Influence of Ti, Sr and B additions on the fluidity of A356.2 aluminium alloy

IF 0.6 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING Russian Journal of Non-Ferrous Metals Pub Date : 2022-08-19 DOI:10.17073/0022-3438-2021-4-55-66
V. Bazhenov, I. I. Baranov, A. Titov, A. Sannikov, D. Y. Ozherelkov, A. A. Lyskovich, A. Koltygin, V. Belov
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Abstract

Nowadays, aluminum alloys with silicon are the most widespread construction materials. To increase the mechanical properties of aluminum alloys, modifying by Sr, Ti, and B are used. However, in the foundries, when using scrap and secondary aluminum alloys, the modifying elements are accumulated in alloys in the form of intermetallic particles that decrease castability. This is because of the modifiers have a short time effect and are not activated when remelting. Hence it is necessary to add the modifiers without reference to intermetallic particles that are exactly presented in the melt. This work investigated the effect of Sr, Ti, and B additions on A356.2 aluminum alloy fluidity obtained by vacuum fluidity test. It was shown that when AlSr10 and AlTi5B1 commercial master alloys are used (up to 0.3 wt.% Sr and 0.5 wt.%Ti), no fluidity decrease is observed. However, adding the same quantity of Ti with the homemade AlTi4 master alloy leads to a considerable fluidity decrease. With the help of scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS), the microstructure and phase composition of master alloys and A356.2 alloy after the addition of mentioned master alloys were investigated. Additionally, Thermo- Calc software evaluated the influence of modifier additions on alloy phase composition and phase transition temperatures. It was established that the influence of the modifier additions on the fluidity of the A356.2 alloy is connected with the shape and size of crystals that contained modifier elements in the structure of the master alloy. When the coarse crystals of that phases are present, these crystals’ incomplete dissolution is possible, inhibiting the free melt flow.
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Ti、Sr和B添加量对A356.2铝合金流动性的影响
如今,含硅铝合金是最广泛使用的建筑材料。为了提高铝合金的力学性能,采用Sr、Ti和B改性。然而,在铸造厂中,当使用废铝合金和二次铝合金时,改性元素以金属间颗粒的形式积聚在合金中,从而降低浇注性。这是因为改性剂的作用时间短,重熔时不激活。因此,有必要添加改进剂,而不必考虑熔体中确切存在的金属间颗粒。研究了Sr、Ti和B的添加量对真空流动度试验得到的A356.2铝合金流动度的影响。结果表明,当使用AlSr10和AlTi5B1商用母合金(Sr和Ti分别达到0.3 wt.%和0.5 wt.%)时,没有观察到流动性的降低。然而,在自制的AlTi4中间合金中加入等量的Ti会导致流动性明显下降。利用扫描电镜(SEM)和能谱仪(EDS)研究了添加中间合金后中间合金和A356.2合金的显微组织和相组成。此外,Thermo- Calc软件评估了添加改性剂对合金相组成和相变温度的影响。结果表明,改性剂添加量对A356.2合金流动性的影响与基体中含有改性剂元素的晶体的形状和大小有关。当这些相的粗晶存在时,这些晶体的不完全溶解是可能的,从而抑制了熔体的自由流动。
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来源期刊
Russian Journal of Non-Ferrous Metals
Russian Journal of Non-Ferrous Metals METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.90
自引率
12.50%
发文量
59
审稿时长
3 months
期刊介绍: Russian Journal of Non-Ferrous Metals is a journal the main goal of which is to achieve new knowledge in the following topics: extraction metallurgy, hydro- and pirometallurgy, casting, plastic deformation, metallography and heat treatment, powder metallurgy and composites, self-propagating high-temperature synthesis, surface engineering and advanced protected coatings, environments, and energy capacity in non-ferrous metallurgy.
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