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Assessment of cold deformation effects on yield-to-tensile ratio and dimensional stability of an aluminium alloy extruded tube

机译:评估冷变形对铝合金挤压管屈强比和尺寸稳定性的影响

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This study was carried out to assess the effects of cold deformation on the dimensional stability and yield to tensile ratio in AA6061-T6X aluminium alloy. Dimensional changes observed after the machining are mostly related to metal forming operations such as extrusion or forging and solution heat treatment processes. These processes generate severe stresses inside the material which causes machining distortions and the final component fails to meet dimensional tolerance limits. Investigations were made on as-extruded pipe of AA6061 aluminium alloy having outer diameter ~135 mm and wall thickness of 30 mm. The specimens were cold deformed via sinking and or stretching process in different combinations before and after the solution heat treatment. Finally, the pipes were artificially aged at 160 °C to get T6X tempers. All the specimens were tested for mechanical properties and machined to check the dimensional stability. The results showed that the degree of cold deformation after the solution heat treatment has substantial effects on dimensional stability and yield-to-tensile ratio of the alloy. Furthermore, it was observed that variation in the hardness values across the complete length of the pipe got minimized when the cold working was done in two steps, before and after the solution heat treatment.
机译:本研究旨在评估冷变形对AA6061-T6X铝合金尺寸稳定性和屈服拉伸比的影响。机加工后观察到的尺寸变化主要与金属成形操作有关,例如挤压或锻造以及固溶热处理工艺。这些过程会在材料内部产生严重的应力,从而导致加工变形,并且最终零件无法达到尺寸公差极限。研究了外径约为135毫米,壁厚为30毫米的AA6061铝合金挤压管。在固溶热处理之前和之后,通过下沉和/或拉伸过程以不同的组合将样品冷变形。最后,将管道在160°C下进行人工时效以达到T6X回火。测试所有样品的机械性能,并进行机加工以检查尺寸稳定性。结果表明,固溶热处理后的冷变形程度对合金的尺寸稳定性和屈服拉伸比有很大影响。此外,观察到,在固溶热处理之前和之后的两个步骤中进行冷加工时,在整个管的整个长度上的硬度值的变化被最小化。

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