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Reduction of Boundary Friction in Model Tests

机译:减少模型测试中的边界摩擦

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To model plane-strain eonditions in the laboratory, the frictional resistance between the soil and side walls of the soil box should be reduced as much as possible. Methods commonly employed for this purpose include a latex sheet with silicon grease ("grease method") or multiple layers of thin plastic sheeting ("plastic sheet method"). Interface friction angles are often measured by direct shear-type tests. In this paper, a new sliding block testing device for measuring the friction at the interface between soil and different materials at low stress conditions is described. Interface friction angles for eight different methods for reducing boundary friction were investigated using the proposed testing method. Test results indicated that the friction angle obtained with the plastic sheet method is nearly independent of the normal stress. On the other hand, the interface friction angle of the grease method was quite high under low normal stress conditions. Thus, the plastic sheet method appears to be a more appropriate technique under low normal stress conditions to reduce the boundary friction for laboratory scale model tests. As compared with the grease method, advantages of the plastic sheet method include constant friction angles, less time for preparation and cleanup, and lower cost. To investigate their applicability, both lubrication systems were used in some large-scale laboratory-retaining wall experiments. Earth pressure measurements obtained near the sidewalls indicaced that, under a low normal stress, the plastic sheet method was more effective in reducing sidewall friction.
机译:为了在实验室中模拟平面应变条件,应尽可能减少土壤与土壤箱侧壁之间的摩擦阻力。通常用于此目的的方法包括带有硅脂的乳胶片(“油脂法”)或多层薄塑料片(“塑料片法”)。界面摩擦角通常通过直接剪切式测试来测量。本文介绍了一种新型的滑块测试装置,用于在低应力条件下测量土壤与不同材料之间的界面处的摩擦。使用建议的测试方法,研究了八种减少边界摩擦的方法的界面摩擦角。试验结果表明,用塑料片法获得的摩擦角几乎与法向应力无关。另一方面,在低法向应力条件下,润滑脂法的界面摩擦角很高。因此,塑料薄板方法似乎是在低法向应力条件下减少实验室规模模型测试的边界摩擦的更合适的技术。与油脂法相比,塑料薄板法的优点包括恒定的摩擦角,更少的准备和清洁时间以及更低的成本。为了研究其适用性,在一些大型的实验室挡土墙实验中都使用了这两种润滑系统。在侧壁附近获得的土压力测量结果表明,在低法向应力下,塑料板法在减少侧壁摩擦方面更为有效。

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