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A generalized methodology for determination of crushing strength of granular materials

机译:测定粒状材料抗压强度的通用方法

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摘要

Determination of crushing strength of granular material is very important for assessing its suitability in various engineering and industrial applications. Laboratory investigations that would yield stress-strain behaviour, and hence, crushing strength of the granular material are extremely cumbersome and time consuming. Also, results obtained from these experiments get influenced by the aspect ratio of the sample, its density, strain rate, size and shape of the grains etc. These difficulties can be overcome by developing a generalized mathematical model, which is primarily based on the physical properties of the granular material such as particle-size and specific gravity, for estimating its crushing strength. With this in view, experiments were conducted on different types of granular materials such as sands, cenospheres (which are found in fly ash and bottom ash) and glass beads, and the results were used for developing such a model. Details of the testing methodology adopted to achieve this are also presented in this paper and validation of the proposed model has been done based on the experimental results and the results reported in the literature.
机译:确定粒状材料的抗压强度对于评估其在各种工程和工业应用中的适用性非常重要。会产生应力-应变行为并因此使粒状材料的抗碎强度极度麻烦且费时的实验室研究。而且,从这些实验中获得的结果会受到样品的长宽比,样品的密度,应变率,晶粒尺寸和形状等的影响。可以通过建立主要基于物理原理的广义数学模型来克服这些困难。颗粒材料的特性,例如粒度和比重,以评估其抗压强度。有鉴于此,对不同类型的颗粒材料(例如沙子,空心球(在粉煤灰和底灰中发现)和玻璃珠)进行了实验,并将结果用于建立这样的模型。本文还介绍了用于实现此目的的测试方法的详细信息,并根据实验结果和文献报道的结果对提出的模型进行了验证。

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