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Microstructure profilesChristiansen, Carl. January 1980 (has links)
Thesis (M.S.)--Naval Postgraduate School, 1980. / Includes bibliographical references (leaves 56-57).
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Particle cracking damage evolution in 7075 wrought aluminum alloy under monotonic and cyclic loading conditionsHarris, James Joel. January 2005 (has links)
Thesis (M. S.)--Materials Science and Engineering, Georgia Institute of Technology, 2006. / Gokhale, Arun, Committee Chair ; Gall, Ken, Committee Member ; Thadhani, Naresh, Committee Member.
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Active control of a diffraction grating interferometer for microscale devicesSchmittdiel, Michael C. January 2004 (has links)
Thesis (M. S.)--Mechanical Engineering, Georgia Institute of Technology, 2004. / Dr. William P. King, Committee Member ; Dr. F. Levent Degertekin, Committee Member ; Dr. Thomas R. Kurfess, Committee Chair.
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The effect of mechanical mold vibration on the characteristics of aluminum alloysDeshpande, Jayesh U. January 2006 (has links)
Thesis (M.S.)--Worcester Polytechnic Institute. / Keywords: Hot tearing; Microstructure; Aluminum casting. Includes bibliographical references (leaves 110 - 113).
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Modeling texture evolution in polycrystalline materials using spherical harmonicsBouhattate, Jamaa. Garmestani, H. January 1900 (has links)
Thesis (Ph. D.)--Florida State University, 2006. / Advisor: Hamid Garmestani, FAMU-FSU College of Engineering, Dept. of Mechanical Engineering. Title and description from dissertation home page (viewed Sept. 19, 2006). Document formatted into pages; contains xiii, 101 pages. Includes bibliographical references.
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Analysis of viscous drag reduction and thermal transport effects for microengineered ultrahydrophobic surfaces /Davies, Jason W., January 2006 (has links) (PDF)
Thesis (M.S.)--Brigham Young University. Dept. of Mechanical Engineering, 2006. / Includes bibliographical references (p. 105-106).
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Development of contacting material for cathode chamber in the solid oxide fuel cellSheppard, Tyler-Blair A. January 2007 (has links)
Thesis (M.S.)--West Virginia University, 2007. / Title from document title page. Document formatted into pages; contains vii, 92 p. : ill. (some col.). Includes abstract. Includes bibliographical references (p. 89-92).
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Efeito das variaveis de processamento nas caracteristicas microestruturais e mecanicas do nitreto de silicioGENOVA, LUIS A. 09 October 2014 (has links)
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Elaboração e estudos de recristalização de ligas alumínio-magnésio-tório e alumínio-magnésio-nióbioALMEIDA FILHO, AMERICO de 09 October 2014 (has links)
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Caracterização microestrutural e resistência à corrosão de ligas Co-Cr-Mo utilizadas em próteses dentáriasBaldissera, Silmara Cristina [UNESP] 03 September 2007 (has links) (PDF)
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baldissera_sc_dr_guara_prot.pdf: 12828080 bytes, checksum: 92f580d63d12b1909ff670e7cccf4175 (MD5) / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) / Ligas de Co-Cr-Mo tem tido boa aceitação na Odontologia como materiais de prótese. Na cavidade bucal estes materiais estão submetidos a efeitos simultâneos de esforços mecânicos e interação química. Durante o processo de fabricação de prótes, dusão, vazamento e resfriamento, ocorrem alteraçõesna microestrutura que podem afetar as propriedades mecânicas e resistência à corrosão. O objetivo deste trabalho foi estudar o efeito da refundição por maçarico com resfriamento lento e por indução com resfriamento rápido em 4 ligas Co-Cr-Mo comerciais. Os parâmetros investigados foram a microestrutura após ataque eletroquímico, resistência química com imersão de amostras durante 12 meses em soro fisiológico a 37ºC e a resistência à corrosão através de medidas de parâmetros eletroquímicos utilizando as técnicas de medidas de potencial em circuito aberto, polarização potenciodinâmica, voltametria cíclica e impedância eletroquímica. Os resultados indiam que os processos de refundição provocam diminuição do caráter dendrítico, levando a uma estrutura heterogênea com aumento no teor de Cr e Mo na região interdendrítica. Todas as ligas liberam íons de cobalto, cromo e molibdênio em solução em proporções diferentes da composição química de liga, observando-se maior liberação para as ligas refundidas pelo método indução com resfriamento rápido. Todas as ligas apresentam uma extensa região de passividade e baixa densidade de corrente semelhante ao comportamento eletroquímico do metal cromo, indicando ser este o elemento responsável pela passivação das ligas. Análise de impedância indicam comoportamento típico de formação de filme passivador sendo interpretado em termos de uma dupla camada constituída de uma subcamada interna resistiva e uma subcamada externa porosa. / Co-Cr-Mo alloys have good acceptance as dental prosthesis material. In mouth cavity these materials are submitted to simultaneous effects of mechanical efforts and chemical interactions. Microstructure changes than can modiy the mechanical and chemical properties of prosthesis material can occur during the prosthesis fabrication process which involves recasting of its material. Recasting process Co-Cr-Mo alloy(induction (IND) or blowtorch (FLAME) the influence of upon corrosion behavior of four commercial Co-Cr-Mo dental alloys in simulated physiological serum has been investigated using chemical electrochemical techniques. The morphology of microstructure after electrochemical etching resistance on 12 months physiological serum at 37º C immersion and corrosion resistance were the parameters analyzed. Corrosion resistance was determined by electrochemical measurements technique as open circuit potential measurement, potentiodynamic polarizationo, cyclic voltammetryc and eletrochemical impedance measurement. Results show that Co-Cr-Mo alloy recasting by induction (IND) or by blowtorch (FLAME) produces a reduction on dendritic strucutres formation, obtaining a heterogeneous structure rich in Cr and Mo in interdendritic regions. All the four Co-Cr-Mo commercial alloys studied in this work release Co, Cr and Mo ions in physiological serum solution at different proportion. Alloys re-cast by induction procedure and quenched release more Co, Cr and Mo ions. These alloys present and extended region of passivity and lower current density, wich similar to Cr metal elctrochemical behavior, indicating that Cr is responsible for alloys passivation. Impedance analysis shows that the passive film formed is a double layred film with an inner resitive sub-layer and an external porous sub-layer.
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