Tesis

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Colección de Tesis y Trabajos de grado (informe final del proyecto de investigación, tesina, u otro trabajo académico diferente a Tesis, sujeto a la revisión y aceptación de una comisión dictaminadora) presentados por alumnos para obtener un grado académico del Tecnológico de Monterrey.

Para enviar tu trabajo académico al RITEC, puedes consultar este Infográfico con los pasos generales para que tu tesis sea depositada en el RITEC.

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  • Tesis de doctorado
    Methodology Based on the State Transition Concept for Simple Constitutive Modeling of Smart Materials
    (Instituto Tecnológico y de Estudios Superiores de Monterrey, 2011-01-12) Varela Jiménez, Manuel Ignacio; Varela Jiménez, Manuel Ignacio; 256743; Dr. Jorge Armando Cortés Ramírez; Dr. Alex Elías ZÚñiga; Dr. Jaime Bonilla Ríos
    Smart materials have the capability to sense and respond to environmental stimuli in a predictable and useful manner. Its existence has transformed the paradigm that materials can be used only for structural purposes into the concept that these can also b
  • Tesis de maestría
    Theory and principles of nickel - titanium shape memory alloy as smart material on the design of cardiovascular stents
    (Instituto Tecnológico y de Estudios Superiores de Monterrey, 2007-12-01) Varela Jiménez, Manuel Ignacio; Varela Jiménez, Manuel Ignacio; 256743; Cortés Ramírez, Jorge Armando; Gallegos Cázares, Sergio; Florez Calderón, Lucio; Campus Monterrey; Ángel - Bello Acosta, Francisco Román
    The changes in manufacturing environment are characterized by aggressive competition on a global scale and rapid changes in process technology. The development of ‘smart’ materials and the need of systems that can be readily reconfigured for a wide range of requirements have become necessary for the future. Nickel – Titanium alloy is a ‘smart’ material with shape memory effect, dominated by a transition between the austenite phase and the martensite structure. The chemical composition and the heat treatment have a significant effect on the transformation temperature of the material; in order to take advantage of the properties of NiTi control of this temperature is essential. One of the applications of NiTi is stents, taking advantage of the NiTi biocompatibility, large recoverable deformation, good fatigue life, superelastic and shape memory properties around body temperature, allowing the development of self-expanding stents. This works has as purpose the development of a constitutive model of NiTi phase transformation from martensite to austenite and the effect of heat treatment on the setting of transformation temperature, to be applied in the design, numerical simulation and laser manufacture of self-expandable stents. Also, considering that the improvement of stents designs and operation by the use of smaller dimensions, functional materials or polymers requires research about modern surface coatings and stent laser manufacturing methods is required, this research also intends to establish the state of art about stents materials, surface coatings and manufacture.
En caso de no señalar algo distinto de manera particular, los materiales son compartidos bajo los siguientes términos: Atribución-No comercial-No derivadas CC BY-NC-ND http://creativecommons.org/licenses/by-nc-nd/4.0
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