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Titlebook: Recent Advances in Material Sciences; Select Proceedings o Satish Pujari,Satuluri Srikiran,Sivarao Subramonia Conference proceedings 2019 S

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Influence of Titanium Dioxide on the Mechanical Properties of Short Glass Fiber Reinforced Nylon 66nability of TiO. reinforced throughout in nylon 66 to improve the mechanical properties of polymer composites. The present work aims at improving the mechanical properties of polymer composites by varying the volume percentage of TiO. and addition of the small volume fraction of glass fibers so as t
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Experimental Testing and Evaluation of Coconut Coir/Rice Husk Fiber Reinforced with Polymer Compositnatural fibers and extended many applications due to their low weight, high strength, and anti-corrosive nature. In this paper, the effect of chemically treated fibers (silane) on mechanical properties with different volume fractions 5, 10, 15, 20, 25, and 30% is reported. Chemically treated natural
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Fabrication and Corrosion Behaviour of Aluminium Hybrid and Non-hybrid MMCs Reinforced with B4C and er metallurgy method. In this work, boron carbide (B.C) and graphite (Gr) are the two types of reinforcements used in the fabrication of the composites, and these are added to the base aluminium alloy Al2024 used as matrix. The used reinforcements, in which one is a ceramic harder material boron car
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Influence of Tool Geometry of Friction Stir Weldments on Mechanical Properties and Microstructure of weld centre of all the joints were studied using optical microscope. By the results, it is noticed that joints fabricated by straight cylindrical tool pin profile with radius of curvature .2 exhibited better mechanical properties as compared to all other joints. Mechanical properties are correlated with microstructures.
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Influence of Titanium Dioxide on the Mechanical Properties of Short Glass Fiber Reinforced Nylon 66o improve the dispersion bonding between nylon 66 and TiO.. Characterization of these composite is carried out using scanning electron microscopy (SEM) and X-ray diffraction (XRD) analysis. The effect of TiO. content and functionalization methods on tensile strength, tensile modulus, and flexural strength are evaluated.
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