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Rim formation on crystal faces growing in confinement

机译:在封闭状态下晶体表面上的轮辋形成

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A crystal face growing from solution while exerting a normal force on a confining surface is often observed to develop a growth rim surrounding a hollow core. The interpretation has been that this is a manifestation of steady state growth due to the balance between the concentration gradient and stress gradient along the confined crystal surface. In this paper, we present experimental results which show that the growth rim is instead formed as a consequence of faceted growth on the confined surface. Steady state growth is not ensured by a gradient in normal stress, but rather a gradient in step density along the crystal face. The loaded crystal surfaces display a high degree of roughness, and the stress is not uniformly distributed across the surface, but transmitted at discrete asperities. We discuss the implications of these findings for the interpretation of previous experimental results, and for the thermodynamics of crystal growth subject to normal stress.
机译:通常观察到从溶液中生长出来的晶体表面,同时在约束表面上施加法向力,从而形成围绕空心的生长边缘。解释是,这是由于沿受限晶体表面的浓度梯度和应力梯度之间的平衡而导致的稳态生长的表现。在本文中,我们提供了实验结果,该结果表明,由于在受限表面上进行刻面生长,因此形成了生长边缘。稳态生长不是通过法向应力的梯度来保证的,而是沿着晶体面的阶梯密度的梯度来保证的。加载的晶体表面显示出高度的粗糙度,并且应力在表面上分布不均匀,而是以不连续的凹凸面传递。我们讨论了这些发现对先前实验结果的解释以及正应力作用下晶体生长的热力学的意义。

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