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Shot-Peening Effects on Metal Erosion

机译:喷丸对金属侵蚀的影响

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摘要

Material damage by several erosion processes is caused mainly by high, local, and repetitive loading, resulting in fatigue, cracking, and erosion. One of the surface treatments used to increase material resistance to erosion damage is shot peening. This process induces compressive stresses on the treated surface layer, and increases its resistance to fatigue loading. Cumulative erosion-time curves of shot-peened specimens clearly indicate their increased erosion resistance compared to that of machined specimens. However, this comparison does not yield any information about the causes for the improved performance. Cumulative erosion-time plots in the Weibull domain of machined specimens, tested by five different erosion methods, are very similar. The common plot shape is bimodal with a decreasing slope. These plots enable an extensive study of machined and shot-peened specimens. This study explains the improvement process, and quantifies it during test duration and beyond it. This method is illustrated by testing of two AISI-316 specimens by the vibratory cavitation erosion method. Analysis of test results confirms the effectiveness of this method for erosion testing of machined and shot-peened specimens. Shot peening was found to restore some of the erosion properties of the boundary layer, bringing them closer to those of the base material.
机译:几种腐蚀过程造成的材料损坏主要是由高,局部和重复加载引起的,从而导致疲劳,破裂和腐蚀。用于提高材料抗腐蚀破坏能力的表面处理之一是喷丸处理。该过程在处理过的表面层上引起压应力,并增加其对疲劳载荷的抵抗力。喷丸试样的累积腐蚀时间曲线清楚地表明,与机加工试样相比,它们的耐蚀性提高了。但是,此比较不会产生任何有关性能提高的原因的信息。通过五种不同的腐蚀方法测试的机加工试样的威布尔域中的累积腐蚀时间图非常相似。常见的地块形状是双峰的,斜率减小。这些图可以对机加工和喷丸处理的样品进行广泛的研究。这项研究解释了改进过程,并在测试期间及以后对其进行了量化。通过振动空蚀法测试两个AISI-316标本可以说明这种方法。对测试结果的分析证实了该方法对机加工和喷丸试样的腐蚀测试的有效性。发现喷丸处理可以恢复边界层的某些腐蚀性能,使其更接近基材的腐蚀性能。

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