Search Results - "SAESSI, Matin"
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In Situ Formation of Titanium Diboride in A356/B4C + TiB2 Hybrid Composite: Evaluation of Microstructure, Mechanical Properties, and Wear Behavior
Published in Transactions of the Indian Institute of Metals (2022)“…In this study, the effect of adding titanium diboride (TiB 2 ) to A356-B 4 C composite via the in situ method on the mechanical and wear properties has been…”
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The Influence of Adding Coarse Grain Phase on the Tribo-Wear Characteristics and Mechanical Properties of Ultra-Fine Grained Al-2Cu-B4C Trimodal Composite at Room Temperature
Published in Transactions of the Indian Institute of Metals (01-07-2020)“…In this paper, it is intended to analyze the influence of coarse grain (CG) phase on mechanical properties and wear performance of Al–2Cu-4 wt% B 4 C trimodal…”
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On the Analysis of High-Temperature Mechanical Properties and Dry Sliding Tribological Behavior of Ultra-Fine Grained Boron Carbide-Reinforced Al5083-Based Trimodal Composites
Published in Journal of bio- and tribo-corrosion (2020)“…Numerous research studies have been done on ultra-fine grained (UFG) aluminum and aluminum-based composites materials due to their higher tensile strength in…”
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Wear behavior and dry sliding tribological properties of ultra-fine grained Al5083 alloy and boron carbide-reinforced Al5083-based composite at room and elevated temperatures
Published in Transactions of Nonferrous Metals Society of China (01-01-2021)“…Tribological behavior and wear mechanisms of mechanically milled Al5083 alloy and Al5083−5wt.%B4C composite at room temperature and 200 °C were discussed…”
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On the analysis of fracture mechanisms and mechanical behavior of AA5083-based tri-modal composites reinforced with 5 wt.%B4C and toughened by AA5083 and AA2024 coarse grain phases
Published in Advanced powder technology : the international journal of the Society of Powder Technology, Japan (01-09-2019)“…[Display omitted] •AA5083-5 wt.%B4C tri-modal composites with AA2024 and AA5083 coarse grains produced.•Mechanical properties and failure modes of the…”
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超细晶Al5083合金和碳化硼增强Al5083基复合材料的室温和高温干滑动摩擦磨损行为
Published in 中国有色金属学报(英文版) (2021)“…讨论机械球磨Al5083合金和Al5083?5wt.%B4C复合材料在室温和200°C下的摩擦行为和磨损机制.结果表明,由于常温下的氧化磨损,形成可保护试样表面的机械混合层.在室温和80…”
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