Effect of Trace Additions (Be, Cr, Mn and Co) on the Mechanical Properties and Fracture Toughness of Fe-containing Al-7Si-0.3Mg Alloy

S. Murali, K. S. Raman, K. Murthy
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引用次数: 30

Abstract

AbstractThe detrimental effect of iron impurity on the mechanical properties and fracture toughness of Al-7Si-0.3Mg alloy has been widely reported. It is also quite evident that Fe forms the intermetallic compound β-FeSiAl5, which exists as needles/plates in the interdendritic regions, thereby lowering the mechanical properties. However, very little is known about the methods of counteracting this detrimental effect. The present study has shown that trace additions of Be, Cr, Mn and Co, individually or combined, tie up the iron to form new phases with altered morphology which significantly influence the mechanical properties. Among the trace additions, Be is found to be most effective in neutralising the detrimental effect of Fe on tensile properties. Hardness, tensile and yield strengths, ductility, dynamic fracture toughness (Kd and, Kjd remain constant with an increase in Fe from 0.1 to 0.93% where Be additions are present. Be additions in combination with Mn and/or Cr are also found to nullify the det...
微量添加物Be、Cr、Mn和Co对含铁Al-7Si-0.3Mg合金力学性能和断裂韧性的影响
摘要铁杂质对Al-7Si-0.3Mg合金力学性能和断裂韧性的不利影响已被广泛报道。铁在枝晶间形成金属间化合物β-FeSiAl5,以针状/片状形式存在于枝晶间,从而降低了材料的力学性能。然而,人们对抵消这种有害影响的方法知之甚少。目前的研究表明,微量的Be、Cr、Mn和Co的添加,单独或联合,使铁结合形成新的相,改变了形貌,显著影响了力学性能。在微量添加物中,发现Be能最有效地中和铁对拉伸性能的不利影响。当添加Be时,当Fe含量从0.1增加到0.93%时,硬度、抗拉强度和屈服强度、延展性、动态断裂韧性(Kd和Kjd)保持不变。与Mn和/或Cr一起添加也被发现可以使det无效。
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