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基于正交设计的相似材料配比试验及力学性能

Similar Material Proportioning Tests and Mechanical Properties Based on Orthogonal Design.

作者信息

Yang Xinglong, Dong Jinyu, Yang Jihong, Han Xiaodong

机构信息

College of Geosciences and Engineering, North China University of Water Resources and Electric Power, Zhengzhou 450046, China.

出版信息

Materials (Basel). 2023 Sep 27;16(19):6439. doi: 10.3390/ma16196439.

Abstract

Shaking table tests serve as an effective method to simulate landslides triggered by seismic activities. These laboratory experiments necessitate the use of materials that mimic those encountered in real-world scenarios. For this investigation, materials analogous to field conditions for the shaking table tests were formulated using quartz sand, barite powder, iron powder, gypsum, rosin, and alcohol. Within the model test compositions, iron powder, barite powder, and quartz sand acted as aggregates; gypsum functioned as an additive, and a solution of rosin and alcohol was employed as a binder. Employing the orthogonal design method, the physical and mechanical parameters of these analogous materials were ascertained through double-sided shear tests, as well as uniaxial compression and splitting tests. Subsequent analyses included extreme difference and regression assessments targeting the determinants influencing the physical and mechanical characteristics of these materials. The ultimate goal was to determine the optimal mixing ratios for the model test materials. The findings revealed that the physical and mechanical properties of analogous materials at varying ratios span a broad spectrum, fulfilling the criteria for distinct rock model experiments. A thorough examination of the factors impacting the physical and mechanical properties of these materials was undertaken, elucidating their respective influences. Based on the relative significance of each determinant on the mechanical attributes of the analogous materials, dominant factors were identified for a multiple regression analysis, from which the regression equations corresponding to the test ratios were derived.

摘要

振动台试验是模拟地震活动引发山体滑坡的一种有效方法。这些实验室试验需要使用能模拟现实场景中所遇到材料的物质。在本次研究中,使用石英砂、重晶石粉、铁粉、石膏、松香和酒精配制了与振动台试验现场条件类似的材料。在模型试验材料组成中,铁粉、重晶石粉和石英砂作为骨料;石膏用作添加剂,松香和酒精溶液用作粘结剂。采用正交设计方法,通过双面剪切试验以及单轴压缩和劈裂试验确定了这些类似材料的物理和力学参数。后续分析包括针对影响这些材料物理和力学特性的因素进行极差分析和回归评估。最终目标是确定模型试验材料的最佳混合比例。研究结果表明,不同比例的类似材料的物理和力学性能范围广泛,满足不同岩石模型试验的标准。对影响这些材料物理和力学性能的因素进行了全面研究,阐明了它们各自的影响。根据每个因素对类似材料力学属性的相对重要性,确定了用于多元回归分析的主导因素,并由此得出与试验比例相对应的回归方程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d48f/10573560/530d414f6832/materials-16-06439-g001.jpg

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