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Effect of Cooling Conditions on Mechanical and Microstructural Behaviours of Friction Stir Processed AZ31B Mg Alloy

机译:冷却条件对摩擦搅拌加工AZ31B镁合金机械和微观结构行为的影响

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Friction stir processing (FSP) is an important microstructural alteration process used recently in the engineering field. Grains alteration and hence the mechanical properties of the possessed zone are controlled by the temperature, heating and cooling rate. In this work, AZ31B magnesium samples were friction stir processed in three different cooling conditions like air, water and cryogenic (liquid nitrogen) cooling. 1000 rpm and 60 mm/min were kept constant as tool rotation speed and traverse speed respectively in all the three mediums. The consequence of these conditions on thermal fields, axial force, resulting grain structure and mechanical properties? style="font-family:Verdana;">was style="font-family:Verdana;">?studied. It is found that the cryogenic treated friction stir processed samples exhibit fine grain structures and hence offer better mechanical properties than the air and water cooled processed samples.
机译:摩擦搅拌加工(FSP)是最近在工程领域中使用的重要组织改变过程。晶粒改变并因此通过温度,加热和冷却速度来控制所占区域的机械性能。在这项工作中,AZ31B镁样品在具有空气,水和低温(液氮)冷却等三种不同的冷却条件下加工摩擦搅拌搅拌。在所有三种介质中分别保持1000 rpm和60 mm / min作为刀具转速和横向速度。这些条件对热场,轴向力,产生的晶粒结构和机械性能的结果? style =“font-family:verdana;”>是 style =“font-family: Verdana;“>?学习。结果发现,低温处理的摩擦搅拌加工样品表现出细粒结构,因此提供比空气和水冷加工样品更好的机械性能。

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