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首页> 外文期刊>Coatings >A Note on the Influence of Smectite Coating on the Coefficient of Restitution of Natural Sand Particles Impacting Granitic Blocks
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A Note on the Influence of Smectite Coating on the Coefficient of Restitution of Natural Sand Particles Impacting Granitic Blocks

机译:关于蒙脱岩涂层对抗污水砌块自然砂颗粒恢复系数的影响

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The study of the collision behavior of solid objects has received a significant amount of research in various fields such as industrial applications of powders and grains, impacts of proppants and between proppant and rocks during hydraulic fracturing, and the study of debris flows and avalanches and the interactions of landslide materials with protective barriers. This problem has predominantly been studied through the coefficient of restitution (COR), which is computed from the dropping and rebound paths of particles; its value corresponds to 1 for perfectly elastic impacts and 0 for perfectly plastic impacts (i.e., at the collision there is no rebound of the particle). Often, the colliding particles (or particle–block systems) are not perfectly clean, and there is debris (or dust) on their surfaces, forming a coating, which is a highly possible scenario in the debris flows of natural particles and fragments; however, the topic of the influence of natural coatings on the surfaces of particles on the collision behavior of particle–block systems has been largely overlooked. Thus, the present study attempts to provide preliminary results with respect to the influence of natural coating on the surfaces of sand grains in the COR values of grain–block systems using a stiff granitic block as an analogue wall. Montmorillonite powder, which belongs to the smectite clay group, was used and a sample preparation method was standardized to provide a specific amount of clay coating on the surfaces of the sand grains. The results from the study showed a significant influence of the smectite coating in the COR values of the grain–block systems, which was predominantly attributed to the dissipation of energy at the collision moment because of the compression of the soft coating of microparticles. Additionally, the method of analysis for calculating the COR values based on one and two high-speed cameras was explored, as the impacts of natural grains involve deviations from the vertical, which influences the rebound paths. Thus, a sensitivity analysis was performed investigating the differences in the COR values in two-dimensional and three-dimensional analysis of the impact tests.
机译:固体物体的碰撞行为的研究已经在各种领域获得了大量研究,例如粉末和谷物的工业应用,支撑剂的影响以及液压压裂过程中的支撑剂和岩石之间,以及碎片流动和雪崩的研究滑坡材料与保护屏障的相互作用。这一问题主要通过恢复系数(COR)进行研究,该系数是从粒子的下降和反弹路径计算的;它的值对应于1,对于完全弹性的冲击,对于完美的塑料冲击(即,在碰撞中没有粒子的反弹)。通常,碰撞颗粒(或粒子嵌段系统)不完全清洁,并且它们的表面上存在碎屑(或灰尘),形成涂层,这是天然颗粒和碎片的碎片流动中的高度可能的场景;然而,在很大程度上被忽略了颗粒对粒子块系统碰撞行为对颗粒表面影响的主题。因此,本研究试图在使用刚性的花岗岩系统的粒子块系统的粉末粒度的影响中,为使用刚性的花岗岩块作为类似物壁的粒子块系统的砂粒表面的影响来提供初步结果。使用属于蒙脱石粘土基团的蒙脱石粉末,并标准化样品制备方法以在砂粒的表面上提供特定量的粘土涂层。该研究的结果表明,由于微粒的软涂层的压缩,晶粒嵌段系统的COR值中的晶体涂层在粒状块系统的COR值中显示出显着影响。另外,探讨了基于一个和两个高速相机计算COR值的分析方法,因为天然谷物的影响涉及与垂直垂直的偏差,这影响了回弹路径。因此,进行了灵敏度分析,研究了对冲击试验的二维和三维分析中的核心值的差异。

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