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Variation of Relief Topography and Hardness of Surface Layers of Materials Due to Impact-Oscillatory Loading

机译:冲击振动载荷导致材料表面层的起伏形貌和硬度变化

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摘要

It was shown previously that cyclic loading can be used to extend the fatigue life of sheet plastic materials subjected to the preliminary impact-oscillatory loading. This type of loading causes dynamic non-equilibrium processes (DNP) in materials, which lead to the formation of dissipative structures in materials and on their surface. The density of these dissipative structures is less than that of the base metal. In this paper, the results of investigations into the relief and hardness of surface layers modified by impact-oscillatory loading are analyzed on the example of five structural materials. The signs of a regular, orderly system of microextrusions formed on flat surfaces of all materials due to DNP are considered along with the alignment of roughness parameters Rz and Ra of relief profiles. The effect of impact-oscillatory loading is one of the main causes that lead to the extension of the fatigue life of materials.
机译:先前已表明,循环载荷可用于延长承受初步冲击振动载荷的片状塑料材料的疲劳寿命。这种加载导致材料中的动态非平衡过程(DNP),从而导致材料及其表面上的耗散结构的形成。这些耗散结构的密度小于贱金属的密度。在本文中,以五种结构材料为例,分析了通过冲击振动载荷改性的表面层的起伏和硬度的研究结果。考虑到由于DNP而在所有材料的平面上形成的规则,有序的微挤压系统的迹象,以及凸纹轮廓的粗糙度参数Rz和Ra的对齐。冲击振动载荷的影响是导致材料疲劳寿命延长的主要原因之一。

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