首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A novel strengthening effect of in-situ nano Al(2)O(3)w on CNTs reinforced aluminum matrix nanocomposites and the matched strengthening mechanisms
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A novel strengthening effect of in-situ nano Al(2)O(3)w on CNTs reinforced aluminum matrix nanocomposites and the matched strengthening mechanisms

机译:原位纳米Al(2)O(3)W对CNTS增强铝基质基质复合材料的新型强化效果及匹配强化机制

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摘要

Nano alumina whiskers (Al(2)O(3)w) were in-situ synthesized in carbon nanotubes (CNTs) reinforced aluminum matrix nanocomposites (AMNCs) which were fabricated by flake powder metallurgy (P/M). To study the strengthening effect of nano Al(2)O(3)w on CNTs reinforced AMNCs and clarify the strengthening mechanisms, the microstructures and mechanical properties of AMNCs are investigated. It is found that CNTs-Al(2)O(3)w reinforcements have a significant hybrid strengthening effect on tensile strength due to their uniform dispersion and good interfacial bonding with Al matrix. The strengthening mechanisms of CNTs-Al(2)O(3)w reinforcements are considered as a sum of load transfer, grain refinement, thermal mismatch and Orowan looping theory. The experimental strengths of AMNCs containing 0.25 and 0.5 vol % CNTs are well matched with the theoretical values calculated by the strengthening mechanisms. And the differences between them are less than 2.9%, which is highly effective for predicting the mechanical properties of CNTs-Al(2)O(3)w reinforced AMNCs. The predicted values indicate that load transfer mechanism from both CNTs and Al(2)O(3)w is dominant, improving UTS of 0.5CNTs reinforced flake AMNCs (228 MPa) by more than 79.5% in comparison with pure Al. (C) 2018 Elsevier B.V. All rights reserved.
机译:纳米氧化铝晶须铝(Al(2)O(3)瓦特)为原位在碳纳米管合成(CNT)的增强铝基复合材料,其是由片状粉末冶金(P / M)制造的(AMNCs)。为了研究纳米Al的强化作用(2)O(3)瓦特上的CNT加强AMNCs和澄清强化机制,微结构和AMNCs的机械性质进行了研究。据发现,碳纳米管 - 铝(2)O(3)瓦特加强件具有显著混合加强抗拉强度效果,由于其均匀的分散和良好的界面粘合的Al基体中。的CNT-Al的强化机制(2)O(3)瓦特增强件被认为是负载转移,晶粒细化,热失配和奥罗万循环理论的总和。含0.25和0.5%(体积)的CNT AMNCs的实验强度非常符合由强化机制计算出的理论值匹配。以及它们之间的差异小于2.9%,这是用于预测的CNT-Al系的机械性能高度有效的(2)O(3)瓦特增强AMNCs。的预测值表示从两个碳纳米管和Al该载荷传递机构(2)O(3)W是占优势,0.5CNTs的改善增强UTS鳞片AMNCs(228兆帕)超过79.5%与纯Al比较。 (c)2018年elestvier b.v.保留所有权利。

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