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Processing of Primary Silicon and Mg_2Si Reinforced Hybrid Functionally Graded Aluminum Composites by Centrifugal Casting

机译:离心铸造法加工初生硅和Mg_2Si增强杂化功能梯度铝复合材料

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摘要

In the present investigation, FGMs of mono-dispersed in-situ primary Si and their hybrids with Mg_2Si reinforcements have been fabricated by the centrifugal casting process using 390 commercial Al alloy. Hard primary silicon particles are formed during the solidification of the 390 alloy and Mg_2Si reinforcements are formed by the addition of varying amount of magnesium into the A390 aluminium alloy. Owing to the difference in density both primary silicon and Mg_2Si gets segregated towards the inner periphery during centrifugal casting. The size of the Mg_2Si in-situ reinforcement phase is relatively smaller and is distributed in the edges of primary silicon particles and also individually in the matrix. The in-situ Mg_2Si and primary silicon can significantly increase the hardness and strength of the inner periphery of the casting. Higher Mg contents have been observed to introduce significant porosity leading to poor castings. Addition of phosphorous to the melt has led to the modification and refinement of primary Si morphology and also helped in the reduction of shrinkage porosity. Maximum hardness of 167 BHN is observed towards the inner periphery of the 390Al-2.5%Mg added in-situ composite.
机译:在本研究中,已经通过使用390种商用铝合金的离心铸造工艺制备了单分散原位Si的FGM及其与Mg_2Si增强材料的杂化物。在390合金的凝固过程中会形成坚硬的初生硅颗粒,并通过向A390铝合金中添加不同量的镁来形成Mg_2Si增强材料。由于密度的差异,在离心铸造过程中,初级硅和Mg_2Si都朝着内周偏析。 Mg_2Si原位增强相的尺寸相对较小,并且分布在原生硅颗粒的边缘,并且也单独分布在基体中。原位Mg_2Si和原生硅可以显着提高铸件内周的硬度和强度。观察到较高的Mg含量会导致明显的孔隙率,导致铸件质量较差。向熔体中添加磷已导致对原始Si形态的修饰和细化,还有助于减少收缩孔隙率。在原位添加的390Al-2.5%Mg的内周边观察到最大硬度为167 BHN。

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