Ingeniería Mecánica

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    Análisis del material vulcanizado caucho estireno-butadieno 1502 con dióxido de silicio amorfo y su incidencia en la resistencia a la abrasión, fatiga por flexión y dureza, mediante la utilizaciòn de normas NTE-INEN-ISO, en la empresa Carvifactory CIA LTDA
    (Universidad Técnica de Ambato. Facultad de Ingeniería Civil y Mecánica, Carrera de Ingeniería Mecánica, 2020) Carpio Vega, Mario Alexander; Paredes Salinas, Juan Gilberto
    In the present investigation, the mechanical behavior of a compression vulcanized composite material, consisting of Rubber SBR 1502, Amorphous Silicon Dioxide and other compounds was evaluated. In addition, through the use of NTE-INEN-ISO 4649, 20344 and 868 standards, Abrasion Resistance, Flexural Fatigue and Hardness tests were performed, respectively. For this, it was necessary to develop different specimens, manufactured under these 3 same standards. Once all the trial data were obtained, they were tabulated and analyzed using two statistical techniques: Factorial Design and Response Surface Methodology (RSM) These two statistical strategies allowed validating all the data obtained, defining the significant effects and their influence on the mechanical properties evaluated and optimize each of the response variables according to the NTE-INEN-ISO 20345, 20346 and 20347 requirement standards, which specify the minimum, maximum or range values for each property evaluated. After analyzing all the data, it is observed that the RSM is the most appropriate tool to study the effects of the factors on the variables in this investigation. Thus, by means of the composite desirability function of 0.858, it is defined that the combination that allows keeping within the 3 requirements is a material composed of 100 PHR of Rubber SBR 1502 + 44 PHR Amorphous Silicon Dioxide + 30 PHR of the others compounds, where an Abrasion Resistance of 136.5271 mm3 was obtained, an Incision Growth of 0.4034 mm and a Hardness of 66.87 SHORE A.
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    Estudio de las propiedades mecánicas de la lámina para pista atlética a partir de caucho reciclado utilizando poliuretano
    (Universidad Técnica de Ambato. Facultad de Ingeniería Civil y Mecánica, Carrera de Ingeniería Mecánica, 2020) LLerena Pico, Diego Andrés; Lascano Moreta, Alejandra Marlene
    In the research project, the analysis of the mechanical properties at different volumetric configurations of a composite material that is constituted by a polyurethane matrix and reinforced with recycled rubber particles was carried out, this in order to achieve a material that has excellent characteristics for the manufacture of sheets of athletic tracks, replacing the usual manufacturing materials with composites at low cost and friendly with the environment. The work proposed the preparation of a composite material with polyurethane and rubber granules at different volumetric fractions ranging from 70 percent polyurethane-30 percent rubber particles, 60 percent polyurethane-40 percent particles of rubber, 50 percent polyurethane-50 percent rubber particles, with a rubber particle size of 0.05 mm-1 mm, where the molds and probes used in the tests were made with the dimensional characteristics established in the ASTM standard, which will be used for ASTM D3039-2015 traction, ASTM D695 compression and ASTM D2240-15 hardness. The obtaining of optimal values was obtained to achieve the mechanical properties necessary for the realization of the composite material, where the volumetric fraction that has the best mechanical characteristics is that of 70 percent polyurethane-30 percent of rubber particles, with a maximum effort to tensile of 12.28 MPa, modulus of tensile elasticity of 282.69 MPa, elongation of 8.08 percent, maximum compressive stress of 28.4 MPa, creep stress 23 MPa, deformation of 37, 11 percent, modulus of elasticity to compression of 76.51 MPa and Shore D hardness 72.75