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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Grain refinement limit and mechanical properties of 6063 alloy inoculated by Al-Ti-C (B) master alloys
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Grain refinement limit and mechanical properties of 6063 alloy inoculated by Al-Ti-C (B) master alloys

机译:Al-Ti-C(B)中间合金接种的6063合金的晶粒细化极限和力学性能

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摘要

The grain refinement limit of 6063 alloy inoculated by Al-5Ti-0.25C and Al-5Ti-lB master alloys and the impact of grain size on the mechanical properties, including the tensile strength and hardness, are investigated in the present article. It is revealed that the smallest average grain size of 6063 alloys refined by these two master alloys is the same under the present experimental condition, thus the grain refinement limit of 6063 alloy is 40 μm. However, the limit addition of the two master alloys corresponding to the grain refinement varies at 2.0 wt.% and 3.0 wt.% for Al-5Ti-0.25C and Al-5Ti-lB, respectively, and the grain refining performance of the former is much better than that of the later one before reaching the refinement limit. Furthermore, the mechanical properties of 6063 alloy are also improved first with the grain refinement, but turn to decrease after the same 1.5 wt.% addition both for Al-5Ti-0.25C and Al-5Ti-1B. The highest ultimate tensile strength (UTS) and hardness (HB) of 6063 alloy obtained by the refinement of Al-5Ti-0.25C and Al-5Ti-lB are 271 MPa, 81.7 and 250 MPa, 80, respectively. Thus the UTS and hardness of 6063 alloy refined by the former master alloy are also much higher than those refined by the later one. It is worthy to note that the 6063 alloys with the smallest average grain size did not behave the highest mechanical properties and the possible mechanisms are also discussed.
机译:本文研究了Al-5Ti-0.25C和Al-5Ti-1B中间合金接种的6063合金的晶粒细化极限,以及晶粒尺寸对机械性能(包括拉伸强度和硬度)的影响。结果表明,在目前的实验条件下,这两种中间合金精炼的6063合金的最小平均晶粒尺寸相同,因此6063合金的晶粒细化极限为40μm。然而,对应于晶粒细化的两种中间合金的极限添加量对于Al-5Ti-0.25C和Al-5Ti-1B分别为2.0wt。%和3.0wt。%,并且前者的晶粒细化性能比达到精简上限之前的版本要好得多。此外,6063合金的机械性能也首先通过细化晶粒而得到改善,但是对于Al-5Ti-0.25C和Al-5Ti-1B,在相同的1.5wt。%的添加后,其力学性能却下降。通过细化Al-5Ti-0.25C和Al-5Ti-1B获得的6063合金的最高极限抗拉强度(UTS)和硬度(HB)分别为271 MPa,81.7和250 MPa,80。因此,前一种中间合金精制的6063合金的UTS和硬度也比后一种中间合金精制的UTS和硬度高得多。值得注意的是,具有最小平均晶粒度的6063合金没有表现出最高的机械性能,并且还讨论了可能的机理。

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