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Estimation of the depth of surface modification layer induced by cavitation peening

机译:空化喷丸引起的表面改性层深度的估算

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In this paper we propose an experimental method for estimating the depth to which the surface of a material is modified after being treated by cavitation peening. The estimate is made on the basis of two theories: plate theory and beam theory, in which the plastic strain in the modified layer is considered. As the depth of the compressive residual stress is an important factor for the fatigue strength and for stress corrosion cracking, a simple and straight-forward method to estimate the depth of the modified layer is needed. In the proposed method, measurements of the surface residual stress and the radius of curvature generated as a result of the plastic deformation introduced by cavitation peening are combined with either plate theory or beam theory. The most appropriate theory depends on the thickness of the specimen. The plate theory is more accurate than beam theory in the case of both a thin and thick specimens. The beam theory should be applied only in the case of a thick specimen.
机译:在本文中,我们提出了一种估算空化喷丸处理后材料表面改性深度的实验方法。估计是基于两种理论:板理论和梁理论,其中考虑了改性层中的塑性应变。由于压缩残余应力的深度是影响疲劳强度和应力腐蚀开裂的重要因素,因此需要一种简单而直接的方法来估算改性层的深度。在提出的方法中,将空化喷丸引起的塑性变形导致的表面残余应力和曲率半径的测量结果与板理论或梁理论相结合。最合适的理论取决于样品的厚度。对于薄样品和厚样品,板理论比梁理论更准确。光束理论仅适用于厚样品。

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