Search Results - ("compositor" OR (("composito" OR "composition") OR "compositos"))

  1. 401
  2. 402
  3. 403

    Beta Phase Formation of Polypropylene with Bentonite Filler by Lozano, Tomás, Morales, Ana Beatriz, Lafleur, Pierre G., Cerino Córdova, Felipe de Jesús, Laria, Julio, Salas, Homero, Barragán, Rodolfo, Pichardo, Roberto

    Published 2012
    “…In this paper, a study on Polypropylene (PP)lbentonite composites is presentod. PPlbentonite composites were prepared using 5%, 10% and 25% of concentration in weight ofunmodified and modified bentonite filler. …”
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    Article
  4. 404

    Synthesis of carbon nanotubes on surface of recovered carbon fibers by chemical vapor deposition, as a sizing process to obtain a hybrid material by García Montes, Saida Mayela

    Published 2017
    “…Carbon fibers recovered from composite materials in structural components reaching end-of-life can be treated with the synthesis of carbon nanotubes (CNTs) directly grown on the carbon fibers (CFs) surface to produce reinforcements which can be used in new high-performance composite materials. …”
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    Tesis
  5. 405

    Synthesis of carbon nanotubes on surface of recovered carbon fibers by chemical vapor deposition, as a sizing process to obtain a hybrid material by García Montes, Saida Mayela

    Published 2017
    “…Carbon fibers recovered from composite materials in structural components reaching end-of-life can be treated with the synthesis of carbon nanotubes (CNTs) directly grown on the carbon fibers (CFs) surface to produce reinforcements which can be used in new high-performance composite materials. …”
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    Tesis
  6. 406

    Caracterización experimental del efecto de la tasa de deformación en el comportamiento mecánico de un compuesto termoplástico by Ramírez Montes, Carolina

    Published 2017
    “…Improved fibers and matrix materials (thermosets and thermoplastics) have been developed, resulting in fiber reinforced polymer (FRP) composites with enhanced mechanical properties to be use in primary structures [1], [2]. …”
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    Tesis
  7. 407

    Caracterización experimental del efecto de la tasa de deformación en el comportamiento mecánico de un compuesto termoplástico by Ramírez Montes, Carolina

    Published 2017
    “…Improved fibers and matrix materials (thermosets and thermoplastics) have been developed, resulting in fiber reinforced polymer (FRP) composites with enhanced mechanical properties to be use in primary structures [1], [2]. …”
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    Tesis
  8. 408

    Development of a Portland Cement-Based Material with Agave salmiana Leaves Bioaggregate by Rosas Díaz, Felipe Esteban, García Hernández, David Gilberto, Mendoza Rangel, José Manuel, Terán Torres, Bernardo Tadeo, Galindo Rodríguez, Sergio Arturo, Juárez Alvarado, César Antonio

    Published 2022
    “…Depending on the morphology of the natural fibers, they can be used as reinforcement to improve flexural strength in cement-based composites or as aggregates to improve thermal conductivity properties. …”
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    Article
  9. 409

    Experimental Investigation of the Magnetorheological Behavior of PDMS Elastomer Reinforced with Iron Micro/Nanoparticles by Palacios Pineda, Luis, Perales Martinez, Imperio, Lozano Sanchez, Luis, Martínez Romero, Oscar, Puente Córdova, Jesús Gabino, Segura Cárdenas, Emmanuel, Elías Zúñiga, Alex

    Published 2017
    “…Abstract: The aim of this article focuses on identifying how the addition of iron micro- and nanoparticles influences the physical properties of magnetorheological composite materials developed with a polydimethylsiloxane (PDMS) matrix with different contents of silicone oil used as additive. …”
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    Article
  10. 410

    Fabrication and photophysical studies of CdTe quantum-dots dispersed in SiO2 sonogel optical-glasses by Morales Saavedra, Omar G., Gutiérrez Lazos, Claudio Davet, Ortega López, Mauricio, Rodriguez Rosales, Antonio A.

