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The validity of laser diffraction system to reproduce hydrometer results for grain size analysis in geotechnical applications

机译:激光衍射系统的有效性再现岩土应用中晶粒尺寸分析的液晶分析结果

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The grain size analysis plays a significant role in any geotechnical study. The grain size analysis, by means of sieving, is usually used for coarse material of particle size 75 μm. For the fine material; the sedimentation methods are frequently adopted (e.g., hydrometers). Other methods also exist such as electron microscopy, digital image analysis and laser diffraction. The fine geomaterials commonly undergo agglomeration which makes the recognition of individual grain size using digital image analysis or electron microscopy challenging. To facilitate and enhance the grain-size analysis, this study was conducted using the Laser Diffraction System (LDS). Seven samples with different nature (composition and texture) and sources were analyzed by hydrometer and LDS. For LDS, various factors were studied such as air pressure, sonication, dilution, refractive index, and distribution method (volume or number). The results were compared qualitatively and quantitatively based on soil classification systems, fractal dimensions, and other parameters. Furthermore, this study provided a novel criterion to determine which LDS distribution method (volume or number) is to be used depending on the Liquid Limit. A combined sieve-LDS system is recommended to obtain the entire grain size distribution. It is concluded that the LDS is a viable technique that can replace the time-consuming hydrometer method to assess the grain-size distribution.
机译:晶粒尺寸分析在任何岩土学研究中起着重要作用。晶粒尺寸分析,借助于筛分,通常用于粒径粗材料。 75μm。对于细物质;经常采用沉降方法(例如,少花)。其他方法还存在如电子显微镜,数字图像分析和激光衍射。细微材料通常经历聚集,这使得使用数字图像分析或电子显微镜挑战来识别单个晶粒尺寸。为了促进和增强晶粒尺寸分析,使用激光衍射系统(LDS)进行该研究。通过液压分部和LDS分析具有不同性质(组成和纹理)和来源的七个样本。对于LDS,研究了各种因素,例如气压,超声处理,稀释,折射率和分布方法(体积或数量)。定性和定量地比较结果,基于土壤分类系统,分形尺寸和其他参数。此外,该研究提供了一种新的标准,以确定根据液体限制使用哪种LDS分布方法(体积或数量)。建议使用组合的Sieve-LDS系统来获得整个晶粒尺寸分布。得出结论,LDS是一种可行的技术,可以取代耗时的液压分部方法来评估晶粒尺寸分布。

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