Showing 761 - 780 results of 1,764 for search '"alloy"', query time: 0.09s Refine Results
  1. 761

    Effect of Ti addition and cast part size on solidification structure and mechanical properties of medium carbon, low alloy cast steel by N. E. Tenaglia, D. O. Fernandino, A. D. Basso

    Published 2022-10-01
    “…In this work, the effect of Ti addition and the cast part size on the solidification structure and mechanical properties of a medium carbon, low alloy cast steel was analyzed. The experimental analysis involved the design of the melts by using Thermo-Calc� software, where different amounts of Ti added to a standard chemical composition of an AISI 13XX steel were simulated. …”
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    Tribological Analysis of Mg2Si Particulates Reinforced Powder Metallurgy Magnesium Alloy Composites under Oil Lubrication Condition by Katsuyoshi Kondoh, Junko Umeda, Kenshi Kawabata

    Published 2009-01-01
    “…For the evaluation of wear behavior of Mg composites under oil lubrication conditions, powder metallurgy Mg97Y2Zn1 alloy reinforced with additive Mg2Si particles were fabricated by the repeated plastic working (RPW) and hot extrusion. …”
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    Potentiodynamic Corrosion Behavior and Microstructural Characteristics of Pulsed CMT-Welded AA2014-T6 Aluminium Alloy Joints: Effect of PWHT by A. Padma Rao, Manzoor Hadi, C. Rajendran, Sonar Tushar, Mikhail Ivanov, P. Senthil Kumar, V. Murali Krishna

    Published 2022-01-01
    “…AA2014-T6 is an Al-Cu-Mg-based precipitation-hardened aluminium alloy widely used in aerospace due to its high strength to weight ratio. …”
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  11. 771

    Effects of Magnesium Content on Structure and Electrochemical Properties of La-Mg-Pr-Al-Mn-Co-Ni Hydrogen Storage Alloys by L. M. C. Zarpelon, E. P. Banczek, L. G. Martinez, N. B. Lima, I. Costa, R. N. Faria

    Published 2018-01-01
    “…The corrosion resistance of the alloys was evaluated in 6.0 mol·L−1 KOH solution, and the results showed that the substitution of La by Mg was beneficial for this alloy property. …”
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    Pore Geometry Optimization of Titanium (Ti6Al4V) Alloy, for Its Application in the Fabrication of Customized Hip Implants by Sandipan Roy, Debojyoti Panda, Niloy Khutia, Amit Roy Chowdhury

    Published 2014-01-01
    “…The present study investigates the mechanical response of representative volume elements of porous Ti-6Al-4V alloy, to arrive at a desired range of pore geometries that would optimize the reduction in stiffness necessary for biocompatibility with the stress concentration arising around the pore periphery, under physiological loading conditions with respect to orthopedic hip implants. …”
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  15. 775

    Study on the microstructure and in vitro corrosion behavior of extruded Mg–3Zn–0.7Mn–0.5Sr alloy by Wenpeng Shi, Yongjun Li, Xinggang Li, Minglong Ma, Guoliang Shi, Jiawei Yuan, Zhaoqian Sun, Kui Zhang, Chen Jin, Wei Liu

    Published 2025-03-01
    “…The susceptibility to corrosion has emerged as a significant barrier to the clinical deployment of magnesium alloys in orthopedic implants. Therefore, in this paper, we elucidate the relationship between the microstructure and corrosion resistance of the as-cast and ER70 Mg–3Zn–0.7Mn–0.5Sr (ZMJ310) alloys, a considerable reduction in the corrosion rate of alloys was observed at large extrusion ratios. …”
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  16. 776

    Effect of static magnetic field on microstructure and mechanical property of AlSi10Mg alloy by laser directed energy deposition by Weiming Niu, Bingke Song, Jiasen Han, Haiou Yang, Zhaopu Yao, Hui Chen, Xin Lin

    Published 2025-01-01
    “…The study provides new insights into the potential of using magnetic field during LDED process to improve the microstructure and mechanical property of AlSi10Mg alloy.…”
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    Microstructure characterization and quantitative analysis of copper alloy matrix composites reinforced with WC-xNi powders prepared by spontaneous infiltration by Daoud I., Miroud Dj., Yamanoglu R.

    Published 2018-01-01
    “…In this study, copper alloy matrix composites reinforced with tungsten carbide (WC) particles with the addition of different Ni contents (0, 3, 5, 7, and 10 wt.%) were prepared by the spontaneous infiltration process. …”
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