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Microstructure and Mechanical Properties of Ultra-Fine Grain AZ80 Alloy Processed by Back Pressure Equal Channel Angular Pressing

机译:背压等通道角压制超细晶AZ80合金的组织与力学性能。

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Experiments were conducted on AZ80 magnesium alloy by using a procedure of back pressure equal-channel angular pressing (BP-ECAP) in order to achieve submicron grain size. Microstructure was effectively refined by BP-ECAP. The gain size was found around 100~ 500 nm after 4 passes using both route A and route Bc at pressing temperatures of 200℃ and 150 ℃. The grain size was much finer in comparison with the same alloy but received conventional procedure of ECAP without back pressure, which maintains around 2~ 3 μm after 8 passes at relatively high temperatures. Compression test results showed the yield strength increased with increasing applied pass. In addition, the samples processed using route A had a increasing of yield strength more obvious than that in samples processed using route Bc. The highest yield strength from the sample pressed by route A at 150 ℃ was more than twice of the yield strength in the solution-treated and forged condition.
机译:为了达到亚微米级的晶粒尺寸,使用背压等通道角挤压(BP-ECAP)程序对AZ80镁合金进行了实验。 BP-ECAP有效地改善了微结构。在200℃和150℃的加压温度下,使用路径A和路径Bc经过4次扫描后,发现增益大小在100〜500 nm左右。与相同的合金相比,晶粒尺寸要小得多,但是采用了无背压的ECAP常规程序,在相对高温下经过8次后,其保持在2〜3μm左右。压缩测试结果表明,屈服强度随施加的道次增加而增加。此外,使用路线A处理的样品的屈服强度的增加比使用路线Bc处理的样品的屈服强度的增加更为明显。在150℃下,通过路径A压制的样品的最高屈服强度是固溶和锻造条件下屈服强度的两倍以上。

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