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A Method for Evaluating Intensity of Water Cavitation Peening Processing

机译:一种评价水空化喷灌加工强度的方法

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Water cavitation peening (WCP) with aeration, namely, a new ventilation nozzle with aeration is adopted to improve the process capability of WCP by increasing the impact pressure induced by the bubble collapse on the surface of components. In this study, in order to investigate the process capability of the WCP with aeration a standard N-type almen strips of spring steel SAE 1070 was treated by WCP with various process conditions, and the arc height value and the residual stress in the superficial layers were measured by means of the Almen-scale and X-ray diffraction method, respectively. The optimal fluxes of aeration and the optimal standoff distances were achieved. The maximum of arc height value reach around 150μm. The depth of plastic layer observed from the results of residual stresses is up to 150μm. The results verify the existence of macro-plastic strain in WCP processing. The distributions of residual stress in near-surface under different peening intensity can provide a reference for engineers to decide the optimal process conditions of WCP processing.
机译:通过曝气的水空化喷丸(WCP),即通过增加由组分表面上的气泡塌陷引起的冲击压力来改善WCP的新通风喷嘴来改善WCP的过程能力。在该研究中,为了研究具有曝气的WCP的方法能力,通过WCP处理弹簧钢SAE 1070的标准N型Almen条带,以及各种工艺条件,以及浅层的弧度高度值和浅表层中的残余应力通过分别通过制剂和X射线衍射方法测量。实现了曝气的最佳通量和最佳的支座距离。电弧高度值的最大值达到约150μm。从残余应力结果观察到的塑料层的深度高达150μm。结果验证了WCP处理中宏观塑性应变的存在。在不同喷丸强度下近表面剩余应力分布可以为工程师提供参考,以确定WCP处理的最佳过程条件。

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