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Microstructure and Mechanical Properties of 6013 Aluminum Alloy Processed by a Combination of ECAP and Preaging Treatment

机译:ECAP与时效处理相结合处理6013铝合金的组织与力学性能。

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Microstructure and mechanical properties of a 6013 Al-Mg-Si-Cu aluminum alloy processed by a combination of equal channel angular pressing (ECAP) and preaging treatment were comparatively investigated using quantitative X-ray diffraction (XRD) measurements, transmission electron microscopy (TEM) and tensile tests. In addition, the precipitation sequences were obtained by thermodynamic calculations using the FactSage software package. Average grain sizes measured by XRD are in the range 211-501 nm while the average dislocation density is in the range 0.35-1.0 * 10~(14) m~(-2) in the deformed alloy. TEM analysis reveals that fine needle P" precipitates with an average length of 4-10 nm are uniformly dispersed in the preaging ECAPed alloy. The local dislocation density in this sample is as high as 2.2×10~(17) m~(-2). The strength is significantly increased in the preaging-ECAPed samples as compared to that of the undeformed counterparts. The highest yield strength among the preaging ECAPed alloys is 322 MPa. This value is about 1.25 times higher than that (258 MPa) of the static peak-aging sample. The high strength in the preaging ECAPed alloy is suggested to be related to grain size strengthening and dislocation strengthening, as well as precipitation strengthening contributed from both preaging treatment and ECAP deformation.
机译:使用定量X射线衍射(XRD)测量,透射电子显微镜(TEM)对通过等通道角挤压(ECAP)和预时效处理相结合处理的6013 Al-Mg-Si-Cu铝合金的组织和力学性能进行了比较研究)和拉伸试验。此外,使用FactSage软件包通过热力学计算获得了降水序列。在变形合金中,通过XRD测量的平均晶粒尺寸在211-501nm范围内,而平均位错密度在0.35-1.0 * 10〜(14)m〜(-2)范围内。 TEM分析表明,平均时长4-10 nm的细针状P“析出物均匀地分散在时效ECAPed合金中。该样品的局部位错密度高达2.2×10〜(17)m〜(-2 )。与未变形的ECAPed合金相比,时效ECAPed样品的强度显着增加。在时效ECAPed合金中,最高屈服强度为322 MPa,该值是258 MPa的1.25倍。静态峰值时效样品:预时效ECAPed合金的高强度被认为与晶粒尺寸的增强和位错的强化有关,以及与时效处理和ECAP变形有关的析出强化有关。

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