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Experimental Development Process of a New Fluid–Solid Coupling Similar-Material Based on the Orthogonal Test

机译:基于正交试验的新型液固耦合相似材料的实验开发过程

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Similar-material, composed of different raw materials with different properties, is similar to the physical and mechanical properties of geotechnical media, in which raw material proportioning is an important means to control the performance of similar-material in physical simulation. On this basis, a new fluid–solid coupling similar-material was developed through proportioning tests, in which similar-material is mixed with river sand, calcium carbonate, talc powder, white cement, vaseline, antiwear hydraulic oil. The optimum proportioning test development process was established. First, the proportioning test scheme was designed based on the orthogonal test. Subsequently, test specimens were produced to obtain parameters such as density, compressive strength, tensile strength, and permeability coefficient. Then, by increasing the ingredients of the proportioning, the evolution law of parameters was obtained by range and variance analysis. Finally, four multiple linear regression equations between the parameters and similar-material ingredients were obtained, and the optimum proportioning of ingredients was further determined for different requirements. The results indicate that the selected raw materials and their proportioning method are feasible, and the results were also verified in a coal mine floor water inrush by physical simulation test. The experimental development process of a fluid–solid coupling similar-material can provide a reference for similar-material under different demand conditions.
机译:由具有不同特性的不同原材料组成的相似材料与岩土介质的物理和机械特性相似,其中,原材料配比是控制物理模拟中相似材料性能的重要手段。在此基础上,通过比例试验开发了一种新型的流固耦合相似材料,其中相似材料与河砂,碳酸钙,滑石粉,白水泥,凡士林,抗磨液压油混合。建立了最佳比例测试开发流程。首先,基于正交检验设计了比例检验方案。随后,制备试样以获得诸如密度,抗压强度,抗张强度和渗透系数的参数。然后,通过增加比例成分,通过范围和方差分析得出参数的演化规律。最后,获得了参数与相似材料成分之间的四个多元线性回归方程,并针对不同需求进一步确定了成分的最佳配比。结果表明所选择的原料及其配比方法是可行的,并通过物理模拟试验验证了该方法在煤矿底板突水中的应用。流固耦合相似材料的实验开发过程可以为不同需求条件下相似材料提供参考。

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