb2i4Tili4) O3 material to contribute more ordering and symmetry to the system [20]. All other compositions (x > 1) contain mixed-phases and for such mixed-phase samples, the mechanical properties are difficult to explain. en_US
dc.language.iso en en_US
dc.publisher Department of Electronics en_US
dc.subject Elastic properties en_US
dc.subject Ultrasonic Pulse Echo Overlap Technique en_US
dc.subject Dielectrics ceramics en_US
dc.subject Ca4(ANb2Ti)012 (A = Mg, Zn) en_US
dc.subject Cas-XMg,Nb2TiO12 and Cas-,ZnNb2TiO12 en_US
dc.title Elastic Constants And Structural Parameters Of Selected Polycrystalline Ceramics By Ultrasonic Technique en_US
dc.type Thesis en_US


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