Showing 1,261 - 1,280 results of 2,409 for search '"alloy"', query time: 0.11s Refine Results
  1. 1261

    Modeling and Analysis of Mechanical Properties of Aluminium Alloy (A413) Processed through Squeeze Casting Route Using Artificial Neural Network Model and Statistical Technique by R. Soundararajan, A. Ramesh, S. Sivasankaran, A. Sathishkumar

    Published 2015-01-01
    “…Artificial Neural Network (ANN) approach was used for predicting and analyzing the mechanical properties of A413 aluminum alloy produced by squeeze casting route. The experiments are carried out with different controlled input variables such as squeeze pressure, die preheating temperature, and melt temperature as per Full Factorial Design (FFD). …”
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  2. 1262
  3. 1263

    Effect of the Partial Substitution of Zn with Co, Ni, and Co-Ni on Microstructures and Mechanical Properties of Long-Period Stacking Ordered Dominant Mg-Y-Zn Alloys by Heng Xue, Jinbei Lyu, Fengxue Wang, Hongxin Liao, Jonghyun Kim, Fusheng Pan

    Published 2021-01-01
    “…The microstructures of Mg96Y2Zn2, Mg96Y2Zn1Co1, Mg96Y2Zn1Ni1, and Mg96Y2Zn1Co0.5Ni0.5 (at.%) alloys were investigated by XRD, SEM/EDS, and TEM. …”
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  4. 1264
  5. 1265

    Effect of environmental factors on the corrosion behavior of CoCrNi and CoCrFeMnNi alloys in 3.5 wt% NaCl solution by Ruizhen Xie, Yifan Wei, Kunjie Luo, Naiming Lin, Yuan Yu, Peng Cheng, Qunfeng Zeng

    Published 2025-03-01
    “…This study investigates the influence of environmental factors on the corrosion behavior of CoCrNi medium-entropy alloy (MEA) and CoCrFeMnNi high-entropy alloy (HEA) in a 3.5 wt% NaCl solution. …”
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  6. 1266

    Effect of cold rolling and annealing temperature to the characteristics of α + β' phases in Cu-29.5Zn-2.5Al alloy produced by gravity casting by Angela I., Basori I., Sofyan B.T.

    Published 2020-01-01
    “…Al-brass alloys (Cu29.5Zn2.5Al wt. %) were produced by gravity casting and homogenized at 800°C for 2 h, resulting in a binary phase morphology identified as cubic α and martensitic βʹ phases through X-ray diffraction (XRD). …”
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  7. 1267

    New anti-friction self-lubricating composite based on EP975 nickel alloy powder with CaF2 solid lubricant – Thermal and dilatometric behavior by Adam Kurzawa, Mateusz Stachowicz, Maciej Roszak, Tetiana Roik, Oleg Gavrysh, Iulia Maistrenko, Krzysztof Jamroziak, Mirosław Bocian, Grzegorz Lesiuk

    Published 2025-04-01
    “…Dilatometric phenomena, mechanical and antifriction properties of a new high-temperature composite based on powder nickel alloy EP975 with additives (4.0˗8.0)% CaF2 solid lubricant have been investigated. …”
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  8. 1268
  9. 1269

    Evaluation of near-threshold fatigue crack propagation in Ti-6Al-4V Alloy with harmonic structure created by Mechanical Milling and Spark Plasma Sintering by S. Kikuchi, T. Imai, H. Kubozono, Y. Nakai, A. Ueno, K. Ameyama

    Published 2015-09-01
    “…The aim of this study is to investigate the near-threshold fatigue crack propagation in Ti-6Al-4V alloy with harmonic structure. Ti-6Al-4V alloy powders were mechanically milled in a planetary ball mill to create fine grains at powder’s surface and the MM-processed powders were consolidated by SPS. …”
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  13. 1273

    Powder bed fusion electron beam of an oxygen-compatible β-Ti–35.5Nb–2Ta–3Zr alloy: Feasibility and material evaluation by Silja-Katharina Rittinghaus, Sri Bala Aditya Malladi, Marcus Willi Rackel, Daniel Borchert, Hamed Shokri, Karin Ratschbacher, Michael Budnitzki, Bilal Gökce, Eduard Hryha

    Published 2025-12-01
    “…Additive manufacturing (AM) by powder bed fusion electron beam (PBF-EB) is a state-of-the-art method for processing titanium-based alloys, especially due to the high inherent oxygen affinity of the material. …”
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  14. 1274
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  18. 1278

    Magnetic Phase Separation and Magnetic Moment Alignment in Ordered Alloys FE65Al35−xMx (Mx = Ga, B; x = 0; 5 at.%) by E. V. Voronina, A. K. Arzhnikov, A. I. Chumakov, N. I. Chistyakova, A. G. Ivanova, A. V. Pyataev, A. V. Korolev

    Published 2018-01-01
    “…It is shown that the addition of boron to the initial binary alloy Fe65Al35 results in the ferromagnetic behavior of the ternary alloy.…”
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