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1060-H24纯铝无肩微搅拌摩擦焊组织特征
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1.兰州理工大学省部共建有色金属先进加工与再利用国家重点实验室;2.兰州理工大学材料科学与工程学院;3.西北有色金属研究院

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NSFC(52261013)


Microstructural Characterization of 1060-H24 Pure Aluminum in Shoulderless Micro Friction Stir Welding
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西北有色金属研究院

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NSFC(52261013)

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    摘要:

    焊接过程中热量和变形的应用显着影响焊接接头机械性能和微观结构的发展和空间分布。 本研究评估了 0.8 mm 薄板微搅拌摩擦焊接中带肩工具和无肩工具之间的差异。 该研究采用一套先进的表征方法,包括白光干涉测量、电子背散射衍射和扫描电子显微镜,研究焊缝表面形成、接头微观结构分布和断裂特征。 通过霍尔-佩奇关系和泰勒硬化定律解释了力学性能的增强机制。 研究结果表明,无肩钻杆接头屈服强度增加的主要原因是位错和细晶强化的联合机制。 具体来说,使用台肩工具可以得到光滑的焊接表面,平均晶粒尺寸为 11.24 μm,熔核区大角度晶界含量为 16.80%。 观察到的主要织构成分是{011}<100>戈斯和{112}<111>铜织构,产生的最大织构强度为3.70。 同时,断裂韧窝的尺寸减小,深度增加; 然而,用无肩工具生产的焊缝在表面上显示出轻微的毛刺。 实验结果表明,这些接头熔核区的平均晶粒尺寸显着减小至0.59 μm,而大角度晶界含量达到34.34%。 这一过程伴随着以{111}<110>剪切和{001}<110>旋转立方织构为主要成分的形成,导致最大织构强度显着增加至6.65。

    Abstract:

    The application of heat and deformation during welding significantly affects the development and spatial distribution of mechanical properties and microstructures in welded joints. This study evaluates the differences between shouldered and shoulderless tools in the micro-stir friction welding of 0.8 mm thin plates. Employing a suite of advanced characterization methods, including white light interferometry, electron backscatter diffraction, and scanning electron microscopy, this research weld surface formation, joint microstructure distribution, and fracture characteristics. The enhancement mechanism of mechanical properties is explained through the Hall-Petch relationship and Taylor"s hardening law. The findings indicate that the main reason for the increased yield strength observed in shoulderless tool joints is the combined mechanism of dislocation and fine-grain strengthening. Specifically, the utilization of shouldered tools resulted in a smooth weld surface, with an average grain size of 11.24 μm and a high-angle grain boundary content of 16.80% in the nugget zone. The primary texture components observed were the {011} <100> Goss and {112} <111> copper textures, yielding a maximum texture strength of 3.70. Simultaneously, the fracture dimples exhibited a reduction in size and increased depth; whereas, welds produced with shoulderless tools displayed slight burrs on the surface. The experimental results demonstrate that the average grain size in the nugget zone of these joints is significantly reduced to 0.59 μm, while the high-angle grain boundary content reaches 34.34%. This process is accompanied by the formation of {111} <110> shear and {001} <110> rotated cubic textures as the main components, resulting in a significant increase in maximum texture strength to 6.65.

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张昌青,马东东,谷怀壮,王栋,刘恩荣,张鹏省.1060-H24纯铝无肩微搅拌摩擦焊组织特征[J].稀有金属材料与工程,,().[Zhang Changqing, Ma Dongdong, Gu Huaizhuang, Wang Dong, Liu Enrong, zhangpensheng. Microstructural Characterization of 1060-H24 Pure Aluminum in Shoulderless Micro Friction Stir Welding[J]. Rare Metal Materials and Engineering,,().]
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  • 收稿日期:2024-09-06
  • 最后修改日期:2024-10-21
  • 录用日期:2024-11-08
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