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Effect of Manganese and Magnesium Content and Conditions of Annealing on Mechanical Properties and Cracking Formation during Bending of Aluminum Alloy AA3005

机译:铝合金AA3005弯曲过程中锰和镁含量与退火的影响及裂解形成

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The study reveals the effect of Mn and Mg content on mechanical and technological properties during the bending of thin sheets of aluminum alloy 3005. For experimental research the ingots were cast through an out-of-furnace refining unit, homogenized at a temperature of 590°C, during 6 hours. Further ingots were hot rolled to a thickness of 3.5 mm and subsequently cold rolled into sheets of thickness 0.33 and 0.25 mm. Annealing of rolls was provided at temperatures 230...285°C for 1.5 hour in air-circulation annealing furnaces with a protective atmosphere and on a continuous heat treatment line. The change in the tensile strength, yield stress, elongation as a dependence on the content of alloying elements and annealing modes was shown. Technological properties were evaluated by performing bend tests. It has been established that an increased content of magnesium and manganese in the AA3005 alloy results in lower values of the elongation for all annealing temperatures. Annealing in the air-circulation annealing furnaces resulted to higher plasticity values and lower values of strength compared to annealing at continuous heat treatment line for all annealing temperatures and magnesium and manganese temperatures. The plasticity of samples 0.25 mm thick raises evenly throughout the annealing temperature range. For specimens 0.33 mm thick, the effect of the magnesium and manganese content, as well as the type of heat-treatment equipment on the samples' plasticity during annealing is more pronounced than for samples 0.25 mm thick. In sheet samples from the AA3005 alloy annealed on continuous heat treatment line, with an increased content of magnesium and manganese, cracks are observed at the inflection point for both thicknesses. When annealing in air-circulation annealing furnaces, cracks are not observed for both increased and reduced magnesium and manganese content.
机译:该研究揭示了Mn和Mg含量在铝合金薄片3005弯曲过程中对机械和技术特性的影响。对于实验研究,铸锭通过炉子外层精炼装置浇铸,在590°的温度下均匀化C,在6小时内。将进一步的铸锭热轧制至厚度为3.5mm,随后冷轧成厚度0.33和0.25mm。在温度230 ...... 285℃下提供辊的退火1.5小时的空气循环退火炉,具有保护气氛和连续热处理线。拉伸强度,屈服应力,伸长作为对合金元素和退火模式含量的依赖性的变化。通过进行弯曲试验来评估技术性质。已经确定,AA3005合金中的镁和锰的含量增加导致所有退火温度的伸长率的较低值。在空气循环退火炉中的退火导致与在连续热处理线的退火相比,对于所有退火温度和镁和锰温度的退火,导致塑性值更高,而不是强度的值。样品的可塑性0.25mm厚度在整个退火温度范围内均匀升高。对于0.33mm厚的标本,镁和锰含量的效果以及样品在退火过程中的热处理设备的类型比0.25mm厚的样品更加明显。在来自AA3005合金的片样中,在连续热处理线上退火,随着镁和锰的含量增加,在两种厚度的拐点处观察到裂缝。当在空气循环退火炉中退火时,对于增加和降低的镁和锰含量,未观察到裂缝。

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