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Structural and mechanical features of rapidly solidified Al-2Fe-2Ni-5Mg alloy

机译:快速固化的Al-2Fe-2Ni-5Mg合金的结构和机械特征

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Rapid solidification (RS) of Al-2Fe-2Ni-5Mg alloy and following mechanical consolidation of powders by means of powder metallurgy (PM) methods was used with success to produce a bulk RS material. RS powders were manufactured using an inert gas atomizing of the molten alloy and the spray deposition on the rotating water-cooled copper roll. Rods of 7 mm in diameter were received by means of the cold pressing of the flakes, vacuum degassing and hot extrusion method. For comparison purposes, the conventionally casted and hot extruded Al-2Fe-2Ni-5Mg alloy was tested as well. Mechanical properties of as-extruded materials were examined at 293 K - 873 K by compression tests performed at constant true strain rate of 5-10~(-3) [s~(-1)]. It was found that relatively high strength of as-extruded RS/PM material was accompanied by the high ductility of the samples deformed by hot compression tests. It was noticed that the most effective solution strengthening due to particles refining was observed at low deformation temperatures. Rising the test temperatures above ~ 420 K, was found to result in reduction of the flow stress to the values received for the industrial material (IM).The formation of coarse primary intermetallic compounds, which is typical for IM material, was effectively reduced for RS material. However some inhomogeneity of fine precipitates distribution in RS/PM material was observed. Nevertheless, it was considered that both solid solution hardening due to Mg addition and the dispersion strengthening due to refining of intermetallic compounds substantially increase the mechanical properties of the RS/PM material.
机译:Al-2Fe-2Ni-5mg合金的快速凝固(RS)和通过粉末冶金(PM)方法使用粉末的机械固结后,使用成功产生散装RS材料。使用熔融合金的惰性气体雾化和旋转水冷铜辊上的喷涂沉积来制造RS粉末。通过冷压薄片,真空脱气和热挤出方法接收直径为7mm的杆。为了比较目的,还测试了常规浇铸和热挤出的Al-2Fe-2Ni-5Mg合金。通过以5-10〜(-3)的恒定真菌速率的压缩试验在293k-873k下检查用挤出材料的机械性能[S〜(-1)]。发现有挤出的RS / PM材料的相对高强度伴随着通过热压缩试验变形的样品的高延展性。注意到,在低变形温度下观察到由于颗粒精炼而强化的最有效的解决方案。发现〜420 k高于〜420k的测试温度,导致对工业材料(IM)接收的值的流量应力降低。有效地降低了IM材料典型的粗初级金属间化合物的形成RS材料。然而,观察到RS / PM材料中细沉淀物分布的一些不均匀性。然而,考虑到由于Mg加成引起的固体溶液硬化和由于金属间化合物的精炼而导致的分散性强化基本上增加了RS / PM材料的机械性能。

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