Journal of Minerals and Materials Characterization and Engineering

Journal of Minerals and Materials Characterization and Engineering

ISSN Print: 2327-4077
ISSN Online: 2327-4085
www.scirp.org/Journal/jmmce
E-mail: jmmce@scirp.org
"Evaluation of Wear and Corrosion Properties of AA6061/TiB2 Composites Produced by FSP Technique"
written by Dakarapu Santha Rao, Nallu Ramanaiah,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.5 No.6, 2017
has been cited by the following article(s):
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[1] A Review of Research Progress on the Fretting Fatigue Mechanism and Protection Measures of Metal Matrix Composites
Coatings, 2023
[2] Dry sliding wear response of aluminium matrix composites (AMCs): a critical review
Materials Research Express, 2023
[3] رفتار مکانیکی و خوردگی آلیاژ آلومینیوم 6061 تقویت‌شده با پودر آلومینا توسط فرآیند اصطکاکی-اغتشاشی‎
فصلنامه مکانیک …, 2023
[4] Wear behavior of light-weight metal matrix nanocomposites
Ceramics International, 2022
[5] Effect of Friction Stir Processing on Fusion Welded Joint of Al-5083
International Journal of Engineering, 2022
[6] Mechanical and corrosion characteristics of 6061-T6 Aluminum alloy samples reinforced with alumina micro and nanoparticles fabricated by Friction Stir Processing
2022
[7] Influence of friction stir process on the physical, microstructural, corrosive, and electrical properties of an Al–mg alloy modified with Ti–B additives
Materials, 2022
[8] Experimental investigation on mechanical, wear and corrosive properties of Aa6061-Tib2 in-situ composites produced by K2tif6- Kbf4 reaction system at optimum …
2021
[9] Microstructural, mechanical and wear behavior of A7075 surface composite reinforced with WC and ZrSiO4 nanoparticle through friction stir processing
Journal of Manufacturing …, 2021
[10] Dry sliding wear characteristics of aluminium metal matrix composites: a brief overview
2019
[11] Corrosion behavior of mechanically alloyed A6005 aluminum alloy composite reinforced with TiB2 nanoparticles
2019
[12] Characterization of mechanically alloyed and pressureless sintered Al-7 wt% Si-2 wt% LaB6-2 wt%(MoSi2, WSi2) hybrid composites
2019
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