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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Electropulsing on Surface Mechanical Behavior and Microstructural Evolution of Inconel 718 during Ultrasonic Surface Rolling Process
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Effect of Electropulsing on Surface Mechanical Behavior and Microstructural Evolution of Inconel 718 during Ultrasonic Surface Rolling Process

机译:超声波表面轧制过程中电禁止施加对图318的表面力学行为和微结构演化的影响

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摘要

In the current study, the surface mechanical behavior and microstructural evolution of Inconel 718 superalloy processed by the ultrasonic surface rolling process (USRP) and electropulsing-assisted ultrasonic surface rolling process (EP-USRP) were carefully analyzed. The experimental results suggested that after EP-USRP with a frequency of 400 Hz, significant enhancements in Vickers microhardness and nanoindentation hardness were achieved compared to those of USRP specimens, with increases of 13.6 and 9.9%, respectively. Moreover, the machined surface quality, wear resistance, and thermal stability were also improved after EP-USRP (400 Hz). These enhancements in mechanical behavior are closely related to the microstructural evolution induced by electropulsing. Under the coupling of thermal and athermal effects of high-energy electropulsing, the deformation limit of USRP is surpassed and a new balance is achieved between the electropulsing softening effect and the ultrasonic rolling hardening effect. Therefore, further grain refinement, improved plastic deformation ability in the strengthened layer, and the interaction effect between nano-sized precipitates and grain boundaries are probably the main reasons for these results.
机译:在目前的研究中,通过超声波表面轧制工艺(USRP)加工的Inconel 718超合金的表面力学行为和微观结构演化和静电辅助超声表面轧制工艺(EP-USRP)。实验结果表明,与频率为400Hz的EP-USRP,与VICKERS显微硬度和纳米狭窄硬度的显着增强,分别增加了13.6%和9.9%。此外,在EP-USRP(400Hz)之后,加工表面质量,耐磨性和热稳定性也得到改善。机械行为中的这些增强与通过电捕诱导的微观结构进化密切相关。在高能电赋制的热和动脉效应的耦合下,超越了USRP的变形极限,在电禁忌软化效果和超声波轧制硬化效果之间实现了新的平衡。因此,进一步的晶粒细化,改善强化层中的塑性变形能力,纳米沉淀物和晶界之间的相互作用效果可能是这些结果的主要原因。

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