工业用ecap固结铝合金

A. Pramono, A. Milandia, K. Nugraha, M. Fawaid
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引用次数: 9

摘要

粉末冶金工业应用中一个重要的影响因素是固结过程,在具有良好参数的制备过程中,通过提高表面的结合强度来减少气孔的数量。特别是,严重塑性变形(SPD)的方法克服了与凝固样品中残余孔隙率相关的许多困难。经ECAP加工的超细晶(UFG)材料通常具有独特的力学性能,如;低应变硬化时屈服应力高,低温时延展性好,高温时应变速率超塑性高。铝合金的生产增长迅速,特别是在汽车工业。虽然含有Mg和Si的高强度铝合金(6xxx系列铝合金)很容易达到,但对于成形性工艺还不足以应用。因此,许多研究都集中在通过热处理提高这些合金的成形性上。以AA7XXX合金为代表的高强度铝合金,以其高密度比的力量与优异的机械性能相结合,广泛应用于航空、超塑性成形、汽车零部件的大批量制造等领域。目前消费品行业由于应变率相对较低而受到限制。AA6XXX是其中的一些合金材料,目前主要用于覆盖整个工业范围。应用AA6XXX比AA7XXX更容易加工,因为材料具有弹性,AA7XXX容易由于微偏析而形成内部裂纹。这种方式需要热处理,以改善材料的性能,当它是由ECAP处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ALUMINUM ALLOYS BY ECAP CONSOLIDATION FOR INDUSTRIAL APPLICATION
A ffecting factor of importance in industrial applications of Powder Metallurgy is a process of consolidation , t he fabrication process with the good parameters by increasing of the bond strength o n the surface to reduce the number of pores. In particular, methods of Severe Plastic Deformation (SPD) overcoming a number of difficulties associated with residual porosity in the sample which solidified. Ultrafine–Grained (UFG) materials processed by ECAP usually show unique mechanical properties such as; high yield stress at low strain hardening, good ductility on low temperatures and high strain-rate super-plasticity at high temperatures. Production of Al alloy growing rapidly, particularly in the automotive industry . Although high-strength aluminium alloys containing Mg and Si (6xxx series aluminium alloys) which are easily reached, for formability processes is not sufficient to be applied. Therefore, much research has focused on increasing the formability of these alloys through heat treatment. High strength aluminium alloy, such as alloy AA7XXX, which combines the power of high-density ratio with excellent mechanical properties, is widely used for aviation applications, superplastic forming into the high-volume fabrication of components in the automotive. Consumer products industry is currently limited because of the relatively low strain rate. AA6XXX are some of the alloys materials, mostly used currently covering the whole range of industry. Applications of AA6XXX easier to process than AA7XXX because of properties the material elasticity, AA7XXX tend to form internal cracks as a result of microsegregation. That way heat treatment is required to improve the properties of the material when it is processed by ECAP.
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