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細(xì)化變質(zhì)處理對鑄造A356鋁合金組織性能及共晶硅生長機(jī)制的影響
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淮陰工學(xué)院 機(jī)械與材料工程學(xué)院

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基金項目:

國家自然科學(xué)基金項目(No.51701079);淮陰工學(xué)院博士科研啟動經(jīng)費基金項目 (Z301B18558)


Effect of Refinement and Modification on Microstructure, Properties and Eutectic Silicon Growth Mechanism of Cast A356 Aluminum Alloy
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1.Faculty of Mechanical and Material Engineering,Huaiyin Institute of Technology,Huai’an 223003;2.China

Fund Project:

The National Natural Science Foundation of China (No.51701079);Doctoral Scientific Research Start-up Foundation from Huaiyin Institute of Technology, Jiangsu, China (Z301B18558)

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    摘要:

    研究了采用新型Al-5Ti-1B-1RE中間合金和Al-10Sr中間合金對A356鋁合金進(jìn)行單一或復(fù)合細(xì)化變質(zhì)處理后的組織、力學(xué)性能和共晶硅生長機(jī)制的影響。結(jié)果表明:單一細(xì)化變質(zhì)處理中Al-5Ti-1B-1RE中間合金對A356鋁合金中α-Al相有明顯的細(xì)化作用,合金的強(qiáng)度和維氏硬度顯著提高;Al-10Sr 中間合金對共晶硅有強(qiáng)的變質(zhì)作用,合金的伸長率明顯提高;而經(jīng)復(fù)合細(xì)化變質(zhì)處理后α-Al相形狀和尺寸變得更均勻細(xì)小,晶界更清晰,共晶硅相幾乎都轉(zhuǎn)變成更彌散、更細(xì)小的纖維狀,片層狀共晶硅也幾乎完全消失,共晶硅長度由鑄態(tài)40-60 μm降低到1-2 μm之間,達(dá)到完全變質(zhì)效果,其力學(xué)性能顯著高于鑄態(tài)、單一細(xì)化變質(zhì)劑處理的A356鋁合金。未細(xì)化變質(zhì)的A356鋁合金中的共晶Si的生長方式為典型的小平面臺階生長,復(fù)合細(xì)化變質(zhì)處理的共晶硅以孿晶凹槽機(jī)制生長為主,小平面生長特征逐漸減弱直至消失。

    Abstract:

    The microstructures, mechanical properties and eutectic silicon growth mechanism of A356 aluminum alloy treated by novel Al-5Ti-1B-1RE and Al-10Sr master alloy with individual or composite refinement and modification were studied. The results showed that under individual addition condition, the Al-5Ti-1B-1RE master alloy had a significant refinement effect on α-Al phase in A356 aluminum alloy and the tensile strength σb, yield strength σs and Vickers hardness of the alloy were significantly improved. Al-10Sr master alloy had a strong modification effect on eutectic silicon, and the elongation δ of the alloy was obviously improved. Under composite addition condition, the shape and size of α-Al phase in A356 aluminum alloy became more uniform and finer, and the grain boundaries were clearer. The eutectic silicon phases were almost converted into dispersed, fine fibrous shape, and the lamellar eutectic silicon almost completely disappeared. The length of the eutectic silicon was reduced from the as-cast state of 40-60 μm to 1-2 μm, achieving a complete modification effect. Its mechanical properties were much higher than those of the as-cast, any single refiner and modifier treated A356 aluminum alloy. The growth mode of eutectic Si in the unrefined and unmodified A356 aluminum alloy was typical small-plane step growth. The eutectic silicon with composite refinement and modification was mainly grown by the twin plane re-entrant edge mechanism, and the growth characteristics of the facet were gradually weakened until disappeared.

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王正軍,張秋陽,張滿,劉靜靜,呂建強(qiáng).細(xì)化變質(zhì)處理對鑄造A356鋁合金組織性能及共晶硅生長機(jī)制的影響[J].稀有金屬材料與工程,2020,49(8):2665~2673.[Wang Zheng-jun, Zhang Qiuyang, Zhang Man, Liu Jingjing, Lv Jian-qiang. Effect of Refinement and Modification on Microstructure, Properties and Eutectic Silicon Growth Mechanism of Cast A356 Aluminum Alloy[J]. Rare Metal Materials and Engineering,2020,49(8):2665~2673.]
DOI:10.12442/j. issn.1002-185X.20190506

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  • 收稿日期:2019-06-16
  • 最后修改日期:2019-07-16
  • 錄用日期:2019-07-24
  • 在線發(fā)布日期: 2020-09-27
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