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Dynamic Crystallization: An Influence on Degree of Prior Deformation and Mechanical Strength of 6063 Aluminum Alloy

机译:动态结晶:对6063铝合金先变形和机械强度的影响

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This research is aimed at investigating the influence dynamic solidification of melts on degree of mechanical deformation and mechanical strength of 6063 aluminum alloy. Cylindrical samples of 14mm diameter and 140mm long were die cast following two techniques – vibration and static. Prior deformation via forging was imposed on each solidified sample to achieve 7%, 14%, 21% and 28% thickness reductions respectively for each casting technique. Average deformation load, average hammer velocities and the average energy absorbed were recorded. Tensile properties of each sample were studied via the use of Monsanto tensometer. Mechanical agitation of mould and its content increased the machinability of the alloy even at higer pre deformation. This was justified by the failure of the 28% reduction sample cast on static floor during machining to a tensile piece. The energy absorbed during deformation influences the tensile strength of the material. This increases with increase in percentage deformation except for 28% reduction whose magnitude was lower than that subjected to 21% reduction; vibrated samples possessed superior properties. From results obtained, vibrating a sample and subjecting to 21% pre-deformation possessed the best tensile strength.
机译:本研究旨在研究熔体的动态凝固对6063铝合金机械变形程度和机械强度的影响。直径为14mm,长度为140mm的圆柱形样品是通过振动和静态两种技术压铸而成的。对于每种铸造技术,通过锻造将事先变形通过锻造施加到每个凝固的样品上,以分别实现7%,14%,21%和28%的厚度减小。记录平均变形载荷,平均锤速和平均吸收能量。通过使用孟山都张力计研究了每个样品的拉伸性能。模具的机械搅拌及其含量提高了合金的切削性能,即使在较高的预变形下也是如此。在机械加工成拉伸件的过程中,将28%的还原试样浇铸在静态地板上的失败是有道理的。变形过程中吸收的能量会影响材料的拉伸强度。随着变形百分比的增加,这种增加增加,除了减少幅度为28%的幅度低于经受21%减少的幅度;振动样品具有优越的性能。根据获得的结果,振动样品并进行21%的预变形具有最佳的拉伸强度。

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