    Published 2015
    “…Since the hybrid glasses are amorphous in nature, the cubic nonlinear optical activity of these composites has been tested via the Z-Scan technique. …”
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    Article
  11. 411

    Coupling Metallic Nanostructures to Thermally Responsive Polymers Allows the Development of Intelligent Responsive Membranes by Morones Ramírez, José Rubén

    Published 2014
    “…Therefore, different composite membranes capable of changing their effective pore size with environmental triggers have been developed. …”
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    Article
  12. 412

    Procesamiento y estudio preliminar de un material compuesto de matriz AlSi₁₀Mg reforzado con nanopartículas de Ti mediante aleado mecánico. by Sánchez Rico, Valentina

    Published 2020
    “…Abstract Metal matrix reinforced metal composite materials are designed with the intention of combining the different mechanical properties that exist between metals, in order to obtain a more complete composite material for different industries. …”
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  13. 413

    Procesamiento y estudio preliminar de un material compuesto de matriz AlSi₁₀Mg reforzado con nanopartículas de Ti mediante aleado mecánico. by Sánchez Rico, Valentina

    Published 2020
    “…Abstract Metal matrix reinforced metal composite materials are designed with the intention of combining the different mechanical properties that exist between metals, in order to obtain a more complete composite material for different industries. …”
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    Tesis
  14. 414

    Metal phthalocyanines as catalyst precursors of metallated carbon nanotubes by Alanís, Antonio, Kharissova, Oxana Vasilievna, Kharisov, Boris I.

    Published 2019
    “…The obtained cellulose sheet composites were characterized by scanning electron microscopy (SEM), transmisión electron microscopy (TEM), FTIRspectroscopy, Mullen proofs of hydrophobicity, and contact angle measurements. …”
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    Article
  15. 415

    Comment on Aminian et al. Cardiovascular Outcomes in Patients With Type 2 Diabetes and Obesity: Comparison of Gastric Bypass, Sleeve Gastrectomy, and Usual Care. Diabetes Care 2021... by Violante Cumpa, Jorge Rafael, Sánchez Gómez, Raymundo Abram, Lavalle González, Fernando Javier, Mancillas Adame, Leonardo Guadalupe

    Published 2022
    “…We read with great interest the article published by Aminian et al., where the authors found greater weight loss, better diabetes control, and lower risk of major adverse cardiovascular events 6 (MACE-6) (composite outcome including all-cause mortality, coronary artery events, cerebrovascular events, heart failure, atrial fibrillation, and nephropathy) for Roux-en-Y gastric bypass (RYGB) than for sleeve gastrectomy (SG) in patients with obesity and type 2 diabetes; however, we found some aspects of the study worth further discussion.…”
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  16. 416

    Thin films of arsenic sulfide by chemical deposition and formation of InAs by Peña Méndez, Yolanda, Nair Maileppallil, Santhamma, Nair Padmanabhan, Karunakaran

    Published 2006
    “…X-ray diffraction (XRD) studies have shown that the thin film deposited from chemical baths of pH ∼2, prepared by mixing aqueous acidic solutions of As(III) with sodium thiosulfate, is a composite film of crystalline As2O3 and As2S3, with the incorporation of sulfur. …”
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  17. 417
  18. 418

    Contamination of Fresh Produce by Microbial Indicators on Farms and in Packing Facilities: Elucidation of Environmental Routes by Bartz, Faith E., Lickness, Jacquelyn Sunshine, Heredia, Norma, Fabiszewski de Aceituno, Anna, Newman, Kira L., Hodge, Domonique Watson, Jaykus, Lee-Ann, García, Santos, Leon, Juan S., Dozois, Charles M.

    Published 2017
    “…In 11 farms and packing facilities in northern Mexico, we applied a matched study design: composite samples (n � 636, equivalent to 11,046 units) of produce rinses were matched to water, soil, and worker hand rinses during two growing seasons. …”
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    Article
  19. 419

    Poliolefinas reforzadas con óxido de grafeno reducido. Mediciones viscoelásticas by Guerrero Salazar, Carlos Alberto, Llamas Hernández, Mayra Iveth, Elizondo Martínez, Antonio, Reyes Melo, Martín Édgar, Guerrero Salas, Tania Elizabeth

    Published 2022
    “…Con 0.5% de rGO en ambos composites, manteniendo el mismo porcentaje de PEO, se obtiene un módulo elástico tres veces más grande que el de las poliolefinas puras.…”
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    Article
  20. 420

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