首页> 外文会议>38th North American manufacturing research conference >FABRICATION AND CHARACTERIZATION OF BULK NANOSTRUCTURED MATERIALS OF STEEL AND ALUMINUM ALLOYS BY SHOT PEENING
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FABRICATION AND CHARACTERIZATION OF BULK NANOSTRUCTURED MATERIALS OF STEEL AND ALUMINUM ALLOYS BY SHOT PEENING

机译:钢和铝的块状纳米结构材料的制备与表征

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摘要

The formation of bulk nanocrystalline (NC) layers in AISI 1075 pearlitic and martensitic steels and aluminum alloys 6061-T6 and 7075 using air blast shot peening was studied. The cross-sectional microstructure of the samples showed a gradual reduction of the grain size near the surface. The NC layers were characterized using optical and scanning electron microscopy and nanohardness measurements. 2D surface topography of the top surface was also carried out. The roughness of the peened surfaces depends on sample hardness. The hardened AISI 1075 martensitic steel had lower surface roughness value. NC layers of 5 to 15 um thickness were observed in the steels whereas the aluminum alloys 6061 and 7075 yielded NC layers up to 20 to 25 um thick. The measured nanohardness in the NC layers confirmed the higher hardness of the NC layer compared with the bulk material.
机译:研究了AISI 1075珠光体和马氏体钢以及铝合金6061-T6和7075中使用喷砂喷丸处理形成的整体纳米晶(NC)层的方法。样品的横截面微观结构显示出靠近表面的晶粒尺寸逐渐减小。使用光学和扫描电子显微镜以及纳米硬度测量来表征NC层。还进行了顶表面的2D表面形貌。锤击表面的粗糙度取决于样品硬度。硬化的AISI 1075马氏体钢具有较低的表面粗糙度值。在钢中观察到5至15 um厚的NC层,而铝合金6061和7075产生的NC层最厚为20至25 um。与块状材料相比,在NC层中测得的纳米硬度证实了NC层具有更高的硬度。

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