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首页> 外文期刊>Granular matter >Influence of Methocel cellulose ether additive on micro-scale friction, abrasion and energy dissipation of rough-heterogeneous particles
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Influence of Methocel cellulose ether additive on micro-scale friction, abrasion and energy dissipation of rough-heterogeneous particles

机译:Methocel纤维素醚添加剂对粗糙非均质颗粒微尺度摩擦、磨损和能量耗散的影响

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Abstract Understanding and modeling the contact behavior of particles provides enhanced constitutive laws in discrete-based simulations as well as a strong linkage between micro- and macroscopic behavior of granular materials. In the present study, we studied the influence of a polymer-based additive composed of Methocel cellulose ether on the tribological response of rough particles with grain-scale experiments. We performed both monotonic and cyclic tests on pairs of particles subjected to repeated shearing so that to explore the additional influence of abrasion in relation to previous loading history. Each sample was tested at first in a dry state and consecutively was immersed into the polymer-based fluid. The test results indicated increased friction at the contacts of the particles when immersed in the polymer-based additive, suggesting promising applications of the Methocel cellulose ether in improving the stability of geo-systems. For the shearing tests in a dry state, abrasion influences were amplified at higher magnitudes of normal load, whereas the polymer additive acted as a fluid film (or thin coating) mitigating in this way the continuous abrasion due to repeated shearing. We incorporated the Mindlin and Deresiewicz (M–D) contact model in a modified form to analyze the tangential response of the particles. It was found that the power of the modified M–D model was directly correlated with the natural logarithm of the microslip displacement threshold, when this threshold was normalized with respect to the normal load. Based on the analysis of the closed loops from the cyclic tests, the energy dissipation was found to be reduced when the samples were immersed in the polymer fluid compared with the tests in a dry state. The test results from the present work offer some insights into the micromechanical-based analysis of particulate materials and the interactions of rough particles in the presence of polymeric fluids with potential applications in contact mechanics modeling using discrete-based tools. These results also contribute to unveiling the prevailing micromechanisms in order to understand (or interpret) bulk behavior, thus the database from the present work may provide helpful guidance in understanding granular material behavior and the interactions between particles with polymer-based additives.
机译:摘要 对颗粒接触行为的理解和建模增强了离散模拟的本构定律,并增强了颗粒材料的微观和宏观行为之间的紧密联系。在本研究中,我们通过晶粒尺度实验研究了由Methocel纤维素醚组成的聚合物基添加剂对粗糙颗粒摩擦学响应的影响。我们对反复剪切的颗粒对进行了单调和循环测试,以探索磨损对先前加载历史的额外影响。每个样品首先在干燥状态下进行测试,然后连续浸入聚合物基流体中。测试结果表明,当浸入聚合物基添加剂中时,颗粒接触处的摩擦力增加,这表明Methocel纤维素醚在提高地质系统的稳定性方面具有广阔的应用前景。对于干燥状态下的剪切试验,磨损影响在较高的法向载荷下被放大,而聚合物添加剂充当流体膜(或薄涂层),以这种方式减轻了由于反复剪切而导致的连续磨损。我们以修改的形式结合了Mindlin和Deresiewicz(M-D)接触模型,以分析粒子的切向响应。结果发现,当微滑移阈值相对于法向载荷进行归一化时,修正后的 M-D 模型的功效与微滑移位阈值的自然对数直接相关。基于对循环测试中闭环的分析,发现与干燥状态下的测试相比,样品浸入聚合物流体中时的能量耗散减少。本工作的测试结果为基于微观力学的颗粒材料分析以及聚合物流体存在下粗糙颗粒的相互作用提供了一些见解,在使用基于离散的工具进行接触力学建模中具有潜在的应用。这些结果也有助于揭示主要的微观机制,以便理解(或解释)本体行为,因此本工作的数据库可能为理解颗粒材料行为以及颗粒与聚合物基添加剂之间的相互作用提供有用的指导。

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