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A Novel Method for Shape Analysis: Deformation of Bubbles During Wire Drawing in Doped Tungsten

机译:一种新型形状分析方法:掺杂钨丝牵伸期间气泡变形

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A novel technique has been developed for monitoring shape and size of microscopic pores, bubbles, second phase particles in deformed PM materials. The anisotropic small angle neutron scattering (ASANS) measurement provides direct visualisation of the shape of second phase objects after rolling, swaging, wire drawing. Also in case of mixture of different objects e. g. uniformly elongated bubbles and spherical ones they can be separated and their morphological parameters like relative number density, diameter, aspect ratio can be obtained from the quantitative analysis of ASANS data. Rods and wires from K-Al-Si doped tungsten containing residual porosity and K filled bubbles were studied from 6 mm to 0.2 mm in diameter. The increase of the average aspect ratio (~1/d) was found to be much slower than expected from the usual theory (~1/d~3). nstead of "constant volume" assumption, the "constant length" seems to be reliable. The ASANS investigation revealed also the occurrence of a small amount of spherical bubbles after several steps of wire drawing.
机译:已经开发了一种用于监测微观孔,气泡,第二相颗粒在变形PM材料中的形状和尺寸的新技术。各向异性小角度中子散射(ASANS)测量提供轧制,锻造线材拉伸后的第二相物体形状的直接可视化。在不同对象E的混合物的情况下也是如此。 G。它们可以分离均匀细长的气泡和球形泡沫和它们的形态学参数,如相对数密度,直径,纵横比可以从ASANS数据的定量分析获得。从含有残余孔隙率和k填充气泡的K-Al-Si掺杂钨的棒和导线从6mm至0.2mm的直径中研究。发现平均纵横比(〜1 / d)的增加比通常理论(〜1 / d〜3)的预期慢得多。 “恒定量”假设的nstead,“恒定长度”似乎是可靠的。 asans调查还揭示了在电线图的几个步骤后发生少量球形气泡。

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