首页> 外文会议>THERMEC 2011;International conference on processing manufacturing of advanced materials >Fine And Ultra-Fine Grained AZ61 And AZ91 Magnesium Alloys Obtained By Friction Stir Processing
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Fine And Ultra-Fine Grained AZ61 And AZ91 Magnesium Alloys Obtained By Friction Stir Processing

机译:搅拌摩擦加工获得的超细晶粒AZ61和AZ91镁合金

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Friction Stir Processing (FSP) has attracted much interest as a tool for refining grain size and achieving high angle boundary misorientation in magnesium alloys. These characteristics have a great influence in key engineered properties such as strength and ductility, which could be markedly improved by means of this technique. The main objective of this work is to study the microstructural modifications produced when FSP is applied to homogenized cast AZ91 and wrought AZ61 magnesium alloys. Several attempts were made for achieving a homogenous microstructure without defects and enhancing the refinement of the grain size in the stir zone. It was revealed that is of great importance to break the initial microstructure, of coarse grains unfavourably oriented for deformation, in order to facilitate the process, particularly in the case of cast AZ91 alloy. It is highlighted that, after breaking up the initial microstructure, is possible to process the material, in subsequent passes, Furthermore, the use of different backing materials as heat sink and a previous heating treatment of the sample were evaluated. Changing the backing plate can improve more the reduction of the grain size during a second pass. Using a copper plate instead of a steel one can promote a refinement up to 700 nm in AZ91 and 1 μm in AZ61. A coolant agent can be used for inhibiting the grain growth causing a little more reduction of the grain size.
机译:搅拌摩擦加工(FSP)作为一种细化晶粒尺寸并实现镁合金大角度边界取向不良的工具引起了人们的极大兴趣。这些特性对关键工程特性(例如强度和延展性)有很大影响,可以通过此技术显着改善这些特性。这项工作的主要目的是研究将FSP应用于均质铸造AZ91和变形AZ61镁合金时产生的微观结构变化。为了获得均匀的无缺陷的微观结构并增强搅拌区晶粒尺寸的细微尝试。揭示了对于破坏不利于变形的粗晶粒的初始微观结构,以促进该过程,特别是在铸造AZ91合金的情况下,非常重要。要强调的是,在破坏了初始的微观结构之后,可以在随后的加工中对材料进行处理。此外,还评估了使用不同的背衬材料作为散热片以及样品的先前热处理。更换背板可以在第二道工序中进一步改善晶粒尺寸的减小。使用铜板代替钢可以促进AZ91的精细化至700 nm和AZ61的精细化至1μm。可以使用冷却剂来抑制晶粒长大,从而导致晶粒尺寸的减小。

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