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Titlebook: Characterization of Minerals, Metals, and Materials 2016; Shadia Jamil Ikhmayies (associate professor),Bowen Book 2016 The Minerals, Metal

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The Minerals, Metals, and Materials Society 2016
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An Empirical Equation to Predict the Porosity of Titanium Foamsuation was reported to predict the porosity of pure titanium foams. The empirical equation is . = 0.9. + 0.011, where P and S. represent porosity and spacer content, respectively. Results indicate that porosity is always lower than spacer content by approximately 10%. The porosities obtained from this method are also always lower than 90%.
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The Minerals, Metals & Materials Serieshttp://image.papertrans.cn/c/image/223994.jpg
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https://doi.org/10.1007/978-1-4302-0471-8periments in compression and tension were conducted on specimens with their deformation axis aligned along the rolling (RD), transverse (TD), and through thickness (TT) directions. Digital image correlation (DIC) was utilized to observe in-situ the development of deformation fields. Optic al and ele
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https://doi.org/10.1007/978-1-4302-0471-88 alloy was discussed in this paper. The relative density of the sintered specimens reaches 96%. Homogenous microstructure is achieved after solution treatment at 1200°C for 4h. The sphere secondary γ′ phase is about 0.1 µm and distributes uniformly in the grain. The aging temperature of 750°C is su
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https://doi.org/10.1007/978-1-4302-0471-8 through-thickness variations of stress and strain concentration factors for plate contains a central circular notch subjected to biaxial loading have been investigated by using three dimensional finite element method (3D FEM). To study the effect of Poisson’s ratio (.) on elastic stress/strain conc
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