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Titlebook: An Overview of High-energy Ball Milled Nanocrystalline Aluminum Alloys; Rajeev Kumar Gupta,B. S. Murty,Nick Birbilis Book 2017 The Author(

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發(fā)表于 2025-3-21 18:32:21 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱An Overview of High-energy Ball Milled Nanocrystalline Aluminum Alloys
影響因子2023Rajeev Kumar Gupta,B. S. Murty,Nick Birbilis
視頻videohttp://file.papertrans.cn/156/155698/155698.mp4
發(fā)行地址Offers a comprehensive overview of nanocrystalline Al based alloys as prepared using high-energy ball milling (HEBM).Provides guidelines for choosing appropriate HEBM parameters for the production of
學(xué)科分類SpringerBriefs in Materials
圖書封面Titlebook: An Overview of High-energy Ball Milled Nanocrystalline Aluminum Alloys;  Rajeev Kumar Gupta,B. S. Murty,Nick Birbilis Book 2017 The Author(
影響因子.This book presents a comprehensive overview of the nanocrystalline Al based alloys as prepared using high-energy ball milling (HEBM). It discusses the influence of HEBM parameters on grain refinement and examines methods for the consolidation of nanocrystalline Al powders; further, it reviews the effects of various processing parameters on the final microstructure and the impact of microstructure on corrosion and mechanical properties. The book also provides guidelines for choosing appropriate HEBM parameters for the production of nanocrystalline Al powders and methods for consolidating them in net-shaped components. Future challenges and possible applications of high-energy ball milled Al alloys are also discussed. The book is intended for researchers and professionals interested in aluminium alloy development, manufacturing technologies, light metals and nanocrystalline metallic materials..
Pindex Book 2017
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High-Energy Ball Milling Parameters in Production of Nanocrystalline Al Alloys,r processing technique involving the repeated deformation, fracture and welding of powder particles [1–4]. This technique was originally developed to produce oxide-dispersion strengthened (ODS) nickel and iron-base superalloys for aerospace applications [5]. Later, MA has been substantiated to be ca
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Thermal Stability of High-Energy Ball Milled Al Alloys,inement to the nanoscale level, this results in a thermodynamically metastable system. Such a metastable system can be prone to grain growth and decomposition of the solid solution, with elevated temperature exposure, or in the timed dependent the pursuit of thermodynamically stable phases [1, 2]. T
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Corrosion Behaviour of High-Energy Ball Milled Nanocrystalline Al Alloys,akdown of the passive film caused by several metallurgical (defects, impurities, secondary phases etc.) and environmental (halide ions, high or low pH, temperature) factors leads to the significant localized corrosion [9–17]. The corrosion of Al is escalated by the presence of intermetallics, which
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Future Work and Possible Applications of Nanocrystalline Al Alloys as Produced by High-Energy Ball of alloying elements. For example, the compressive yield strength of 1200 and 1105?MPa was observed in Al-Fe [1] Al-Cr alloys [2], both prepared via HEBM followed by consolidation. The specific compressive yield strength of an Al-20Cr alloy was compared with that of the commercial alloys and high-en
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