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Mechanical Behavior of the Precision Component after Synchronous Vibratory Joining

机译:同步振动接合后精密零件的机械性能

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摘要

To evaluate mechanical properties of the precision component after joining, nickel base superalloy was welded while subjected to synchronous mechanical vibration. In the vibrated specimen, the weld metal was seen to have fine microstructures, and low residual stress levels were measured in specimens subjected to vibration. Thus, it is believed that the mechanical properties of this vibrated weldment are improved. However, the hardness, strength, and ductility of the weld were compromised when vibration was applied. It was found that cyclic stress plays a role in relieving residual stress, in reducing hardness, and in worsening the mechanical properties.
机译:为了评价接合后的精密零件的机械性能,对镍基高温合金进行了同步机械振动的焊接。在振动的试样中,发现焊接金属具有良好的微观结构,并且在经受振动的试样中测得的残余应力水平较低。因此,据信该振动焊件的机械性能得到改善。然而,当施加振动时,焊缝的硬度,强度和延展性受到损害。发现循环应力在减轻残余应力,降低硬度和使机械性能恶化中起作用。

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