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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effect of Al-P-Ti-TiC-Nd_2O_3 modifier on the microstructure and mechanical properties of hypereutectic Al-20 wt.%Si alloy
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Effect of Al-P-Ti-TiC-Nd_2O_3 modifier on the microstructure and mechanical properties of hypereutectic Al-20 wt.%Si alloy

机译:Al-P-Ti-TiC-Nd_2O_3改性剂对过共晶Al-20 wt%Si合金的组织和力学性能的影响

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摘要

The effect of Al-P-Ti-TiC-Nd_2O_3 modifier on the microstructure and mechanical properties of hypereutectic Al-20 wt.%Si alloy has been investigated. It has been concluded that Nd_2O_3 in Al-P-Ti-TiC-Nd_2O_3 modifier can modify primary silicon in hypereutectic Al-Si alloys. Statistical analysis shows that primary silicon size (approximately average 38 μm) in modified Al-20 wt.%Si alloy with Al-P-Ti-TiC modifier is larger than that (approximately average 20 μm) in modified Al-20 wt.%Si alloy with Al-P-Ti-TiC-Nd_2O_3 modifier. Compared with primary silicon modified with Al-P-Ti-TiC modifier, Primary silicon modified with Al-P-Ti-TiC-Nd_2O_3 modifier has the smaller size at different holding times such as 10, 60 and 120 min. The internal defects in coarser primary silicon particles play an important role in determining the tensile strength and elongation of the materials. Coarser primary silicon particles in unmodified Al-Si alloys can degrade the loading bearing capacity of the materials. Modification can eliminate the internal defects to a great extent and improve the tensile strength and elongation of hypereutectic Al-Si alloys. Compared with unmodified and heat-treated Al-20 wt.%Si alloy, the tensile strength of the modified with Al-P-Ti-TiC-Nd_2O_3 modifier and heat-treated Al-20 wt.%Si alloy increases by 20%.
机译:研究了Al-P-Ti-TiC-Nd_2O_3改性剂对过共晶Al-20 wt%Si合金的组织和力学性能的影响。已经得出结论,Al-P-Ti-TiC-Nd_2O_3改性剂中的Nd_2O_3可以改性过共晶Al-Si合金中的原生硅。统计分析表明,具有Al-P-Ti-TiC改性剂的改性Al-20 wt。%Si合金中的初生硅尺寸(平均约38μm)大于改性Al-20%(wt。%)中的初硅尺寸(约平均20μm)具有Al-P-Ti-TiC-Nd_2O_3改性剂的Si合金。与用Al-P-Ti-TiC改性剂改性的原生硅相比,用Al-P-Ti-TiC-Nd_2O_3改性剂改性的原生硅在不同的保温时间(如10、60和120分钟)具有较小的尺寸。较粗的初级硅颗粒中的内部缺陷在确定材料的拉伸强度和伸长率方面起着重要作用。未改性的Al-Si合金中的粗初级硅颗粒会降低材料的承载能力。改性可以在很大程度上消除内部缺陷,并改善过共晶Al-Si合金的拉伸强度和伸长率。与未经改性和热处理的Al-20 wt%Si合金相比,经Al-P-Ti-TiC-Nd_2O_3改性剂和经过热处理的Al-20 wt%Si合金进行改性的拉伸强度提高了20%。

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