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首页> 外文期刊>Acta Physica Polonica >On the Effect of the Extrusion Speed on Microstructure and Plastic Deformation of ZE10 and ZEK100 Magnesium Alloys - an Acoustic Emission Study
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On the Effect of the Extrusion Speed on Microstructure and Plastic Deformation of ZE10 and ZEK100 Magnesium Alloys - an Acoustic Emission Study

机译:挤压速度对ZE10和ZEK100镁合金组织和塑性变形的影响-声发射研究

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摘要

Mg-Zn-based alloys ZE10 and ZEK100 have been extruded at different speeds varying from 1 m/min to 20 m/min. Specimens taken in the extrusion direction were uniaxially loaded in tension and compression at room temperature. The results are discussed using concurrent acoustic emission monitoring during mechanical testing and the acoustic emission signal analysis that correlates the microstructure and the stress-strain curves to the possible deformation mechanisms. In all tests, the acoustic emission response exhibited a large acoustic emission peak at the beginning of plastic deformation. A small local maximum on the onset of the acoustic emission activity was frequently observed, i.e. at very low stresses. For the alloys with bimodal grain structure tested in compression, an additional acoustic emission peak appeared at larger strains. This peculiar behavior can be explained by interplay of (10-12)-twinning and dislocation slip in samples with various grain size distributions.
机译:以1 m / min至20 m / min的不同速度挤压Mg-Zn基合金ZE10和ZEK100。在室温下,沿拉伸方向和压缩方向单向加载沿挤出方向采集的样品。通过在机械测试过程中同时进行声发射监测和声发射信号分析(将微观结构和应力-应变曲线与可能的变形机理相关联)来讨论结果。在所有测试中,声发射响应在塑性变形开始时均表现出较大的声发射峰。经常在声发射活动开始时观察到小的局部最大值,即在非常低的应力下。对于经过压缩测试的具有双峰晶粒结构的合金,在较大应变下会出现一个附加的声发射峰。这种特殊的行为可以通过具有各种晶粒尺寸分布的样品中的(10-12)孪晶和位错滑移的相互作用来解释。

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