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Effect of Welding Speed on Mechanical Properties and the Strain-Hardening Behavior of Friction Stir Welded 7075 Aluminum Alloy Joints

机译:焊接速度对机械性能的影响及摩擦搅拌焊接7075铝合金接头的应变 - 硬化行为

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摘要

The effect of welding speed on the microstructural evolution, mechanical properties and strain-hardening behavior of friction stir welded (FSWed) high-strength AA7075-T651 was investigated. Large intermetallic particles and grains, whose sizes increased at lower welding speeds, were present in the heat-affected zone. FSWed joints fabricated at the higher welding speed or lower strain rates exhibited higher strength, joint efficiency and ductility than those fabricated at lower welding speeds or higher strain rates. A maximum joint efficiency of 97.5% and an elongation to failure of 15.9% were obtained using a welding speed of 400 mm/min at a strain rate of 10(-5) s(-1). The hardening capacity, strain-hardening exponent and strain-hardening rate of the FSWed joints were significantly higher than those of the base material, but materials exhibited stage III and stage IV hardening characteristics. The results morphology of the fracture surfaces is consistent with the above results.
机译:研究了焊接速度对摩擦搅拌焊接(FWWED)高强度AA7075-T651的微观结构演化,机械性能和应变硬化行为的影响。 在热影响区域中存在大量金属间颗粒和晶粒,其尺寸在较低的焊接速度下增加。 以较高的焊接速度或更低的应变率制造的FSWED接头表现出比以较低焊接速度或更高的应变速率制造的那些更高的强度,关节效率和延展性。 在应变率为10(-5)S(-1)的应变率(-1)的应变速率,最大程度为97.5%的接触效率为97.5%,伸长率为15.9%。 FSWED接头的硬化容量,应变硬化指数和应变 - 硬化速率显着高于基材,但材料表现出III阶段和阶段IV硬化特性。 裂缝表面的结果形态与上述结果一致。

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