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      Development of activated tungsten inert gas welding and its current status: A review

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          Magnesium and its alloys applications in automotive industry

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            Crystallization and high-temperature structural stability of titanium oxide nanotube arrays

            The stability of titanium oxide nanotube arrays at elevated temperatures was studied in dry oxygen as well as dry and humid argon environments. The tubes crystallized in the anatase phase at a temperature of about 280 °C irrespective of the ambient. Anatase crystallites formed inside the tube walls and transformed completely to rutile at about 620 °C in dry environments and 570 °C in humid argon. No discernible changes in the dimensions of the tubes were found when the heat treatment was performed in oxygen. However, variations of 10% and 20% in average inner diameter and wall thickness, respectively, were observed when annealing in a dry argon atmosphere at 580 °C for 3 h. Pore shrinkage was even more pronounced in humid argon environments. In all cases the nanotube architecture was found to be stable up to approximately 580 °C, above which oxidation and grain growth in the titanium support disrupted the overlying nanotube array.
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              Novel Magnesium Alloys Developed for Biomedical Application: A Review

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                Author and article information

                Contributors
                Journal
                Materials and Manufacturing Processes
                Materials and Manufacturing Processes
                Informa UK Limited
                1042-6914
                1532-2475
                June 11 2022
                February 17 2022
                June 11 2022
                : 37
                : 8
                : 841-876
                Affiliations
                [1 ]Department of Metallurgical and Materials Engineering, Visvesvaraya National Institute of Technology (VNIT), 440010, Nagpur, India
                Article
                10.1080/10426914.2022.2039695
                33f680cd-676c-4e18-8bce-cc66178b195b
                © 2022
                History

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