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The anti-fatigue mechanisms on alterations of structure and performances of alloy welded joints with ultrasonic impact treatment

机译:超声冲击处理对合金焊接接头组织和性能变化的抗疲劳机理

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The specimens of alμminμm alloy welded joint were prepared by gas tungsten arc welding using 2A12 sheets and ER5356 welding wires. Some specimens were full coverage strengthened by ultrasonic impact treatment and the others were not strengthened. The surface layer microstructure of the ultrasonic impact treated and untreated specimens were investigated by optical microscopy and transmission electron microscopy. The surface layer hardness and residual stress distributions along the thickness direction were measured by micro-hardness tester and X-ray diffraction method. The results showed that a grain refinement layer which depth extended up to about 150~200 μm was produced by ultrasonic impact treatment. The average hardness value of the treated specimens was up to 110 HV, increasing by 45% compared with 76 HV of the untreated specimen. A residual compressive stress layer was also produced by ultrasonic impact treatment, and the depth was close to 900 μm. The maximμm residual compressive stress was -285 MPa. At the same time, the anti-fatigue mechanisms on grain refinement, work hardening and residual compressive stress of alμminμm alloy welded joint with ultrasonic impact treatment were also discussed.
机译:用2A12薄板和ER5356焊丝通过气钨极电弧焊制备铝最小合金焊接接头样品。有些标本通过超声冲击处理得到了完全覆盖,而其他标本没有得到增强。通过光学显微镜和透射电子显微镜研究了超声冲击处理和未处理样品的表面层微观结构。用显微硬度计和X射线衍射法测定沿厚度方向的表面层硬度和残余应力分布。结果显示,通过超声冲击处理产生了深度延伸至约150〜200μm的晶粒细化层。处理过的样品的平均硬度值高达110 HV,与未处理过的样品的76 HV相比,增加了45%。还通过超声冲击处理产生残余压应力层,并且深度接近900μm。最大残余压应力为-285 MPa。同时,探讨了铝合金超声冲击处理对铝合金焊接接头晶粒细化,加工硬化和残余压应力的抗疲劳机理。

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