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Cooperative material transport during the early stage of sintering

机译:烧结初期的合作材料运输

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The complex transport processes contributing to sintering are not yet fully understood, partially because in-situ observations of sintering in three dimensions (3D) are very difficult. Here we report a novel experiment in which monocrystalline copper spheres are first marked with microscopic boreholes drilled using a focused ion beam, after which high-resolution synchrotron X-ray tomography is carried out to measure translational, rolling and intrinsic rotation movements of some hundred spheres during sintering. Unlike in 1D and 2D systems, we show that, in 3D, intrinsic rotations are more pronounced than angular rolling rearrangements of the particle centres and become the dominant mechanism of particle movement. We conclude that in addition to the well-known neck growth and centre approach mechanisms, grain boundary sliding caused by the different crystallographic orientations of the individual spheres occurs.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:尚不完全了解导致烧结的复杂运输过程,部分原因是很难对三维(3D)烧结进行现场观察。在这里,我们报告了一项新颖的实验,在该实验中,首先用聚焦离子束在微晶孔上标记了单晶铜球,然后进行了高分辨率同步X射线断层扫描,以测量数百个球的平移,滚动和固有旋转运动在烧结过程中。与一维和二维系统不同,我们表明,在3D中,固有旋转比粒子中心的角滚动重排更为明显,成为粒子运动的主要机制。我们得出的结论是,除了众所周知的颈部生长和中心进场机制外,还会发生由各个球体的不同晶体学取向引起的晶界滑动。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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