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Inelastic damages by stress wave on steel surface at the incubation stage of vibration cavitation erosion
Authors:Chen Haosheng  Liu Shihan
Affiliation:1. Department of Biogeography and Palaeoecology, Faculty of Geographical and Geological Sciences, Adam Mickiewicz University, Dzi?gielowa 27, 61-680 Poznań, Poland;2. Laboratory of Wetland Ecology and Monitoring, Faculty of Geographical and Geological Sciences, Adam Mickiewicz University, Dzi?gielowa 27, 61-680 Poznań, Poland;3. Department of Palaeobotany and Palaeoherbarium, Faculty of Biology and Earth Sciences, Jagiellonian University, Lubicz 46, 31-512 Kraków, Poland;1. Federal University of Technology, Paraná, Av. Monteiro Lobato Km 04, s.n., Ponta Grossa, PR 84016-210, Brazil;2. Federal University of Paraná, Department of Mechanical Engineering, Av. Cel. Francisco H. dos Santos, s.n., Jardim das Américas, Curitiba, PR 81530-900, Brazil;3. LACTEC Institutes, Institute of Technology for Development, Av. Prefeito Lothário Meissner, n°1, Jardim das Américas, Curitiba, PR 80210-170, Brazil;4. Copel Geração e Transmissão S.A., Rua José Izidoro Biazetto, 158 - bloco A – Mossunguê, Curitiba, PR 81200-240, Brazil
Abstract:In cavitation erosion, stress waves will be generated and propagated in the solid when a collapse impingement is acted on it. The cavitation damages on the solid surface are considered to be under the effect of the stress waves. An ultrasonic vibration cavitation erosion experiment was performed on a polished steel specimen, and not only the plastic deformations but also the brittle fractures appeared on the surface at the incubation stage of cavitation erosion. Some characteristics such as the hemispherical shape of the crater, intergranular fractures and subsurface comminution make the damages distinguishable from the common plastics deformations, and they are thought to be the results of shear waves. Thus, stress waves are proved to take part in the cavitation erosion, and they bring some special damage styles depending on the conditions of the impaction and mechanical properties of the specimen.
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