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Mechanisms of Microstructural Rearrangement on Two-Dimensional Aggregates under Compressive Stress

机译:压缩应力作用下二维骨料的微观结构重排机理

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Two-dimensional (2D) colloidal aggregates of polystyrene microspheres 4 pm were experimentally modeled to study the rearranged mechanisms and compression behaviors at the air-liquid interface. The aggregated models occurred due to the interaction forces between particles. The combination of mechanical testing technique and the digital video microscopy had been developed to quantitatively analyze the compressive deformation of 2D aggregates. When the compressive forces were applied to the cluster, these forces were transmitted trough the aggregated network during compression. Solid-like mechanical properties of 2D aggregated cluster were examined. Deformation mechanisms occurred within the aggregated network which presented the particle rearrangements during yield. Elastic deformation had undergone the compressive elastic stress of the elastic loading. Rearrangement mechanisms found generally were rolling-hinge, sliding mechanisms and tensile failure for a small-scale deformation. Shear failure and stick-slip mechanisms caused a large-scale plastic deformation. However, across the yield point, the tensile failures were dominated. Rearrangement mechanisms of particles affected both elastic and plastic deformations.
机译:实验模拟了聚苯乙烯微球的二维(2D)胶体聚集体,以研究气液界面处的重排机理和压缩行为。聚集模型的产生是由于粒子之间的相互作用力。机械测试技术和数字视频显微镜相结合已被开发出来,以定量分析二维聚集体的压缩变形。当将压缩力施加到群集时,这些力在压缩过程中通过聚集的网络传输。检查了二维聚集团簇的类固体力学性能。聚集网络内部发生了变形机制,从而在屈服过程中出现了粒子重排。弹性变形经历了弹性载荷的压缩弹性应力。通常发现的重排机制是滚动铰链,滑动机制和小范围变形的拉伸破坏。剪切破坏和粘滑机制导致大规模塑性变形。但是,在屈服点上,拉伸破坏占主导地位。粒子的重排机制会影响弹性变形和塑性变形。

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