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首页> 外文期刊>Metals and Materials International >Electron Back-Scattered Diffraction and Nanoindentation Analysis of Nanostructured Al Tubes Processed by Multipass Tubular-Channel Angular Pressing
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Electron Back-Scattered Diffraction and Nanoindentation Analysis of Nanostructured Al Tubes Processed by Multipass Tubular-Channel Angular Pressing

机译:多通道管状通道角挤压工艺处理的纳米结构铝管的电子背散射衍射和纳米压痕分析

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摘要

Microstructural evolution and mechanical properties of nanostructured 1060 aluminum alloy tubes processed by tubular-channel angular pressing (TCAP) process were investigated using electron back-scattered diffraction (EBSD), transmission electron microscopy (TEM) and nanoindentation analyzes. EBSD scans revealed a homogeneous ultrafine grained microstructure after the third passes of the TCAP process. Apart from that the mean grain sizes of the TCAP processed tubes were refined to 566 nm, 500 nm and 480 nm respectively after the first, second and third passes. The results showed that after the three TCAP passes, the grain boundaries with a high angle comprised 78% of all the boundaries. This is in comparison to the first pass processed sample that includes approximately 20% HAGBs. The TEM inspection afforded an appreciation of the role of very low-angle misorientation boundaries in the process of refining microstructure. Nanoindentation results showed that hardness was the smallest form of an unprocessed sample while the largest form of the processed sample after the three passes of TCAP indicated the highest resistant of the material. In addition, the module of elasticity of the TCAP processed samples was greater from that of the unprocessed sample.
机译:利用电子背散射衍射(EBSD),透射电子显微镜(TEM)和纳米压痕分析研究了管状通道角压(TCAP)工艺处理的纳米结构1060铝合金管的微观结构演变和力学性能。 EBSD扫描显示,在TCAP过程的第三次通过后,均质的超细晶粒组织均匀。除此之外,在第一,第二和第三次通过之后,将经TCAP处理的试管的平均晶粒尺寸分别细化为566 nm,500 nm和480 nm。结果表明,经过三个TCAP后,高角度晶界占所有晶界的78%。这与包含大约20%HAGB的首过处理样品相比。 TEM检查提供了非常微细的取向差边界在细化微结构过程中所起的作用。纳米压痕结果表明,硬度是未处理样品的最小形式,而在TCAP的三遍测试之后,最大形式的处理样品表明该材料具有最高的耐受性。此外,经TCAP处理的样品的弹性模量比未经处理的样品大。

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