首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Effect of Sr–Grain Refiner–Si Interactions on the Microstructure Characteristics of Al–Si Hypereutectic Alloys
【24h】

Effect of Sr–Grain Refiner–Si Interactions on the Microstructure Characteristics of Al–Si Hypereutectic Alloys

机译:SR晶粒晶体 - Si相互作用对Al-Si过度晶体合金微观结构特性的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Abstract The present study is part of a larger study where the effectiveness of different types of grain refiners in strontium-modified hypoeutectic alloys was evaluated. Silicon was shown to affect the mechanism of nucleation of α-aluminum. To explore this phenomenon, an investigation was carried out on hypereutectic A390.1 alloy containing 17.3%Si to establish the role of primary silicon crystallization on subsequent α-aluminum and silicon eutectic reactions with different grain refiner additions. The alloy was modified with 0.02%Sr as before, and the same three-grain refiners: Al–10%Ti, Al–5%Ti–1%B, and Al–4%B master alloys, were used at controlled addition levels. The liquid metal was held at 750?°C for periods up to 120?min during which the molten metal was continuously stirred. The results show that addition of 0.1%Ti (using Al–10%Ti) to A390.1 alloy modified with 0.02%Sr results in reducing the initial grain size by about 20% only, due to transformation of Al~(3)Ti phase to (Al,Si)~(2)Ti phase which is a poor grain refiner. The stability of the (Al,Si)~(2)Ti phase increases with the increase in the alloy Si content. The formation of (Al,Si)~(2)Ti also reduces the undercooling caused by Sr addition, reducing the degree of morphology modification. Additionally, boron has a strong affinity to react with Sr, forming the compound SrB~(6), resulting in no grain refining or “poisoning,” regardless of the added amount of B or the holding time. Combined addition of Sr and B, however, improves the modification of the eutectic Si. In general, due to the high Si content of A390.1 alloy, it is difficult to achieve an appreciable degree of grain refining.
机译:摘要本研究是评估不同类型晶粒精炼机在锶改性的低分解合金中的较大研究的一部分。显示硅会影响α-铝的成核机理。为了探讨这种现象,在含有17.3%Si的过度化A390.1合金上进行研究,以确定初级硅结晶对随后的α-铝和硅共晶反应的作用,不同的晶粒脱果加入。用以前的0.02%Sr改性合金,并采用相同的三粒炼油机:Al-10%Ti,Al-5%Ti-1%B和Al-4%B master合金,以受控添加水平使用。将液态金属保持在750Ω℃,在最多120℃的时间内连续搅拌熔融金属。结果表明,由于Al〜(3)Ti的转化,加入0.1%Ti(使用Al-10%Ti)至A390.1合金,仅导致初始粒度降低约20%阶段至(Al,Si)〜(2)Ti相是贫瘠的晶粒炼油厂。 (Al,Si)〜(2)Ti相的稳定性随着合金Si含量的增加而增加。 (Al,Si)〜(2)Ti的形成也降低了由SR添加引起的过冷,降低了形态学改性程度。另外,硼具有与Sr反应的强烈亲和力,形成化合物SRB〜(6),导致无晶粒精制或“中毒”,无论添加量的B或保持时间。然而,Sr和B的组合添加改善了共晶Si的修饰。通常,由于A390.1合金的高Si含量,难以达到明显的晶粒精炼度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号