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Metal Matrix Composites Wetting And Infiltration 1st Ed Antonio Contreras Cuevas

  • SKU: BELL-7322676
Metal Matrix Composites Wetting And Infiltration 1st Ed Antonio Contreras Cuevas
$ 31.00 $ 45.00 (-31%)

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Metal Matrix Composites Wetting And Infiltration 1st Ed Antonio Contreras Cuevas instant download after payment.

Publisher: Springer International Publishing
File Extension: PDF
File size: 14.97 MB
Author: Antonio Contreras Cuevas, Egberto Bedolla Becerril, Melchor Salazar Martínez, José Lemus Ruiz
ISBN: 9783319918532, 9783319918549, 3319918532, 3319918540
Language: English
Year: 2018
Edition: 1st ed.

Product desciption

Metal Matrix Composites Wetting And Infiltration 1st Ed Antonio Contreras Cuevas by Antonio Contreras Cuevas, Egberto Bedolla Becerril, Melchor Salazar Martínez, José Lemus Ruiz 9783319918532, 9783319918549, 3319918532, 3319918540 instant download after payment.

This book covers several aspects of the synthesis of composites by the pressureless infiltration technique. It describes the methods used to obtain green preforms, such as cold pressed and hot sintering, describing the heating time, load, and time required for pressing the preforms. Additionally, wettability phenomena, which is directly related on infiltration, is extensively described. Wettability process and interfacial reactions are analyzed in many ceramic-metal systems prior to fabricate the composites. A complete description of fabrication processes for Metal Matrix Composites is included. An extensive section on structural, chemical, and mechanical characterization of composites fabricated with aluminum and magnesium alloys as matrices reinforced with titanium carbide (TiC), aluminum nitride (AlN), silicon carbide (SiC) and alumina (Al2O3) is included. Relevant techniques for joining composites, such as welding and brazing are addressed. As well as issues pertaining to the corrosion and wear of composites are discussed as well. Corrosion behavior of some composites exposed to aqueous media was analyzed. Corrosion of composites using TiC and SiC like reinforcement and Al, Ni, and some Al-Cux, Al-Mgx and Al-Cu-Li alloys like matrix is discussed extensively. The structural characterization techniques addressed include: scanning electron microscopy (SEM), X-ray diffraction (XRD), transmission electron microscopy (TEM), optical microscopy (OM), differential thermal analysis (DTA), high resolution transmission electron microscopy (HRTEM), and thermogravimetry analysis (TGA). Mechanical testing including hardness, elastic modulus, tension tests, and impact tests were used in the characterization of composites. Theoretical models for prediction of some mechanical properties are included too.

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