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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Theoretical analysis and performance prediction on modified surface layer caused by ultrasonic surface rolling
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Theoretical analysis and performance prediction on modified surface layer caused by ultrasonic surface rolling

机译:超声波表面轧制引起的改性表面层的理论分析与性能预测

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摘要

Ultrasonic surface rolling process (USRP) is a prospective approach that can improve fatigue property of a workpiece by improving compressive residual stress and microhardness in the modified surface layer, as well as improving surface roughness. However, because USRP is a complicated machining process, many studies on surface properties focus on experiment test and simulation method. Thus, analytical models of the modified surface layer should be established to facilitate the design and utility of the USRP. In the present work, analytical models of residual stress, plastic strain of modified surface layer, and surface roughness are proposed on the basis of Hertz contact theory and elastic-plastic mechanics, and the effects of processing parameters on the modified surface layer are predicted using the developed models. Results of the analytical models are consistent with experiment results. Therefore, the models can be used to guide the design of the modified surface layer and identify optimal processing parameters in USRP.
机译:超声表面滚压工艺(USRP)是一种通过改善表面改性层的残余压应力和显微硬度,以及改善表面粗糙度来改善工件疲劳性能的有前途的方法。然而,由于USRP是一个复杂的加工过程,许多表面性能的研究都集中在实验测试和模拟方法上。因此,应建立改性表层的分析模型,以便于USRP的设计和使用。本文基于赫兹接触理论和弹塑性力学,建立了表面改性层残余应力、塑性应变和表面粗糙度的解析模型,并利用所建立的模型预测了工艺参数对表面改性层的影响。分析模型的结果与实验结果一致。因此,该模型可用于指导USRP表面改性层的设计和确定最佳工艺参数。

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