Effect of Boron on Electrical and Thermal Conductivities of Aluminum

Min-kyung Park, J. Cho, Seong-Hee Lee, C. Kim
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引用次数: 2

Abstract

Aluminum has been used as an alternative material for copper, due to its good electrical and thermal conductivities. However, small quantities of transition elements such as Ti and V affect the conductivities of aluminum. Therefore, in this study, the influence of B addition to reduce the effects of Ti and V on the conductivities of aluminum was investigated. Both the electrical and thermal conductivities of aluminum were improved with addition of B up to 0.05 wt%, while the conductivities were gradually reduced with an excess amount of B. SEM-EDS and XRD results exhibited that B reacted with Ti and V element to form diborides, such as TiB 2 and VB 2 phase, and those diborides tended to settle down to the bottom of the crucible because their densities were higher than that of aluminum melt. As a result, B reduced the deleterious effects of Ti and V, and the electrical and thermal conductivities of aluminum were improved.
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硼对铝导电、导热性能的影响
由于铝具有良好的导电性和导热性,它已被用作铜的替代品。然而,少量的过渡元素如Ti和V会影响铝的电导率。因此,在本研究中,研究了添加B来降低Ti和V对铝电导率的影响。当B的添加量达到0.05 wt%时,铝的电导率和导热系数都有所提高,而B的添加量过多时,铝的电导率逐渐降低,SEM-EDS和XRD结果表明,B与Ti和V元素反应形成tib2和VB相二硼化物,并且由于其密度高于铝熔体,这些二硼化物倾向于沉降到坩埚底部。结果表明,B降低了Ti和V的有害影响,提高了铝的导电性和导热性。
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