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Surface Properties in Ultrasonic Vibration Assisted Turning of Particle Reinforced Aluminium Matrix Composites

机译:超声波振动辅助铝基复合材料的超声振动辅助转动的表面特性

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Aluminium matrix composites (AMCs) consist of a comparatively soft aluminium alloy and hard ceramic particles. Due to their elevated properties, these materials are used for high-performance lightweight constructional components. Applications in tribologically loaded systems often require a defined friction behaviour, which can be gained by an appropriate microstructuring of the surface. Experimental investigations in turning of AA2124 with 25 % volume proportion of SiC particles have shown that an ultrasonic vibration assistance enables the generation of a microstructured surface in finish cutting without any additive process. Furthermore, an ultrasonic vibration assistance in the radial direction or in the cutting direction respectively leads to stronger compressive residual stresses in the surface layer, which increases the fatigue strength of the components.
机译:铝基基复合材料(AMCs)由相对柔软的铝合金和硬陶瓷颗粒组成。由于其高度的特性,这些材料用于高性能轻质结构部件。在摩擦加载系统中的应用通常需要定义的摩擦行为,其可以通过表面的适当微观结构获得。具有25%体积比例的SiC粒子转动AA2124的实验研究表明,超声振动辅助能够在没有任何添加过程的情况下在终止切割中产生微结构化表面。此外,径向或切割方向上的超声振动辅助分别导致表面层中的较强的压缩残余应力,这增加了部件的疲劳强度。

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