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Titlebook: Metal-Matrix Composites; Advances in Processi T. S. Srivatsan,Pradeep K. Rohatgi,Simona Hunyadi Conference proceedings 2022 The Minerals,

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T. S. Srivatsan,Pradeep K. Rohatgi,Simona Hunyadi
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The Abrasive Wear Behavior of In Situ Processed Aluminum Alloy Metal-Matrix Compositesculates which is present as the reinforcing phase in the soft aluminum alloy metal matrix. Two volume fractions of the TiB. particulate reinforcement, i.e., 3 weight pct. and 6 weight pct. were considered for synthesizing test specimens of the composite material. The presence of both titanium and bo
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Application of Triboinformatics Approach in Tribological Studies of Aluminum Alloys and Aluminum-Graposites while tribological variables are found significant for aluminum alloys. Additionally, material hardness is found important in friction and wear prediction for both aluminum alloys and Al/Gr MMCs.
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Recent Advances in Aluminium-Based Hybrid Metal Matrix Composites: A Reviewrtinent to hybrid reinforcement in composites where aluminium was employed as the integral matrix material. While different fabrication techniques and processing routes were also studied by means of mechanical characterization, property enhancements with further augmentation in mechanical and therma
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The Damping Capacity and Sliding Wear Behavior of an Aluminum Alloy Metal Matrix Composite: Role of ron. The intricacies specific to tribological behaviour of the engineered aluminium alloy composites is highlighted with respect to microscopic segregation of the particulate reinforcement (TiB.) coupled with the role of test parameters. The fundamental strengthening and damping mechanism governing
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Manufacturing of Nano-Reinforced Aluminium Composites By a Combination of Stir Mixing, Ultrasonic Pre results showed the good distribution of the loose SiC agglomerates, demonstrating a nearly 40% reduction in the Al grain size, from ~23.7 µm to ~14.8 µm, and indicating a ~15 MPa and ~18 MPa increment in the yield strength (YS) and the ultimate tensile strength (UTS), due to a combined effect of t
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Sustainable and Climate-Friendly Economic and Technological Development from the Use of Metal Matrixnd materials having lightweight. This would result in replacing the existing material with metal matrix composite having fewer energy inputs for manufacturing while concurrently offering better characteristics. A short overview of the interest of the end-user in climate-friendly materials and relate
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